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    • 8. 发明授权
    • Injection apparatus
    • 注射装置
    • US06345976B1
    • 2002-02-12
    • US09482210
    • 2000-01-12
    • Kazutoshi TakayamaToshiyasu KodaYoshitoshi YamagiwaYasuhiko TakeuchiYuji HayashiMamoru Miyagawa
    • Kazutoshi TakayamaToshiyasu KodaYoshitoshi YamagiwaYasuhiko TakeuchiYuji HayashiMamoru Miyagawa
    • B29C4548
    • B29C45/50B29C2045/5004
    • There is provided an injection apparatus comprised of a heating cylinder which is closed by a front end member having a nozzle. The apparatus is further comprised of a plasticating screw in the heating cylinder in a freely rotating and reciprocating manner, and a plunger connected to the front end of the screw. The plunger has a conical front end in which flow channels are formed. The front end member has a measuring chamber formed therein at an internal central location thereof. The measuring chamber has a predetermined length and an internal diameter which is reduced by 8 to 15% with respect to an internal diameter of the heating cylinder. The diameter of the injection plunger is set almost equal to the diameter of the measuring chamber, whereby the injection plunger is inserted into the measuring chamber in a freely reciprocating manner. A gap is formed on the external peripheral surface of the plunger due to the difference between the heating cylinder internal diameter and the plunger diameter, and the gap functions as a plastication-accelerating block. The block is formed so as to have a distance longer than an injection stroke, whereby uniform plastication is achieved and uneven temperature in the material is eliminated. Further, the plunger advance blocks the gap, which leads to uniform density and precise measurement of the material.
    • 提供了一种由具有喷嘴的前端构件封闭的加热缸构成的注射装置。 该装置还包括一个自由旋转和往复运动的加热缸中的塑化螺杆,以及连接到螺杆前端的柱塞。 柱塞具有形成流动通道的锥形前端。 前端构件在其中央位置处形成有测量室。 测量室具有预定长度和相对于加热缸内径减小8至15%的内径。 注射柱塞的直径设定为几乎等于测量室的直径,由此注射柱塞以自由往复的方式插入到测量室中。 由于加热缸内径和柱塞直径之间的差异,在柱塞的外周面上形成间隙,并且该间隙用作塑化加速块。 该块形成为具有比注入冲程更长的距离,从而实现均匀的塑化,并且消除了材料中不均匀的温度。 此外,柱塞前进阻挡间隙,这导致均匀的密度和材料的精确测量。
    • 9. 发明授权
    • Injection molding control method
    • 注塑成型控制方法
    • US08060240B2
    • 2011-11-15
    • US11975282
    • 2007-10-18
    • Yoshitoshi YamagiwaTakayoshi ShioiriEiki Iwashita
    • Yoshitoshi YamagiwaTakayoshi ShioiriEiki Iwashita
    • B29C45/76
    • B29B17/00B29C45/76B29C45/7613B29C2945/76979Y02W30/62
    • A method for controlling injection molding using a neural network in a control device of an injection molding machine. A measurement monitor value is acquired in a measurement step during test injection molding and an injection monitor value is acquired in an injection step. The acquired measurement monitor value is designated as an input term and the injection monitor value is designated as an output term. A prediction function that incorporates the measurement monitor value is then determined using the neural network. A first value corresponding to the injection monitor value is predicted by substituting into the prediction function a measurement monitor value acquired at completion of a measurement step during mass-production injection molding. On the basis of the predicted first value, a second value corresponding to an injection condition is determined. Injection control and pressure maintenance control are then implemented on the basis of the second value corresponding to the injection condition.
    • 一种在注射成型机的控制装置中使用神经网络控制注射成型的方法。 在测试注射成型期间的测量步骤中获取测量监视值,并且在注射步骤中获取注射监测值。 获取的测量监视值被指定为输入项,并且将注入监视值指定为输出项。 然后使用神经网络确定并入测量监视值的预测函数。 通过将大量生产注射成型中的测量步骤的完成时获取的测量监视值代入预测函数,来预测与注入监视值对应的第一值。 基于预测的第一值,确定与喷射条件对应的第二值。 然后根据对应于喷射条件的第二值来实施喷射控制和压力维持控制。