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    • 41. 发明专利
    • Acoustic material
    • 声学材料
    • JP2007033899A
    • 2007-02-08
    • JP2005217511
    • 2005-07-27
    • Swcc Showa Device Technology Co Ltd昭和電線デバイステクノロジー株式会社
    • KITAMURA YUHIRAI SUSUMUOKASHITA MINORU
    • G10K11/16B32B5/32B32B27/40B60R13/08G10K11/162
    • PROBLEM TO BE SOLVED: To effectively absorb the noise on a low-frequency side of around 100 Hz, and to improve the flexibility of a product form.
      SOLUTION: The acoustic material includes a first foam layer 11, a first porous material layer 12 laminated on the front side (sound source side) of the first foam layer 11, a second porous material layer 13 laminated on the back side (rigid wall side) of the first foam layer 11, a second foam layer 14 laminated on the front side of the first porous material layer 12, and a third porous material layer 15 laminated on the front side of the second foam layer 14. The first and the second foam layers 11, 14 are formed of the foams composed of the respective components; a first diol of a molecular weight 500 to 5,000, a second diol of a molecular weight ≤500, an inorganic filler, water as a foaming agent, and isocyanate, as raw material components.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:有效地吸收大约100Hz的低频侧的噪声,并提高产品形式的灵活性。 解决方案:声学材料包括第一泡沫层11,层压在第一泡沫层11的前侧(声源侧)上的第一多孔材料层12,层压在背面的第二多孔材料层13 刚性壁侧),层叠在第一多孔材料层12的前侧的第二泡沫层14和层压在第二泡沫层14的前侧的第三多孔材料层15.第一泡沫层 并且第二泡沫层11,14由由各个组分组成的泡沫构成; 分子量为500〜5000的第一种二醇,分子量≤500的第二种二醇,无机填料,作为发泡剂的水和异氰酸酯作为原料成分。 版权所有(C)2007,JPO&INPIT
    • 42. 发明专利
    • Sound absorption panel and its installation method
    • 声吸收面板及其安装方法
    • JP2007005667A
    • 2007-01-11
    • JP2005185975
    • 2005-06-27
    • Swcc Showa Device Technology Co Ltd昭和電線デバイステクノロジー株式会社
    • KITAMURA YUHIRAI SUSUMU
    • H01F27/33
    • E04B1/86E04B2001/8452
    • PROBLEM TO BE SOLVED: To easily install a sound absorption material in a short time and to obtain prescribed sound absorption effect even if a rigid wall layer does not exist.
      SOLUTION: The sound absorption panel 1 includes a panel-like low frequency sound absorption material 11, a cover layer 12 laminated and arranged in front of the low frequency sound absorption material 11, the rigid wall layer 13 laminated and arranged at a back of the low frequency sound absorption material 11 and a panel frame member 14 which integrally makes the low frequency sound absorption material 11, the cover layer 12 and the rigid wall layer 13 into a unit. A material showing a superior sound absorption characteristic in a low frequency region of 100 Hz and 200 Hz is used as the low frequency sound absorption material 11. The cover layer 12 is constituted of a stainless steel punching metal or an expanded metal, for example. The rigid wall layer 13 is constituted of an iron plate having thickness of 2.0 mm, for example. The panel frame member 14 is provided with a U-shaped frame main body 3 and a lid 4 placed on an upper part of the frame main body 3. The frame main body 3 and the lid 4 are constituted of bodies obtained by bending a stainless steel metal plate into a U shape.