FLOW CONTROL OF AN INJECTION MOLDING SYSTEM
20200398468 ยท 2020-12-24
Assignee
Inventors
- Anton Jorg (Grossostheim, DE)
- Scott Greb (Washington Township, MI, US)
- Christian Striegel (Hainburg, DE)
Cpc classification
F16K1/52
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B29C2045/0032
PERFORMING OPERATIONS; TRANSPORTING
B29C2945/7606
PERFORMING OPERATIONS; TRANSPORTING
B29C2045/2817
PERFORMING OPERATIONS; TRANSPORTING
B29C45/82
PERFORMING OPERATIONS; TRANSPORTING
B29C45/30
PERFORMING OPERATIONS; TRANSPORTING
B29C2045/2824
PERFORMING OPERATIONS; TRANSPORTING
B29C2945/76933
PERFORMING OPERATIONS; TRANSPORTING
International classification
B29C45/30
PERFORMING OPERATIONS; TRANSPORTING
F16K1/52
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
Injection molding system comprising at least one first actuator-system (D1, D2, D3), the first actuator system comprising: at least one piston drive having at least two pressure line connectors (CP2, CP3) to drive a piston to open or close a molding nozzle, pressure lines (L1, L2) connectable to a changeover valve (V) having a pressure line connector (P) and tank line connector (T) and at least two changeover pressure line connectors, wherein the first changeover valve pressure line connector (CV1) is connectable to a first pressure line (L1) and the second changeover valve pressure line connector (CV2) is connectable to a second pressure line (L2), wherein the second pressure line (L2) is connected to the second pressure line connector (CP2) of the piston drive, an electronically adjustable flow control valve having a first pressure line connector and a second pressure line connector, wherein the first pressure line connector of the adjustable flow control valve being connected to the first pressure line (L1) to allow a connection to the first pressure line connector (CV1) of the changeover valve (V), and the second pressure line connector is connected to a third pressure line (L3) which establishes a connection to the second pressure line connector (CP3) of the piston drive, at least one electronic flow sensor for (P1, P2, P3) sensing flow rate in the first, second and/or third pressure lines (L1, L2, L3), a controller connected to the adjustable flow control valve and to the at least one sensor, configured to electronically adjust the flow control valve, depending on information of the at least one sensor, controlling thereby the timing and the speed of the movement of the piston and the molding nozzle.
Claims
1. Injection molding system comprising at least one first actuator-system the first actuator system comprising: at least one piston drive having at least two pressure line connectors to drive a piston to open or close a molding nozzle; pressure lines connectable to a changeover valve having a pressure line connector and tank line connector and at least two changeover pressure line connectors, wherein the first changeover valve pressure line connector is connectable to a first pressure line and the second changeover valve pressure line connector is connectable to a second pressure line, wherein the second pressure line is connected to the second pressure line connector of the piston drive; an electronically adjustable flow control valve having a first pressure line connector and a second pressure line connector, wherein the first pressure line connector of the adjustable flow control valve being connected to the first pressure line to allowing a connection to the first pressure line connector of the changeover valve, and the second pressure line connector is connected to a third pressure line which establishes a connection to the second pressure line connector of the piston drive; at least one electronic flow sensor for sensing flow rate in the first, second and/or third pressure lines; and a controller connected to the adjustable flow control valve and to the at least one sensor, configured to electronically adjust the flow control valve, depending on information of the at least one sensor, controlling thereby the timing and the speed of the movement of the piston and the molding nozzle.
2. The injection molding system according to claim 1, wherein a first flow sensor is adapted to measure the flow rate in the first pressure line between the adjustable flow control valve and the changeover valve, or wherein a second flow sensor is adapted to measure the flow in the second pressure line between the piston drive and the changeover valve or wherein a third flow sensor is adapted to measure the flow in the third pressure line between the piston drive and the adjustable flow control valve.
3. The injection molding system according to claim 1, wherein a first pressure sensor adapted to measure the pressure in the first pressure line between the adjustable flow control valve and the changeover valve; or wherein additionally a second pressure sensor is adapted to measure the pressure in the second pressure line between the piston drive and the changeover valve; or wherein a third pressure sensor is adapted to measure the pressure in the third pressure line between the piston drive and the adjustable flow control valve.
