WO2016157215A1 - An improved system for de-shelling cashew nut and a process thereof - Google Patents
An improved system for de-shelling cashew nut and a process thereof Download PDFInfo
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- WO2016157215A1 WO2016157215A1 PCT/IN2016/000083 IN2016000083W WO2016157215A1 WO 2016157215 A1 WO2016157215 A1 WO 2016157215A1 IN 2016000083 W IN2016000083 W IN 2016000083W WO 2016157215 A1 WO2016157215 A1 WO 2016157215A1
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- WIPO (PCT)
- Prior art keywords
- cashew
- cashew nut
- tearing
- popping
- steaming
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Classifications
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- A—HUMAN NECESSITIES
- A23—FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
- A23N—MACHINES OR APPARATUS FOR TREATING HARVESTED FRUIT, VEGETABLES OR FLOWER BULBS IN BULK, NOT OTHERWISE PROVIDED FOR; PEELING VEGETABLES OR FRUIT IN BULK; APPARATUS FOR PREPARING ANIMAL FEEDING- STUFFS
- A23N5/00—Machines for hulling, husking or cracking nuts
-
- G—PHYSICS
- G05—CONTROLLING; REGULATING
- G05B—CONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
- G05B19/00—Program-control systems
- G05B19/02—Program-control systems electric
- G05B19/04—Program control other than numerical control, i.e. in sequence controllers or logic controllers
-
- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06V—IMAGE OR VIDEO RECOGNITION OR UNDERSTANDING
- G06V10/00—Arrangements for image or video recognition or understanding
- G06V10/40—Extraction of image or video features
-
- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47J—KITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
- A47J43/00—Implements for preparing or holding food, not provided for in other groups of this subclass
- A47J43/26—Nutcrackers
-
- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06V—IMAGE OR VIDEO RECOGNITION OR UNDERSTANDING
- G06V10/00—Arrangements for image or video recognition or understanding
- G06V10/10—Image acquisition
- G06V10/12—Details of acquisition arrangements; Constructional details thereof
- G06V10/14—Optical characteristics of the device performing the acquisition or on the illumination arrangements
- G06V10/141—Control of illumination
-
- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06V—IMAGE OR VIDEO RECOGNITION OR UNDERSTANDING
- G06V20/00—Scenes; Scene-specific elements
- G06V20/60—Type of objects
- G06V20/68—Food, e.g. fruit or vegetables
Definitions
- the present invention relates generally, to a cashew nut de-shelling machines or systems and processes for de-shelling nut, and more particularly, it relates to an improved system with customized steam cooking, popping, tearing and shell separator mechanisms for de-shelling cashew nut and the invention also relates to an improved process with customized steam cooking, popping, tearing and shell separator mechanisms for de- shelling cashew nut.
- US 4793248 titled "Nut shelling machine” discloses a de-shelling machine, wherein initially the cashew nuts are graded based on sizes and based on type of group, the machine uses different discs that are used to create an impact force on the cashew nut to break open the cashew to separate kernel from the shell.
- the machine has major disadvantage of not analyzing any cashew individually for a proper impact, thereby making the machine less efficient.
- WO 2015059720 titled "An automatic cashew nut de-shelling machine” discloses the machine which comprises of units with pulleys and blades that carry the oriented cashew to the de-shelling operation, where there are two adjustable blades that shear open the cashew at its dehiscence.
- the major disadvantage of the machine is even if the machine comprises of sensing wheel for de-shelling, the machine lacks any proper sensing or monitoring mechanism or system which accurately determines the depth of cut on cashew nut in real time, thereby making the machine less efficient due to this uncontrolled de-shelling mechanism without maintaining high rate of undamaged and whole kernels while de-shelling.
- Present invention recognizes and addresses various disadvantages and drawbacks of the existing cashew nut de-shelling machines/systems and cashew nut de- shelling processes to provide an improved system with customized steam cooking, popping, tearing and shell separator mechanisms for de-shelling cashew nut which de-shells cashew nut after controlled steaming of individual cashew nut.
- the present invention also provides an improved process with customized steam cooking, popping, tearing and shell separator mechanisms for de-shelling cashew nut to produce commercially valuable high quality whole cashew kernels in more accurate manner.
- the improved system for de-shelling cashew nut provides customized/ controlled steaming of individual cashew nut based on different external and internal characteristics of individual cashew nut before it goes for popping, tearing and shell separation by avoiding extra softening of cashew nuts to significantly enable the improved system to accomplish accurate popping and accurate tearing of each cashew nut which ultimately provides higher percentage of whole kernels as the final product. Further the improved system also provides a shell separator mechanism to separate cashew kernels from cashew shells, thereby decreasing labor intensity. The present invention also discloses the constructional/structural variations of the improved process with customized steam cooking, popping, tearing and shell separator mechanisms for de-shelling cashew nut.
- the constructional/structural variations of the improved system shares in common essentially all parts/features or mechanisms of the present invention and all these parts of the improved system are arranged in exactly the same sequence viz. a main frame for supporting all parts located on or around the main frame, a hopper, a feeding unit, a singulator unit, a main conveyor (horizontal or rotary), an optics unit, a customized steaming system, a customized popping system, a customized tearing system, a shell separator unit, and multiple collection units.
