EP3603447A1 - Machine de fabrication de brosses et procédé de réglage d'une machine de fabrication de brosses - Google Patents
Machine de fabrication de brosses et procédé de réglage d'une machine de fabrication de brosses Download PDFInfo
- Publication number
- EP3603447A1 EP3603447A1 EP18186638.5A EP18186638A EP3603447A1 EP 3603447 A1 EP3603447 A1 EP 3603447A1 EP 18186638 A EP18186638 A EP 18186638A EP 3603447 A1 EP3603447 A1 EP 3603447A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- manufacturing machine
- brush manufacturing
- input information
- brush
- functional
- 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.)
- Pending
Links
Images
Classifications
-
- A—HUMAN NECESSITIES
- A46—BRUSHWARE
- A46D—MANUFACTURE OF BRUSHES
- A46D3/00—Preparing, i.e. Manufacturing brush bodies
Definitions
- the invention relates to a brush manufacturing machine with at least one functional unit and a control unit and a method for setting up a brush manufacturing machine, in particular a brush manufacturing machine of the type defined above.
- Brush manufacturing machines have been used for many years in various embodiments for the increasingly fully automated production of brushes.
- the variety of variants of the brush manufacturing machine offered on the market takes into account the variety of the brushes to be manufactured. This is a particular challenge for the manufacturers of such brush manufacturing machines.
- the previously known brush manufacturing machines are usually highly specialized and set up for the production of a certain type of brush. If the brush manufacturer wants to change production in order to produce a different type of brush, in the best case this requires the conversion and / or retrofitting of existing machines. If this is not possible, new brush production machines have to be purchased or the order that requires the desired changeover to be rejected. Overall, the previously known brush manufacturing machines are therefore not satisfactorily set up for such changes. So it is hardly possible to produce small series economically with existing brush manufacturing machines, because the possibilities for amortization of an applied investment to convert the brush production are too small.
- the object of the invention is therefore to provide a brush manufacturing machine and a method for setting up such a machine, with which the disadvantages of the known brush manufacturing machines can be avoided and the manufacture of brushes can be made more flexible.
- a brush-making machine of the type mentioned at the outset which has the features and means of independent claim 1 directed to such a brush-making machine.
- a brush production machine which has at least one functional unit and a control unit, the at least one functional unit providing a range of functions which can be used for operating the brush production machine for an operator of the brush production machine, and the control unit is set up to provide the usable range of functions to change depending on input information.
- the at least one functional unit of the brush manufacturing machine can only provide a basic functional scope.
- the operator of the brush manufacturing machine wants to change over to production, he can order, in particular, buy from the manufacturer of the brush manufacturing machine to request a change in the range of functions provided by one functional unit.
- input information is prepared by which the control unit of the brush manufacturing machine changes the functional scope of the at least one functional unit that can be used by the operator.
- the functional scope of at least one functional unit of the brush manufacturing machine that can be used by the operator in an initial state can be zero and / or the functional unit can be deactivated.
- the control unit of the brush production machine can be set up to change the functional scope of the at least one functional unit of input information, for example the aforementioned information, that can be used by the operator from zero to an extended scope and / or the at least one functional unit of the brush manufacturing machine as a function to activate one, for example the input information mentioned above, for use. In this way, a previously unused machine function of the brush manufacturing machine can be activated using the control unit of the brush manufacturing machine as a function of input information.
- control unit of the brush manufacturing machine can also be set up to limit the functional scope of the at least one functional unit that can be used by the operator to zero, depending on input information, for example the one already mentioned above.
- the control unit can furthermore be set up to deactivate the functional unit of the brush production machine as a function of input information, for example the one already mentioned above.
- the brush manufacturing machine in particular the control unit of the brush manufacturing machine, has an interface.
- the interface for receiving the input information can be designed differently. It is conceivable to make the input information of the brush production machine available wirelessly, for example by means of radio. An interface is then provided for this, which is set up for the wireless reception of the input information.
- any technical device can be used as an interface with which input information can be read from an information carrier.
- any means that can be the carrier of input information can serve as the information carrier.
- This also includes electromagnetic waves, classic data carriers, bar codes, RFID tags, floppy disks, data storage devices, CDs, hard drives and / or data signals that are transmitted, for example, via a data network, in particular the Internet.