4. The injection molding system according to claim 1, wherein the controller is configured to determine a beginning and/or an end of injection phase of a molding cycle based on information of the at least one sensor, and to adjust the flow control valve, in an initial and/or final cycle position.
5. The injection molding system according to the preceding claim 4, wherein the controller is configured to determine the end of the injection phase of the molding cycle if the information from the at least one sensor indicate that the piston is in a position in which a molding nozzle is closed, preferably for a predefined timespan.
6. The injection molding system according to the preceding claim 5, wherein the controller is configured to dynamically adjust the flow control valve in the injection phase, after determining the begin of the injection phase, controlling thereby a position and the speed of the change of the position of the piston and thus the molding nozzle, wherein preferably also information of at least one timer and/or volume quantity information are used to determine the point of time and/or the position of the piston the speed of the dynamical adjustment of the flow control valve.
7. The injection molding system according to the preceding claim 6, wherein the controller is configured to allow an interactive reprogramming of the dynamical adjustment of the flow control valve.
8. The injection molding system according to claim 1, wherein a second flow control valve is located in the second pressure line.
9. The injection molding system according to claim 1, additionally comprising a second actuator system, comprising: a piston drive having at least two pressure line connectors to drive a piston to open or close a molding nozzle; pressure lines connectable to one or more change over valves having a pressure line connector and tank line connector and at least two change over pressure line connectors, wherein the first change over valve pressure line connector is connectable to a first pressure line and the second change over valve pressure line connector is connectable to a second pressure line, wherein the second pressure line is connected to the connector of the piston drive, and wherein the first pressure line is connected to the second connector of the piston drive; at least one electronic sensor for detecting the flow sensing the flow rate in the first and second pressure line; and the controller is connected additionally to the sensor of the second actuator system and allows to control the electronically adjustable flow control valve of the first actuator system based on information of the sensor of the second actuator system.
10. The injection molding system according to claim 1, comprising several first actuator systems, and the sensors and the flow control valves are connected to the controller and the controller, which is configured to control one or more of the flow control valves based on one or more of the information of the sensors.
11. The injection molding system according to the previous claim 9, wherein the several actuator systems are configured to be controlled in a cascade, and wherein the flow control valves of one actuator system is also configured to be controlled by the information of the at least one sensor of a different actuator system and preferably by a timer and/or by a certain amount of fluid measured.
12. The injection molding system according to the previous claim 8, wherein the several actuator systems are configured to be controllable in a cascade.
13. The injection molding system according to claim 1, wherein after receiving information from the at least one sensor, that a threshold has been passed, the adjustable flow control valve is opened or closed to a predefined throttle level/flow level by the controller.
14. The injection molding system according to claim 1, wherein the controller is configured to calculate based on the information of the at least one flow sensor the position of the piston of the piston drive, preferably based on the information of the third flow sensor (P3) over a defined time interval.
15. The injection molding system according to the previous claim 13, wherein a check valve is connected in parallel to the adjustable flow control valve, providing a by-pass, when extending or retracting the piston of the piston drive.
16. The injection molding system according to claim 1, wherein the controller is configured to calculate the viscosity of a pressure fluid in the pressure line based on the information of the at least one flow sensor and to compensate a deviation of the viscosity from a predefined value by adjusting one or more of the flow control valve(s).
17. Method for controlling an actuator of an injection molding system, the actuator having at least one piston drive comprising a piston to open or close a molding nozzle, an electronically adjustable flow control valve connected to the piston drive to throttle a pressure fluid driving the piston drive, at least one electronic sensor for detecting the flow of the pressure fluid, a controller connected to the adjustable flow control valve and to the at least one sensor, comprising the steps of: determining based on information from the sensor, the beginning of an injection molding cycle; and controlling the throttle of the adjustable flow control valve during the injection molding cycle by the controller thereby controlling the position, the speed and the timing of the movement of the piston and thus the molding nozzle.
