WO1994005167A1 - Dispositif de guidage d'ecoulement d'×ufs casses propre a un distributeur d'×ufs casses - Google Patents

Dispositif de guidage d'ecoulement d'×ufs casses propre a un distributeur d'×ufs casses Download PDF

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Publication number
WO1994005167A1
WO1994005167A1 PCT/JP1993/000574 JP9300574W WO9405167A1 WO 1994005167 A1 WO1994005167 A1 WO 1994005167A1 JP 9300574 W JP9300574 W JP 9300574W WO 9405167 A1 WO9405167 A1 WO 9405167A1
Authority
WO
WIPO (PCT)
Prior art keywords
egg
breaking
blade
eggs
broken
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Ceased
Application number
PCT/JP1993/000574
Other languages
English (en)
Japanese (ja)
Inventor
Eiichi Manabe
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Sengoku Co Ltd
Original Assignee
Sengoku Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from JP4276499A external-priority patent/JP2591702B2/ja
Priority claimed from JP4316571A external-priority patent/JP2520831B2/ja
Priority claimed from JP4335456A external-priority patent/JP2516539B2/ja
Application filed by Sengoku Co Ltd filed Critical Sengoku Co Ltd
Priority to AU42714/93A priority Critical patent/AU4271493A/en
Publication of WO1994005167A1 publication Critical patent/WO1994005167A1/fr
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

Links

Classifications

    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47JKITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
    • A47J43/00Implements for preparing or holding food, not provided for in other groups of this subclass
    • A47J43/14Devices or machines for opening raw eggs or separating the contents thereof
    • A47J43/145Machines therefor