- information carrier in the sense of the claimed invention A component or tool for the brush manufacturing machine is also to be viewed, which is provided with input information that can be processed by the control unit.
- the brush manufacturing machine in particular the control unit of the brush manufacturing machine, at least indirectly for checking the input information is set up. In this way, the input information can be checked for plausibility and / or authenticity.
- the control unit can check the input information.
- the control unit can be connected, at least temporarily, to a test module in or from which the input information is checked.
- the examination module is also understood to mean a software and / or computer-implemented examination module which is connected at least temporarily to the brush manufacturing machine, in particular to the control unit of the brush manufacturing machine, via a data network, in particular via the Internet.
- a brush manufacturing machine equipped in this way allows the operator of the brush manufacturing machine to also process small series which require a modified range of functions of an existing brush manufacturing machine.
- the range of functions required for this can be ordered, in particular purchased, from the manufacturer of the brush manufacturing machine.
- the manufacturer of the brush manufacturing machine provides the operator with the input information necessary for changing the functional scope.
- the input information can be transmitted directly from the manufacturer of the brush manufacturing machine to the brush manufacturing machine, in particular to the control unit.
- the range of functions that can be used during operation of the brush production machine can be changed in accordance with the input information.
- the manufacturer can offer a wide portfolio of brush manufacturing machines without having to master an excessive variety of hardware.
- the range of functions of one and the same brush manufacturing machine can be adapted as required by providing corresponding input information.
- a change, in particular an expansion of the functional scope, no longer occurs on the hardware side, but rather via a corresponding activation of a further machine function by providing input information.
- the input information transmitted to the brush manufacturing machine can be checked by the brush manufacturing machine, in particular by the control unit. Either this happens internally, i.e. within the brush manufacturing machine, in particular within the control unit, or the input information is transmitted for verification to the previously mentioned test module, which can be kept outside the brush manufacturing machine, in particular in a cloud or at the manufacturer of the brush manufacturing machine. If the input information is checked positively, in particular verified, the control unit can change the usable range of functions according to the input information.
- control unit is at least temporarily connected to an instruction memory.
- This instruction memory can contain control information for the at least one functional unit of the brush manufacturing machine, which is assigned to different input information.
- the input information can also be checked by comparing the input information with permissible input information stored in the instruction memory. If an input information corresponding to the input information provided to the brush manufacturing machine can be found in the instruction memory, this can lead to a positive test result.
- the control unit receives input information, the control unit can read the control information, which is assigned to the received input information in the instruction memory, from the instruction memory and transmit it to the functional unit in order to change the functional scope.
- the instruction memory can be stored in a data network, in particular on the Internet and / or in a cloud, to which the control unit of the brush manufacturing machine, if necessary, via the interface the brush making machine can access to read out the control information.
- the instruction memory can be part of the brush manufacturing machine, in particular part of the control unit of the brush manufacturing machine.
- the instruction memory can be part of the test module and / or can be used or used to test the input information.
- the brush manufacturing machine can have at least one sensor and / or at least be temporarily connected to one. With the aid of the sensor, input information can be generated, on the basis of which the control unit changes the functional scope of the at least one functional unit of the brush manufacturing machine in the manner prescribed.
- the brush manufacturing machine can in particular have a location sensor. With the help of the location sensor, the brush manufacturing machine can determine its location autonomously. The location information can then be used as input information.
- the brush manufacturing machine can autonomously change the functional scope of the at least one functional unit depending on the location via its control unit. In addition, depending on the country in which it is operated, the brush making machine may be subject to different legal requirements. The legal provisions may require a change in the usable functional scope of the at least one functional unit of the brush manufacturing machine.
- the brush manufacturing machine can autonomously and independently determine where it is operated. This information can be input from the control unit of the brush manufacturing machine when the change is necessary the functional scope of the at least one functional unit are taken into account.
- Country-specific functions can be assigned to specific location information in the form of specific control information in the instruction memory of the brush-making machine already mentioned above.
- the at least one functional unit can have a number of machining axes, of which a number of n-x machining axes can be used within the scope of a basic functional scope of the functional unit. This is particularly the case if the control unit has no special input information that would lead to a change in the functional scope of the functional unit.
