Parts based on polyphenylene ethers and rubbers as well as methods for
their production
    2.
    发明授权
    Parts based on polyphenylene ethers and rubbers as well as methods for their production 失效
    基于聚苯醚和橡胶的部件以及其生产方法

    公开(公告)号:US4835063A

    公开(公告)日:1989-05-30

    申请号:US104943

    申请日:1987-10-06

    Abstract: Composite parts of firmly bonded molding materials, comprising a thermoplastic material containing polyphenylene ether, a layer of SBR or SBS rubber or a mixture thereof surrounding the thermoplastic material, if necessary, an intermediate layer comprising a powdered SBR rubber which may contain a filler, and a rubber containing carbon-carbon double bonds covulcanized with the layer of SBR or SBS rubber. The invention also provides a method for producing the composite part comprising treating the thermoplastic material with a solution of a SBR or SBS rubber in an organic solvent or with an aqueous latex of the rubber, if necessary, completely or partially removing the organic solvent or water, if necessary, treating the dried mass with a powdered SBR rubber which may contain a filler, and covulcanizing with a rubber containing carbon-carbon double bonds.

    Abstract translation: 包含聚苯醚的热塑性材料,SBR或SBS橡胶层或其热塑性材料的混合物(如果需要的话)的复合部件是包含可含有填料的粉末状SBR橡胶的中间层,以及 含有碳 - 碳双键的橡胶与SBR或SBS橡胶层共硫化。 本发明还提供了一种生产复合部件的方法,包括用SBR或SBS橡胶在有机溶剂中或与橡胶的水性胶乳的溶液处理热塑性材料,如有必要,可完全或部分地除去有机溶剂或水 如果需要,用可能含有填料的粉末状SBR橡胶处理干燥物料,并用含有碳 - 碳双键的橡胶进行共硫化。

    PIEZOELECTRIC GENERATOR, PUSHBUTTON, RADIO MODULE AND METHOD FOR PRODUCING A PIEZOELECTRIC GENERATOR

    公开(公告)号:US20180026554A1

    公开(公告)日:2018-01-25

    申请号:US15550876

    申请日:2016-02-13

    Abstract: A piezoelectric generator (1) is specified, comprising a deformation body (5), which spans a projection surface (6) and is embodied with a setpoint pressure surface (8) situated opposite the projection surface (6), wherein the projection surface (6) can be converted from a smaller projection surface (6) when not loaded under pressure into a larger projection surface (7) when pressure is applied to the setpoint pressure surface (8) substantially perpendicular to the projection surface (6), and a spring effect is provided which counteracts an application of pressure to the setpoint pressure surface (8), wherein an electromechanical transducer element comprising a piezoelectric material wholly or partly spans the projection surface (6), such that the transducer element is embodied in an expandable fashion upon pressure being applied to the deformation body (5), and electrical microenergy can be generated by means of the piezoelectric material.

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