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    • 1. 发明申请
    • THERMOFORMING METHOD FOR THERMOFORMING SHEET AND THERMOFORMING APPARATUS
    • 热成型法和热成型设备的热成型方法
    • US20090039556A1
    • 2009-02-12
    • US11914101
    • 2006-05-10
    • Hidetsugu SawadaSatoshi OhyaKousuke AraiKouichi KudoKeisuke Kudo
    • Hidetsugu SawadaSatoshi OhyaKousuke AraiKouichi KudoKeisuke Kudo
    • B29C51/08B29C51/18
    • B29C51/082B29C51/14B29C51/262B29C51/423B29C2791/006
    • The thermoforming method of the present invention is a method that includes thermoplasticizing a portion, including a part 2 which is molded with molds, of a thermoforming sheet 1 in which at least one or more thermoplastic resin layers (A) and a decorative layer (B) were laminated, at a temperature range of (Tg (A)−30)° C. to (Tg (A)+10)° C. with respect to the glass transition temperature (Tg (A)) of the thermoplastic resin layer (A); subsequently clamping by using a pair of frame clamps 14 and 24 both sides of a perimeter around the portion 2, which is molded with the molds, of the sheet 1; expanding the thermoplasticized portion between one mold and the frame clamps by pressing a portion of the one mold 20 onto one surface of the thermoplasticized portion; subsequently bringing the other mold 10 into contact with the thermoplasticized portion from the side opposite to the surface of the thermoplasticized portion that the one mold is in contact with; and mold-clamping the thermoplasticized portion with the one mold 10 and the other mold 20 to mold the thermoforming sheet. According to the present invention, forming at a low temperature in which the design properties can not be adversely affected can be achieved, and formed articles in which wrinkles or the like are not generated can be obtained.
    • 本发明的热成型方法是将热塑性成形片1的至少一层以上的热塑性树脂层(A)和装饰层(B )相对于热塑性树脂层的玻璃化转变温度(Tg(A))在(Tg(A)-30)℃〜(Tg(A)+ 10)℃的温度范围 (一个); 随后通过使用一对框架夹具14和24围绕片材1的用模具模制的部分2的周边的两侧进行夹紧; 通过将一个模具20的一部分压在热塑化部分的一个表面上,使一个模具和框架夹具之间的热塑化部分膨胀; 随后将另一个模具10从与一个模具接触的热塑化部分的表面相对的一侧与热塑性部分接触; 并用一个模具10和另一个模具20将热塑化部分模压,以模制热成型片材。 根据本发明,可以实现在不能不利地影响设计性能的低温下的成型,并且可以获得不产生皱纹等的成型制品。
    • 2. 发明授权
    • Lactic acid-based polymer laminated product and molded product
    • 乳酸聚合物层压产品和模塑制品
    • US06248430B1
    • 2001-06-19
    • US09371778
    • 1999-08-10
    • Akio ToyodaKousuke Arai
    • Akio ToyodaKousuke Arai
    • B32B700
    • B32B27/08B32B7/12B32B2250/40C08G63/06C08G63/08Y10T428/24942Y10T428/2495Y10T428/31786
    • The present invention provides a lactic acid-based polymer laminated product which is little liable to leakage of lactide during molding or storage of the molded product and can degrade at a raised rate and a molded product made of such a laminated product. Disclosed are a novel lactic acid-based polymer laminated product comprising a degradation accelerator barrier layer (II) made of a lactic acid-based polymer (B) having a lactide content of not more than 0.1% by weight laminated on one or both surfaces of a base layer (I) made of a lactic acid-based polymer (A) comprising a degradation accelerator made of lactide and/or organic acid in an amount of from 0.3 to 7% by weight, wherein the ratio of the barrier layer thickness to the base layer thickness is from 0.02 to 1 based on that of the base layer, and a molded product of the laminated product.
    • 本发明提供了一种乳液型聚合物层压产品,其在模制产品的模塑或储存期间几乎不易于泄漏丙烯酸,并且可以以升高的速率降解,并且由这种层压产品制成的模塑产品。 公开了一种新型的乳酸基聚合物层压产品,其包含由乳酸基聚合物(B)制成的降解促进剂阻隔层(II),丙烯酸含量不超过0.1重量%,层压在一个或两个表面上 由包含由丙交酯和/或有机酸制成的降解促进剂的乳酸类聚合物(A)制成的基础层(I)的量为0.3〜7重量%,其中阻挡层厚度与 基底层的基层厚度为0.02〜1,层叠体的成型品为基材层。
    • 4. 发明授权
    • Apparatus for separating biological sample and separating method of the same
    • 用于分离生物样品的分离方法及其分离方法
    • US07323144B2
    • 2008-01-29
    • US10382901
    • 2003-03-07
    • Kousuke AraiNoriyuki Nomura
    • Kousuke AraiNoriyuki Nomura
    • B01L11/00
    • B01L3/50825B01L3/502B01L3/5021B01L2300/042B01L2300/047B01L2300/049G01N33/491Y10T436/25Y10T436/25125Y10T436/25375
    • A simplified collecting operation of a biological sample is provided, which enables reduction of the examination cost. The invention comprises a biological sample collecting means 2 for receiving a collected biological sample, a filtering means 21 for passing a predetermined component within the collected biological sample therethrough, a separated component containing means 3 capable of being fitted into the biological sample collecting means 2, for receiving the predetermined component that is passed through the filtering means 21, and a reverse-flow preventing means 5 for preventing the predetermined component received in the separated component containing means 3 from flowing backward into the biological sample collecting means 2 through the filtering means 21, wherein once the biological sample is collected in the biological sample collecting means 2 and the separated component containing means 3 is fitted into the biological sample collecting means 2, and after the predetermined component within the biological sample is passed through the filtering means 21, then the reverse-flow preventing means 5 closes a flow path between the separated component containing means 3 and the biological sample collecting means 2 to prevent a reverse flow of the predetermined component, and the predetermined component of the biological sample is separately received in the separated component containing means 3.
    • 提供了生物样品的简化收集操作,能够降低检查成本。 本发明包括用于接收收集的生物样品的生物样品收集装置2,用于使收集的生物样品中的预定组分通过的过滤装置21,能够装配到生物样品收集装置2中的分离的成分容纳装置3, 用于接收通过过滤装置21的预定分量,以及用于防止分离成分容纳装置3中接收的预定分量通过过滤装置21向后流入生物样品采集装置2的反向防止装置5 其中,一旦将生物样品收集在生物样品收集装置2中并且将分离的成分容纳装置3装配到生物样品收集装置2中,并且在生物样品中的预定成分通过过滤装置21之后, 反流防止 装置5关闭分离的成分容纳装置3和生物样品收集装置2之间的流动路径,以防止预定组分的反向流动,并且将生物样品的预定组分分开容纳在分离的组分容纳装置3中。