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    • 1. 发明申请
    • CULTURING METHOD OF MESENCHYMAL STEM CELL
    • 细胞干细胞的培养方法
    • US20110076770A1
    • 2011-03-31
    • US12892223
    • 2010-09-28
    • Yuhiro SAKAIKatsuyuki YamanakaMika TakedaTomohisa OkuraKoichiro Tsuji
    • Yuhiro SAKAIKatsuyuki YamanakaMika TakedaTomohisa OkuraKoichiro Tsuji
    • C12N5/077
    • C12N5/0663C12N2500/50
    • To efficiently select and proliferate the mesenchymal stem cells without necessity of an exclusive separating device and a complicated separating operation, mesenchymal stem cells are cultured by seeding at least one of a bone marrow solution, an umbilical cord blood, a peripheral blood, a synovial membrane and an amniotic membrane in a liquid culture medium which is filled in a vessel, includes water as its main components and having a specific gravity between 1.06 and 1.10 g/ml at 37° C., and making a culture at a temperature 37±2° C. on a ceiling side surface of the vessel, preferably the specific gravity being regulated by use of at least one selected from silica fine powder coated by polyvinyl pyrrolidone, a water soluble copolymer of sucrose and epichlorohydrin, and a water soluble compound including a triiodo aromatic ring.
    • 为了有效地选择和增殖间充质干细胞而不需要专门的分离装置和复杂的分离操作,通过种植骨髓溶液,脐带血,外周血,滑膜中的至少一种来培养间充质干细胞 在装在容器中的液体培养基中的羊膜包含水作为主要成分,在37℃下比重为1.06〜1.10g / ml,培养温度为37±2℃ ℃,优选通过使用选自由聚乙烯吡咯烷酮涂覆的二氧化硅细粉末,蔗糖和表氯醇的水溶性共聚物和水溶性化合物中选择的至少一种来调节比重,所述水溶性化合物包括 三碘芳环。
    • 2. 发明授权
    • Nozzle hole sealing device for injection nozzle
    • 注嘴喷嘴孔密封装置
    • US5505606A
    • 1996-04-09
    • US190120
    • 1994-02-03
    • Susumu ItoKatsuyuki YamanakaAkira KouketsuKazunari Ijima
    • Susumu ItoKatsuyuki YamanakaAkira KouketsuKazunari Ijima
    • B29C45/17B29C45/23B29C45/26B29C45/00
    • B29C45/1755B29C45/232
    • A nozzle hole sealing device for an injection nozzle capable of blocking a hole at the tip of a nozzle by using a robot in purging an injection molding machine. The nozzle hole sealing device includes a tool changer for connecting the nozzle hole sealing device to a wrist of the robot and a nozzle sealing body for sealing a nozzle hole by contacting the nozzle tip of the injection molding machine, thereby composing a nozzle sealing robot tool as a whole. A chuck mechanism for keeping a nozzle tip in contact with the nozzle sealing body, a heat reserving heater for a nozzle tip contact portion, and a resin passage ranging from the nozzle tip contact portion to a purged resin discharge surface including a constant pressure open value disposed in the middle of the passage may be further included.
    • PCT No.PCT / JP93 / 00757 Sec。 371日期:1994年2月3日 102(e)日期1994年2月3日PCT提交1993年6月4日PCT公布。 公开号WO93 / 25369 日本特愿1993年12月23日。一种用于注射喷嘴的喷嘴孔密封装置,其能够通过使用机器人在吹扫注射成型机中阻塞喷嘴尖端的孔。 喷嘴孔密封装置包括用于将喷嘴孔密封装置连接到机器人手腕的工具更换器和用于通过与注塑机的喷嘴头接触来密封喷嘴孔的喷嘴密封体,从而组成喷嘴密封机器人工具 作为一个整体。 用于保持喷嘴头与喷嘴密封体接触的卡盘机构,用于喷嘴头接触部分的储热加热器和从喷嘴头接触部分到包括恒压开启值的清洗树脂排出表面的树脂通道 可以进一步包括设置在通道的中间。
    • 4. 发明申请
    • Injection device for injection molding machine
    • 注塑机注塑装置
    • US20060073228A1
    • 2006-04-06
    • US11242081
    • 2005-10-04
    • Katsuyuki YamanakaKoichi NishimuraKoji ShimaSatoshi Yano
    • Katsuyuki YamanakaKoichi NishimuraKoji ShimaSatoshi Yano
    • B29C47/96
    • B29C45/5008B29C2045/5032
    • A driven pulley is attached via a bearing to a first housing that can move in the axial direction of injection. This driven pulley is connected to a rotation transmitting member by a spline coupling. An injection screw is fastened to this rotation transmitting member. Furthermore, this rotation transmitting member is attached to a second housing via a bearing so as to move in the axial direction. The first housing and second housing are respectively fastened to the outer ring part and inner 0ring part of a load detection device. Since the first and second housings are capable of relative movement in the axial direction of an injection shaft, no pre-load is generated in the load detection device. Movement of the driven pulley caused by the tension of the mounted belt is checked by a bearing. No frictional force is generated in the spline coupling part. Accordingly, the resin pressure that is applied to the injection screw can be accurately measured by the load detection device.
