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    • 1. 发明授权
    • Method for determining resin curing areas in an optical stereolithography process
    • 在光学立体光刻工艺中确定树脂固化区域的方法
    • US06652797B1
    • 2003-11-25
    • US09700012
    • 2001-05-30
    • Ying Kit ChewYoke San WongYing His Jerry FuhHan Tong LohYeh Ching Andrew NeeYoo Sang ChooLi LuKah Bin LimChee Leong TeoEn Tang KangTetsuo Miyazawa
    • Ying Kit ChewYoke San WongYing His Jerry FuhHan Tong LohYeh Ching Andrew NeeYoo Sang ChooLi LuKah Bin LimChee Leong TeoEn Tang KangTetsuo Miyazawa
    • B29C3508
    • B29C64/135B33Y40/00B33Y50/00
    • A method for determining the areas of resin to be cured in an optical stereolithography process for rapid prototyping using sequential laser curing of layers of a resin having a selected thickness to produce a desired shape of cured resin. The method includes the steps of generating a computer model of desired shape and dividing the model into layers of thickness equal to the thickness of the layers each defining an area of resin to be cured. A set of layers including and sequentially adjacent an intermediate layer is selected and the areas in the intermediate layer of resin which would be oversized by laser curing of layers later in the curing sequence is determined. The 2-D layer data used to build a 3-D model is modified to compensate for the oversizing and the steps repeated by sequentially selecting sets of layers to include substantially all of the layers as the intermediate layer. The sets are sequentially selected with each subsequent set having the intermediate layer being the layer adjacent the intermediate layer of the previously selected set. The first selected set includes the first layer to be cured and the sequential subsequent sets respectively include as the intermediate layer the subsequently cured adjacent layer.
    • 一种用于通过使用具有所选厚度的树脂的层的顺序激光固化来快速成型的光学立体光刻工艺中的待固化树脂的面积以产生所需形状的固化树脂的方法。 该方法包括以下步骤:产生所需形状的计算机模型,并将模型划分成等于每个限定要固化的树脂区域的层的厚度的厚度的层。 选择包括中间层并且顺序地邻近中间层的一组层,并且确定在固化顺序中稍后通过激光固化的层中的树脂中间层中的区域。 用于构建3-D模型的2-D层数据被修改,以通过依次选择层数来包括基本上所有的层作为中间层来补偿过大和重复的步骤。 顺序地选择这些组,每个随后的集合具有中间层,其是与先前选择的集合的中间层相邻的层。 第一选定组包括待固化的第一层,并且顺序后续组分别包括随后固化的相邻层作为中间层。
    • 5. 发明授权
    • Laminated draw-formed container having excellent flavor-retentivity and
shock resistance
    • 叠层拉制容器具有优异的香味保持性和抗冲击性
    • US5653357A
    • 1997-08-05
    • US322560
    • 1994-10-13
    • Tetsuo MiyazawaToshio SueKatsuhiro Imazu
    • Tetsuo MiyazawaToshio SueKatsuhiro Imazu
    • B65D8/16B21D22/20B21D22/28B21D51/26B32B15/08B32B15/09B65D1/28B65D25/14B32B1/00
    • B21D51/26B21D22/28B32B15/08B65D1/28
    • A laminated draw-formed container that is obtained by draw-forming a laminated material of a metal plate on which a resin film is laminated into a cup having bottom, wherein said resin film comprises a surface layer of a high molecular oriented copolymerized polyester derived from acid components of 85 to 97% of terephthalic acid and 3 to 15% of isophthalic acid, and a diol component, and a lower layer of a low molecular oriented copolymerized polyester (B) derived from acid components of 84.5 to 96.5% of terephthalic acid and 3.5 to 15.5% of isophthalic acid, the amount of the isophthalic acid being larger than that of the copolymerized polyester (A) of the surface layer, and a diol component, and said surface layer having a double refraction method orientation degree (.DELTA. n) as represented by the following relation,.DELTA. n=n.sub.1 -n.sub.2wherein n.sub.1 is a refractive index in the direction of a maximum orientation of the film, and n.sub.2 is a refractive index in the direction of thickness of the film,which is not smaller than 0.02. The laminated draw-formed container exhibits markedly improved dent resistance and corrosion resistance even after the container is preserved, as well as improved adhesion property and workability, and prevents the adsorption of flavor components and the elution of resin components into the content, making it possible to greatly improve flavor retentivity of the content.
    • 一种叠层拉制容器,其通过将其上层叠有树脂膜的金属板的层压材料层叠到具有底部的杯中而获得,其中所述树脂膜包括来自高分子量的共聚聚酯的表层 85〜97%的对苯二甲酸和3〜15%的间苯二甲酸的酸成分和二醇成分,以及由酸成分得到的低分子量取向共聚聚酯(B)的下层为84.5〜96.5%的对苯二甲酸 和3.5〜15.5%的间苯二甲酸,间苯二甲酸的量大于表层的共聚聚酯(A)的量,以及二醇成分,所述表面层具有双折射方向取向度(DELTA n )如下面的关系所示:DELTA n = n1-n2其中n1是膜最大取向方向的折射率,n2是厚度方向上的折射率 薄膜,不小于0.02。 即使在保持容器之后,层叠拉制容器也具有显着提高的耐凹陷性和耐腐蚀性,以及改进的粘合性和加工性,并且防止了香料成分的吸附和树脂成分的洗脱,使其成为可能 大大提高内容的风味保持性。