MANAGEMENT SYSTEM OF INJECTION MOLDING MACHINES
20170136671 ยท 2017-05-18
Inventors
Cpc classification
G05B19/408
PHYSICS
G05B19/182
PHYSICS
International classification
B29C45/76
PERFORMING OPERATIONS; TRANSPORTING
G05B19/18
PHYSICS
Abstract
A management system of injection molding machines includes molding cells, each of which including at least an injection molding machine and a temporary storage device configured to store data from devices in each molding cell at prescribed intervals, and a management device that is connected with the molding cells through communications lines and stores the data stored in the temporary storage device. The temporary storage device overwrites the data sequentially from the oldest data to the newest data in cycles, and stores the data for a prescribed number of cycles. A signal that is selected in advance from signals generated by the devices in each molding cell or by the management device is input to the temporary storage device as a trigger signal, and when the temporary storage device receives the trigger signal, the temporary storage device outputs the stored data to the management device.
Claims
1. A management system of injection molding machines comprising: a plurality of molding cells each of which is provided for an injection molding machine, each of the molding cells including at least the injection molding machine and a temporary storage device configured to store data at prescribed intervals, the data being detected by and output from devices included in each of the molding cells; and a management device that is connected with the molding cells through communications lines and acquires and stores the data stored in the temporary storage device, wherein the temporary storage device overwrites the data stored at the prescribed intervals sequentially from the oldest data to the newest data in cycles, and stores the data for a prescribed number of cycles, a signal that is selected in advance from signals generated by the devices included in each of the molding cells or by the management device is input to the temporary storage device as a trigger signal, and when the temporary storage device receives the trigger signal, the temporary storage device outputs the stored data to the management device.
2. The management system of injection molding machines according to claim 1, wherein the prescribed intervals are either of prescribed time intervals or intervals of a prescribed number of molding cycles.
3. The management system of injection molding machines according to claim 1, wherein each of the molding cells includes at least one of peripheral apparatuses, the peripheral apparatuses including a molded article unloading apparatus or a robot, a molded article imaging apparatus, and a molded article measurement apparatus, and each of the molding cells also includes the data of the at least one of the peripheral apparatuses.
4. The management system of injection molding machines according to claim 1, wherein a control device of the injection molding apparatus also serves as the temporary storage device, and a storage unit in the control device of the injection molding machine stores the data detected by and output from the devices included in each of the molding cells.
5. The management system of injection molding machines according to claim 1, wherein the trigger signal is any one of a signal detecting a defective molded article manufactured in the molding cells, a signal detecting an anomaly of the devices included in each of the molding cells, or a signal of an instruction by an operator to transmit the data stored in the temporary storage device through the devices included in each of the molding cells or the management device to the management device.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0012] The foregoing and other objects and features of the invention will be apparent from the following description of the embodiments taken in conjunction with the accompanying drawings, in which:
[0013]
[0014]
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0015] Embodiments of the present invention are described below with reference to the drawings.
[0016]
[0017] Each of the molding cells includes an injection molding machine 10, a temporary storage device 14 configured to temporarily store various kinds of data, peripheral apparatuses that operate in accordance with a molding operation of the injection molding machine. At least the injection molding machine 10 and the temporary storage device 14 configured to temporarily store various kinds of data are essential components of each of the molding cells.
[0018] The molding cells other than the molding cell #1 have similar structures. Some molding cells include a molded article unloading apparatus instead of the robot 13, or include a molded article measurement apparatus, and some does not include a molded article imaging apparatus 12. Every molding cell includes at least the injection molding apparatus 10 and the temporary storage device 14.
[0019] The temporary storage devices of the molding cells #1 to #3 are connected to the management device 1 by the communications lines 2 of the network. The management device 1 includes a storage unit la configured to store data, and centrally manages the various kinds of data generated by the plurality of molding cells.
[0020] The temporary storage device 14 collects the data of the devices in the molding cell (injection molding machine 10 and its peripheral apparatuses including temperature controller 11, molded article imaging apparatus 12, robot 13, and the like) at prescribed intervals (every prescribed period or every prescribed number of molding cycles) through the internal communications lines 15. When receiving the trigger signal, the temporary storage device 14 transmits the temporarily stored data to the management device 1 that is configured to centrally manage the data.
[0021] Note that the prescribed intervals for collecting the data may be either of every prescribed period or every prescribed number of molding cycles. In the case where the data is collected every prescribed number of molding cycles, the control device of the injection molding machine counts the number of the molding cycles and is configured to output a trigger signal when the number of the molding cycles reaches a prescribed number. Alternatively, the data maybe collected in such a manner that the temporary storage device receives signals each indicating an end of a molding cycle from the injection molding machine, counts the number of the signals, and generates a trigger signal when the number of the signals reaches a prescribed number.