- said essentially all parts/features or mechanisms of the improved system functions essentially in the same manner to accomplish the desired result/same end product (properly de-shelled and separated cashew nut kernel from cashew nut shell) for the purposes of carrying out the same said improved process with customized steam cooking, popping, tearing and shell separator mechanisms for de-shelling cashew nut.
- the constructional variation in the improved system lies only in structural arrangement of the main conveyor which is horizontal conveyor in one structural arrangement of the improved system and the main conveyor . is rotary in another structural arrangement of the improved system. Accordingly, described herein below are few objects of the present invention:
- the main object of the present invention is to provide a simple and accurate improved system with customized steam cooking, popping, tearing and shell separator mechanisms for de- shelling cashew nut which comprises of a customized steaming system for customized steam cooking of each cashew nut, wherein based on signals from moisture sensors of the steaming system, the master controller releases pre-determined amount of pressurized steam according to different steam requirement for individual cashew nut according to their external and internal characteristic based on pre-determined master data, whereby such customized steamed cashew nuts enable accurate popping and accurate tearing each cashew nuts, thereby ultimately avoiding high cashew kernel breakage and providing high percentage of substantially whole kernel as a final product, moreover this kind of customized steaming adapted for steaming cashew nuts provide good quality of kernels which has high market value.
- It is still further object of the present invention is to provide an improved system which comprises of unique popping system with effective controlled popping mechanisms to provide a path to tearing, wherein each of the cashew nuts is popped at accurate popping point to create a slit at natural cleavage line based on real time signals from the multiple cameras and based on the analyzed inputs from the master controller.
- FIG. 1 is an isometric view of an improved system with customized steam cooking, popping, tearing and shell separator mechanisms for de-shelling cashew nut which illustrates the entire assembly of different parts arranged in the improved system according to first embodiment of the present invention.
- FIG. 2 is an elaborated isometric view of a horizontal main conveyor illustrating its constituting parts according to first embodiment of the present invention.
- FIG. 6 is an elaborated isometric view of a tearing system illustrating constituting parts of the tearing system according to first embodiment of the present invention.
- FIG. 7 is an elaborated isometric view of a tearing unit illustrating constituting parts of the tearing unit showing arrangement of different parts of the single tearing unit at the time of tearing of individual cashew nut according to first embodiment of the present invention.
- FIG. 8 is an elaborated isometric view of a shell separator unit illustrating constituting parts of the shell separator unit showing entire arrangement of different parts of the shell separator unit while separating cashew kernels from cashew nut shell according to first embodiment of the present invention.
- FIG. 9 is a block diagram illustrating different non-limiting parts of the improved system by focusing the electronically controlled nature of the improved system according to first embodiment of the present invention.
- FIG.10 is an isometric detailed view of an improved system for de-shelling cashew nut with customized steam cooking, popping and tearing mechanism which illustrates in detail the entire arrangement of different parts of the improved system with some constructional variation according to second embodiment of the present invention.
- 'cashew nut cabin' refers to a holding mechanism where a single cashew nut is held firmly in a single cashew nut cabin (cashew cup) in proper position and orientation.
- the term 'external and internal characteristics' shall refer to the characteristics including, but not limited to size, shape, surface properties, shell profile, shell thickness, distance between outermost kernel and inner side of shell or any other possible external and internal characteristics.
- the term 'optics unit' comprises of 'multiple cameras' and 'multiple light sources', wherein the light sources are specific light sources to ensure the enhanced surface analysis of each cashew nuts.
- the term 'multiple cameras' refer to 'multiple programmable cameras' which are programmed as per the need of the invention for the purposes of the invention. These cameras can be "regular color' cameras or 'multi-spectral' cameras.
- the term 'multi-spectral' cameras work at different frequencies of electromagnetic spectrum like visible, ultra-violet, infra-red (IR), x-ray etc. for enhanced analysis of the cashew nut based on external and internal characteristics.
- the term 'steam controller mechanism' may have an opening/closing valve or diaphragm or a flap, or any other possible element which falls within the scope of the present invention and the meaning of term should not be limited only to control the steam in steaming cups.
- the term 'popping' refers to 'opening of the region between head and knot of cashew nut' to develop a slit at its natural cleavage line's which is the weakest part of cashew nut and said region is the 'accurate popping region', whereas 'head of cashew nut' refers to 'accurate popping point' of the cashew nut.
- the term 'master controller' refers to a programmable controlling means which stores pre-determined master data related to external and internal characteristics of different cashew nuts. Multiple cameras of the optics unit use this pre-determined master data to decide category of each cashew nut present in optics unit and the moisture sensors of the customized steaming system compares this pre-determined master data to decide the predetermined amount of pressurized steam and pre-determined temperature required, also to decide complete steaming is required or steaming required only at the weaker fibers of each cashew nut present in the customized steaming system.
- Other parts of the improved system like a feeding unit, popping system, tearing system and shell separator unit are coupled with the master controller through real time data/signals received from multiple feed sensors, multiple cameras of the popping system, multiple cameras of the tearing system and one/multiple cameras of the shell separator unit for ccurate popping point of cashew nut, accurate tearing point of cashew nut, and separation of shell from kernel respectively, thereby synchronizing all said parts for effective functioning.
