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    • 3. 发明申请
    • Method and apparatus for forming apertures in foamed polystyrene and other foamed plastic panels
    • 用于在泡沫聚苯乙烯和其它发泡塑料板中形成孔的方法和装置
    • US20040104504A1
    • 2004-06-03
    • US10307855
    • 2002-12-02
    • Leonid G. Bravinski
    • B29C067/20
    • B29C44/56E04B2/8647
    • An apparatus is adapted to form a plurality of apertures in a panel made from a meltable foamed plastic material. The apparatus has a movable panel support device for supporting said panel and a heating array. The heating array has a plurality of heating elements mounted to a support frame. The heating array is disposed opposite to the panel support device. Each of the heating elements is adapted to emit sufficient heat to melt the foamed plastic material when a panel is positioned proximate the heating elements. A driving mechanism is provided for moving the panel support device toward and away from said plurality of heating elements. The panel supporting device moves a panel supported thereon, towards and away from the plurality of heating elements and during them movement melts a plurality of apertures in the panel.
    • 一种装置适于在由可熔融泡沫塑料材料制成的面板中形成多个孔。 该装置具有用于支撑所述面板和加热阵列的可移动面板支撑装置。 加热阵列具有安装到支撑框架上的多个加热元件。 加热阵列设置成与面板支撑装置相对。 当面板靠近加热元件定位时,每个加热元件适于发出足够的热量来熔化泡沫塑料材料。 提供驱动机构用于朝向和远离所述多个加热元件移动面板支撑装置。 面板支撑装置使支撑在其上的面板朝向和远离多个加热元件移动,并且在它们移动期间熔化面板中的多个孔。
    • 8. 发明申请
    • Porous resin stamp and a producing method thereof
    • 多孔树脂印模及其制造方法
    • US20020066980A1
    • 2002-06-06
    • US09764980
    • 2001-01-16
    • Shigeru KitaharaYasuo NagasawaYuji TanakaYoshistomo Tanaka
    • B29C067/20
    • B41K1/50B29C44/56
    • The present invention aims to provide a porous resin stamp, which can repeatedly seal without supplying ink for a long period of time by beforehand soaking ink therein, and a producing method thereof. The present invention is characterized in the producing method of porous resin stamp, wherein an original that can selectively pass light through is put together with a porous resin body combined with at least phathalocyanine pigments as heating material which generate heat by light irradiated from a light source; the light is irradiated from the original side toward the surface of porous resin body; and an ink exuding portion is formed by melting a surface layer of the porous resin body with heat of the heating material generated by the light passed through the original.
    • 本发明的目的在于提供一种多孔树脂印模及其制造方法,该多孔树脂印版可以反复密封,而不用长时间地供给油墨。 本发明的特征在于多孔树脂印模的制造方法,其中可以选择性地通过光的原件与多孔树脂体合并在一起,多孔树脂体与至少与酞菁颜料组合,作为通过从光源照射的光产生热的加热材料 ; 光从原始侧向多孔树脂体的表面照射; 并且通过由穿过原稿的光产生的加热材料的热量使多孔树脂体的表面层熔融而形成油墨渗出部分。
    • 10. 发明申请
    • Insulated stock material and containers and methods of making the same
    • 绝缘材料和容器及其制作方法
    • US20020030296A1
    • 2002-03-14
    • US09975981
    • 2001-10-15
    • Daniel James GeddesMichael Andrew BreiningMichael Schmelzer
    • B29C067/20B32B005/20
    • B65D3/14B65D3/22B65D81/3874Y10S220/902Y10S220/903Y10S428/913Y10T428/1303Y10T428/1352Y10T428/1376Y10T428/24504Y10T428/24802Y10T428/249953Y10T428/249987Y10T428/249991Y10T428/31993
    • An insulating container comprising a container body having at least one side wall and a bottom wall with the side wall including a base layer, an insulating layer on at least a portion of the base layer and a printed pattern, mineral oil application or combination thereof on at least a portion of the surface of the insulating layer is disclosed wherein a thickness of the insulating layer is controlled by the printed pattern and/or mineral oil on the selected portion of the insulating layer. Similarly, stock material incorporating the present invention includes a base layer, an insulating layer formed on at least a portion of the base layer and a printed pattern printed on and or mineral oil applied to the insulating layer is disclosed wherein the thickness of the insulating layer is again controlled by the printed pattern and/or mineral oil on the portion of the insulating layer. The container may be formed of pre-manufactured stock material, by unexpanded stock material or by forming a container body from a paper or paperboard material including a bottom wall and at least one side wall, coating at least the side wall portion of the container body with a thermoplastic synthetic resin film and subsequently printing a pattern on the surface of the thermoplastic synthetic resin film. Once formed, the container is heated at a predetermined temperature for a predetermined time period sufficient to form a heat-insulating layer on the outer surface of the container by expanding the thermoplastic synthetic resin film. The expansion of the thermoplastic synthetic resin is controlled by a thickness of the printed pattern placed thereon, the mineral oil coating or a combination thereof.
    • 一种绝缘容器,包括容器主体,其具有至少一个侧壁和底壁,侧壁包括基底层,基底层的至少一部分上的绝缘层和印刷图案,矿物油应用或其组合 公开了绝缘层表面的至少一部分,其中绝缘层的厚度由绝缘层选定部分上的印刷图案和/或矿物油控制。 类似地,结合本发明的原材料包括基底层,形成在基底层的至少一部分上的绝缘层和印刷在其上的印刷图案或施加到绝缘层上的矿物油,其中绝缘层的厚度 再次由绝缘层部分上的印刷图案和/或矿物油控制。 容器可以由预先制造的原料,未膨胀的原料或由包括底壁和至少一个侧壁的纸或纸板材料形成容器主体,至少涂覆容器主体的侧壁部分 然后在热塑性合成树脂膜的表面上印刷图案。 一旦形成,将容器在预定温度下加热预定时间,足以通过膨胀热塑性合成树脂膜在容器的外表面上形成绝热层。 热塑性合成树脂的膨胀由其上放置的印刷图案的厚度,矿物油涂层或其组合来控制。