[0022] The data generated by the devices in each molding cell are as follows:
[0023] 1) Data on an injection molding machine [0024] operation status: under automatic operation, under manual operation, under suspension, and the like [0025] molding data per molding cycle: injection time, peak value of injection pressure, temperatures of nozzles and cylinders, and the like [0026] waveform data: molding data, data of physical quantities recorded with elapse of time, such as a pressure of a resin or a screw position [0027] operation record: operation contents of a screen and a button [0028] alarm generation record: date and details
[0029] 2) Data on a unloading device or a robot [0030] operation status: under automatic operation, under manual operation, under suspension, and the like [0031] waveform data: load data of a shaft drive motor [0032] operation record: operation contents of a screen and a button [0033] alarm generation record: date and details
[0034] 3) Data on a molded article imaging apparatus [0035] image data of molded articles [0036] quality determination results of molded articles according to the images
[0037] 4) Data on a molded article measurement apparatus (quantity measurement apparatus, size measurement apparatus) [0038] measurement results of quantities or sizes of molded articles [0039] quality determination results of molded articles according to the quantity or the size
[0040] 5) Data on a temperature controller and a dryer [0041] operation status: under operation, under suspension [0042] temperature data
[0043] A signal generated when an operator operates the management device 1 is input to the temporary storage device as a trigger signal and the management device is allowed to acquire the data stored in the temporary storage device in the case where the injection molding machine 10 detects a molding failure or an anomaly of the molding data, the molded article imaging apparatus 12 detects a molding failure, the injection molding machine 10 or its peripheral apparatus (temperature controller 11, molded article imaging apparatus 12, robot 13, or the like) generates an alarm, an operator presses an emergency stop button on the injection molding machine, an operation of a sampling inspection of molded articles is performed, or a manager of the factory needs to acquire the data in the molding cells to grasp the operation status of the molding cells, for example. In other words, a signal to be utilized as a trigger signal is selected in advance from the signals generated by the devices in the molding cells, or the management device. Note that when the trigger signal is output from the management device 1, an operator inputs a data transmission instruction to the management device 1 together with a code specifying the molding cell from which the data is to be acquired, and inputs a trigger instruction to the temporary storage device of the specified molding cell through the communications lines 2, and then the data stored in the temporary storage device is transmitted to the management device 1. Alternatively, the data may be transmitted in such a manner that a signal line for a trigger signal is connected from the management device to the temporary storage device of each of the molding cells, and a trigger instruction is output through the signal line.
[0044] Although this embodiment exemplifies a case where a trigger signal line is provided in each of the molding cells, a trigger signal (or a trigger instruction) may be transmitted from the injection molding machine 10 or its peripheral apparatus (temperature controller 11, molded article imaging apparatus 12, or robot 13) to the temporary storage device 14 through the communications line 15 without providing a trigger signal line.
[0045]
[0046] The control device of the temporary storage device 14 determines whether the index i exceeds a value imax indicating the maximum value of the storage capacity (step S1), and resets the index i to 0 when the index i exceeds the value imax (step S2). Note that the index i is initially set at 0 at the time of continuous manufacturing of molded articles. The temporary storage device 14 then stores the above described various kinds of data M(i) of the injection molding machine 10 and the peripheral apparatuses (step S3). Then, the control device determines whether or not the trigger signal is input (step S4). When the control device determines that the trigger signal is not input, the process proceeds to step S6 to add 1 to the index i, and a cycle of the processes is finished. Subsequently, the processes of step S1 to step S4 and step S6 are performed in each cycle, and various kinds of data generated by the devices in each of the molding cells is collected and stored in the temporary storage device 14.
[0047] When the index i exceeds the maximum value imax, the process proceeds from step S1 to step S2, and the index i is reset to 0. Accordingly, the newest data is stored by overwriting the oldest data stored in the temporary storage device 14 in step S3.
[0048] While the various kinds of data generated in the devices in the molding cell are collected and stored in the temporary storage device 14, when a trigger signal 16 is received from the injection molding machine 10, its peripheral apparatus (temperature controller 11, molded article imaging apparatus 12, robot 13, or the like), or the management device 1, the process proceeds from step S4 to step S5, and data M(i+1) to M(imax), and M(0) to M(i), which are indicated by the index i, are input to the management device 1 as continuous data. Specifically, data M(i) indicated by the index i is the newest data, and data M(i+1) is the oldest data in the stored data and is to be overwritten in the next cycle. Accordingly, the data are output with the oldest first in the order of M(i+1), M(i+2), M(imax), and M(0), M(1), . . . M(i).
[0049] On the other hand, when receiving the data from each of the molding cells, the management device 1 stores the received data in the storage unit la together with a code identifying the molding cell. The stored data is displayed or printed to be utilized for managing the molding cells.
[0050] As described above, the temporary storage device 14 in each of the molding cells stores the data of a limited number of cycles (imax+1), such as the detected data of the devices in each of the molding cells sampled at prescribed intervals, and thus the storage capacity is needed only for a prescribed number of cycles (number of cycles corresponding to imax+1). In addition, the temporary storage device 14 stores the past data of a prescribed number of cycles (number of cycles corresponding to imax+1) prior to the cycle in which a trigger signal is generated due to an occurrence of a molding failure or an anomaly, and the stored data is transmitted to the management device 1. As a result, the management device 1 stores only useful information for a manager of a molding factory, such as the data at the time of a molding failure, the data at the time of an anomaly, and the data on a sampled molded article. This makes it possible to acquire sufficient data for operation analysis of the molding cells, and facilitates retrieving necessary data. In other words, the number of cycles (imax+1) for storing data in the temporary storage device may be a number in a range that is useful for analyzing the data related to a past molding operation at the time of occurrence of a molding failure or an anomaly, and thus the capacity of the temporary storage device need not be large. In addition, the data transmission to the management device through the network of the communications lines 2 is not performed at prescribed intervals, but is limited to a time only when an anomaly occurs or when a manager considers the data transmission necessary, or the like. Accordingly, communication traffic on the network can be reduced, and the storage capacity of the storage unit 1a of the management device 1 can be reduced.
[0051] Note that the temporary storage device 14 provided in each of the molding cells may be an independent temporary storage device, or a personal computer. In addition, the control device of the injection molding machine may also serve as the temporary storage device. Specifically, a processor of the control device of the injection molding machine may perform processes illustrated in
[0052] Although an embodiment of the present invention is described above, the present invention is not limited to the examples of the above described embodiment, and can be achieved in other aspects of the invention by applying appropriate modifications.