Stretch composites and methods of making the composite
    1.
    发明申请
    Stretch composites and methods of making the composite 有权
    拉伸复合材料和复合材料的制备方法

    公开(公告)号:US20070029035A1

    公开(公告)日:2007-02-08

    申请号:US11544968

    申请日:2006-10-06

    IPC分类号: B32B37/00

    摘要: A stretch composite having one or more elastomeric members disposed on at least one region of an extensible fibrous substrate to provide stretch properties to a targeted region of the substrate. The composite has been incrementally stretched to at least partially break up the structure of the substrate in order to reduce its resistance to stretch. The stretch composites are useful for disposable and durable articles, such as disposable absorbent articles including diapers, pull-on diapers, training pants, incontinence briefs, catamenial garments, baby bibs, and the like, and durable articles like garments including sportswear, outerwear and the like. The present invention also relates to methods of forming such stretch composites.

    摘要翻译: 一种拉伸复合材料,其具有设置在可延展纤维基材的至少一个区域上的一个或多个弹性体部件,以向基材的目标区域提供拉伸性能。 复合材料已经被递增地拉伸以至少部分地破坏基底的结构,以便降低其拉伸阻力。 拉伸复合材料对于一次性和耐用的制品是有用的,例如一次性吸收制品,包括尿布,拉尿布,训练裤,失禁裤,月经服,婴儿围兜等,以及诸如服装,如运动服,外衣和 类似。 本发明还涉及形成这种拉伸复合材料的方法。

    Phase change solvents for thermoplastic polymers
    4.
    发明申请
    Phase change solvents for thermoplastic polymers 失效
    热塑性聚合物的相变溶剂

    公开(公告)号:US20050032969A1

    公开(公告)日:2005-02-10

    申请号:US10936938

    申请日:2004-09-09

    IPC分类号: C08J3/09 C08K5/12 D01F1/04

    CPC分类号: C08J3/091 C08K5/12

    摘要: Phase change solvents for thermoplastic polymers to provide blended compositions. Above the phase change temperature of the solvent, the phase change solvent solubilizes or intimately mixes with the thermoplastic polymer. Below the phase change temperature of the solvent, the phase change solvent solidifies or crystallizes within the thermoplastic matrix. The phase change behavior of these materials produce blended compositions that exhibit lowered shear viscosity and lowered processing temperature without substantially compromising mechanical properties of the thermoplastic polymer, such as hardness. The present invention also relates to a method of improving the processability of a thermoplastic polymer using the phase change solvent.

    摘要翻译: 用于热塑性聚合物的相变溶剂以提供混合组合物。 在溶剂的相变温度之上,相变溶剂溶解或与热塑性聚合物紧密混合。 在溶剂的相变温度以下,相变溶剂在热塑性基体内凝固或结晶。 这些材料的相变行为产生显示出降低的剪切粘度和降低加工温度而不会基本上损害热塑性聚合物的机械性能例如硬度的共混组合物。 本发明还涉及使用相变溶剂改善热塑性聚合物的加工性能的方法。

    FZD8 extracellular domains and FZD8 extracellular domain fusion molecules and treatments using same
    7.
    发明授权
    FZD8 extracellular domains and FZD8 extracellular domain fusion molecules and treatments using same 有权
    FZD8细胞外结构域和FZD8细胞外结构域融合分子及其处理方法

    公开(公告)号:US08431532B2

    公开(公告)日:2013-04-30

    申请号:US13169900

    申请日:2011-06-27

    IPC分类号: A61K38/17

    摘要: Methods of treatment using Fzd8 extracellular domains (ECDs), Fzd8 ECD fusion molecules, and/or antibodies that bind Fzd8 are provided. Such methods include, but are not limited to, methods of treating obesity and obesity-related conditions. Fzd8 ECDs and Fzd8 ECD fusion molecules are also provided. Polypeptide and polynucleotide sequences, vectors, host cells, and compositions comprising or encoding such molecules are provided. Methods of making and using Fzd8 ECDs, Fzd8 ECD fusion molecules, and antibodies that bind Fzd8 are also provided.

    摘要翻译: 提供了使用Fzd8细胞外结构域(ECD),Fzd8 ECD融合分子和/或结合Fzd8的抗体的治疗方法。 这些方法包括但不限于治疗肥胖症和肥胖相关病症的方法。 还提供Fzd8 ECDs和Fzd8 ECD融合分子。 提供了多肽和多核苷酸序列,载体,宿主细胞和包含或编码这些分子的组合物。 还提供了制备和使用Fzd8 ECDs,Fzd8 ECD融合分子和结合Fzd8的抗体的方法。

    Anti-fuse memory cell
    8.
    发明授权
    Anti-fuse memory cell 有权
    防熔丝存储单元

    公开(公告)号:US08026574B2

    公开(公告)日:2011-09-27

    申请号:US12814124

    申请日:2010-06-11

    IPC分类号: H01L29/00

    摘要: An anti-fuse memory cell having a variable thickness gate oxide. The variable thickness gate oxide has a thick gate oxide portion and a thin gate oxide portion, where the thing gate oxide portion has at least one dimension less than a minimum feature size of a process technology. The thin gate oxide can be rectangular in shape or triangular in shape. The anti-fuse transistor can be used in a two-transistor memory cell having an access transistor with a gate oxide substantially identical in thickness to the thick gate oxide of the variable thickness gate oxide of the anti-fuse transistor.

