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    • 2. 发明授权
    • Apparatus and methods for vehicle idle management
    • 车辆空闲管理的装置和方法
    • US09216628B2
    • 2015-12-22
    • US13869211
    • 2013-04-24
    • Lance D. SelfTod M. Bennett
    • Lance D. SelfTod M. Bennett
    • G06F7/00B60H1/00F25B19/00
    • B60H1/00642B60H1/00364B60H1/00428B60H1/00778B60H1/323F25B19/00F25B2400/075Y02T10/88Y10T29/49002
    • An idle management system for a vehicle is disclosed herein. In various aspects, the idle management system includes an auxiliary power storage unit for the storage of electrical power. The idle management system includes an environmental package adapted to interconnect with a vehicle environmental package to regulate the climate within a vehicle compartment of a vehicle. The environmental package may be in electrical communication with the power storage unit to receive electrical power therefrom. A controller may be in communication with the power storage unit to derive electrical power therefrom, and the controller may be in communication with the environmental package to regulate the operation thereof. The idle management system may draw electrical power from the power storage unit to be operable with an engine in an engine OFF condition.
    • 本文公开了一种用于车辆的空闲管理系统。 在各个方面,空闲管理系统包括用于存储电力的辅助电力存储单元。 空闲管理系统包括适于与车辆环境包装物互连的环境包装,以调节车辆车辆车厢内的气候。 环境包装可以与蓄电单元电连通以从其接收电力。 控制器可以与电力存储单元通信以从中导出电力,并且控制器可以与环境包装件通信以调节其操作。 空转管理系统可以从发电机关闭状态中将蓄电单元的电力从发动机起作用。
    • 4. 发明授权
    • Polyurethane joint sealing for building structures
    • 建筑结构聚氨酯​​接头密封
    • US4460737A
    • 1984-07-17
    • US246225
    • 1981-03-23
    • Robert M. EvansThomas M. Leonard
    • Robert M. EvansThomas M. Leonard
    • C08K3/00C08L75/04C09K3/10
    • C09K3/1028C08K3/0033C08L75/04C09K2200/0208C09K2200/0617C09K2200/065C09K2200/0692Y10S524/906
    • A profound improvement in the properties and capabilities of elastomeric polyurethane joint sealing compositions is achieved by incorporating a fibrillated polyolefin of high surface area which is rendered compatible by combining it with effective stabilizing cofillers, such as titanium dioxide, calcium carbonate, carbon black, fibrous talc, serpentine, kaolin, or various other metal silicate fillers. Such cofillers are capable of improving compatibility and stabilizing the sealant mixture so that unacceptable sweat out or exudation of liquid is prevented and so that the outer surface of the applied sealant has an acceptable surface quality after curing.When 2 to 8 percent by weight of fibrillated polyolefin of macrofibrillar structure, preferably containing macrofibrils with diameters from 1 to 10 microns, is incorporated in a polyurethane joint sealant together with 8 to 30 percent of stabilizing cofillers, it becomes possible to provide revolutionary new joint sealants with remarkable properties, such as Boeing sag values of 0.1 and below for caulking compositions applied to extremely wide joints. These unique non-sag joint sealants can be compounded to form strong soft low-modulus elastomers ideally suited for vertical joints subject to extreme cyclical movement as is common in modern building construction.
    • 弹性聚氨酯接头密封组合物的性能和性能的深刻改进是通过引入具有高表面积的原纤化聚烯烃来实现的,其通过将其与有效的稳定性填充剂如二氧化钛,碳酸钙,炭黑,纤维状滑石 蛇纹石,高岭土或各种其它金属硅酸盐填料。 这样的填充装置能够改善相容性并稳定密封剂混合物,从而防止液体的不可接受的渗出或渗出,并且使得所施加的密封剂的外表面在固化后具有可接受的表面质量。 当将2-8重量%的原纤化聚烯烃的宏观原纤维结构,优选含有1-10微米直径的原纤维,与8-30%的稳定化填充剂一起加入到聚氨酯接头密封剂中时,可以提供革命性的新接头 具有显着性能的密封胶,例如适用于非常宽的接头的填缝组合物的波音下垂值为0.1以下。 这些独特的非凹陷接头密封胶可以复合形成强柔软的低模量弹性体,非常适用于垂直接头,受到极限循环运动的影响,如现代建筑施工中常见的那样。