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    • 6. 发明申请
    • Deep drawing packaging container, deep drawing packaged product and method of manufacturing the same
    • 深拉包装容器,深冲包装产品及其制造方法
    • US20100003433A1
    • 2010-01-07
    • US12311311
    • 2007-09-28
    • Hitoshi IshiiSeiichi Ibe
    • Hitoshi IshiiSeiichi Ibe
    • B65B53/00B29C51/08
    • B65D75/305B29C51/002B29C51/02B29C51/105B29C51/14B29K2077/00B29K2105/02B29K2995/0049B65B9/04B65B53/02Y10T428/1324Y10T428/1328Y10T428/1334Y10T428/1352Y10T428/1393
    • A deep drawing packaging container comprising: a top film made of a first heat shrinkable multilayer film; and a bottom film made of a second heat shrinkable multilayer film, the deep drawing packaging container being formed by deep drawing, so that a drawing ratio (D1) of the top film and a drawing ratio (D2) of the bottom film satisfy conditions: D1=1.1 to 4.0; D2=1.5 to 5.0; and (D2/D1)=1.05 to 4.55, wherein a hot-water shrinkability (SM1) in a longitudinal direction and a hot-water shrinkability (ST1) in a transverse direction of the first heat shrinkable multilayer film and a hot-water shrinkability (SM2) in a longitudinal direction and a hot-water shrinkability (ST2) in a transverse direction of the second heat shrinkable multilayer film satisfy conditions: SM1=5 to 40%; ST1=5 to 40%; SM2=2 to 25%; ST2=2 to 25%; (SM1/SM2)=1.2 to 12; and (ST1/ST2)=1.2 to 12 (where the hot-water shrinkability is a shrinkability (%) after immersing the heat shrinkable multilayer film before drawing in hot water of 90° C. for 10 seconds).
    • 一种深冲包装容器,包括:由第一热收缩多层膜制成的顶膜; 以及由第二热收缩多层膜制成的底部薄膜,深拉伸包装容器通过深冲压形成,使得顶部薄膜的拉伸比(D1)和底部薄膜的拉伸比(D2)满足条件: D1 = 1.1〜4.0; D2 = 1.5〜5.0; 和(D2 / D1)= 1.05〜4.55,其中,第一热收缩性多层膜的纵向的热水收缩性(SM1)和横向的热水收缩性(ST1)和热水收缩性 (SM2)和第二热收缩性多层膜的横向的热水收缩性(ST2)满足条件:SM1 = 5〜40%; ST1 = 5〜40%; SM2 = 2〜25%; ST2 = 2〜25%; (SM1 / SM2)= 1.2〜12; (ST1 / ST2)= 1.2〜12(热收缩性为将热收缩性多层膜浸渍在90℃的热水中10秒后的收缩率(%))。
    • 10. 发明授权
    • Chemical conversion treatment solution for a steel material and chemical conversion treatment method
    • 钢材化学转化处理液和化学转化处理方法
    • US08535456B2
    • 2013-09-17
    • US13004678
    • 2011-01-11
    • Hitoshi IshiiYasuhiko Nagashima
    • Hitoshi IshiiYasuhiko Nagashima
    • C23C22/34C23C22/00
    • C23C22/34C25D13/20
    • A chemical conversion treatment solution for a steel material is provided. The solution is an acidic aqueous solution of pH 3 to 5 containing 50 to 500 ppm by weight of zirconium fluoride complex in terms of Zr, 5 to 50 ppm by weight of free fluorine, and 5 to 30% by weight in relation to Zr of polyethyleneimine having a weight average molecular weight of 300 to 10,000, a molar ratio of the primary amino group of at least 30%, and a molar ratio of the tertiary amino group of at least 15% in relation to the total amino group content. A method for chemical conversion treatment is also provided. This invention realizes excellent coating adhesion and corrosion resistance after the coating, as well as improved throwing power in the coating, and in particular, in the electrodeposition coating of a steel material.
    • 提供了一种用于钢材的化学转化处理溶液。 该溶液是pH3〜5的酸性水溶液,其以Zr计为50〜500重量ppm的氟化锆配合物,5〜50重量ppm的游离氟,相对于Zr为5〜30重量% 重均分子量为300〜10000,伯氨基的摩尔比为30%以上,叔氨基的摩尔比为15%以上的聚氨基乙烯与总氨基含量相关。 还提供了一种化学转化处理方法。 本发明实现了涂层之后优异的涂层附着力和耐腐蚀性,以及改善涂层的抛光力,特别是在钢材的电沉积涂层中。