Definitions

  • the present invention relates to a split egg feeding device for feeding split eggs (the contents of eggs) to an automatic egg fryer and other egg cookers. More specifically, the present invention relates to a split egg feeding device that cuts a lower portion of an egg supported in a vertical state by an egg splitting blade that moves in a horizontal direction and drops and feeds the split egg.
  • BACKGROUND ART With regard to this type of egg breaking supply apparatus, the present applicant filed an application for “Egg Breaking Apparatus” (Japanese Patent Application No. Hei 21-2766499) on January 10, 1992. I have.
  • the lower part of the egg supported in the vertical state is cut with a horizontally moving cleavage blade, and the cleavage is performed. It discloses a technique for preventing the mixing of broken eggshell fragments into broken eggs by setting a timing difference in the eggs.
  • the first invention of the present application is directed to a cleavage blade that moves in a horizontal direction so as to supply a broken egg by cutting an eggshell below an egg supported in a vertical state, and a cleavage blade in a plan view with respect to a cleavage egg receiving portion. And a breaking down flow derivative that induces the breaking down of the breaking eggs toward a breaking hole supply hole having a phase difference in the moving direction of the breaking down unit, to form a breaking blade unit, and the breaking blade unit is formed.
  • the egg breaking driver is detachable between the bottom wall of the egg breaking case of the egg breaking supply device and the egg support plate, and the egg breaking driving body is transmitted to the driving mechanism of the egg breaking feeding device while being attached to the egg breaking case,
  • the egg-breaking flow can be taken out of the egg-breaking case together with the egg-breaking blade by the egg-breaking flow. Attaches to lower derivatives w easily removes broken fragments of eggs.
  • the second invention of the present application is directed to forming a broken egg flow guide surface having irregularities between the broken egg receiving portion and the broken egg supply hole in the broken egg flow guidance for guiding the broken egg toward the broken egg supply hole.
  • the broken eggshell mixed into the broken eggs induced to flow is attached to the guide surface of the broken eggs flowing down, and the broken eggshell is removed from the broken eggs falling through the broken egg supply hole.
  • the third invention of the present application is directed to providing a shell receiving case which is located below the egg-breaking guide surface of the egg-breaking blade and the egg-breaking-down derivative and is adjacent to the egg-breaking-flow-down derivative, so that broken fragments of the eggshell can be broken.
  • a shell receiving case integrated with the nit broken pieces of the eggshell can be easily removed from the egg breaking case.
  • Fig. 1 is a front view of the egg breaking supply device showing a cross section of an egg holding hole and a breaking egg feeding hole.
  • Fig. 2 is a side view showing the same egg supporting hole and a breaking egg holder.
  • FIG. 3 is a longitudinal sectional view showing a driving mechanism for the cleavage blade, which is similarly sectioned at the center position in the horizontal direction in plan view.
  • FIG. 4 is a plan view of the egg breaking inducing mechanism
  • FIG. 5 is a partial sectional view showing the action of the egg breaking inducing mechanism.
  • Fig. 6 is a plan view of the shield plate and cleavage blade of the burr return mechanism, showing the shield plate in the standby position.
  • FIG. 7 is an operation explanatory view showing the cutting action of the eggshell by the cleavage blade.
  • FIG. 8 shows an embodiment of the first invention of the present application in which the egg breaking guiding mechanism and the egg breaking blade are integrated, and a side view of a partially broken egg feeding device similar to FIG. 2, and FIG.
  • the front view of the egg breaking guiding mechanism, FIG. 1 ⁇ is a plan view of the same egg breaking guiding mechanism, and FIG. 11 is a longitudinal sectional view showing the same driving mechanism of the shielding plate.
  • FIG. 12 is a plan view of the shell receiving plate.
  • FIG. 13 is a plan view of the shielding plate.
  • FIG. 14 is a perspective view showing an automatic fried egg machine in which the present invention is integrated with an oven toaster
  • FIG. 15 is a longitudinal sectional view similarly.
  • Figs. 14 and 15 show an oven ⁇ "star", which is an integrated egg fryer with an egg breaker A on the top of the cooker body (oven toaster) B.
  • a heating plate 101 for receiving the broken eggs (the contents of the eggs) F from the egg breaking supply device A is provided at an upper portion thereof so as to face the lower surface of the breaking egg feeding device A.
  • Heating means (one tubular) 1 ⁇ 3 for heating the heating pan 1 ⁇ 1 is provided below
  • the cooking appliance shown in the figure is a two-stage open toaster and a heating pan 10 12 at the bottom And a tubular heater 1-4.
  • the egg breaking mechanism 1 and the egg breaking guiding mechanism 2 are provided inside the egg breaking case 1 having a detachable lid 10b to constitute the egg breaking supply device A. .