- the speed of 'main conveyor' is controlled relatively with the speed of 'upper conveyor- ⁇ of the steaming unit, 'upper conveyor-2'of the popping unit, and 'upper conveyor-3' of the tearing unit to synchronize with the speed of 'main conveyor' with for performing different operations like customized steaming, popping and tearing of cashew nuts respectively in an effective manner.
- FIG.l it is an isometric view of an improved system with customized steam cooking, popping, tearing and shell separator mechanisms for de-shelling cashew nut.
- FIG.l illustrates more clearly the construction and relation to the several parts of the entire assembly of the improved system, wherein the main conveyor is horizontal in arrangement.
- the improved system comprises of at least one main frame (40); at least one hopper (39); at least one feeding unit (42); at least one singulator unit (43); at least one horizontal main conveyor (46) on which multiple arrays of cashew nut cabins are mounted; at least one optics unit (44); at least one customized steaming system (45); at least one popping system (47); at least one tearing system (48); at least one shell separator unit (49); at least one master controller; and multiple collection units, out of which few collection units are indicated as collection unit-1 (50), collection unit-2 (51), and collection unit- 3 (53).
- the main frame (40) supports different parts of the improved system which are arranged on or around the main frame to get a firm support from the main frame and to absorb the vibration.
- the cashew nuts are fed into hopper (39) for receiving cashew nuts that are to be de-shelled.
- the feeding unit (42) which is connected downstream of said hopper (39) to receive cashew nuts fall from the hopper (39) into the feeding unit (42) due to the gravity.
- the feeding unit (42) is coupled to multiple feed sensors, and to at least one feed controller.
- the singulator unit (43) is connected to the feeding unit (42) for receiving cashew nuts from the feeding unit (42).
- the horizontal main conveyor (46) is mounted on the main frame (40).
- the horizontal main conveyor (46) is having multiple arrays of cashew nut cabins which are mounted on the horizontal main conveyor (46). Each array of cashew nut cabins comprises of multiple cashew nut cabins.
- the singulator unit (43) carries cashew nuts from the feeding unit (42) to singulate cashew nuts, which are further placed by the singulator unit (43) on to the cashew nut cabins of the main conveyor (46) in a desired and pre-determined position and orientation.
- Each cashew nut cabin holds a single cashew nut appropriately and firmly in a desired, pre-determined position and orientation due to its specialized cashew holding mechanism.
- the horizontal main conveyor (46) moves successively and horizontally from the singulator unit (43) towards the optics unit (44), where cashew nuts of the horizontal main conveyor (46) are exposed to the optics unit (44).
- the optics unit (44) comprises of multiple cameras (Not shown in FIG. 1), and multiple light sources (Not shown in FIG. 1).
- each of the cashew nuts placed in individual cashew nut cabin is viewed from multiple sides or multiple angles by multiple cameras and by capturing different images of each cashew nut in co-ordination of multiple light sources, analyze and process different images of each cashew nut based on different external and internal characteristics including size, shape, texture, surface properties, shell profile, shell thickness of individual cashew nut and the distance between outermost kernel and inner side of shell, along with other characteristics.
- the optics unit after processing the image data, communicate signals related to analysis of different external and internal characteristics of individual cashew nut to the master controller. Further the horizontal main conveyor (46) with externally and internally analyzed cashew nuts moves successively and horizontally from the optics unit (44) into the customized steaming system (45).
- the customized steaming system comprises of an upper conveyor- 1 (Not shown in FIG. 1) in which multiple steaming arrays are placed, wherein each steaming array comprises of multiple steaming units and each steaming array comprises of one or multiple moisture sensors, at least one steaming cup having multiple nozzles at its inner surface.
- the steaming cup of each steaming unit is connected to the steaming channel through steam controller mechanism.
- the upper conveyor- 1 (Not shown in FIG. 1) of the customized steaming system (45) opens up and acts on cashew nuts of horizontal main conveyor (46), wherein multiple steaming arrays are arranged on the upper conveyor-1 , wherein each steaming array comprises of multiple steaming units.
- the upper conveyor- 1 moves synchronously with the horizontal main conveyor (46) due to controlled speed of both these conveyors.
- One steaming unit acts on single cashew nut of horizontal main conveyor (46).
- One/multiple moisture sensors of each steaming unit sense and determine the exact shell moisture content, shell softness and steam requirement of each cashew nut and accordingly each cashew nut is steam cooked by releasing specific amount of pressurized steam through steam controller mechanisms of corresponding multiple steaming units signaled by the master controller based on pre-determined master data.
- the popping system (47) comprises of upper convey or-2 (Not shown in FIG. 1) in which multiple arrays of popping units are arranged, wherein each array of popping units comprises of multiple popping units. Further each popping unit comprising of at least one camera and a popping mechanism. There is also a possibility of presence of multiple cameras in upper conveyor-2 instead of one camera in each popping unit.
- the upper conveyor-2 moves synchronously with the horizontal main conveyor (46) due to controlled movement of upper conveyor-2 and the horizontal main conveyor for effective popping of each cashew nut.