    摘要翻译: 具有可变厚度栅极氧化物的反熔丝存储单元。 可变厚栅极氧化物具有厚的栅极氧化物部分和薄的栅极氧化物部分,其中栅极氧化物部分具有小于工艺技术的最小特征尺寸的至少一个尺寸。 薄栅氧化物的形状可以是矩形或三角形。 反熔丝晶体管可以用于具有存取晶体管的双晶体管存储单元,栅极氧化物的厚度与抗熔丝晶体管的可变厚栅极氧化物的厚栅极氧化物的厚度基本相同。

    METHOD OF FORMING A STRUCTURE HAVING A GIANT RESISTANCE ANISOTROPY OR LOW-K DIELECTRIC
    9.
    发明申请
    METHOD OF FORMING A STRUCTURE HAVING A GIANT RESISTANCE ANISOTROPY OR LOW-K DIELECTRIC 审中-公开
    形成具有抗电偶性或低K电介质结构的方法

    公开(公告)号:US20100068828A1

    公开(公告)日:2010-03-18

    申请号:US11584078

    申请日:2006-10-20

    IPC分类号: H01L21/3205

    摘要: A method is provided involving the growth of carbon nanotubes to provide giant resistance anisotropy or a low-k dielectric. The method comprises growing a plurality of one-dimensional nanostructures (18) orthogonal to a first conductive layer (14). A dielectric material (22, 32, 60) is formed covering the plurality of one-dimensional nanostructures and then etched to remove a portion of the dielectric material (22, 32, 60) to expose the ends (24, 34, 68) of the one-dimensional nanostructures (18). A second conductive layer (26, 36, 84) is formed over the dielectric material (22, 32, 60) to make contact with the ends (24, 34, 68) of the one-dimensional nanostructures (18). One or both of the first (14) and second (26, 36, 84) layers may be patterned for accessing individual or groups of the one-dimensional nanostructures (18). In another exemplary embodiment, the one-dimensional nanostructures (18) may be removed prior to forming the second layer (84), thereby creating a high-k dielectric layer (32) between the first and second layers (14, 84).

    摘要翻译: 提供了一种涉及碳纳米管生长以提供巨大电阻各向异性或低k电介质的方法。 该方法包括生长与第一导电层(14)正交的多个一维纳米结构(18)。 形成覆盖多个一维纳米结构的电介质材料(22,32,60),然后蚀刻以去除电介质材料(22,32,60)的一部分以暴露端部(24,34,68)的端部 一维纳米结构(18)。 在电介质材料(22,32,60)之上形成第二导电层(26,36,84)以与一维纳米结构(18)的端部(24,34,68)接触。 第一(14)和第二(26,36,84)层中的一个或两个可以被图案化以访问一维纳米结构(18)的单个或一组。 在另一示例性实施例中,可以在形成第二层(84)之前去除一维纳米结构(18),从而在第一和第二层(14,84)之间形成高k电介质层(32)。

    FOLDABLE FOOTWEAR
    10.
    发明申请
    FOLDABLE FOOTWEAR 审中-公开
    可折叠鞋

    公开(公告)号:US20100018080A1

    公开(公告)日:2010-01-28

    申请号:US12525015

    申请日:2007-10-19

    申请人: Steven Smith

    发明人: Steven Smith

    IPC分类号: A43B1/10 A43B13/00

    摘要: A foldable shoe having a sole comprises a forward sole portion extending from a front toe part of the shoe to an in-step part, a rear sole portion extending from a rear most part of the shoe to said in-step, said forward sole portion and said rearward sole portion co-operating to form a substantially continuous sole when the shoe is worn by a user; and said forward sole portion and said rearward sole portion being separable from each other when the sole is in a folded condition.

    摘要翻译: 具有鞋底的可折叠鞋包括从鞋的前脚趾部分延伸到鞋底部分的前鞋底部分,从鞋的最后部分延伸到所述前脚部的后鞋底部分 并且当所述鞋被使用者佩戴时,所述后鞋底部分配合以形成基本上连续的鞋底; 并且当鞋底处于折叠状态时,所述前脚部部分和所述后鞋底部分彼此分离。