- a number of n-x-y to n machining axes can be used within the scope of a range of functions changed by the control unit when corresponding input information is available.
- the variables n, x and y can stand for natural numbers.
- the at least one functional unit can be, for example, a drive for the brush production machine.
- the drive e.g. a tool of the brush making machine.
- the drive can provide a speed range that can be used by the operator of the brush manufacturing machine and / or a usable maximum speed.
- the usable speed range and / or the usable maximum speed can be changed within the potential speed range of the drive.
- the object is also achieved by a method for setting up a brush manufacturing machine, which means and Features of the independent claim directed to such a method.
- a method for setting up a brush manufacturing machine is proposed, in which a range of functions that can be used by the operator of the brush manufacturing machine for operating the brush manufacturing machine is changed as a function of input information from a control unit of the brush manufacturing machine.
- a brush manufacturing machine When carrying out the method, a brush manufacturing machine can be used which has the features of at least one of the claims directed to the brush manufacturing machine.
- the functional scope of the at least one functional unit can be changed, for example, from zero to an expanded scope. It is possible to activate the at least one functional unit for use by changing its functional scope.
- the input information for changing the functional scope of the at least one functional unit of the brush manufacturing machine can be received by an interface of the brush manufacturing machine.
- the interface of the brush manufacturing machine can be designed in accordance with the information carrier with which the input information of the brush manufacturing machine is made available.
- the input information made available to the brush manufacturing machine can be checked at least indirectly by the control unit of the brush manufacturing machine.
- the control unit of the brush manufacturing machine can use, for example, an inspection module that already was previously described in detail.
- An instruction memory can also be used to check the input information, in particular one as mentioned above.
- control information associated with the input information in particular from the control unit, can be transmitted to the at least one functional unit. This with the aim of changing the functional scope of the at least one functional unit that can be used by the operator when operating the brush manufacturing machine in accordance with the input information.
- control information can be read out from an instruction memory, which is at least temporarily connected to the control unit.
- Checking of the input information provided to the brush making machine can be done using the instruction memory.
- the input information that is made available to the brush production machine can be compared with the permissible input information stored in the instruction memory. If the input information made available to the brush manufacturing machine can be found in the instruction memory, this leads to a positive test result.
- control information which is assigned to the checked input information, can be read from the instruction memory and used by the control unit to change the functional scope of the at least one functional unit of the brush manufacturing machine.
- the input information of the brush manufacturing machine is provided by a manufacturer of the brush manufacturing machine.
- an information carrier can be used, which is compatible with the previously mentioned interface of the brush manufacturing machine. In this way it is possible, for example, to order only the scope of functions actually required, in particular from the manufacturer of the brush manufacturing machine.
- the manufacturer of the brush manufacturing machine can at least temporarily change, in particular expand, the functional scope of the at least one functional unit of the brush manufacturing machine, in particular against payment.
- the brush production machine can be brought into its initial state.
- the brush manufacturing machine can be provided with corresponding input information by means of which the control unit changes the functional scope of the functional unit.
- the input information can also be provided by a sensor, in particular a location sensor, of the brush manufacturing machine, in particular transmitted to the interface of the brush manufacturing machine and / or read out by the latter.
- a sensor in particular a location sensor
- the function of the location sensor has already been described in detail previously.
- a component provided with the input information in particular a tool of the brush manufacturing machine or the functional unit, which is compatible with the brush manufacturing machine, can be used as the information carrier of the input information.
- control unit can, in the absence of corresponding input information, restrict the functional scope of the at least one functional unit, possibly even to zero, or only allow it to a basic functional scope.
- control unit is also set up to limit the functional scope of the functional unit to zero, in particular as a function of corresponding input information.
- the component is a tool of the brush manufacturing machine. If a cutting knife is used as the tool, which has input information by means of which the tool for the brush manufacturing machine, in particular for the control unit, can be identified as the original tool, an increased drive power compared to a basic functional scope of a drive with which the tool is driven can be activated can. To ensure that tools that are not original tools and therefore may not have the required specifications are not used with too high a performance, the range of functions can be used the one functional unit, here the drive of the tool, are restricted accordingly for safety reasons.
- An activation key, a digital activation key, a code and / or a data carrier readable by the interface can be used as the information carrier, which have the input information. Further types of information carriers have already been mentioned above.