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:即使刚刚的壁层不存在,也能够在短时间内容易地安装吸音材料并获得规定的吸音效果。 解吸方法:吸声板1包括面板状低频吸声材料11,层叠并布置在低频吸声材料11前面的覆盖层12,刚性壁层13层叠并布置在 低频吸音材料11的背面和将低频吸声材料11,覆盖层12和刚性壁层13整体地形成为一体的面板框架构件14。 作为低频吸音材料11,使用在100Hz,200Hz的低频区域显示出优异的吸音特性的材料。覆盖层12例如由不锈钢冲孔金属或多孔金属构成。 刚性壁层13例如由厚度为2.0mm的铁板构成。 面板框架构件14设置有设置在框架主体3的上部的U形框架主体3和盖4.框架主体3和盖4由通过弯曲不锈钢 钢金属板成U型。 版权所有(C)2007,JPO&INPIT
    • 44. 发明专利
    • 非接触給電システム
    • 非接触式电源系统
    • JP2014230474A
    • 2014-12-08
    • JP2013111335
    • 2013-05-27
    • 昭和電線デバイステクノロジー株式会社Swcc Showa Device Technology Co Ltd
    • HASEGAWA SHIROMORI MASAHIROKAMIYA KENJIICHIKAWA MASAHIROMIURA SEIKONDO KATSUSHIIIJIMA TATSUYA
    • H02J17/00B60L5/00B60L11/18B60M7/00H01F27/28H01F38/14H02J7/00
    • Y02T10/7005
    • 【課題】一次コイルと二次コイルの位置ずれによる電力伝送効率の低下を抑制できるとともに、共振現象を利用した大電力伝送を容易に実現できる非接触給電システムを提供する。【解決手段】非接触給電システムにおいて、一次コイル及び二次コイルは、U字型の磁性体コア部と、第1の脚部に巻線される第1の巻線部と、第2の脚部に巻線される第2の巻線部と、を備える。第1の巻線部及び第2の巻線部は、複数本のエナメル線が平編みされてなる平編みリッツ線を扁平面が重なるように巻線した矩形の渦巻き型コイルで構成され、長辺が平板部の長手方向と直交する方向に一致し、互いに逆方向の電流が流れるように第1の脚部又は第2の脚部に配置される。さらに、平編みリッツ線の扁平比(幅/厚さ)が5〜15であり、第1の巻線部及び前記第2の巻線部の細長比(長辺の長さ/短辺の長さ)が1.5〜5.0である。【選択図】図2
    • 要解决的问题:提供一种能够通过初级线圈和次级线圈的位置偏移来防止功率传输效率降低的非接触式电源系统,并且容易地实现利用谐振现象的高功率传输。解决方案:在 非接触供电系统,初级线圈和次级线圈包括U形磁芯部分,围绕第一腿部缠绕的第一绕组部分和围绕第二腿部部分缠绕的第二绕组部分。 第一绕组部分和第二绕组部分由矩形螺旋线圈形成,该矩形螺旋线圈通过卷绕通过平面编织多根漆包线而形成的平坦的利兹线,使得平坦表面重叠,并且被布置在 第一腿部或第二腿部,使得长边与平板部分的长度方向的正交宽度匹配,并且电流彼此相反地流动。 此外,扁平的利兹丝的扁平比为5〜15,第一卷绕部和第二卷绕部的伸长率(长边/短边的长度)为1.5〜5.0。
    • 45. 发明专利
    • Litz wire coil and heater
    • LITZ线圈和加热器
    • JP2013191499A
    • 2013-09-26
    • JP2012058607
    • 2012-03-15
    • Swcc Showa Device Technology Co Ltd昭和電線デバイステクノロジー株式会社
    • NAGAI MASAHIRO
    • H05B6/36
    • H05B6/36H05B6/44
    • PROBLEM TO BE SOLVED: To provide a Litz wire coil capable of suppressing impedance of a coil and preventing Litz wire omission (or element wire omission) from terminals of both ends or floating, and a heater using the Litz wire coil.SOLUTION: A Litz wire coil 10 is configured by winding a collection Litz wire 12 obtained by collecting at least one Litz wire 16A twisted in a right direction and at least Litz wire 16B twisted in a left direction into a coil shape, and both ends of the collection Litz wire 12 are respectively provided with at least one terminal 14A obtained by connecting only Litz wires 16A twisted in the right direction and at least one terminal 14B obtained by connecting only Litz wires 16B twisted in the left direction. A heater includes such as a Litz wire coil.