  • the cleavage mechanism 1 includes an egg support plate 11 that supports the egg E in a vertical state with a part of the lower part of the egg E penetrating through the support hole 5 and being exposed downward, and an egg support plate 11 that is supported upright. A part of the lower part of the egg E is exposed through the support hole 5 of the egg support plate 1 1. It is composed of a drive mechanism (electric motor) 13 for rotating and driving the egg 2, and by cutting the eggshell by rotating the cleavage blade 12 by the activation of the electric motor 13. The egg breaks down and falls.
  • a drive mechanism electric motor
  • the electric motor 13 is fixed to the upper part of the egg support plate 1 ⁇ , and the motor output shaft 13 a is protruded downward.
  • the tip of 13a is shaped like a prism, and the rotor 15 is placed above the bearing seat 14 fixed to the center of the bottom 10a of the cleavage case 10 and the rotor 15 is mounted.
  • the motor output shaft 13a is rotatably supported by the cleavage case 10 and the motor output shaft 13a is engaged with the square hole 15a formed in the center of the rotating body 15 and the cleavage blade 1 Damage to the circular window at the center of 2: j Insert the blade drive (rotating body) 15 into the nut and break it by locking the locking ridge on the peripheral surface of the rotating body 15 with the notch in the circular window. Blade "! By integrating the rotor 2 with the rotating body 15, each time the electric motor 13 is started, the cleavage blade 12 rotates once in the horizontal direction.
  • the upper part of the egg E is pressed from above against the egg E inserted and supported in the support hole 5 of the egg support plate 11 in the above-described cleavage mechanism, and the egg is placed between the egg support plate 11 and the egg E.
  • a pressing plate 'I 6 for maintaining E in a pressing state from above is provided across the supporting hole 5 above the egg supporting plate 11 and a hemispherical egg holder 19 formed on the pressing plate 16 is supported. In a state where the egg pressing plate 16 faces the egg supporting plate 11, the egg pressing plate 16 is detachable from the egg supporting plate 11.
  • the pressing plate 16 is made of a plastic product, the hemispherical egg holder ⁇ 9 is formed upward, and the locking mechanism is locked, so that the pressing plate 16 is moved to the egg supporting plate 11.
  • the egg E in the egg holter 19 of the pressing plate 16 is pressed against the egg supporting plate 11 by the hemispherical egg holder 19 in a state where the pressure plate 16 is fixed.
  • the egg pressing plate 16 is provided as a mounting structure for detachably attaching the egg pressing plate 16 to the egg supporting plate 11, and in the embodiment, a support shaft 2 is mounted on the egg supporting plate 11.
  • a shaft mechanism 29 that rotatably supports the base of the egg pressing plate 16 via the pin 8, and a locking mechanism 39 that can be freely disengaged from the tip of the egg pressing plate 16.
  • the egg pressing plate 16 has an attachment structure that is detachable from the egg supporting plate 11.
  • the cleavage inducing mechanism 2 is composed of a cleavage supply source 20 provided below the cleavage blade 12 of the cleavage structure 1 and above the bottom surface 10a of the cleavage case 1 °.
  • the split egg supply hole 4 provided on the bottom surface 10 & of the cleavage case 10 is formed with the phase difference concealed in the traveling direction of the support hole 5 of the egg support plate 11 and the cleavage blade 12.
  • the egg donor derivative 20 forms a split egg drop hole 22 at a position opposite to the split egg supply hole 4 on the bottom surface 10 a of the split case 1 ⁇ and faces the support hole 5 of the egg support plate 11.
  • the position of the cut of the egg and the feeding position of the egg breaking can be adjusted. Between them, a phase difference is formed in the direction of rotation of the cleavage blade.
  • a notch is formed in each of the egg support plate 11 and the split egg supply derivative 20, and the notch is engaged with a ridge (not shown) protruding toward the inner wall near the peripheral wall of the split case 10. And the relative position of the egg support plate 'I 1, the split egg supply derivative 20 and the split case 10 ⁇ And set the predetermined phase difference between the egg supply hole 4 and the support hole ⁇ .
  • the downward flow guiding direction of the egg breaking guide surface 23 is set to be the arc direction, and at the time of the operation of the breaking mechanism ⁇ , the breaking blade is rotated once to remove the two breaking eggs.
  • the egg support plate 11 has two supporting holes for the egg support plate 11 and two egg dropping holes 20 for the egg breaking supply, and the egg breaking guide surface 23 is also two.
  • the guide direction of the surface 23 is a circular arc, the direction of rotation is opposite to the direction of rotation of the egg breaking blade 12, the egg falling hole 22 of the egg feeding conductor 20 and the egg breaking case 10
  • Each of the egg feeding holes 4 on the bottom surface 10a is made one, and the two guiding directions of the two egg breaking down guide surfaces 23 are opposite to each other (rotation direction of the cleavage blade and rotation of the cleavage blade).
  • the upper surface of the egg splitting derivative 2 ⁇ contacts the lower surface of the egg splitting blade 12 to function as a blade receiving surface for the egg splitting blade ⁇ 2, and the lower surface of the egg support plate 11 and the egg splitting supply derivative 2