- the range of functions can be limited depending on the input information from the control unit or expanded depending on input information.
- the functional unit can provide a basic functional scope that is used in the operation of the brush manufacturing machine if there is no input information.
- the functional scope of the at least one functional unit can be limited to zero with the control unit of the brush making machine, in particular depending on corresponding input information, and the functional unit can thus be deactivated.
- a power that can be used by the operator of the brush manufacturing machine in particular a usable speed range of a drive of the brush manufacturing machine, can then be used as a functional unit is controlled, depending on the input information changed by the control unit, in particular increased or decreased. It is thus possible to increase or decrease the speed range of the drive that can be used by the operator of the brush manufacturing machine at least indirectly through the input information. This allows the operator of the brush manufacturing machine, for example against payment, to activate a larger usable speed range of a drive of the brush manufacturing machine for a limited period of time and / or for a limited number of pieces or of course permanently and in this way to upgrade the brush manufacturing machine.
- the input information is only transmitted by a manufacturer of the brush manufacturing machine, for example, when the operator of the brush manufacturing machine and / or the brush manufacturing machine has / have fulfilled at least one condition with regard to receiving the input information.
- the condition can be met, for example, if the operator of the brush manufacturing machine has paid a meaningful amount to the manufacturer of the brush manufacturing machine to activate the changed range of functions.
- other conditions must be met in order to allow the functional scope to be changed. This can be, for example, the installation of the brush production machine at a different location or the operation of the brush production machine under different conditions, for example at a different temperature and / or different air humidity.
- the conditions to which the brush making machine is exposed can be monitored with a sensor of the brush making machine.
- control unit Functional scope of the at least one functional unit changes for a defined period of time and / or for a defined number of production processes and / or produced parts.
- the information required for this can be transmitted together with the input information and / or can already be stored in control information which is assigned to the input information, for example in the instruction memory.
- the input information and / or control information can contain an instruction regarding a scope and / or a duration in which / in which the changed functional scope can be used. It is also possible for input information and / or the control information to contain at least one item of information relating to a number of products which may be manufactured with the changed functional scope.
- the previously described brush manufacturing machine and the previously described method allow the functional scope of individual functional units to be adapted as required. It is thus possible, for example, to use the control unit of the brush manufacturing machine in the manner described above to lock the axes of the brush manufacturing machine in terms of programming. Furthermore, it is conceivable to activate individual switches and / or pushbuttons of the brush manufacturing machine only after a corresponding input signal has been provided with the control unit, so as to expand the range of functions of the at least one functional unit of the brush manufacturing machine that can be used by the operator.
- the brush manufacturing machine in which the claimed technical teaching is implemented, can also be set up to limit and / or expand a production performance offered by it depending on input information.
- the Figures 1 and 2 each show a brush manufacturing machine designated as a whole by 1.
- Each of the brush manufacturing machines 1 has at least one functional unit 2 and one control unit 3.
- Each of the functional units 2 provides a range of functions that can be used when operating the brush manufacturing machine 1 for an operator of the brush manufacturing machine 1.
- the respective control unit 3 is set up to change the usable functional scope of the at least one functional unit 2 as a function of input information 4. If necessary, one or more functional units 2 can be deactivated in an initial state, ie provide a range of functions that is zero.
- Corresponding input information 4 makes it possible to expand the functional scope of these functional units 2 with the aid of the control units 3 and thus to activate the functional units 2. In this way, previously blocked machine functions can be released for use in existing brush manufacturing machines.
- Each of the brush manufacturing machines 1 has an interface 5 for receiving input information 4.
- the interfaces 5 are at least temporarily connected to the control units 3.
- the control units 3 are also at least indirectly set up to check the input information 4. Furthermore, the control units 3 are at least temporarily connected to an instruction memory 6.
- the instruction memories 6 contain control information which is assigned to different input information 4.
- control units 3 can be connected to an checking module 24 at least temporarily.
- the control unit 3 and / or the checking module 24 connected at least temporarily to it can fall back on the instruction memory 6 already mentioned.
- This can contain a list of permissible input information 4, by means of which the control unit 3 and / or the test module 24 can autonomously determine whether the input information 4 made available to the brush manufacturing machine 1 is permissible or not.
- the brush manufacturing machine 1 shown has a sensor 7.
