Injection molding system
09969109 ยท 2018-05-15
Assignee
Inventors
Cpc classification
B29C45/14008
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
An injection molding system is provided with inspection means for inspecting an insert part before a resin is injected into a mold, inspection data output means for outputting inspection data on the insert part obtained by the inspection means, and inspection data recording means for recording the inspection data on the insert part and physical quantities related to the injection of the resin into the mold in association with the cycle number of the molded article from the injection molding machine. Thus, the cause of bad molded articles, as well as that for a finished product, can be investigated in consideration of the inspection data on the insert part inserted into the mold.
Claims
1. An injection molding system, comprising: an injection molding machine configured to form an integrated molded article from an insert part inserted into a mold and a resin injected into the mold; part insertion means for inserting the insert part into the mold; inspection means for inspecting the insert part before the resin is injected into the mold, and outputting inspection data on the insert part obtained by the inspection; and a controller configured to control the injection molding machine, and record the inspection data on the insert part and physical quantities related to the injection of the resin into the mold in association with the cycle number of the molded article from the injection molding machine.
2. The injection molding system according to claim 1, wherein the part insertion means is a robot.
3. The injection molding system according to claim 1, wherein the inspection means is attached to the part insertion means.
4. The injection molding system according to claim 1, wherein the inspection means comprises weight measuring means for measuring the weight of the insert part, and outputs the weight measured by the weight measuring means as the inspection data on the insert part.
5. The injection molding system according to claim 1, wherein the inspection means comprises size measuring means for measuring the size of at least a portion of the insert part, and outputs the size measured by the size measuring means as the inspection data on the insert part.
6. The injection molding system according to claim 1, wherein the inspection means comprises image acquisition means for acquiring an image of at least a portion of the insert part, and outputs the acquired image as the inspection data on the insert part.
7. The injection molding system according to claim 1, wherein the inspection means comprises production information acquisition means for acquiring an image of production information on a surface of the insert part, reads a numerical value or character information from the image of the production information acquired by the production information acquisition means, and outputs the read numerical value or character information as the inspection data on the insert part.
8. The injection molding system according to claim 1, wherein when a specific molded article is generated, the inspection data recorded in the controller is obtained to investigate a cause for the specific molded article, by comparing physical quantities in the injection molding machine and the recorded inspection data.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The above and other objects and features of the present invention will be obvious from the ensuing description of embodiments with reference to the accompanying drawings, in which:
(2)
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
(7)
(8) In the injection molding machine 10 of the present embodiment, the resin is injected into the mold after a part is inserted into the mold. By doing this, the inserted part and the resin injected into the mold are joined together to form a molded article. This molding method is the so-called insert molding.
(9) In the insert molding, a part 40 is inserted into the mold by part insertion means 20. A conventional working robot can be used for the part insertion means 20. Component inspection means 30 and a camera 32 are connected to each other. An image of the whole or a portion of the part 40 captured by the camera 32 is delivered to the part inspection means 30. Further, the image of the part 40 delivered to the part inspection means 30 is sent as inspection data to the controller 16 of the injection molding machine 10. The part inspection means 30 and the injection molding machine 10 are connected by communication means, and the inspection data is delivered to the controller 16 of the injection molding machine 10 through the communication means.
(10) The image captured by the camera 32 and delivered to the part inspection means 30 is processed by the part inspection means 30 and the size of the whole or a portion of the molded article is measured. The measured size can be delivered to the controller 16 of the injection molding machine 10. The size may be directly obtained by using electronic vernier calipers (not shown) without the processing of the image captured by the camera 32 so that the obtained size can be delivered to the controller 16.
(11) As shown in
(12) The physical quantities of the part 40 inserted into the mold in the insert molding are not limited to specific ones such as the size and weight and may alternatively be any other quantities that influence the quality of the integrated molded article. If the temperature of the part 40 influences shape defects, such as warp and size defect, of the integrated molded article, for example, a thermometer for measuring the temperature of the part 40 may be provided in place of the weight scale 34. The temperature measured by the thermometer may be delivered to the part inspection means 30 so that it can be delivered from the part inspection means 30 to the controller 16 of the injection molding machine 10.
(13) As shown in
(14) The inspection data on the part 40 delivered from the part inspection means 30 to the controller 16 of the injection molding machine 10 is stored in a table form in the storage means 18 of the controller 16, as shown in
(15) The physical quantities related to the injection of the resin in the injection molding machine are not limited to those quantities, such as the peak pressure and the minimum cushion amount, which are measured in an injection process only. An injection process in a broad sense is defined as a process (including a dwelling process) for filling the resin into the mold, and the physical quantities further include a resin pressure, screw position, screw speed, injection time, metering time, and the like, during the injection process. Furthermore, the physical quantities include a resin pressure, screw position, screw speed, screw rotation speed, screw rotation torque, metering time, and the like, in a metering process for metering a predetermined resin in a preparation stage for injection, or a mold temperature, nozzle temperature, cylinder temperature, and the like, related to the molten state of the resin during the injection.
(16) The weight, size, and image of the part and the production information, including the lot number, production date, and the like, are stored as the part inspection data. Although the weight, size, image, and production information are all stored in the present embodiment, only one of these data may be expected to be stored.
(17) In the injection molding machine 10, the image captured by an image inspection device (not shown) is analyzed, and the good/bad of molded articles is determined for each molding cycle by human visual recognition. If any bad article is generated, the physical quantities in the injection molding machine and inspection data on the inserted part in case of the generation of the bad article can be obtained based on the data stored in the storage means shown in
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