Flow control of an injection molding system
An actuator system for an injection molding system includes a double acting pressurized fluid actuator having a piston drive movable in a cylinder space, a flow control valve for regulating a flow rate of pressurized fluid to and/or from the cylinder space, a flow sensor for detecting the flow rate of pressurized fluid to and/or from the cylinder space, and an electronic controller for controlling the flow control valve to regulate the flow rate of pressurized fluid to and/or from the cylinder space depending on the flow rate detected by the flow sensor.
1 . A method for controlling an injection molding system having a first actuator system and a second actuator system configured to be controlled in a cascade, the first actuator system having a first piston drive comprising a first piston to open or close a first molding nozzle, a first electronically adjustable flow control valve connected to the first piston drive to throttle a pressure fluid driving the first piston drive, a first electronic flow sensor for detecting flow of the pressure fluid driving the first piston drive, the second actuator system having a second piston drive comprising a second piston to open or close a second molding nozzle, a second electronically adjustable flow control valve connected to the second piston drive to throttle a pressure fluid driving the second piston drive, a second electronic flow sensor for detecting flow of the pressure fluid driving the second piston, and a controller connected to the first electronically adjustable flow control valve, and the second electronically adjustable flow control valve, comprising steps of:
determining based on information from at least one of the first electronic flow sensor and the second electronic flow sensor, the beginning of an injection molding cycle; and
controlling the throttle of the first electronically 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 first piston drive and thus the first molding nozzle;
wherein the controller is additionally connected to the first electronic flow sensor and to the second electronic flow sensor of the second actuator system, and wherein the first electronically adjustable flow control valve is configured to be controlled by information of the first electronic flow sensor and the second electronic flow sensor.
2 . The method according to claim 1 , wherein the controller determines a beginning and/or an end of injection phase of a molding cycle based on information of the first electronic flow sensor and/or the second electronic flow sensor, and adjusts the first electronically adjustable flow control valve to an initial and/or final cycle position.
3 . The method according to claim 1 , wherein the controller determines the end of the injection phase of the molding cycle if the information from the first electronic flow sensor and/or the second electronic flow sensor indicate that the first piston is in a position in which the first molding nozzle is closed for a predefined timespan.
4 . The method according to claim 1 , wherein the controller uses information of the first electronic flow sensor and/or the second electronic flow sensors for the detection of the beginning of the molding cycle and/or a timer to control the first electronically adjustable flow control valve during the injection molding cycle.
5 . The method according to claim 1 , wherein the controller calculates the viscosity of the pressure fluid driving the first piston drive and/or the viscosity of the pressure fluid driving the second piston drive based on the information of the first electronic flow sensor and/or a second electronic flow sensor and compensates a deviation of the viscosity from a predefined value by adjusting the first electronically adjustable flow control valve and/or the second electronically adjustable flow control valve.