  • the structure is such that the cleavage blade 1 2 is sandwiched between the upper surface and the upper surface of the upper and lower surfaces 20 to prevent the cleavage blade 2 from shaking.
  • a return plate 3 for providing a heat shielding structure for the cooking device makes it possible to shield the egg supply hole 4 on the bottom surface 0a of the egg supply device, and always provides the egg supply hole 4.
  • the egg breaking supply hole 4 is moved to the open state and the egg breaking blade 2 in synchronization with the egg breaking timing, and the egg breaking supply is performed at the timing of the egg breaking.
  • the hole 4 is set as an opening position, and the egg breaking supply hole 4 is shielded during cooking, so that the upper part of the egg on the heating dish is sealed.
  • the shielding plate 3 is fixed to the cleavage blade 12 through a motor output shaft (square column) 13 a at a certain phase difference (in the embodiment, the cleavage blade 12 is replaced by 45 e).
  • the leading position is set to the standby position, and the motor is driven for synchronous movement.
  • FIG. 7 the cleavage action of the cleavage blade 12 of the cleavage mechanism 1 will be described. 1 Standby state: (a) in Fig. 7
  • the egg E is set in the cleavage case 10 between the support hole 5 of the egg support plate 11 and the pressing plate 3 so that the elastic force of the pressing plate 16 supports the egg E. It is pressed against the plate 11 to maintain a state in which a part of the lower part of the egg E is exposed downward through the support hole 5 (set state of the egg E).
  • the pressing plate 16 is brought into contact with the egg supporting plate 11 by mouth. s, or the pressing plate 16 is independent of the lid 10. Therefore, the lid 1 CD is opened and closed at B, and the set state of the egg E can be confirmed by opening the lid ⁇ 0 b.
  • the timer motor 13 is activated by the operation of the timer, and the cleavage blade 12 is rotated once.
  • the rotation of the cleavage blade 12 causes the cleavage blade 12 to contact the lower part of the egg E supported by the egg support plate 1 ⁇ , and cuts the lower part of the egg E horizontally.
  • the cut piece F of the eggshell is moved forward from the position of the support hole 5 along with the cleavage blade 12 being destroyed. It is skipped toward.
  • Egg E which has its lower part cut horizontally, is moved by the cut piece F of the eggshell moving in the direction of travel of the cleavage blade 12 from the position of the support hole 5, so that the bottom part is engaged.
  • the contents of the egg E, that is, the split egg G, is dropped and supplied to the split egg receiving portion 21 of the split egg supply derivative 20.
  • the broken egg G supplied to the broken egg receiving part 21 of the broken egg supply derivative 20 moves in the falling guide direction due to the inclination of the broken egg falling guide surface 23 to the broken egg falling hole 22. Induced.
  • the broken egg guided to the broken egg falling hole 22 falls downward through the broken egg falling hole 22 on the bottom surface 10a of the case and is supplied to the cooking dish.
  • the breaking blade is It is configured to supply two broken eggs by making a single turn, and the above operation is repeated to perform two cleavages. Eggs are supplied to the cooking pan.
  • the return plate 3 is moved synchronously with the egg breaking blade, so that the broken egg supply hole and the broken egg falling hole are set in the slid state by the broken egg supply timing, and the timing of the broken egg supply is performed. Then, the egg supply hole is opened so that the egg supply hole is shielded during cooking and the upper part of the egg on the heating dish is sealed.
  • the breaking egg feeding derivative 20 is locked and fixed to the breaking egg case 10, and the breaking blade 12 and the shielding plate 3 are connected to the motor output shaft 1 via the driving body 15.
  • the egg breaking guiding mechanism 2 is provided with a cleavage blade.
  • the egg splitting blade nip C is integrated with the egg splitting blade 12, and the egg splitting supply derivative 200 a is also configured to rotate at the same speed as the egg splitting blade 12.
  • the broken egg supply derivative 20a has a blade support surface 2 and a supply edge 22a.
  • a plurality of ridges 25 and concave surfaces 27 are formed on the broken egg flow guide surface 23 & to attach the broken shell fragments mixed with the broken egg F flowing down. The shell pieces are prevented from being attached to the egg supplied to the heating pan 01 of the cooker body (open toaster) B through the egg supply hole 4 rather than the drop hole 22.
  • a shell receiving case 2 £ is integrally formed below the blade supporting surface 24, so that the egg breaking blade 12 and the egg breaking down derivative 20 a fall under the egg breaking flow.
  • a shell receiving case 26 is provided below the inner surface 23 and adjacent to the broken egg flowing down derivative, and the shell receiving case 26 is integrated with the cleavage blade unit C to integrate the broken egg flowing down derivative and the egg.
  • a rotary drive is configured together with the splitting blade.
  • the shell receiving case 26 has a peripheral wall 26a and a bottom wall 26b, which are below the cleavage blades 12 and below the cleavage eggs 20.
