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    • 1. 发明申请
    • METHOD FOR MOLDING PIEZOELECTRIC POLYMER AND MOLDED BODY
    • 用于模压压电聚合物和模制体的方法
    • US20160008851A1
    • 2016-01-14
    • US14649447
    • 2013-11-28
    • A SCHOOL CORPORATION KANSAI UNIVERSITY
    • Yoshiro TAJITSUYasuyuki KARASAWA
    • B06B1/06B29C43/56C08G63/08H04R17/00H04R31/00H04R7/12B29C43/52B29C43/02
    • B06B1/0655B06B1/0644B29C43/02B29C43/52B29C43/56B29C2043/561B29K2067/046B29K2433/12B29L2031/38C08G63/08C08L67/04G10K9/122H01L41/193H01L41/333H01L41/45H04R7/12H04R17/005H04R31/00H04R2231/001H04R2307/025H04R2499/11C08L33/12
    • A method for molding capable of molding a piezoelectric polymer into polymer piezoelectric materials having various shapes is provided. A vibration generator using a polymer piezoelectric material and a speaker capable of generating a high sound pressure and achieving flat sound pressure-frequency characteristics are provided. A material formed from a piezoelectric polymer is molded at a temperature not less than the glass transition temperature and less than the crystallization temperature of the piezoelectric polymer and is then heat-treated at a temperature not less than the crystallization temperature of the piezoelectric polymer. A vibration generator comprising a piezoelectric portion formed from a piezoelectric polymer; a first electrode disposed on a first main surface of the piezoelectric portion; and a second electrode disposed on a second main surface of the piezoelectric portion, which has a piezoelectric modulus of 0.5 pC/N or more and satisfies at least one of the following (a) to (c): (a) the ratio of the length in the longitudinal direction to the thickness of the piezoelectric portion is about 100 or more; (b) the ratio of the curvature radius of a curved portion to the thickness of the piezoelectric portion is about 10 or more; and (c) the ratio of the length in the longitudinal direction to the curvature radius of the curved portion of the piezoelectric portion is about 0.01 or more.
    • 提供了一种能够将压电聚合物模塑成具有各种形状的聚合物压电材料的模制方法。 提供一种使用聚合物压电材料的振动发生器和能够产生高声压并实现平坦的声压 - 频率特性的扬声器。 由压电聚合物形成的材料在不低于玻璃化转变温度并低于压电聚合物的结晶温度的温度下成型,然后在不低于压电聚合物的结晶温度的温度下进行热处理。 一种振动发生器,包括由压电聚合物形成的压电部分; 设置在所述压电部的第一主面上的第一电极; 以及设置在所述压电部件的第二主表面上的压电模量为0.5pC / N以上并满足以下(a)〜(c)中的至少一个的第二电极:(a) 长度方向相对于压电部的厚度的长度为约100以上; (b)弯曲部的曲率半径与压电部的厚度的比率为10以上; 和(c)长度方向的长度与压电部的弯曲部的曲率半径的比为0.01以上。
    • 3. 发明申请
    • RECYCLING METHOD OF WASTE SCAGLIOLA
    • 废弃物回收方法
    • US20130055926A1
    • 2013-03-07
    • US13697642
    • 2010-07-09
    • Yong-Soon LeeMu-Sik Noh
    • Yong-Soon LeeMu-Sik Noh
    • C04B32/02
    • C04B18/16B29B17/02B29B2017/0496B29K2105/16B29K2433/12B29K2995/002B29K2995/0021C04B18/20C04B20/02Y02W30/622Y02W30/625Y02W30/95Y02W30/96C04B20/026C04B2111/545
    • Provided is a method of recycling waste scagliola, which includes a pre-treating step, a pyrolysing step, a resin recycling step, and a filler recycling step. The pre-treating step includes storing the waste scagliola of a dry dust type, drying and storing the waste scagliola of a wet dust type, or pulverizing and storing the waste scagliola of a scrap type. The pyrolysing step includes receiving and heating a recycling raw material stored in the dust or granular type in the pre-treating step, and decomposing the raw material into a resin mixed gas and a filler mixed solid material. The resin recycling step includes receiving the resin mixed gas decomposed in the pyrolysing step, and recycling a resin from which impurities are removed by a purifying process. The filler recycling step includes receiving the filler mixed solid material decomposed in the pyrolysing step, and recycling a filler from which impurities are removed by a firing process. Thereby, the resin and filler are more effectively recycled from the waste scagliola, so that it is possible to prevent environmental pollution caused by disposing the waste scagliola, and to enhance an effect of reducing resource waste according to resource recycling.
    • 本发明提供了一种回收废弃锯齿刀的方法,其包括预处理步骤,热解步骤,树脂再循环步骤和填料再循环步骤。 预处理步骤包括储存干粉尘类型的废弃草皮,干燥并储存湿粉尘类型的废弃草皮,或粉碎和储存废料类型的废弃草药。 热解步骤包括在预处理步骤中接收和加热储存在粉尘或颗粒状的再循环原料,并将原料分解成树脂混合气体和填料混合固体材料。 树脂再循环步骤包括接收在热解步骤中分解的树脂混合气体,并通过净化处理循环除去杂质的树脂。 填料回收步骤包括接收在热解步骤中分解的填料混合固体材料,以及再循环通过焙烧过程除去杂质的填料。 由此,能够更有效地从废弃锯屑回收树脂和填料,从而可以防止由于处置废弃物而造成的环境污染,并且能够提高根据资源回收而减少资源浪费的效果。