- the upper conveyor-2 opens up the popping mechanism at each popping unit.
- One popping unit will act on one cashew nut placed in single cashew nut cabin of the horizontal main conveyor (46).
- Single camera of each popping unit continuously views one complete process of popping unit and sends real time signals about the state of corresponding popping process to the master controller continuously in real time, the master controller decides the accurate popping point and signals to the popping mechanism of each popping unit to pressurize corresponding cashew nut at its head which is the particular popping point using impulsive force, thereby providing more accurate slit at its natural cleavage line to provide an accurate path for tearing of each cashew nut.
- the horizontal main conveyor (46) with popped cashew nuts placed on cashew nut cabin of the horizontal main conveyor (46) moves successively and horizontally from the popping system (47) to the tearing system (48).
- the tearing system (48) comprises of upper conveyor-3 (Not shown in FIG. 1) in which multiple arrays of tearing units are arranged, wherein each array of tearing unit comprises of multiple tearing units.
- Each tearing unit comprises of at least one camera and at least one tearing mechanism.
- the speed of the upper conveyor-3 and the speed of the horizontal main conveyor (46) are synchronized for effective tearing of each cashew nut.
- the upper conveyor-3 opens up at least one tearing mechanism at single cashew nut of the horizontal main conveyor (46).
- the complete tearing process of one single tearing unit is viewed by one camera placed in single tearing unit, and each camera of each tearing unit continuously sends real time signals to the master controller about the state of corresponding tearing mechanism. After receiving such signals from the camera of each tearing unit, each of the steps involved in the tearing mechanism of each tearing unit is controlled by the master controller accordingly. Subsequently, the master controller decides the exact tearing point of each cashew nut and at this accurate tearing point of each cashew nut.
- the master controller Upon deciding the exact tearing point of each cashew nut, the master controller sends real time signals in turn to each tearing mechanism of corresponding tearing unit to tear open corresponding cashew nut to the required depth to enable easy separation of whole kernel without causing any damage to the inner whole kernel.
- the tearing mechanism is fully controlled based on real time signals from corresponding camera of each tearing unit, thereby there is full control while tearing each cashew nut with controlled depth of the cut made into each cashew nut which leads to negligible chances of damaging inner whole kernel of the cashew nut.
- the horizontal main conveyor (46) with torn cashew nuts placed on cashew cabin of the horizontal main conveyor (46) moves successively and horizontally from the tearing system (48) to the shell separator system (49).
- the shell separator unit (49) comprises of one or multiple cameras and a specialized shell separator mechanism.
- each torn cashew nut is viewed, and analyzed by one or multiple cameras of the shell separator unit (49) to continuously sends real time signals to the master controller about the position of torn cashew nut to the master controller, which upon receiving such real time signals from the camera/cameras of the shell separator unit (49), subsequently, sends signals in turn to the shell separator mechanism of the shell separator unit (49) to act on each cashew nut to separate cashew kernel from cashew nut shell.
- This mixture of separated cashew kernel and cashew nut shell gets separated/segregated automatically into cashew kernel and cashew nut shell which gets collected separately into in at least two collection units as shown in FIG.l as collection unit-1 (50) and collection unit-2 (51).
- the entire shell separation mechanism is fully controlled by the master controller based on real time signals from camera/cameras of the shell separator unit (49).
- FIG. 2 it is an elaborated isometric view of a horizontal main conveyor illustrating its constituting parts, wherein this conveyor is one of the parts of an improved system of FIG. 1.
- the horizontal main conveyor (46) is mounted on the main frame (40).
- Multiple arrays of cashew nut cabins are mounted on the horizontal main conveyor (46). Each such array has multiple cashew nut cabins.
- One such cashew nut cabin is denoted by numerical indicator 41.
- Each cashew nut cabin (41) comprises of two parts namely lower part is a cashew nut cup holder which is fixed on the horizontal main conveyor (46) and the upper part of cashew nut cup cabin cashew nut cup fixed to receive a single cashew nut.
- Each cashew nut cabin (41) has specialized holding mechanism to hold each cashew nut singly and firmly in a desired and pre-determined position and orientation.
- the horizontal main conveyor (46) passes continuously, successively and horizontally through different parts of the improved system of FIG. 1 viz. the optics unit, the customized steaming system, the popping system, the tearing system, and the shell separator unit for synchronized operations of each part of the improved system for effective functioning.
- the speed of the horizontal main conveyor (46) and speed of all three upper conveyors namely upper conveyor- 1, upper conveyor-2 and upper conveyor-3 is controlled for easy synchronization.
- FIG. 3 it an elaborated isometric view of a customized steaming system illustrating constituting parts of the customized steaming system.
- the customized steaming system comprises of an upper conveyor- 1 (81) in which multiple steaming arrays are placed, wherein each steaming array comprises of multiple steaming units.
- Each steaming unit comprises of one or multiple moisture sensors, at least one steaming cup (80) having multiple nozzles (86) at its inner surface, and each steaming cup is connected to the steaming channel (83) through steam controller mechanism (84).
- steaming unit-1 91
- steaming unit-2 (92)
- steaming unit-3 a customized steaming system illustrating constituting parts of the customized steaming system.
