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THE DEVELOPMENT OF A PNEUMATIC STEPPING MOTOR CONCEPT FOR VALVE BASED FLOW CONTROL DURING INJECTION MOLDING

机译:注塑成型过程中基于阀门流量控制的气动步进电机概念的开发

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To develop the control over mold filling during polymer melt manipulation, an alternative way of driving rotary plug valves, which were placed on mold runners, was investigated in this study. During the present investigation, the pneumatic stepping motor concept was explored by designing, fabricating, and testing a specific motor for a target injection molding base application. In order to improve the actuator performance, which is used to drive the valves, a stepping motor driven by a sequence of digital solenoid valves utilizing pressurized air was designed to enhance torque capacity and reduce energy consumption, while maintaining a fixed position for a long period of time. Similar to electromagnetic stepping motors, this pneumatic stepping motor can be driven by a simple switching circuit, which only moves one step for each driving signal without a fading rotation. This mechanism yields an effective system for speed and position control. Although the speed of pressurized air switching is limited by the response time of air solenoid valves that cause a lower rotation output speed, the holding torque and efficiency of this actuator was found to be relatively higher. By using a set of circular pistons aligned so as to actuate on axial wobble gear, the motor produced a very unique motion between the gear and rotor, causing the beneficial characteristics. In this study, the performance of the new motor was tested and compared to a similar size of electromagnetic stepping motor, as well. Thus, this study provides fundamental concepts to develop a suitable actuator for control valves in injection molding at low cost.
机译:为了在聚合物熔体操作期间开发对模具填充的控制,在本研究中研究了将旋转塞阀置于模具跑道上的替代方式。在本研究期间,通过设计,制造和测试针对目标注塑基础应用的特定电动机来探索气动步进电机概念。为了改善用于驱动阀门的致动器性能,设计了由加压空气的数字电磁阀序列驱动的步进电机,以增强扭矩容量并降低能量消耗,同时保持长时间的固定位置时间。类似于电磁步进电动机,该气动步进电机可以由简单的开关电路驱动,该电路仅驱动,该电路仅在没有衰落的旋转的情况下移动一个步骤。该机制产生有效的速度和位置控制系统。尽管加压空气切换的速度受引起较低旋转输出速度的空气电磁阀的响应时间限制,但是发现该致动器的保持扭矩和效率相对较高。通过使用一组圆形活塞,以便在轴向摆动齿轮上致动,电动机在齿轮和转子之间产生非常独特的运动,从而引起有益的特性。在这项研究中,测试了新电机的性能,并与相似的电磁步进电机相比。因此,本研究提供了基本概念,以便以低成本开发用于注射成型中的控制阀的合适致动器。

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