    • 从动皮带轮通过轴承安装到能够沿着注射轴向移动的第一壳体。 该从动皮带轮通过花键联轴器与旋转传递部件连接。 注射螺钉紧固在该旋转传递部件上。 此外,该旋转传递构件经由轴承被附接到第二壳体,以沿轴向方向移动。 第一壳体和第二壳体分别固定在负载检测装置的外圈部分和内部零部件上。 由于第一壳体和第二壳体能够在注射轴的轴向方向上相对运动,因此在负载检测装置中不产生预加载。 由安装带的张力引起的从动皮带轮的移动由轴承检查。 在花键联接部中不产生摩擦力。 因此,能够通过负载检测装置精确地测量施加到注射螺杆的树脂压力。
    • 6. 发明申请
    • Extracting device of molded article
    • 成型品的提取装置
    • US20050276877A1
    • 2005-12-15
    • US11145956
    • 2005-06-07
    • Ryo NiheiKatsuyuki YamanakaSatoshi KinoshitaMitsuhiro Yasumura
    • Ryo NiheiKatsuyuki YamanakaSatoshi KinoshitaMitsuhiro Yasumura
    • B29C33/44B25J9/04B25J9/06B29C37/00B29C45/42B29C45/76
    • B29C45/42B25J9/042B25J9/06B29C37/0007
    • An extracting device capable of extracting a molded article to both of a front side and a back side of a molding machine. The extracting device is loaded on an upper side of the molding machine. The extracting device includes a plurality of arms configured to rotate about vertical axes and a vertical motion arm mounted to the end of the arms. The vertical motion arm has a gripper at its front end for gripping the molded article. The molded article may be extracted to the back side of the machine by moving the end of the arms rotatable about the vertical axes to the back side. Also, the molded article may be extracted to the front side of the machine by moving the end of the arms to the front side. Even when the molded article is extracted to the front side of the molding machine, the extracting device cannot disturb the work of the operator and the safety of the operator may be ensured. In setting a molding condition, for example, the work of the operator may be simplified by extracting the molded article to the front side.
    • 一种提取装置,其能够将模塑制品提取到成型机的前侧和后侧。 提取装置装载在成型机的上侧。 提取装置包括被配置为围绕垂直轴线旋转的多个臂和安装到臂的端部的垂直运动臂。 垂直运动臂在其前端具有夹持器,用于夹紧模制品。 通过将可绕垂直轴线旋转的臂的端部移动到背面,模制品可以被提取到机器的后侧。 此外,通过将臂的端部移动到前侧,模制品可以被抽出到机器的前侧。 即使当模制品被提取到成型机的前侧时,提取装置也不会妨碍操作者的工作,并且可以确保操作者的安全。 在设定成型条件时,例如,可以通过将模制品提取到前侧来简化操作者的工作。
    • 9. 发明授权
    • Core push-out apparatus
    • 核心推出装置
    • US5445511A
    • 1995-08-29
    • US196119
    • 1994-02-16
    • Susumu ItoKatsuyuki YamanakaAkira KouketsuKazunari Ijima
    • Susumu ItoKatsuyuki YamanakaAkira KouketsuKazunari Ijima
    • B29C33/30B29C33/76B29C45/17B29C45/26B29C45/36
    • B29C45/1756B29C33/306B29C45/2675
    • This apparatus, preferably applicable to a molding machine using the core change type dies, is capable of pushing out the inserted core from the mother mold, thereby facilitating the core extracting operation by the robots. A mother mold of a complementary die in the core change type dies is constituted by a main body and an intermediate plate which is disposed behind the main body and to be movable in both the forward and backward directions. A core fixing and releasing mechanism is provided on the intermediate plate. Furthermore, there is provided a push-out device disposed in a clearance formed between the main body and the intermediate plate when the intermediate plate is shifted rearward. The push-out device has its one surface abutting on a front surface of a core and its another surface abutting on a rear surface of the main body. The push-out device is attached to a distal end of an arm of a robot, combined with a molding machine, so that the push-out device is slidable in both the forward and backward directions and is urged rearward, if necessary.
    • PCT No.PCT / JP93 / 00775 Sec。 371日期:1994年2月16日 102(e)日期1994年2月16日PCT提交1993年6月10日PCT公布。 公开号WO93 / 25363 日期为1993年12月23日。该装置优选适用于使用芯型型模的成形机,能够从母模推出插入的芯,从而便于机器人进行芯抽取操作。 芯型模具中的互补模具的母模由主体和中间板构成,该主体和中间板设置在主体后面并且能够沿前后两个方向移动。 在中间板上设置有芯固定和释放机构。 此外,当中间板向后移动时,设置有形成在主体和中间板之间的间隙中的推出装置。 推出装置的一个表面邻接在芯的前表面上,并且其另一表面邻接在主体的后表面上。 推出装置连接到机器人的臂的远端,与成型机组合,使得推出装置可以在前后方向上滑动,并且如果需要则向后推动。