- the customized steaming system comprises of an upper conveyor- 1 (81) in which multiple steaming arrays are placed, wherein each steaming array comprises of multiple steaming units.
- Each steaming unit comprises of one or multiple moisture sensors, at least one steaming cup (80) having multiple nozzles (86) at its inner surface, and each steaming cup is connected to the steaming channel (8
- the upper conveyor- 1 (81) gets activated, opens up and one steaming unit of the steaming system acts on one cashew nut placed on one cashew nut cabin.
- moisture sensors signals about the exact shell moisture content, shell softness and steam requirement of corresponding cashew nut to the master controller as the moisture present inside each cashew nut shell is directly related to the pressure of the steam needs to be applied for its proper de-shelling
- the master controller controls the release of required specific amount of pressurized steam for specific period to corresponding cashew nut for customized steam cooking based on pre-determined master data through steam controller mechanism which comprises of a valve or a diaphragm or a flap, etc.
- the thickness of the shell will vary according to size of the cashew nut, therefore the master controller compares this data with the pre-determined master data to decide the amount of pressurized steam that may be needed to soften corresponding cashew nut precisely for customized steaming of corresponding cashew nut by ensuring that there is no under- steaming or over-steaming of each cashew nut.
- the master controller can later control the release of pressurized steam for individual cashew nut cabin according to the differential steam requirement of each cashew nut (85) by opening or closing of corresponding steam controller mechanism held at corresponding cashew nut cabin (82).
- the customized steaming of each cashew nut is maintained easily due to presence of multiple nozzles of each steaming cup.
- the customized steaming of each cashew nut is carried out in such a way that it will enable easy and accurate popping and tearing process.
- the steaming process can be either complete steaming or steaming the weaker fibers of the cashew nut that guides the effective popping and tearing process for easy separation of cashew nut kernel from the cashew nut shell.
- Each steaming unit of the steaming system has a pre-determined temperature ranged in between 150 °C to 450 °C and pre-determined pressure ranged in between 5 Kg/cm 2 to 10 Kg/cm 2 for pre-determined time period for customized steam cooking of each cashew nut according to variations in steam requirement.
- FIG. 4 it is an elaborated isometric view of a popping system illustrating more clearly different parts of the popping system.
- the popping system comprises of upper conveyor-2 (64) in which multiple arrays of popping units are arranged, wherein each array of popping units comprises of multiple popping units. Further each popping unit comprising of at least one camera and a popping mechanism. Few popping units are shown as popping unit-1 (61), popping unit-2 (62), popping unit-3 (63). Each popping unit (61, 62 or 63) comprises of at least one camera and at least one popping mechanism.
- the linear main conveyor reaches to the popping system to synchronize with the upper conveyor-2 (64), and thereupon the upper conveyor-2 (64) gets activated, opens up at least one popping mechanism at one single cashew nut.
- the master controller measures the amount of pop required for each cashew nut and activates the popping mechanism by sending real time signal to the popping mechanism of corresponding popping unit to pressurizes their corresponding cashew nut at specific popping point (head of cashew nut) using impulsive force to provide more accurate slit for removing the cashew out of its shell.
- FIG. 5 it is an elaborated isometric view of a single popping unit illustrating constituting parts.
- FIG. 5 shows the entire arrangement of different parts of the single popping unit at the time of popping of individual cashew nut.
- Each popping unit comprises of at least one camera (103) and at least one popping mechanism.
- Each popping mechanism acts on a single cashew nut (105) placed in single cashew nut cabin which is shown as a cashew nut cup (106) and a cashew nut cup holder (107).
- Each popping mechanism comprises of a holder (101) to hold a movable rod (102), an inverted 'V plate (104), and a pusher rod (108).
- each popping unit continuously fetches the images of different states/ positions of the cashew nut in the popping unit by clearly viewing the cashew nut in popping unit and sends real time signals about the state of corresponding cashew nut
- the master controller After receiving real time signals from the camera (103) of each popping unit, accordingly the master controller measures the amount of pop required for the cashew nut ( 105) and decides the accurate popping point of each cashew nut (105), at this accurate popping point the master controller sends real time signals in turn to the pusher rod (108) of corresponding popping mechanism of corresponding popping unit to pop/press/hit/ pressurizes corresponding cashew nut (105) at the accurate popping point which is the region between head of the cashew nut and the knot of the cashew nut using impulsive force, thereby providing more accurate slit at its natural cleavage line for providing easy and accurate path for tearing of corresponding cashew nut (105).
- Each of the steps involved in the popping mechanism of each popping unit is controlled by master controller in real time to accurately pop the cashew nut (105) with desired force using the camera signals.
- each tearing system comprises of upper conveyor-3 (71) in which multiple arrays of tearing units are arranged, wherein each array of tearing unit comprises of multiple tearing units. Multiple tearing units are shown as tearing unit-1 (72), tearing unit-2 (74) and tearing unit-3 (75).
- Each tearing unit comprises of at least one camera and at least one tearing mechanism. Each tearing mechanism acts on one cashew nut to tear open each cashew to the required depth.
