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    • 26. 发明授权
    • Method and apparatus for setting injection pressure of injection molding
machine
    • 注塑机注塑压力设定方法及装置
    • US4968462A
    • 1990-11-06
    • US261831
    • 1988-09-29
    • Hitoshi Hara
    • Hitoshi Hara
    • B29C45/50B29C45/57B29C45/77
    • B29C45/77
    • In a pressure setting method which is for use in an injection molding machine including a mold or a die, an injection section, and a control section and which is for setting and controlling a sequence of pressures for a sequence of steps from the start of injection of a resin to the die through a filling step to a holding step, pressure setting is carried out by sequentially setting the sequence of pressures described above in accordance with a time - injection pressure characteristic curve determined under the condition that a volume of the resin inside the die is substantially constant during the holding step and by locally modifying the holding step in the characteristic curve in correspondence with a molded product to be molded. The characteristic curve exhibits an exponential curve during the holding step while local modification is carried out pulsewise so that the characteristic curve becomes discontinuous. To this end, the pressure values can be set in correspondence with a shape and a thickness of the molded product. In order to obtain such pressure values, the control section comprises a function generator to which parameters for each step are supplied. The function generator is connected to a signal generator for supplying pulses.
    • 28. 发明授权
    • Injection nozzle for an injection molding machine
    • 注塑机喷嘴
    • US4875845A
    • 1989-10-24
    • US298609
    • 1988-11-28
    • Hitoshi HaraHiroyoshi Sumen
    • Hitoshi HaraHiroyoshi Sumen
    • B29C45/20B29C45/74B29C45/78
    • B29C45/20B29C45/74
    • An injection nozzle for an injection molding machine having a heating device for heating its injection nozzle body (3) protruding from the front end of the heating cylinder (1) thereof. The heating device is composed of a plurality of heating members (7, 10) longitudinally arranged side by side. The temperatures of the different nozzle body sections heated by the respective heating members are individually detected (9, 11), the heating members (7, 10) being individually controlled in accordance with the temperatures thus detected. The construction enables the different nozzle body sections to be individually set to a desired, optimum temperature. The nozzle front end section 3b, for example, which is in contact with a metallic mold and whose temperature is consequently apt to be lowered can be kept high, and the nozzle middle-rear section 3a, which is near the heating cylinder and whose temperature is consequently apt to be raised, can be kept low. The construction has the effect of preventing the stringing or drooling of resin, which is apt to occur in an injection nozzle which utilizes a single nozzle heating device. It also has the effect of preventing resin burning, reducing the pressure loss of resin passing through the nozzle front end section and so on.
    • 29. 发明授权
    • Component measurement apparatus with variable focusing and satble light source output
    • 具有可变聚焦和饱和光源输出的分量测量装置
    • US08605266B2
    • 2013-12-10
    • US13041097
    • 2011-03-04
    • Shin-ichiro TezukaHitoshi Hara
    • Shin-ichiro TezukaHitoshi Hara
    • G01N33/48G02B7/04
    • G01N21/4795A61B5/14532A61B5/1455A61B2562/0242G01N21/359G01N2201/0612
    • A component measurement apparatus includes a confocal optical system including a laser emitting laser light, a collimating lens collimating the laser light emitted from the laser, an objective lens condensing the collimated light having exited the collimating lens in order to illuminate internal tissue of an object of measurement, a half mirror redirecting reflected light reflected by the internal tissue of the object of measurement and refracted by the objective lens, a pin hole through which the reflected light redirected by the half mirror passes, and a light-receiving element receiving the reflected light having passed through the pin hole. The component measurement apparatus also includes a data analyzer section measuring a component of the object of measurement in accordance with data output from the light-receiving element. In the component measurement the apparatus, a focal position of the objective lens is adjustable along an optical axis.
    • 分量测量装置包括共焦光学系统,其包括激光发射激光,准直透镜,准直激光从激光发射的激光;物镜,会聚已退出准直透镜的准直光,以照亮物体的内部组织 测量半反射镜重定向由被测物体的内部组织反射并被物镜折射的反射光,由半反射镜重定向的反射光穿过的针孔通过;以及接收反射光的光接收元件 已经穿过针孔。 部件测量装置还包括根据从光接收元件输出的数据测量测量对象的分量的数据分析器部分。 在该装置的部件测量中,物镜的焦点位置可沿光轴调节。
    • 30. 发明授权
    • Granule mass
    • 颗粒物质
    • US08486303B2
    • 2013-07-16
    • US11589904
    • 2006-10-31
    • Kenji KimuraHitoshi HaraYoshiyuki Endo
    • Kenji KimuraHitoshi HaraYoshiyuki Endo
    • C09K15/00C08K5/51C08K5/00B29C33/60C08G65/00C08G59/40
    • C08K5/1345C08K5/372
    • An object of the present invention is to provide a granule mass containing an antioxidant as a main component, which is excellent in flowability, produces little dust from an additive, and can be prepared by a simple facility when an additive such as an antioxidant is added to a plastic such as polyolefin, and affords a plastic having thermal stability which is hardly ununiformized, and a process for producing the same. There is provided a granule mass comprising a granule containing a phenol-based antioxidant represented by the following formula (1) and a sulfur-based antioxidant represented by the following formula (2), wherein a content of the sulfur-based antioxidant (2) relative to a total of 100 parts by weight of phenol-based antioxidant (1) and the sulfur-based antioxidant (2) is 3 to 70 parts by weight.
    • 本发明的目的是提供一种以抗氧化剂为主要成分的颗粒状物质,其流动性优异,添加剂几乎不产生粉尘,并且当添加抗氧化剂等添加剂时,可以通过简单的设备制备 涉及塑料如聚烯烃,并且提供几乎不均匀的热稳定性的塑料及其制造方法。 提供一种颗粒剂,其包含含有由下式(1)表示的酚类抗氧化剂的颗粒和由下式(2)表示的硫类抗氧化剂,其中硫类抗氧化剂(2)的含量 相对于总计100重量份的苯酚系抗氧化剂(1)和硫系抗氧化剂(2)为3〜70重量份。