- This sensor 7 is a location sensor with which the brush manufacturing machine 1 can autonomously determine its location.
- Location information 8 generated by the sensor 7 can be used as input information 4, on the basis of which the functional scope of the at least one functional unit 2 of the brush production machine 1 can be changed depending on the location.
- the brush manufacturing machine 1 shown has a total of four functional units 2.
- the functional unit 2 located at position 1 is used to enter brush bodies 14 and the removal of finished brushes 12.
- the functional unit 2 located at position 2 is a drilling device 16, which will be explained in more detail below.
- At position 3 there is a device for plugging as functional unit 2 of bristles 10 in brush body 14 while at position 4 of the brush making machine 1 according to Figure 1 a milling device 9 is provided as the functional unit 2.
- the milling device 9 has a total of three machining axes 13a, 13b, 13c.
- a milling tool 15 of the milling device 9 is rotatable about a first machining axis 13a of the three machining axes.
- a second machining axis 13b of the three machining axes is approximately parallel to the surface of an axially aligned brush body 14 of the brush 12 to be machined, on which the milling tool 15 can be moved.
- control unit 3 can expand the functional scope of the functional unit 2, namely the milling device 9. After checking and / or verifying the input information 4, the control unit 3 sends a corresponding control signal to the milling device 9, by means of which the third machining axis 13c is released, along which the milling tool 15 can then also be moved.
- Part B of Figure 1 further clarifies that the input information 4 can be transmitted wirelessly to the brush manufacturing machine 1, in particular to the control unit 3 of the brush manufacturing machine 1.
- the input information 4 can be provided depending on whether at least one specific condition with regard to the receipt of the input information 4 is fulfilled.
- the condition can be met, for example, if the brush manufacturing machine 1 is located at a specific location and / or a payment for changing the functional scope of the at least one functional unit 2 of the brush manufacturing machine 1, in particular to a manufacturer 20 of the brush manufacturing machine 1, has been made.
- Part A of Figure 1 shows the functional unit 2 milling device 9 in its basic functional scope.
- the basic functional scope is provided by the milling device 9 when the control unit 3 of the brush manufacturing machine 1 has no input information 4.
- two of the three machining axes 13a, 13b, 13c of the milling device 9 can be used for machining brushes 12.
- control unit 3 ensures that the third machining axis 13c of the milling device 9 is activated.
- the functional unit 2 located at position 2 of the brush production machine 1 is a drilling device 16. With the drilling device 16, bundle holes 17 can be made in the brush bodies 14. The bundle holes 17 are plugged with bristles 10 on the functional unit 2, which is arranged at position 3 of the brush manufacturing machine 1.
- a drive 18 of the drilling device 16 can be operated at a specific maximum speed. This allows the bundle holes 17 to be drilled in a corresponding cycle time.
- the control unit 2 can expand the functional scope of the drive 18 of the drilling device 16 by increasing a speed range usable for the operator of the brush manufacturing machine 1 and / or a usable maximum speed of the drive. In this way, more bundle holes 17 can be drilled per unit of time, which, for example, reduces the cycle time of this functional unit 2 and increases the performance of the brush manufacturing machine 1.
- FIG 2 shows a brush manufacturing machine 1 with different Components 19 and 22, here can be operated with different tools 19 and 22.
- an original tool 19 is used, which comes from the manufacturer 20 of the brush manufacturing machine 1.
- the tool 19 also serves as an information carrier 21 which has the input information 4.
- the brush manufacturing machine 1 is set up via its interface 5 to read the input information 4, which the tool 19 has in its function as an information carrier 21.
- the input information 4 is authenticity information, by means of which the tool 19 for the brush manufacturing machine 1 and its control unit 3 can be identified as originating from the manufacturer 20. If the check of the input information 4, which is carried out at least indirectly by the control unit 3 of the brush manufacturing machine 1, shows that the tool 19 is an original tool, the functional unit 2 of the brush manufacturing machine 1 that uses the tool 19 receives corresponding control information and from the control unit 3 is operated at full power.
- the brush manufacturing machine 1 is operated with a tool 22 which comes from another manufacturer 23, that is to say is a non-original tool 22.