- the upper conveyor-3 (71) opens up at least one tearing mechanism at one single cashew nut wherein the tearing process takes place at each cashew nut by individual tearing mechanism of one tearing unit in a controlled manner.
- the speed of the upper conveyor-3 (71) and the horizontal main conveyor (46) is synchronized, controlled for effective tearing operation.
- Each tearing mechanism comprises of a movable rod (201), rotary cutting blade holder (202), a rotary cutting blade (203), movable tongs holder (210) for holding a set of movable tongs (209), 'V support (208) at the lower meeting point of the set of movable tongs (209) through a movable joint (213).
- the design of set of movable tongs (209) is such that it has a 'V support (208) at its ends through which the cashew shell is held firmly.
- the 'V support (208) is designed in such a way that it is flexible so as to vary the distance between them. This flexibility of 'V support (208) enables it to hold different sizes of cashew shell firmly.
- the rotary cutting blade (203) has different degree of freedom where it is free to move vertically, and the movement of rotary cutting blade (203) and movable tongs (209) are guided using camera (211) and their movements are controlled by the master controller.
- the single camera (211) of each tearing unit continuously view, measures and decides the exact tearing point of individual cashew nut (205) and continuously sends signals to the master controller about different positions of popped regions of cashew nut (205).
- the master controller After receiving said real time signals from the camera (211), the master controller directs the movable tongs (209) to hold the cashew shell firmly based on input from the camera (211) and also directs the rotary cutting blade (203) to insert into the popped region (207) of the cashew nut (205) to tear open the cashew nut (205).
- the rotary cutting blade (203) is moved accordingly to tear open the cashew nut accurately.
- the complete process is guided using camera (211) for effective tearing of cashew nut (205) without damaging the inner kernel of the cashew nut (205).
- both upper conveyor-3 and conveyor will be moving with relative speed, such that effective tearing operation takes place.
- the shell separator mechanism comprises of a tearing frame (93), a movable joint (92), a holding plate- 1 (99), a holding plate-2 (95), a spring (94), 'C fixture (91), a sub plate- 1 (100), and a sub plate-2 (101).
- the holding plate- 1 (99) and the holding plate-2 (95) are connected separately to two different movable joints (92) for free movement/rotation.
- the torn cashew nuts are passed through an arrangement where two different sub plates viz. sub plate-1 (100), and sub plate-2 (101) which insert into the torn region.
- Each torn cashew nut is viewed and analyzed continuously at torn region by one or multiple cameras which continuously send real time signals to the master controller about the position of torn region cashew nut.
- the master controller thereupon receiving such real time signals from one or multiple cameras, subsequently sends signals to the sub plate-1 (100) and sub plate-2 (101) of the shell separator mechanism, thereupon these plates (100 and 101) are moved in lateral/angular movement to open the cashew nut shell (98) simultaneously with pressing of back of cashew nut (97) by the 'C fixture' (91) to separate cashew kernel for easy separation.
- the 'C fixture' (91) is placed at the back of cashew nut through the spring (94) to push the cashew kernel.
- cashew kernel and cashews nut shells are separated automatically in the shell separator unit acts on each torn cashew nut to separate cashew kernel from cashew nut shell and the mixture of separated cashew kernel and cashew nut shell is separated automatically and are collected separately into at least three collection units, including cashew kernel in one collection unit, cashew nut shell into another collection unit and improperly popped cashew nut, broken pieces, un-separated shells, improperly torn or improperly cut cashew nuts are collected into still another collection unit.
- FIG. 9 it is a block diagram of the improved system of FIG. 1.
- the improved system of FIG. 9 mainly focuses on the entire electronically controlled nature of the improved system depicting how the master controller controls essential parts of the improved system which significantly awards the automated nature to the system illustrated in FIG..1 of first embodiment.
- cashew nuts are fed into the hopper (300) from where the cashew nuts pass into the feeding unit (301), wherein the feeding unit (301) is fully controlled by the master controller through feed controller (303) by receiving input signals from feed sensors (302) which sense the feed rate in the feeding unit (301).
- Cashew nuts further carried by the singulator unit (305), wherein the singulator unit carry cashew nuts and place cashew nuts so as to maintain one cashew nut in one cashew nut cabin of thejiorizontal main conveyor (306).
- Cashew nuts are carried to the optics unit (307), wherein the multiple cameras along with multiple light sources analyze each cashew nut based on their external and internal characteristics using pre-determined master data. These multiple cameras of the optics unit (307) signal to the master controller (304) about different external and internal characteristics of each cashew nut.
- Cashew nuts are carried to the customized steaming system (308) which comprises multiple moisture sensors (309) which are coupled to the master controller (304) for customized steam cooking of individual cashew nut inside based on pre-determined master data.
- Customized cooked cashew nuts are now carried to the popping system (310) and from popping system comprising multiple popping arrays (311) for carrying out popping process, further into the tearing system (312) with multiple tearing arrays (313) for carrying out tearing process.
- cashew nuts are passed to the shell separator unit (314).
- the popping system (310), tearing system (312) and shell separator unit (314) are optically active parts of the improved system of FIG. 1 and these systems including popping system (310), tearing system (312) and shell separator unit (314) are coupled to the master controller (304) through cameras based on real time data for their controlled operations.
