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    • 13. 发明授权
    • Olefin polymerization catalyst system
    • 烯烃聚合催化剂体系
    • US6063725A
    • 2000-05-16
    • US743374
    • 1996-11-04
    • Tadahiro SunagaYukio IshiiTadashi Asanuma
    • Tadahiro SunagaYukio IshiiTadashi Asanuma
    • C08F4/02C08F4/602C08F4/642C08F4/659C08F4/6592C08F10/00C08F110/06B01J31/00
    • C08F10/00C08F110/06C08F4/65912C08F4/65916C08F4/65922
    • An olefin polymerization catalyst system comprising an organic transition metal compound and a support, wherein an organic transition metal compound is soluble in an inert organic solvent and a support which is insoluble in the inert organic solvent, and the support comprises an organic high molecular weight compound which contains a specific carbonyl-containing group. The catalyst system can polymerize an olefin in a high activity, provides polymer with high stereoregularity, prevents adhesion or fouling of the polymer generated in the course of polymerization or an organic aluminum oxy compound on the inner wall of the reactor, leads to high bulk density of the polymer and very reduced level of fisheye and/or gel generation on the processed item, can maintain high productivity, can manufacture high quality product, and thus provides extremely high contribution in industry.
    • 一种包含有机过渡金属化合物和载体的烯烃聚合催化剂体系,其中有机过渡金属化合物可溶于惰性有机溶剂和不溶于惰性有机溶剂的载体,载体包含有机高分子量化合物 其含有特定的含羰基。 催化剂体系可以以高活性聚合烯烃,提供具有高立构规整性的聚合物,防止在聚合过程中产生的聚合物的粘附或结垢或反应器内壁上的有机铝氧化合物导致高堆积密度 的聚合物,并且处理物品上的鱼眼和/或凝胶生成水平非常降低,可以保持高生产率,可以制造高品质的产品,从而在工业中提供极高的贡献。
    • 14. 发明授权
    • Method for controlling an ejector and injection molding machine
    • 喷射器和注射成型机的控制方法
    • US5599486A
    • 1997-02-04
    • US399584
    • 1995-03-07
    • Atsushi FujishiroYukio IshiiHitoshi Hara
    • Atsushi FujishiroYukio IshiiHitoshi Hara
    • B29C45/40B29C45/76
    • B29C45/4005B29C45/7626
    • A method for ejecting a molded product from a die. The method includes advancing an ejector pin from a withdrawn position to a projected position for ejecting a molded product and withdrawing the ejector pin from the projected position to the withdrawn position. At a preset range in at least one of the advancing step and the withdrawing step, the ejector pin undergoes very small reciprocating movements having a period less than 0.1 seconds. When the ejector pin is advanced while very small reciprocation is performed over a preset range in the advancing step, energy due to the projection of the ejector pin is continuously and gradually dissipated. When the ejector pin is withdrawn while very small reciprocation is performed over a preset range in the withdrawing step, the molded product is easily separated from the ejector pin. Accordingly, scattering of molded products and generation of cracks in the molded products can be prevented. Also, the molded product is prevented from being placed back into the cavity. Further, a dwell step may be provided in which the ejector pin is maintained at its projected position while being subjected to very small reciprocation having a period shorter than 0.1 seconds.
    • 一种从模具中喷射成型品的方法。 该方法包括将推出销从撤回位置推进到用于弹出模制产品的突出位置,并将顶针从突出位置撤回到撤回位置。 在前进步骤和退出步骤中的至少一个中的预设范围内,顶针经历非常小的往复运动,其周期小于0.1秒。 当在前进步骤中在预定范围内执行非常小的往复运动时,顶推销前进,由于顶针的投影引起的能量不断地逐渐消散。 当在退避步骤中在预设范围内进行非常小的往复运动时,顶出销被拉出,模制产品容易与顶针分离。 因此,可以防止模制品的散射和模制产品中的裂纹的产生。 此外,防止模制产品被放回到空腔中。 此外,可以提供停留步骤,其中顶针保持在其突出位置,同时经受小于0.1秒的非常小的往复运动。