- This tool 22 does not carry any input information 4, on the basis of which the control unit 3 would at least indirectly recognize that the tool 22 has the necessary specifications to operate the functional unit 2 using the tool 22 at full power. For this reason, the brush manufacturing machine 1 autonomously decides to reduce the power with which the functional unit 2 is operated to 90% for safety reasons.
- Both brush manufacturing machines 1 are thus suitable for carrying out the method described below for setting up a brush manufacturing machine 1: It is provided here that a functional scope of at least one functional unit 2 of the brush manufacturing machine 1 that can be used by the operator of the brush manufacturing machine 1 during operation of the brush manufacturing machine 1 is changed as a function of input information 4 from the control unit 3 of the brush manufacturing machine 1.
- the input information 4 is received via the interface 5 of the brush manufacturing machine 1.
- the input information 4 is then checked at least indirectly by the control unit 3.
- the control unit 3 can use an examination module 24 for this purpose.
- This test module 24 can be cloud-based and / or operated by the manufacturer 20 of the brush manufacturing machine 1.
- the brush manufacturing machine 1, in particular the control unit 3, can connect to the test module 24 at least temporarily.
- control information associated with the input information 4 is transmitted from the control unit 3 to the at least one functional unit 2 of the brush manufacturing machine 1 in order to change the range of functions that can be used by the operator when operating the brush manufacturing machine 1.
- the input information 4 is provided by the manufacturer 20 of the brush manufacturing machine 1.
- An information carrier 21 can be used for this.
- the information carrier 21 is on the interface 5 the brush manufacturing machine 1 tuned.
- the input information 4 can also be generated autonomously by the brush manufacturing machine 1, in particular by the control unit 3.
- the input information 4 is generated by means of a sensor 7, for example by means of a location sensor 7, and made available to the control unit 3, in particular via the interface 5.
- a component 19 provided with the input information 4, in particular a tool 19, is used as the information carrier 21, which is compatible with the brush manufacturing machine 1.
- An activation key, a digital activation key, a code, a certificate of authenticity and / or a data carrier which can be read by the interface 5 of the brush manufacturing machine 1 and which has the input information 4 can of course also be used as the information carrier 21.
- control unit 3 of the brush manufacturing machine 1 can limit and expand the functional scope of the functional unit 2. If necessary, the functional scope can even be reduced to zero, as a result of which the functional unit 2 is then deactivated or its use is blocked.
- the functional scope of the functional unit 2 can also be expanded from zero to a defined scope in order to activate or activate the functional unit.
- the at least one functional unit 2 of the brush manufacturing machine 1 can provide at least one basic functional scope. This is exemplified in part A of Figure 1 illustrated. At least this basic functional scope can be used when operating the brush manufacturing machine 1 if there is no input information 4.
- the brush manufacturing machine 1 shown is set up to change a maximum output with which the brush manufacturing machine 1, in particular a drive 16 of the brush manufacturing machine 1, is operated. Specifically, this can mean that a speed of the drive 16 of the brush manufacturing machine 1 is at least indirectly increased or decreased by the input information 4.
- the input information 4 can then be provided by the manufacturer 20 of the brush manufacturing machine 1 as soon as the operator of the brush manufacturing machine 1 and / or the brush manufacturing machine 1 has / have fulfilled at least one condition with regard to the receipt of the input information 4.
- the condition can be met, for example, when the operator of the brush manufacturing machine 1 has paid the manufacturer 20 a certain amount in order to expand the functional scope of the functional unit 2.
- the manufacturer 20 transmits the input information 4 to the brush manufacturing machine 1, whereupon the control unit 3 brings about a corresponding change in the functional scope of the functional unit 2.
- the control unit 2 can change the functional scope of the at least one functional unit 2, for example for a defined period and / or for a defined number of production processes and / or for a defined number of produced parts.
- the input information 4 and / or control information linked to the input information 4 can include at least one item of information relating to a scope and / or a duration that / in which the changed range of functions can be used, and / or contain at least information regarding a number of products that may be manufactured with the changed range of functions.
- a brush manufacturing machine 1 which has at least one functional unit 2 and one control unit 3.
- the control unit 3 is set up to change a functional scope of the at least one functional unit 2 that can be used during the operation of the brush manufacturing machine 1 as a function of input information 4.
