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    • 81. 发明申请
    • Device for placing and sticking holding elements to support surfaces
    • 用于将保持元件放置和粘贴到支撑表面的装置
    • US20030010441A1
    • 2003-01-16
    • US10169714
    • 2002-07-08
    • Michel BremontYannick LerouxOlivier Schuller
    • B32B031/20
    • B29C66/474B23P19/006B29C65/10B29C65/7847B29C66/8242B29C66/8322B29L2001/002Y10T156/1092
    • The present invention is used for placing and sticking holding elements to support surfaces. The holding elements are provided with connecting surfaces which are coated with a dry hot-melt-type adhesive on the bare side thereof. Said adhesive can be reactivated by means of heat treatment. The inventive device consists of a housing (1) having a receiving component (2) that is displaceably guided therein and is used for the holding element (3) as well as means for quickly heating the hot-melt-type adhesive, lowering the receiving component (2) and pressing the adherent (25) after the adhesive has been melt on. The invention is characterized in that heating is carried out by means of hot air (H) which is supplied passing the housing (1) and in that the receiving component (2) is surrounded by a closed wall (7) that extends from the hot air discharge location in the housing (1) to the holding element (3). The hot air (H) can thus be conveyed to the adhering hot-melt-type adhesive before or while the holding element (3) rests on the support surface (25) and holding elements (3) having a differently embodied adherent (25) consisting of either metal or synthetic material can thus be stuck to the support surface (32).
    • 本发明用于将保持元件放置并粘贴到支撑表面。 保持元件设置有在裸露的侧面上涂覆有干燥热熔型粘合剂的连接表面。 所述粘合剂可以通过热处理再活化。 本发明的装置包括具有容纳部件(2)的壳体(1),其可移动地被引导到其中并用于保持元件(3)以及用于快速加热热熔型粘合剂的装置, 组分(2)和粘合剂(25)熔化后按压粘合剂(25)。 本发明的特征在于,通过供应通过壳体(1)的热空气(H)进行加热,并且接收部件(2)被从热的延伸的封闭壁(7)包围 将壳体(1)中的排气位置移动到保持元件(3)。 因此,在保持元件(3)搁置在支撑表面(25)上的同时,或者在保持元件(3)具有不同的贴图(25)的保持元件(3)的情况下,热空气(H)可以被输送到附着的热熔型粘合剂, 由金属或合成材料组成,因此可以粘附到支撑表面(32)上。
    • 84. 发明申请
    • Contact metathesis polymerization
    • 接触复分解聚合
    • US20020166629A1
    • 2002-11-14
    • US09975761
    • 2001-10-11
    • Lord Corporation
    • Kenneth C. CasterChristopher G. Keck
    • B32B031/20
    • B60C1/00B60C2009/0021C08G61/08C08J5/124C08J5/128C08L65/00C09J5/04C09J165/00C09J2205/306C09J2400/163C09J2400/166C09J2421/006C09J2421/008C09J2465/00
    • A method for bonding a material to a first substrate surface that includes providing a catalyst at the first substrate surface and then contacting that surface with a material that undergoes a metathesis reaction to bond the material to the first substrate surface. There are two embodiments of this methodnulla coating process and an adhesive process. In the coating embodiment, the metathesizable material is contacted with the catalyst on the substrate surface so that it undergoes metathesis polymerization to form the coating. The adhesive process includes (a) providing a catalyst at the first substrate surface, (b) providing a metathesizable material between the first substrate surface and the second substrate surface, and (c) contacting the catalyst on the first substrate surface with the metathesizable material so that the metathesizable material undergoes a metathesis reaction and bonds the first substrate surface to the second substrate surface.