18. The method according to the previous claim 16, wherein the injection molding system comprises, several actuators and several sensors, and wherein the controller is connected to the several sensors and actuators, and is controlling one or more of the adjustable flow control valve based on one or more of the sensors.
19. The method according to the previous claim 17, wherein the several actuator systems are controlled in a cascade, and wherein the flow control valves of one actuator system is also controlled by the information of the at least one sensor of a different actuator system and preferably by a timer and/or by a certain amount of fluid measured.
20. The method according to claim 16, wherein the controller determines a beginning and/or an end of injection phase of a molding cycle based on information of the at least one sensor, and adjusts the flow control valve to an initial and/or final cycle position.
21. The method according to claim 16, wherein the controller determines the end of the injection phase of the molding cycle if the information from the at least one sensor indicate that the piston is in a position in which a molding nozzle is closed, preferably for a predefined timespan.
22. The method according to claim 16, wherein the controller uses information of the sensors for the detection of the beginning of the molding cycle and/or a timer to control the valve during the injection molding cycle.
23. The method according to claim 16, wherein the controller calculate the viscosity of a pressure fluid in the pressure line based on the information of the a least one flow sensor and compensates a deviation of the viscosity from a predefined value by adjusting one or more of the flow control valve(s).
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
[0053]
[0054] For the exchange of pressurizing medium from the cylinder space 12, the flow control valve 20 can be used to open or close each nozzle with certain speed, level and/or a time delay.
[0055] The at least one piston drive 10 has two connectors CP2, CP3 through which pressure passes to drive the piston to open or close the molding nozzle.
[0056] The changeover valve V has a pressure line connector P and tank line connector T (not shown) and two changeover pressure line connectors CV1 and CV2, wherein the first changeover pressure line connector CV1 is connected to a first pressure line L1 and the second changeover pressure line connector CV2 is connected to a second pressure line L2. The second pressure line L2 is connected to the connector CP2 of the piston drive 10. In a first position, a connection of CV1 with the pressure line P is established and CV2 is connected to the tank line T, wherein after switching of the changeover valve, CV1 is connected to the tank line CV2 is connect to the pressure line P. The adjustable flow control valve 20 has a first pressure line connector and a second pressure line connector. The first pressure line connector of the adjustable flow control valve being connected to the first pressure line L1 to establish a connection to a first pressure line connector CV1 of the changeover valve V. The second pressure line connector is connected to a third pressure line L3 which establishes a connection to the second connector CP3 of the piston drive 10.
[0057] The flow sensors P1, P2, P3 are sensing the flow (amount of fluid passed preferably per time) in the first, second and/or third pressure line L1, L2, L3, usable of controlling an operation of the injection molding system, by the help of the controller C. The controller controls in a possible embodiment only the adjustable flow control valve, prior to a cycle, during a cycle and/or at the end of a cycle on the basis of the information of flow sensors. In other embodiments the controller can also control other components of the machine or receive information from other components of the machine.
[0058] In the injection molding system according to
[0059] In a cascade injection molding system using the injection molding system according to
[0060] Via time-setting elements and/or the flow sensors P3_V1 to P3_V3, the respective delay times for the opening and closing of the nozzles can be set. For example, these delay times and/or flow values may be determined empirically.
[0061] In another example, sensors at the feed orifices in the molding tool can be provided for the determination of the correct time to open the temporally downstream nozzles. Various additional types of sensors are contemplated, such as an optical sensor that operates on an optical basis or a pressure sensor that operates on the basis of pressure or a temperature sensor that operates on the temperature, by the arrival of the flow front being registered in a channel indicated in the mold's lateral ejection part, which is not represented in
[0062] In the embodiment according to
[0063] In the case of pneumatically controlled needle valve nozzles, the effectiveness of the device described with the aid of
[0064] The controller of
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[0068] The present invention has been described in an illustrative manner. It is to be understood that the terminology which has been used is intended to be in the nature of words of description rather than of limitation. Many modifications and variations of the present invention are possible in light of the above teachings. Therefore, the present invention may be practiced other than as specifically described.