  • a space is formed in front of a, and the front part of the bottom wall 2 S b is an egg 3 ⁇ 4 The ⁇ blade protrudes beyond the front end of ⁇ 2.
  • a gap G is formed between the egg breaking blade 'i2 and the tip of the egg breaking guide surface 23a, and the shell piece falls into the shell receiving case 26 6 from the gap G. It is configured to be stored.
  • the above cleavage blade unit C has an engagement groove 13b on the upper surface for engaging with the output shaft 13a of the motor 13 fixed to the lid 1 ⁇ b, and the lid 10b is closed.
  • the egg support plate 11 that is directly connected to the motor 13 and locked to the ridge of the egg breaking case 1 Ob and fixed to the egg breaking case by appropriate locking means, and the lid 10 D
  • the latch can be freely removed to the side, then lifted up and removed, so that it can be removed from the egg breaking case 10 and the shell pieces can be processed. Is made easier.
  • the shell pieces stored in the shell receiving case 26 are easier than the egg breaking case 1 C by removing the shell receiving case together with the cleavage blade unit C from the egg breaking case 10. Can be removed.
  • a phase difference is formed between the supply position of the egg and the cutting position of the eggshell in the moving direction of the cleavage blade, and the egg support hole 5 and the egg supply hole 4 of the egg support plate 11 are shown in FIG.
  • the number of eggs is two each, and each time the egg breaking blade 12 is operated, two eggs are simultaneously supplied.
  • the shielding plate 3 is formed so that the two egg supply holes 4 can be shielded at the same time, and at every operation of the cleavage blade 12, a half of the moving amount of the cleavage blade 12 is ho.
  • the shield plate 3 is moved synchronously with the arrow.
  • the shielding plate 3 simultaneously shields the two egg supply holes 4, and the cleavage blade 12 advances 45 degrees ahead in the traveling direction. Therefore, it is hidden between the egg support hole 5 and the egg supply hole 4.
  • the cleavage blade 12 When performing the cleavage by moving the cleavage blade 12 horizontally, the cleavage blade makes one rotation (360 degrees rotation) in the premature direction, and the two support members 11 The lower part of the egg, which is inserted and supported vertically in the holes 5 and 5, is cut to cut the eggs. At this time, the shielding plate 3 rotates half a turn (1 SO degree rotation). Then, it returns to the standby position shown in FIG. Therefore, the cleavage blade 1 2 has one support hole 5 Only pass through the opening of two egg breaking holes 4 during this time.
  • the drive piece 31 protrudes from the upper surface of the shield plate 3 and the lower surface from the upper surface of the shield plate 3 as a mechanism for cultivating the return plate 3 half a turn in one rotation of the cleavage blade.
  • the spring body 33 is fixed to the return plate 3, and the return plate 3 is provided with a recess 34 that can be locked to the spring body 3 3, and the drive piece 31 is brought into contact with the center of the cleavage blade unit C.
  • the free leg piece 3 2 is hung down, and the shielding plate 3 is configured to be driven by locking the drive piece 3 1 and the leg piece 3 2, and the shell receiving plate 4 locked with the egg breaking case 10.
  • the clutch mechanism D is constructed, the shielding plate 3 is linked to the cleavage blade unit C, and the return plate 3 is rotated half a turn for one rotation of the cleavage blade '' 2.
  • the egg breaking hole 4 is shielded and stopped at the standby position.
  • the first invention of the present application is directed to a breaking egg breaker that induces a breaking egg to flow toward a breaking egg supply hole having a phase difference in a moving direction of the breaking blade in a plan view with respect to the breaking egg receiving portion,
  • the egg splitting unit is constructed by combining the eggs and the egg-breaking derivative can be taken out of the egg-breaking case together with the egg-breaking blade. It is possible to prevent the mixing of broken eggshell fragments, and it is easy to remove the broken eggshell fragments attached to the down-flow derivatives.
  • the second invention of the present application is to remove broken eggshell fragments from broken eggs falling from the broken egg supply hole by attaching eggshell broken fragments mixed into the broken eggs induced to flow down to the broken eggs flow guide surface. However, it is possible to supply broken eggs mixed with eggshell fragments.
  • the broken fragments of the eggshell are housed in a shell receiving case integrated with the cleavage blade unit, so that the fragments of the eggshell can be removed by removing the cleavage blade unit. 0 Easier to remove.
  • the egg feeding apparatus is suitable for use with an egg cooker, particularly an automatic eyeball-to-bake oven (especially, an egg cooker that automatically starts cooking by a timer operation, particularly a 5-cooker).
  • an egg cooker particularly an automatic eyeball-to-bake oven (especially, an egg cooker that automatically starts cooking by a timer operation, particularly a 5-cooker).
  • This is particularly useful as a breaking egg supply mechanism for automatically supplying fresh breaking eggs.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Food Science & Technology (AREA)
  • Meat, Egg Or Seafood Products (AREA)
  • Food-Manufacturing Devices (AREA)