- FIG.10 it is an isometric detailed view of an improved system with customized steam cooking, popping, tearing and shell separator mechanisms for de-shelling cashew nut.
- FIG. 10 illustrates in detail the entire arrangement of different parts of the improved system with constructional variation in main conveyor compared to improved system of FIG. 1 of first embodiment.
- the improved system illustrated in FIG. 10 constitutes essentially same parts and different construction/structure-wise only in shape and arrangement of the main conveyor.
- the improved system of first embodiment shares in common essentially all parts/features or mechanisms with second embodiment of the present invention and all these same parts of the improved system of first and second embodiments are arranged in exactly the same sequence.
- the improved system of second embodiment comprises: at least one main frame for supporting all parts located on or around the main frame (23), at least one hopper (24), at least one feeding unit (25), at least one singulator unit (26), at least one rotary/circular main conveyor (27) on which multiple arrays of cashew nut cabins (28) are mounted, at least one optics unit (29), at least one customized steaming system (30), at least one popping system (31), at least one tearing system (32), at least one shell separator unit (33), at least three collection units shown as collection unit-1 (35) and collection unit-2 (36), collection unit-3 (37) and at least one master controller to control entire functioning of the improved system of second embodiment.
- said essentially all parts/features or mechanisms of the improved system of first and second embodiment functions essentially in the same manner to accomplish the desired result/same end product (properly de-shelled and separated cashew nut kernel from cashew nut shell) for the purposes of carrying out the same said improved process with customized steam cooking, popping, tearing and shell separator mechanisms for de- shelling cashew nut.
- the improved system described in FIG. 1 of first embodiment carries the cashew nuts in horizontally on horizontal main conveyor to/through different parts/units of the improved system, whereas the improved system described in FIG.
- the invention discloses an improved process with customized steam cooking, popping, tearing and shell separator mechanisms for de-shelling cashew nut.
- the non-limiting steps involved in the improved process comprising the steps of:
- Cashew nuts are subjected for feeding in bulk in hopper, from where said cashew nuts are subjected to feeding unit due to gravity, wherein the feed rate of the cashews nuts releasing from feeding unit is controlled wherein said feeding unit comprises of at least one feeder to accommodate flow of said cashew nuts, multiple feed sensors, at least one feed controller which is controlled by a master controller by receiving signals related to feed rate from multiple feed sensors of said feeding unit.
- Cashew nuts are subjected to singulation and after singulation the cashew nuts are placed singularly on the cashew nut cabins of the main conveyor.
- the main conveyor is either horizontal or rotary in structure.
- the main conveyor has multiple arrays of cashew nut cabins holding cashew nuts singly in cashew nut cabins in a desired and pre-determined position and orientation due to its cashew holding mechanism.
- Cashew nuts placed on the cashew nut cabins are carried now successively to get subjected for analysis into optics unit nuts, where cashew nuts are analyzed by multiple cameras along with multiple light sources for viewing each cashew nut from multiple sides or multiple angles by capturing images of each cashew nut, by processing said images to analyze category of each cashew nut based on different external and internal characteristics to decide different categories of each said cashew nut based on pre-determined master data.
- Cashew nuts are carried successively synchronize with upper conveyor- 1 having steaming system with lower main conveyor with multiple arrays of cashew nut cabins for effective steam cooking, thereby subjecting said cashew nuts for customized steam cooking in customized steaming system as per requirement of each said cashew nut based on pre-determined master data to release specific amount of pressurized steam for each cashew nut after sensing moisture content of individual cashew nut by moisture sensors, thereby avoiding over-steaming or under steaming as per requirement of each said cashew nut.
- One cashew nut is steam cooked by single steam controller mechanism for customized steam cooking.
- the cashew nuts are steak cooked in between the pre-determined temperature ranged in between 150 °C to 450 °C and a predetermined pressure ranged in between 5 Kg/cm 2 to 10 Kg/cm 2 in said customized steaming system.
- Cashew nuts are carried successively to synchronize with upper conveyor-2 having popping system with lower main conveyor with multiple arrays of cashew nut cabins for accurate popping, thereby subjecting said cashew nuts for controlled popping system which is optically operative and said cashew nuts are popped controllably at accurate popping point by popping mechanism based on continuous real time signals from single camera for single cashew nut.
