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    • 4. 发明申请
    • Structured baroplastic materials
    • 结构性压塑材料
    • US20070073000A1
    • 2007-03-29
    • US11172371
    • 2005-06-29
    • Anne MayesSang RyuMetin AcarJuan Gonzalez
    • Anne MayesSang RyuMetin AcarJuan Gonzalez
    • C08F8/00
    • C08L51/003B29C43/006B29C47/0016B29C47/04B29K2105/162B82Y30/00C08F257/02C08F265/04C08F265/06C08F285/00C08F287/00C08F293/005C08J3/005C08J3/126C08J5/18C08L51/006C08L53/00Y10T428/2929C08L2666/02
    • The present invention provides a series of baroplastic materials, and systems and methods of making and using such baroplastic materials. In one aspect of the invention, polymeric particles are provided that can be used to produce baroplastic materials under certain pressures and/or below certain temperatures. In one set of embodiments, the polymeric particles include an inner “core” region and an outer “shell” region. In some cases, more than one “shell” region may be present. In another arrangement the particles can include materials, or domains, in nanoscale proximity with each other. Non-particulate materials can also be processed in accordance with the invention. In another aspect of the invention, the invention provides for polymeric particles that can be processed and/or recycled multiple times, without causing significant degradation or alteration in the physical and/or chemical properties of the polymer. In yet another aspect, the invention provides compositions able to form baroplastic materials upon the application of certain pressures, where the composition includes at least two chemically distinct materials in nanoscale proximity to each other. In still another aspect of the invention, a method of mixing two polymers upon the application of pressure is provided.
    • 本发明提供了一系列的压延材料,以及制造和使用这种压延材料的系统和方法。 在本发明的一个方面,提供聚合物颗粒,其可用于在某些压力和/或低于某些温度下制备压延材料。 在一组实施方案中,聚合物颗粒包括内部“芯”区域和外部“壳”区域。 在某些情况下,可能存在多于一个“壳”区域。 在另一种布置中,颗粒可以包括纳米级彼此接近的材料或结构域。 也可以根据本发明加工非颗粒材料。 在本发明的另一方面,本发明提供可以多次加工和/或回收的聚合物颗粒,而不会导致聚合物的物理和/或化学性质的明显降解或改变。 在另一方面,本发明提供了能够在施加某些压力时形成压延材料的组合物,其中所述组合物包含至少两种在纳米级彼此接近的化学上不同的材料。 在本发明的另一方面,提供了在施加压力时混合两种聚合物的方法。
    • 9. 发明申请
    • METHOD FOR PRESERVING FRUIT, VEGETABLES AND THE LIKE
    • 保存水果,蔬菜和类似物的方法
    • US20130011534A1
    • 2013-01-10
    • US13636245
    • 2010-06-08
    • David Aranda CampinJuan Gonzalez Valencia
    • David Aranda CampinJuan Gonzalez Valencia
    • A23B7/16
    • A23B7/16
    • The method consists of selecting individual fruit or vegetables without bruises or broken skin, cleaning them with an air jet, washing them in sterile water and drying them at a temperature between 18° C. and 25° C. such that, once the fruit or vegetable is clean, it is inserted into a food-grade composite bath to obtain a protective covering consisting of a thin layer of continuous tangible material that protects both the skin and the stem and crown of the fruit or vegetable, the fruit thus being protected until consumption, without refrigeration and without rotting since the oxygen necessary for bacteria growth is absent. The fruit or vegetable can be consumed after removing the food-grade composite by cutting away said covering.
    • 该方法包括选择单独的水果或蔬菜,没有瘀伤或皮肤破裂,用空气喷射器清洗,在无菌水中洗涤,并在18°C至25°C的温度下干燥,以便一旦水果或 蔬菜是干净的,将其插入食品级复合浴中以获得由保护水果或蔬菜的皮肤和茎和冠的两层连续的有形材料组成的保护性覆盖物,从而被保护直至 消耗,没有制冷和没有腐烂,因为细菌生长所需的氧气不存在。 通过切除所述覆盖物去除食品级复合材料后,可以消耗水果或蔬菜。
    • 10. 发明申请
    • System and method for maintaining air inflatable mattress configuration
    • 用于保持充气床垫配置的系统和方法
    • US20060179579A1
    • 2006-08-17
    • US11355679
    • 2006-02-15
    • Bruce PhillipsJohn VrzalikJeffrey ParkerKenneth SmithJuan GonzalezKevin BendeleMichael OlivaPaul SlimpinCesar LinaPeter StacyMark BeardGodfrey Charles Alexander Robson
    • Bruce PhillipsJohn VrzalikJeffrey ParkerKenneth SmithJuan GonzalezKevin BendeleMichael OlivaPaul SlimpinCesar LinaPeter StacyMark BeardGodfrey Charles Alexander Robson
    • A47C27/10
    • A61G7/05769A61G2203/40A61G2203/42A61G2203/46G06F19/00G16H40/63
    • A system and method for maintaining an air inflation mattress configuration sufficient for patient support and comfort. Infrared illumination levels are measured within individual or groups of inflated mattress chambers. A staggered approach to illumination monitoring of chambers or sections to eliminate crosstalk between the infrared sensors is carried out. Distributed microprocessor controllers established in a network configuration utilizing controller network protocols reduces the wiring and connections necessary for the assembled system. Various mattress cushion construction techniques, such as sewing and or RF welding methods, are used for the creation of individual chambers utilizing specific types of IR translucent, transparent or reflective materials. The construction of the cushions and bladders in the system includes the use of various types of fabrics with low to high air loss qualities as required. The overall mattress assembly, including the control systems and the methodologies associated with such control systems, provide a unique approach to the maintenance of a consistently comfortable patient support surface. The use of a handheld unit for both programming the system and downloading information about the operation of the system is also anticipated. The specific cushion construction designs associated with the head, body, and foot cushion components of the mattress are tailored to operate specifically with the control capabilities (sensors and air flow regulators) of the invention.
    • 一种用于维持充气床垫配置的系统和方法,足以使患者支撑和舒适。 在充气床垫室的个别或组内测量红外照明水平。 执行了用于消除红外传感器之间的串扰的室或部分的照明监视的交错方法。 使用控制器网络协议在网络配置中建立的分布式微处理器控制器减少组装系统所需的接线和连接。 使用诸如缝纫和/或RF焊接方法的各种床垫构造技术用于利用特定类型的IR半透明,透明或反射材料来创建各个室。 系统中的垫子和囊的构造包括根据需要使用具有低至高空气损失特性的各种类型的织物。 包括控制系统和与这种控制系统相关联的方法的整体床垫组件为维持一贯舒适的患者支撑表面提供了独特的方法。 还预期使用手持设备来编程系统和下载关于系统的操作的信息。 与床垫的头部,身体和脚垫部件相关联的具体缓冲结构设计被定制为具有本发明的控制能力(传感器和空气流量调节器)的特定操作。