Abstract

L'invention cherche à faciliter la distribution d'÷ufs cassés dépourvus de débris de coquille et l'élimination de ces débris d'un réceptacle pour ÷ufs cassés. On décrit un guide d'écoulement d'÷ufs cassés vers un orifice d'alimentation déphasé par rapport à un réceptacle compte tenu du déplacement d'une lame coupe-÷uf vue en plan. Le guide d'÷ufs cassés est intégré à cette lame coupe-÷uf et entraîné solidairement avec elle, de même qu'il est amovible avec elle du réceptacle pour ÷ufs cassés. La position d'alimentation en ÷ufs cassés est distincte de celle permettant la coupe des ÷ufs, et les débris de coquilles sont contraints de se fixer à ce guide d'écoulement des ÷ufs cassés pendant que ces derniers s'écoulent depuis la position de coupe vers la position d'alimentation, ce qui permet d'éliminer ces débris et de ne garder que les ÷ufs. On peut facilement retirer ce guide d'écoulement d'÷ufs cassés et éliminer ainsi les débris de coquille du réceptacle pour ÷ufs cassés.
PCT/JP1993/000574 1992-09-01 1993-04-28 Dispositif de guidage d'ecoulement d'×ufs casses propre a un distributeur d'×ufs casses Ceased WO1994005167A1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
AU42714/93A AU4271493A (en) 1992-09-01 1993-04-28 Device for guiding flowdown of cracked eggs in cracked egg supplying apparatus

Applications Claiming Priority (6)

Application Number Priority Date Filing Date Title
JP4276499A JP2591702B2 (ja) 1992-09-01 1992-09-01 割卵供給装置
JP4/276499 1992-09-01
JP4316571A JP2520831B2 (ja) 1992-10-30 1992-10-30 割卵供給装置
JP4/316571 1992-10-30
JP4335456A JP2516539B2 (ja) 1992-11-19 1992-11-19 割卵供給装置における割卵流下誘導装置
JP4/335456 1992-11-19

Publications (1)

Publication Number Publication Date
WO1994005167A1 true WO1994005167A1 (fr) 1994-03-17

Family

ID=27336356

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/JP1993/000574 Ceased WO1994005167A1 (fr) 1992-09-01 1993-04-28 Dispositif de guidage d'ecoulement d'×ufs casses propre a un distributeur d'×ufs casses

Country Status (2)

Country Link
AU (1) AU4271493A (fr)
WO (1) WO1994005167A1 (fr)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105433788A (zh) * 2016-01-14 2016-03-30 王明星 一种放蛋装置及使用该放蛋装置的蒸蛋器

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS408156Y1 (fr) * 1963-01-08 1965-03-13
JPS5229751Y2 (fr) * 1974-03-14 1977-07-07
JPS5626550Y2 (fr) * 1974-10-31 1981-06-24

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS408156Y1 (fr) * 1963-01-08 1965-03-13
JPS5229751Y2 (fr) * 1974-03-14 1977-07-07
JPS5626550Y2 (fr) * 1974-10-31 1981-06-24

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105433788A (zh) * 2016-01-14 2016-03-30 王明星 一种放蛋装置及使用该放蛋装置的蒸蛋器

Also Published As

Publication number Publication date
AU4271493A (en) 1994-03-29

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