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    • 4. 发明授权
    • Flame resistant to nonflammable composite panel
    • 耐火不易燃复合板
    • US5360507A
    • 1994-11-01
    • US113967
    • 1993-08-30
    • Reinhard SchlatterRainer EhratPeter MullerPaul KublerOtto Hodl
    • Reinhard SchlatterRainer EhratPeter MullerPaul KublerOtto Hodl
    • B32B43/00B28B19/00B29C43/30B29C67/24B29C70/50B29K103/00B32B13/06B32B13/12B32B33/00B32B37/00B32B37/02B32B37/24E04C2/296B32B31/00
    • B32B37/02B28B19/0015B28B19/0092B29C67/245B29C70/504B32B13/12B32B37/24E04C2/296Y10T156/1741
    • A flame resistant to nonflammable composite panel is produced from a nonextrudable core mixture with a pourable, nonflammable filling material and a binder, and on both sides cover strips, flexibly bonded to the core. For a continuous production of the composite panel in one operation, the core mixture is poured onto a flexible lower adhesive film, supported as it runs in, and a pile extending over the entire width forms there. Between the lower adhesive film and a flexible upper adhesive film, likewise supported as it runs in, material of the core mixture is continuously and uniformly drawn through a V gap and compacted there for the first time and calibrated to thickness. The adhesive films containing the precompacted core mixture are adhesively bonded to the continuously fed cover strips. The apparatus comprises a stretching roller for each of the adhesive films, a device for the uniform application of the core mixture, first means for forming a settable running-in angle and the V gap, second means for supporting the lower adhesive film and third means for the concluding pressing and heating, as well as a device for cutting to length.
    • 由不可渗透的核心混合物与可倾倒的不可燃填充材料和粘合剂制成耐火不可燃复合板,并且在两侧上覆盖柔性地粘合到芯上的条带。 为了在一次操作中连续生产复合面板,将芯混合物倒入柔性下粘合剂膜上,当其运行时被支撑,并且在整个宽度上延伸的绒头形成在那里。 在下部粘合剂膜和柔性上部粘合剂膜之间,同样被支撑在其上时,核心混合物的材料通过V间隙连续均匀地拉伸并且首次压实并校准至厚度。 含有预制核心混合物的粘合剂膜粘合到连续供给的盖带上。 该装置包括用于每个粘合膜的拉伸辊,用于均匀施加芯混合物的装置,用于形成可固化的进入角的第一装置和V间隙,用于支撑下粘合剂膜的第二装置和第三装置 用于结束按压和加热,以及用于切割长度的装置。
    • 6. 发明授权
    • Ultra-fine-grained thermoplastics
    • 超细晶粒热塑性塑料
    • US06344511B1
    • 2002-02-05
    • US09328563
    • 1999-06-09
    • Rainer EhratHanns Watrinet
    • Rainer EhratHanns Watrinet
    • C08J510
    • C08J3/203C08L23/08
    • Ultra-fine-grained thermoplastics such as polyolefins, for example, having an average particle size D50 of less than 400 &mgr;m and are present in a mixture along with a filler where the amount of filler material in the mixture amounts to 40 to 90% with respect to the mixture. As such ultra-fine-grained thermoplastics cannot be obtained by means of the normal milling process of if so then only with considerable expenditure, the process for manufacturing ultrafine-grained thermoplastics is performed in such a manner that a mixture containing 10 to 60 wt. % thermoplastics with respect to the mixture and 40 to 90 wt.% filler material with respect to the mixture is ground e.g. in an impact pulverizer, as a result of which thermoplastic particles with an average particle size D50 less than 400 &mgr;m are produced.
    • 超细晶粒热塑性塑料如聚烯烃,例如平均粒径D50小于400μm,并与填料一起存在于混合物中,其中混合物中填料的量为40至90%,其中, 尊重混合物。 由于这样的超细晶粒热塑性塑料不能通过正常的研磨方法获得,如果是这样,则只有相当大的支出,制造超细晶粒热塑性塑料的方法以这样的方式进行,即使用含有10至60wt。 相对于混合物的%热塑性塑料和相对于混合物的40至90重量%的填料材料被粉碎。 在冲击式粉碎机中,由此产生平均粒度D50小于400μm的热塑性颗粒。
    • 10. 发明授权
    • Ultra-fine-grained thermoplastics
    • 超细晶粒热塑性塑料
    • US6090878A
    • 2000-07-18
    • US263621
    • 1999-03-05
    • Rainer EhratHanns Watrinet
    • Rainer EhratHanns Watrinet
    • C08K3/00C08L23/08C08J5/10C08K3/26C08L23/00
    • C08K3/0008C08L23/08
    • Ultra-fine-grained thermoplastics such as polyolefins, for example, having an average particle size D.sub.50 of less than 400 .mu.m and are present in a mixture along with a filler where the amount of filler material in the mixture amounts to 40 to 90% with respect to the mixture. As such ultra-fine-grained thermoplastics cannot be obtained by means of the normal milling process of if so then only with considerable expenditure, the process for manufacturing ultra-fine-grained thermoplastics is performed in such a manner that a mixture containing 10 to 60 wt. % thermoplastics with respect to the mixture and 40 to 90 wt. % filler material with respect to the mixture is ground e.g. in an impact pulverizer, as a result of which thermoplastic particles with an average particle size D.sub.50 less than 400 .mu.m are produced.
    • 超细晶粒热塑性塑料如聚烯烃,例如平均粒径D50小于400μm,并与填料一起存在于混合物中,其中混合物中填料的量为40至90% 对于混合物。 因为这样的超细晶粒热塑性塑料不能通过正常的研磨方法获得,如果是这样,那么只有相当大的支出,制造超细晶粒热塑性塑料的方法是这样一种方式进行的:将含有10至60 重量 %热塑性塑料相对于混合物和40至90wt。 相对于混合物的填料材料的比例为 在冲击式粉碎机中,由此产生平均粒度D50小于400μm的热塑性颗粒。