- cashew nuts are carried successively to synchronize with upper conveyor- 3 having tearing system with lower main conveyor with multiple arrays of cashew nut cabins for accurate tearing, thereby subjecting said cashew nuts for controlled tearing in the tearing system which is optically operative and said cashew nuts are torn controllably at accurate tearing point by tearing mechanism based on continuous real time signals from single camera for single cashew nut to get torn cashew nut; cashew nuts are carried successively for shell separation from torn cashew nut by shell separator mechanism based on continuous real time signal from one or more cameras to provide a mixture of separated cashew kernel and cashew nut shell which is subsequently, separated automatically and gets collected into at least three collection units as cashew kernel, cashew nut shell and improperly popped cashew nut, broken pieces, un-separated shells, improperly torn or improperly cut cashew nuts are also collected in separate collection unit;
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- Engineering & Computer Science (AREA)
- Physics & Mathematics (AREA)
- General Physics & Mathematics (AREA)
- Life Sciences & Earth Sciences (AREA)
- Chemical & Material Sciences (AREA)
- Food Science & Technology (AREA)
- Polymers & Plastics (AREA)
- Multimedia (AREA)
- Theoretical Computer Science (AREA)
- Automation & Control Theory (AREA)
- Apparatuses For Bulk Treatment Of Fruits And Vegetables And Apparatuses For Preparing Feeds (AREA)
Abstract
Description
Claims
Priority Applications (3)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN201680031456.1A CN107613792A (en) | 2015-03-31 | 2016-03-31 | Improved system and method for dehulling cashew nuts |
| AU2016242467A AU2016242467B2 (en) | 2015-03-31 | 2016-03-31 | An improved system for de-shelling cashew nut and a process thereof |
| BR112017021010A BR112017021010A2 (en) | 2015-03-31 | 2016-03-31 | improved system for peeling cashews and a process for peeling |
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| IN1722/CHE/2015 | 2015-03-31 | ||
| IN1722CH2015 | 2015-03-31 |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| WO2016157215A1 true WO2016157215A1 (en) | 2016-10-06 |
Family
ID=57005166
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/IN2016/000083 Ceased WO2016157215A1 (en) | 2015-03-31 | 2016-03-31 | An improved system for de-shelling cashew nut and a process thereof |
Country Status (4)
| Country | Link |
|---|---|
| CN (1) | CN107613792A (en) |
| AU (1) | AU2016242467B2 (en) |
| BR (1) | BR112017021010A2 (en) |
| WO (1) | WO2016157215A1 (en) |
Cited By (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| WO2018146701A1 (en) * | 2017-02-10 | 2018-08-16 | Nanopix Integrated Software Solutions Private Limited | System and method for manipulating objects |
| WO2018149675A1 (en) | 2017-02-20 | 2018-08-23 | Elea Vertriebs- Und Vermarktungsgesellschaft Mbh | Method and device for treating nuts, in aprticular for producing nuts with improved shelling properties |
Families Citing this family (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN108208862B (en) * | 2018-04-01 | 2020-11-17 | 义乌市富顺箱包有限公司 | Abrasive disc type machine for removing walnut green husks |
| CN111418854B (en) * | 2020-03-31 | 2022-03-08 | 杭州姚生记食品有限公司 | Processing method and processing system for cracked hickory nut shells |
| CN111513343B (en) * | 2020-04-21 | 2021-11-05 | 广州番禺职业技术学院 | Intelligent mechanical equipment for processing cracked shells of pistachio nuts and control method of intelligent mechanical equipment |
Citations (5)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US2284879A (en) * | 1939-06-09 | 1942-06-02 | Clarence T Nemir | Cashew nut shelling device |
| US3774526A (en) * | 1971-04-27 | 1973-11-27 | Carribean Cashew Co | Nut shelling machine |
| US6059117A (en) * | 1996-09-13 | 2000-05-09 | Uncle Ben's, Inc. | Method for sorting product |
| US20020172753A1 (en) * | 1997-09-02 | 2002-11-21 | Inland Empire Foods, Inc. | Bean-nut popping beans |
| WO2015059720A2 (en) * | 2013-10-25 | 2015-04-30 | Prakash Mahajan | An automatic cashew-nut deshelling machine |
-
2016
- 2016-03-31 CN CN201680031456.1A patent/CN107613792A/en not_active Withdrawn
- 2016-03-31 AU AU2016242467A patent/AU2016242467B2/en active Active
- 2016-03-31 WO PCT/IN2016/000083 patent/WO2016157215A1/en not_active Ceased
- 2016-03-31 BR BR112017021010A patent/BR112017021010A2/en not_active Application Discontinuation
Patent Citations (5)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US2284879A (en) * | 1939-06-09 | 1942-06-02 | Clarence T Nemir | Cashew nut shelling device |
| US3774526A (en) * | 1971-04-27 | 1973-11-27 | Carribean Cashew Co | Nut shelling machine |
| US6059117A (en) * | 1996-09-13 | 2000-05-09 | Uncle Ben's, Inc. | Method for sorting product |
| US20020172753A1 (en) * | 1997-09-02 | 2002-11-21 | Inland Empire Foods, Inc. | Bean-nut popping beans |
| WO2015059720A2 (en) * | 2013-10-25 | 2015-04-30 | Prakash Mahajan | An automatic cashew-nut deshelling machine |
Cited By (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| WO2018146701A1 (en) * | 2017-02-10 | 2018-08-16 | Nanopix Integrated Software Solutions Private Limited | System and method for manipulating objects |
| WO2018149675A1 (en) | 2017-02-20 | 2018-08-23 | Elea Vertriebs- Und Vermarktungsgesellschaft Mbh | Method and device for treating nuts, in aprticular for producing nuts with improved shelling properties |
Also Published As
| Publication number | Publication date |
|---|---|
| AU2016242467B2 (en) | 2020-12-17 |
| CN107613792A (en) | 2018-01-19 |
| AU2016242467A1 (en) | 2017-10-26 |
| BR112017021010A2 (en) | 2018-07-03 |
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