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    • 1. 发明授权
    • Method for grounding EBP processing
    • EBP处理接地方法
    • US06425970B1
    • 2002-07-30
    • US09467691
    • 1999-12-21
    • Warren Paul RippleBrian Richard Koch
    • Warren Paul RippleBrian Richard Koch
    • B32B2902
    • B29C43/24B29C59/16Y10S29/032Y10T29/49982Y10T29/53126Y10T29/5353
    • A method for grounding reinforcement (12) and composites (17) on a calender line reduces static build up on the composite (17), and makes it possible to subject a wire reinforced composite to electron beam processing (EBP). The method employs a slip ring (36) attached to rolls which contact composite (17) on the calender (11), and reinforcement (12) before it reaches the calender (11), wherein the slip ring (36) rotates with the rolls while the rolls are working polymer into the reinforcement, and a terminal (34) connected to the slip ring (36) remains stationary, and the terminal (34) is attached to ground (27). The method effectively grounds the composite as well as the reinforcement to prevent electrical discharge during EBP.
    • 在压延机线上加固(12)和复合材料(17)的方法减少了复合材料(17)上的静电积累,并且使得可以使钢丝增强复合材料进行电子束加工(EBP)。 该方法采用附接到辊上的滑环(36),其与压延机(11)上的复合材料(17)接触,并且在其到达压延机(11)之前的加强件(12))处,其中滑环(36)与辊 而辊是将加强的聚合物加入到加强件中,并且连接到滑环(36)的端子(34)保持静止,并且端子(34)附接到地面(27)。 该方法有效地使复合材料和增强材料防止EBP中的放电。
    • 4. 发明授权
    • Fibrous acoustical material for reducing noise transmission and method for producing same
    • 用于减少噪声传播的纤维声学材料及其制造方法
    • US06312542B1
    • 2001-11-06
    • US09699462
    • 2000-10-31
    • Makio NagataKatsumi MorohoshiHiroki NagayamaKouichi Nemoto
    • Makio NagataKatsumi MorohoshiHiroki NagayamaKouichi Nemoto
    • B32B2902
    • D04H1/44D04H1/42D04H1/54G10K11/162Y10T428/2929Y10T442/637Y10T442/692Y10T442/697
    • The invention relates to a fibrous acoustical material for reducing noise transmission. This fibrous acoustical material comprises first, second and third fibers. The first fiber has a first fineness of 1.5-20 deniers and a first softening point. The second fiber has a second fineness of 1.5-15 deniers. At least a surface of the second fiber has a second softening point which is at least 30° C. lower than the first softening point. The third fiber has a third fineness of 1.5-15 deniers. At least a surface of the third fiber has a third softening point which is lower than the second softening point and at least 80° C. lower than the first softening point. The first, second and third fibers are respectively in amounts of 10-90 wt %, 5-85 wt % and 5-85 wt %, based on a total weight of the first, second and third fibers. The first, second and third fibers are each within a range of from 20 to 100 mm in average fiber length. The fibrous acoustical material has an average apparent density of from 0.01 to 0.8 g/cm3. The fibrous acoustical material is light in weight and superior in acoustical capability, heat resistance and resistance to compressive force.
    • 本发明涉及一种用于减少噪音传播的纤维材料。 这种纤维性声学材料包括第一,第二和第三纤维。 第一纤维的第一细度为1.5-20旦尼尔和第一软化点。 第二纤维的第二纤度为1.5-15旦尼尔。 至少第二纤维的表面具有比第一软化点低至少30℃的第二软化点。 第三纤维的第三纤度为1.5-15旦。 至少第三纤维的表面具有比第二软化点低的第三软化点,并且比第一软化点低至少80℃。 基于第一,第二和第三纤维的总重量,第一,第二和第三纤维的量分别为10-90重量%,5-85重量%和5-85重量%。 第一,第二和第三纤维的平均纤维长度各自在20-100mm的范围内。 纤维状声学材料的平均表观密度为0.01〜0.8g / cm 3。 纤维性声学材料重量轻,声学性能,耐热性和抗压缩性优异。