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    • 91. 发明授权
    • Peelably laminated blow-molded containers
    • 可剥层压吹塑容器
    • US07055707B2
    • 2006-06-06
    • US10432873
    • 2002-10-30
    • Masashi YoneyamaHiroyuki NakamuraMasato SeguchiTakayuki Goto
    • Masashi YoneyamaHiroyuki NakamuraMasato SeguchiTakayuki Goto
    • B65D23/02A47J41/02
    • B65D83/0055B29B2911/1442B29B2911/1444B29C49/0073B29C49/04B29C49/22B29K2023/06B29K2023/083B29K2023/12B29K2067/00B29K2077/00B29K2995/0077B29L2009/001B29L2031/703B29L2031/7158B65D1/0215B65D83/0061Y10S215/902Y10S220/913
    • A blow-molded container includes an outer layer of a synthetic resin, which forms the outer shell of a finite shape; an inner layer of a flexible synthetic resin, which is peelably laminated with the outer layer and forms an inner bag; and a pair of adhered zones of a vertical strip type, which is formed axisymmetrically on the central axis of container to adhere and fix the outer layer and the inner layer over the entire height and is located so as to avoid the positions of air introduction ports that have been provided in the outer layer to introduce air into the void between the outer layer and the inner layer. A pair of adhered zones is disposed at positions opposite to each other and is separated by a parting line. The lower ends of both adhered zones are disposed at the partly or wholly end-to-end position facing each other on the bottom seal formed when the bottom portion is pressed flat with the pinch-off of a blow mold. Because of this end-to-end facing position of the lower ends, the bottom seal has a full mechanical strength. Thus, there is provided a container of the delaminated type capable of molding by means of an ordinary mold and having high manufacturing efficiency.
    • 吹塑容器包括合成树脂的外层,其形成有限形状的外壳; 柔性合成树脂的内层,其与外层可剥离地层压并形成内袋; 以及一对垂直带状的粘合区域,其在容器的中心轴线上轴对称地形成,以将外层和内层粘附并固定在整个高度上,并且被定位成避免空气引入口的位置 其被设置在外层中以将空气引入外层和内层之间的空隙中。 一对粘附区域设置在彼此相对的位置处并且由分型线分开。 两个粘合区域的下端设置在底部密封件上形成的部分或全部端对端位置,当底部被吹塑模具夹紧时被压扁。 由于下端的这种端对端的位置,底部密封具有完全的机械强度。 因此,提供了能够通过普通模具成型并具有高制造效率的分层型容器。
    • 92. 发明授权
    • Extrusion container
    • 挤出容器
    • US06981617B2
    • 2006-01-03
    • US10469421
    • 2002-11-29
    • Hiroyuki NakamuraMasashi YoneyamaTakayuki Goto
    • Hiroyuki NakamuraMasashi YoneyamaTakayuki Goto
    • B65D37/00
    • B65D47/2018B65D1/32B65D83/0055B65D2231/00B65D2231/005
    • An extrusion container comprises a main container body with a squeezable outer shell layer and an extrusion cap body, and at least two adhesive bands of longitudinal band form, each of which adheres and fixes together the outer shell layer and an inner layer along the entire height range, wherein the width of each adhesive band is set so as to disable complete closure of the plane cross section by free deformation of non-adhered inner layer parts, and a rigidity of the outer shell layer is set so that, in the state where free deformation of the non-adhered inner layer parts reaches a limit, deformation of the outer shell layer by tension at the non-adhered inner layer parts occurs as a result of normal squeezing operation by a human hand, whereby an extrusion path and smooth extrusion operation is maintained and residual contents is reduced.
    • 挤出容器包括具有可挤压的外壳层和挤出盖体的主容器主体和至少两个纵带粘合带,每个粘合带将外壳层和内层沿着整个高度粘合并固定在一起 范围,其中每个粘合带的宽度被设定为不能通过未附着的内层部分的自由变形来完全闭合平面横截面,并且外壳层的刚度被设定为使得在 未粘附的内层部件的自由变形达到极限,作为通过人手的正常挤压操作的结果,在未附着内层部分的张力下外壳层的变形发生,由此挤出路径和平滑挤出 维持操作并减少残留物。
    • 99. 发明授权
    • Pseudoboehmite powder for catalyst carrier and process for preparing the same
    • 用于催化剂载体的假勃姆石粉末及其制备方法
    • US06174511B1
    • 2001-01-16
    • US09254658
    • 1999-05-06
    • Takayuki TsukadaHiroyuki Nakamura
    • Takayuki TsukadaHiroyuki Nakamura
    • C01F702
    • C01F7/34B01J21/04B01J35/1042B01J35/1047B01J35/1061B01J35/108C01F7/141C01P2006/14C01P2006/16
    • An aluminum salt solution and an alkali aluminate solution are subjected to a neutralization reaction to precipitate and form a pseudo-boehmite powder. The neutralization reaction is performed under a condition in which the reaction temperature is within a range of 55 to 71° C., pH is within a range of 8.5 to 9.5, and the solution feed time is within a range of 7 to 25 minutes. The obtained pseudo-boehmite is as follows. That is, the pore volume concerning pores having a pore diameter ranging from 20 to 600 Å is within a range of 0.8 to 1.8 cc/g as measured by the nitrogen adsorption method, and the maximum value of variation ratio dV/dD of the pore volume with respect to the pore diameter as measured by the BJH method is not more than 0.018 cc/g•Å. When the pseudo-boehmite is used, it is possible to produce a catalyst carrier for hydrogenation refining, which has a sharp pore diameter distribution and which suffers less decrease in strength upon impregnation with a catalyst solution.
    • 将铝盐溶液和碱金属铝酸盐溶液进行中和反应以沉淀并形成假勃姆石粉末。 中和反应在反应温度为55〜71℃,pH为8.5〜9.5的范围内,溶液进料时间为7〜25分钟的条件下进行。 所得的假勃姆石如下。 也就是说,通过氮吸附法测定的孔径为20〜600的孔的孔体积在0.8〜1.8cc / g的范围内,孔的变化率dV / dD的最大值 通过BJH法测定的相对于孔径的体积不大于0.018cc / g。 当使用假勃姆石时,可以制备氢化精炼用催化剂载体,其具有尖锐的孔径分布,并且在用催化剂溶液浸渍时其强度降低较少。