Landscapes
- Engineering & Computer Science (AREA)
- Manufacturing & Machinery (AREA)
- Manufacture Of Motors, Generators (AREA)
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| EP18186638.5A EP3603447A1 (fr) | 2018-07-31 | 2018-07-31 | Machine de fabrication de brosses et procédé de réglage d'une machine de fabrication de brosses |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| EP18186638.5A EP3603447A1 (fr) | 2018-07-31 | 2018-07-31 | Machine de fabrication de brosses et procédé de réglage d'une machine de fabrication de brosses |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| EP3603447A1 true EP3603447A1 (fr) | 2020-02-05 |
Family
ID=63113378
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP18186638.5A Pending EP3603447A1 (fr) | 2018-07-31 | 2018-07-31 | Machine de fabrication de brosses et procédé de réglage d'une machine de fabrication de brosses |
Country Status (1)
| Country | Link |
|---|---|
| EP (1) | EP3603447A1 (fr) |
Citations (4)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| WO2006024606A1 (fr) * | 2004-08-31 | 2006-03-09 | Krauss-Maffei Kunststofftechnik Gmbh | Integration informatique de toutes les operations de production dans des machines de production |
| US20110191139A1 (en) * | 2010-02-01 | 2011-08-04 | Taiwan Semiconductor Manufacturing Company, Ltd. | Methods and systems for dynamic inventory control |
| EP2754357A1 (fr) * | 2013-01-09 | 2014-07-16 | HAUNI Maschinenbau AG | Procédé destiné à l'alimentation et à l'élimination en fonction des besoins d'au moins deux stations de production de l'industrie de traitement du tabac avec des unités de transport pleines et/ou vides |
| WO2014127978A2 (fr) * | 2013-02-21 | 2014-08-28 | Siemens Aktiengesellschaft | Surveillance par caméra d'un équipement d'une installation technique |
-
2018
- 2018-07-31 EP EP18186638.5A patent/EP3603447A1/fr active Pending
Patent Citations (5)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| WO2006024606A1 (fr) * | 2004-08-31 | 2006-03-09 | Krauss-Maffei Kunststofftechnik Gmbh | Integration informatique de toutes les operations de production dans des machines de production |
| US20070106420A1 (en) * | 2004-08-31 | 2007-05-10 | Krauss-Maffei Kunststofftechnik Gmbh | Computer-based integration of all operating procedures in production machines |
| US20110191139A1 (en) * | 2010-02-01 | 2011-08-04 | Taiwan Semiconductor Manufacturing Company, Ltd. | Methods and systems for dynamic inventory control |
| EP2754357A1 (fr) * | 2013-01-09 | 2014-07-16 | HAUNI Maschinenbau AG | Procédé destiné à l'alimentation et à l'élimination en fonction des besoins d'au moins deux stations de production de l'industrie de traitement du tabac avec des unités de transport pleines et/ou vides |
| WO2014127978A2 (fr) * | 2013-02-21 | 2014-08-28 | Siemens Aktiengesellschaft | Surveillance par caméra d'un équipement d'une installation technique |
Similar Documents
| Publication | Publication Date | Title |
|---|---|---|
| EP2561416A1 (fr) | Programme nc et procédé permettant de simplifier la post-production sur une machine-outil | |
| Caspari | Gewaltpräventive Einrichtungskulturen | |
| DE19722428A1 (de) | System zum Erzeugen einer Geometrie eines Gegenstandes, der zu einem Erzeugnis von ähnlichen Erzeugnissen zugehörig ist, auf der Grundlage einer geometrischen Eigenschaft dieses einen Erzeugnisses | |
| EP3596564B1 (fr) | Procédé de sélection d'étape de cintrage mis en oeuvre sur un système de commande d'une machine à cintrer | |
| EP3623884A1 (fr) | Machine de production ou machine-outil et procédé de fonctionnement d'une machine de production ou machine-outil | |
| DE102013216623A1 (de) | Vorrichtung zum wechsel von elektrodenkappen einer schweissanlage und schweissverfahren | |
| EP3803727B1 (fr) | Procédé et système pour fournir des protocoles de processus pour des objets physiques | |