    • 一种用于将材料粘合到第一衬底表面的方法,包括在第一衬底表面处提供催化剂,然后使该表面与经历复分解反应的材料接触以将材料粘合到第一衬底表面。 该方法有两个实施方案 - 涂覆方法和粘合方法。 在涂布实施例中,可复分解材料与衬底表面上的催化剂接触,使得其进行易位聚合以形成涂层。 粘合方法包括(a)在第一基材表面提供催化剂,(b)在第一基材表面和第二基材表面之间提供可复分解材料,和(c)使第一基材表面上的催化剂与可复分解材料 使得可复分解材料经历复分解反应并将第一基材表面结合到第二基材表面。
    • 86. 发明申请
    • Multiple density interior trim substrate and method and system for making same
    • 多密度内饰衬板及其制造方法和系统
    • US20020121721A1
    • 2002-09-05
    • US10100678
    • 2002-03-18
    • Lear Corporation
    • George B. BymaBrian A. CristeaRichard Muhlbacher
    • B29C035/02B32B031/20
    • B60R21/0428B29C44/0461B29K2105/048B29K2995/0064B29K2995/0091
    • The present invention involves a method and system for manufacturing a multiple density substrate for impact energy absorption with a mold having a mold cavity of a predetermined shape. The multiple density substrate is integrally formed by the method comprising providing a first set of unbonded pre-expanded beads having a first density and a second set of unbonded pre-expanded beads having a second density, loading a portion of the mold with the first set of unbonded beads at a predetermined location in the mold sufficiently to leave a void in the mold, and separately injecting the loaded mold portion with a sufficient second set of unbonded beads into the void. The method further includes bonding the first and second sets of beads together with heat to define a molded set of bonded beads having the predetermined shape and cooling the molded set of bonded beads sufficiently to define the multiple density substrate.
    • 本发明涉及用具有预定形状的模腔的模具制造用于冲击能量吸收的多密度衬底的方法和系统。 多密度基底通过包括提供具有第一密度的第一组未结合预发泡珠粒和具有第二密度的第二组未结合预发泡珠粒的方法整体形成,将模具的一部分与第一组 的未结合的珠在模具中的预定位置充分地在模具中留下空隙,并且将装载的模具部分分别注入到足够的第二组未粘合的珠子到空隙中。 该方法还包括用热量将第一组和第二组珠结合起来,以限定具有预定形状的模制的一组接合的珠粒,并充分地冷却模制的一组接合珠以限定多个密度的基底。
    • 90. 发明申请
    • METHOD FOR FORMING FIBER-REINFORCED COMPOSITE MEMBER
    • 形成纤维增强复合材料的方法
    • US20010040317A1
    • 2001-11-15
    • US08968616
    • 1997-11-13
    • KOJI SHIRAISHIMAKOTO NASU
    • B29C070/06B29C043/12B32B031/20
    • B29C43/18B29C43/12B29C70/342B29C70/46B29K2105/0809
    • A fiber-reinforced composite member having at least one projection is formed by (a) disposing a preform 1 made of a fiber-reinforced composite material on a forming plate 4; (b) placing a shape-retention means 2 composed of a plurality of soft unit members 21, 22 adjacent to each projection 12 of the preform 1; (c) completely covering the preform 1 and the shape-retention means 2 with a bagging film 5 having a sealant 6 attached to a periphery thereof; (d) adhering the sealant 6 to the forming plate 4 such that the preform 1 and the shape-retention means 2 are completely sealed by the bagging film 5; (e) evacuating the inside of the bagging film 5; and (f) heating the preform 1 under pressure to form a fiber-reinforced composite member.
    • 通过(a)在成形板4上设置由纤维增强复合材料制成的预成型体1,形成具有至少一个突起的纤维增强复合构件; (b)放置由与预型件1的每个突起12相邻的多个软单元构件21,22组成的形状保持装置2; (c)用具有附着在其周边上的密封剂6的装袋膜5完全覆盖预型件1和形状保持装置2; (d)将密封剂6粘合到成形板4上,使得预成型体1和形状保持机构2被装袋膜5完全密封; (e)抽真空包装膜5的内部; 和(f)在加压下加热预成型体1以形成纤维增强复合构件。