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    • 1. 发明申请
    • FIRE RETARDANT WAFER CARRIER
    • 消防拖车承运人
    • WO2004005163A1
    • 2004-01-15
    • PCT/US2003/021161
    • 2003-07-07
    • ENTEGRIS, INC.BHATT, Sanjiv, M.
    • BHATT, Sanjiv, M.
    • B65D85/57
    • H01L21/67366B29C45/14B29C45/16
    • A carrier (100) includes an enclosure portion (102) formed substantially from polycarbonate plastic. Selected portions of the enclosure (102) have an outer surface portion (130) formed substantially from a plastic material having a fire propagation index of not greater than 9.0 (m/s 1/2 )(kW/m) 2/3 A carrier enclosure (102) according to the invention may have significant portions formed from relatively low-cost, easily formable, transparent polycarbonate. Much higher cost fire resistive polymer materials may be selectively positioned on the enclosure (102) where necessary to impact spread of fire on the carrier and to other adjacent carriers.
    • 载体(100)包括基本由聚碳酸酯塑料形成的外壳部分(102)。 所述外壳(102)的选定部分具有基本上由具有不大于9.0(m / s 1/2)(kw / m 2)(kw / m 2)(kW / m 2)的火焰传播指数的塑料材料形成的外表面部分(130) 根据本发明的载体外壳(102)可以具有由相对低成本,容易成型的透明聚碳酸酯形成的显着部分。 可以选择性地将更高成本的耐火聚合物材料定位在外壳(102)上,在必要时可以将火焰扩散到载体和其它相邻载体上。
    • 3. 发明申请
    • COMPOSITIONS COMPRISING CARBON NANOTUBES AND ARTICLES FORMED THEREFROM
    • 包含碳纳米管的组合物和形成的碳纳米管
    • WO2005081781A3
    • 2006-06-08
    • PCT/US2005003220
    • 2005-02-03
    • ENTEGRIS INCBHATT SANJIV M
    • BHATT SANJIV M
    • B32B27/04B01J19/08B32B19/00B32B27/12B32B27/34B32B27/36B65D1/00C01B31/02C08K9/08D01F9/127D02G3/00H01L51/00H01M4/96H01M8/02
    • B82Y30/00B82Y10/00C08K9/08C08K2201/011H01L51/0034H01L51/0035H01L51/0048H01L51/0052H01M4/96H01M8/0213H01M8/0221H01M8/0226Y10T428/139
    • Improved compositions comprise a polymer and carbon fibers, such as nanotubes. In some embodiments, the carbon fibers, e.g. nanotubes can be mechanically blended or incorporated into the polymer, while in some embodiments carbon nanotubes also may be covalently bonded to the polymer to form corresponding covalent materials. In particular, the polymer can be covalently bonded to the side walls of the carbon nanotubes to form a composite with particularly desirable mechanical properties. Specifically, the bonding of the polymer to the nanotube sidewall can provide desirable mechanical properties of the composite due to the orientation relative to other types of association between the nanotubes and the polymer. The processing of the nanotubes can be facilitated by the dispersion of the nanotubes in an aqueous solution comprising a hydrophylic polymer, such as ethyl vinyl acetate. A dispersion of nanotubes can be combined with a polymer in an extrusion process to blend the materials under high shear, such as in an extruder. In general, various articles can be formed that take advantage of the properties of the composite materials incorporating a polymer and carbon fibers, such as carbon nanotubes.
    • 改进的组合物包括聚合物和碳纤维,例如纳米管。 在一些实施方案中,碳纤维,例如, 纳米管可以机械共混或掺入到聚合物中,而在一些实施方案中,碳纳米管也可以共价键合到聚合物上以形成相应的共价材料。 特别地,聚合物可以共价键合到碳纳米管的侧壁以形成具有特别期望的机械性能的复合材料。 具体地说,由于相对于纳米管和聚合物之间的其它类型的缔合的取向,聚合物与纳米管侧壁的结合可以提供所希望的复合材料的机械性能。 通过纳米管在包含亲水性聚合物如乙酸乙烯酯的水溶液中的分散,可以促进纳米管的加工。 纳米管的分散体可以在挤出过程中与聚合物组合以在高剪切下混合材料,例如在挤出机中。 通常,可以形成利用包含聚合物和碳纤维(例如碳纳米管)的复合材料的性质的各种制品。
    • 7. 发明申请
    • PERFORMANCE POLYMER FILM INSERT MOLDING FOR FLUID CONTROL DEVICES
    • 用于流体控制装置的性能聚合物胶片模具
    • WO03046951B1
    • 2004-02-05
    • PCT/US0237966
    • 2002-11-26
    • ENTEGRIS INCBHATT SANJIV MEGGUM SHAWN D
    • BHATT SANJIV MEGGUM SHAWN D
    • B29C45/14H01L21/304H01L21/306F16K25/00
    • B29C45/14778B29C2045/14901B29K2071/00B29K2715/006B29K2995/0087B29L2031/7506Y10T137/7036
    • The present invention relates generally to a system and method for including a thin protective containment polymer film (100), such as Peek in the molding process for fluid processing devices utilized in the semiconductor processing industry. The thermoplastic film of predetermined size and shape is selectively placed along a shaping surface (110) in a mold cavity (106) for alignment with a desired target surface of a molded material. The molding processes causes a surface of the film (100) to bond to a contact surface of the moldable material such that the film (100) is permanently adhered to the moldable material. As a result, a comparable polymer film can be selectively bonded only to those target surfaces where performance characteristics such as abrasion resistance, heat resistance, chemical resistance, outgassing prevention, rigidity enhancement, fluid absorption prevention, ultraviolet resistance, friction reduction and the like is needed.
    • 本发明一般涉及一种用于在用于半导体加工业的流体处理装置的成型工艺中包括薄保护性容纳聚合物膜(100),例如Peek的系统和方法。 具有预定尺寸和形状的热塑性膜选择性地沿着模具腔(106)中的成形表面(110)放置,以与模制材料的期望目标表面对准。 成型工艺使得薄膜(100)的表面粘合到可模制材料的接触表面,使得薄膜(100)永久地粘附到可模制材料上。 结果,可以将可比较的聚合物膜选择性地结合到那些其耐磨性,耐热性,耐化学性,防除气,防止刚性,防止流体吸收,耐紫外线,摩擦减少等性能特征的目标表面 需要。