| EP1574864A1 (fr) | Procédé permettant de tester le fonctionnement des composants électroniques et électriques intégrés dans un véhicule d'un type donné et adressables par un bus de communication | |
| BE1026507B1 (de) | Bürstenherstellungsmaschine und Verfahren zum Einrichten einer Bürstenherstellungsmaschine | |
| EP3256921B1 (fr) | Système et procédé d'usinage, dispositif de commande et produit-programme informatique pour la commande d'un système d'usinage comportant une machine-outil | |
| EP2511777A1 (fr) | Procédé de fonctionnement d'un dispositif de commande d'entraînement et dispositif de commande d'entraînement doté de moyens pour l'utilisation dans un tel procédé | |
| WO2004090651A1 (fr) | Procede de commande d'une sequence de fabrication | |
| DE102022100379A1 (de) | Verfahren zum Überwachen eines mehrstufigen Fertigungsprozesses eines Bauteils mittels eines Überwachungssystems, Computerprogrammprodukt sowie Überwachungssystem | |
| DE102006005805A1 (de) | Verfahren zur automatischen Konfigurierung eines Feldgeräte enthaltenden Netzwerks | |
| WO2018130320A1 (fr) | Procédé de configuration automatique d'unités fonctionnelles d'un système d'automatisation, programme informatique permettant la mise en œuvre dudit procédé ainsi qu'appareil fonctionnant selon ledit procédé | |
| Schulte et al. | Beitrag zur Entwicklungsmethodik für resiliente Systeme des Maschinenbaus | |
| EP3803728B1 (fr) | Procédé et système pour fournir des protocoles de processus pour des données de machine | |
| EP2498155B1 (fr) | Procédé de reconnaissance de modifications d'interfaces software et d'adaptation automatique de ces interfaces dans un programme d'automatisation | |
| WO2021148505A1 (fr) | Procédé et système de caractérisation automatique d'une pièce à usiner pendant un processus d'usinage utilisant une machine-outil | |
| DE102008021310B4 (de) | Werkstück aus Holz, Kunststoff und dergleichen sowie Verfahren zur Herstellung eines solchen Werkstückes | |
| DE102009019640A1 (de) | Verfahren, Vorrichtung und System zur Herstellung eines Schlüssels für ein Fahrzeug sowie Verfahren und Vorrichtung zur Erzeugung einer Fräsinformation zur Herstellung eines Schlüssels | |
| EP4528410A1 (fr) | Système de données, dispositif d'interface de données, système de fabrication et procédé de commande d'une machine-outil | |
| DE102023105868A1 (de) | Verfahren zum Verbessern eines Arbeitsprozesses | |
| DE102015108535B3 (de) | Verfahren zur Werkzeugsubstitution | |
| EP2010974B1 (fr) | Système d'ingénierie et procédé pour élaborer un projet d'un système d'automatisation |
Legal Events
| Date | Code | Title | Description |
|---|---|---|---|
| PUAI | Public reference made under article 153(3) epc to a published international application that has entered the european phase |
Free format text: ORIGINAL CODE: 0009012 |
|
| STAA | Information on the status of an ep patent application or granted ep patent |
Free format text: STATUS: THE APPLICATION HAS BEEN PUBLISHED |
|
| AK | Designated contracting states |
Kind code of ref document: A1 Designated state(s): AL AT BE BG CH CY CZ DE DK EE ES FI FR GB GR HR HU IE IS IT LI LT LU LV MC MK MT NL NO PL PT RO RS SE SI SK SM TR |
|
| AX | Request for extension of the european patent |
Extension state: BA ME |
|
| STAA | Information on the status of an ep patent application or granted ep patent |
Free format text: STATUS: REQUEST FOR EXAMINATION WAS MADE |
|
| 17P | Request for examination filed |
Effective date: 20200423 |
|
| RBV | Designated contracting states (corrected) |
Designated state(s): AL AT BE BG CH CY CZ DE DK EE ES FI FR GB GR HR HU IE IS IT LI LT LU LV MC MK MT NL NO PL PT RO RS SE SI SK SM TR |
|
| RIN1 | Information on inventor provided before grant (corrected) |
Inventor name: KIEFER, JOACHIM Inventor name: MORLOCK, SEBASTIAN |
|
| STAA | Information on the status of an ep patent application or granted ep patent |
Free format text: STATUS: EXAMINATION IS IN PROGRESS |
|
| 17Q | First examination report despatched |
Effective date: 20240923 |