    • 要解决的问题:提供一种能够抑制线圈阻抗并阻止来自两端或浮动端子的利兹线省略(或元件省略)的利兹线圈线圈和使用利兹线圈的加热器。解决方案:利兹 线圈10通过将通过收集沿向右扭转的至少一个利兹线16A和向左方向扭曲的至少莱茨线16B收集而获得的集合丽兹线12构成为线圈形,并且收集利兹线的两端 12分别设置有至少一个端子14A,其通过仅连接沿右方向扭曲的Litz线16A和仅沿L方向连接的Litz线16B获得的至少一个端子14B而获得。 加热器包括诸如Litz线圈。
    • 46. 发明专利
    • Laminated rubber bearing body
    • 层压橡胶轴承体
    • JP2013002509A
    • 2013-01-07
    • JP2011132690
    • 2011-06-14
    • Swcc Showa Device Technology Co Ltd昭和電線デバイステクノロジー株式会社
    • YANAGI KATSUYUKIKATO NAOKIKAIHATSU MIYUKIMAENO KEI
    • F16F15/04E04H9/02F16F1/40
    • PROBLEM TO BE SOLVED: To provide a laminated rubber bearing body without reducing a buckling characteristic by the realization of further high bearing pressure, by setting a secondary shape factor to 5 or more, by maintaining 4 sec or more on a natural period of a base isolation building, without changing an outer diameter of the laminated rubber bearing body.SOLUTION: This laminated rubber bearing body includes a base isolation laminated body 9 vulcanized and adhered by alternately laminating a plurality of rubber plates 1 and a hard plate 2 made of a metallic material such as a steel plate, and flanges 4a and 4b respectively superposed on both upper-lower sides of connecting steel plates 3a and 3b and installing the connecting steel plates 3a and 3b via bolts 5a and 5b. A rubber material R in the same as the rubber plates 1 is filled in a central hole 6 arranged in the center of the hard plate 2 and the rubber plates 1. Assuming the secondary shape factor of the laminated rubber bearing body as Sand a modulus of shearing elasticity of the rubber plates 1 as G[N/mm], conditions of (a) S≥5 and (b) G≥0.5 are satisfied.
    • 要解决的问题:为了通过将自身周期保持4秒以上,通过将次要形状因子设定为5以上,能够通过实现更高的轴承压力而不降低翘曲特性来提供层叠橡胶轴承体 的基础隔离建筑物,而不改变层压橡胶支承体的外径。 解决方案:该层压橡胶轴承体包括通过交替层叠多个橡胶板1和由诸如钢板的金属材料制成的硬板2和凸缘4a和4b硫化并粘附的基底隔离层压体9 分别叠置在连接钢板3a和3b的上下两侧,并通过螺栓5a和5b安装连接钢板3a和3b。 与橡胶板1相同的橡胶材料R填充在布置在硬板2和橡胶板1的中心的中心孔6中。假设层压橡胶支承体的二次形状因子为S 2 ,橡胶板1的剪切弹性模量为G [N / mm 2 ],(a)S 2 ≥5,(b)G≥0.5。 版权所有(C)2013,JPO&INPIT
    • 48. 发明专利
    • Sound insulating device
    • 声音绝缘装置
    • JP2010186144A
    • 2010-08-26
    • JP2009031556
    • 2009-02-13
    • Swcc Showa Device Technology Co Ltd昭和電線デバイステクノロジー株式会社
    • KITAMURA YUMURANISHI SATORUNARIYOSHI IKUMA
    • G10K11/16
    • PROBLEM TO BE SOLVED: To provide a sound insulating device which is compact and can efficiently insulate sound of a noise source accompanied by heat generation.
      SOLUTION: The noise insulating device 1 includes: a housing 3 for wrapping a device 2 which generates heat and sound; and an air intake duct 4 provided in the housing 3. In the housing 3, an inhaling opening 5 for inhaling outside air, and an exhaling opening 6 for exhaling air inside the housing 3 are provided. One side of the intake duct 4 is connected to the inhale opening 5, and the other side connected to inside the housing 3. The intake duct 4 is arranged near the device 2, ranging from a side where the inhaling opening 5 of the housing 3 is provided, to near position of a facing side to the inhaling opening 5. In a middle part in the housing 3, a partition plate 7 is provided so that the housing 3 may be divided into a lower part housing 31 and an upper part housing 32, and inside of the lower housing 31 may be connected to inside of the upper housing 32.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种紧凑的隔音装置,并且可以有效地隔离伴随发热的噪声源的声音。 解决方案:隔音装置1包括:用于包裹产生热和声的装置2的壳体3; 以及设置在壳体3中的进气管道4.在壳体3中,设置有用于吸入外部空气的吸入口5和用于呼出壳体3内部的空气的排气口6。 进气管道4的一侧连接到吸入口5,另一侧连接到壳体3的内部。进气管道4设置在设备2附近,从壳体3的吸入开口5的一侧 被设置在靠近吸入口5的相对侧的靠近位置。在壳体3的中间部分设置有隔板7,使得壳体3可以被分成下部壳体31和上部壳体 32,并且下壳体31的内部可以连接到上壳体32的内部。版权所有(C)2010,JPO&INPIT
    • 49. 发明专利
    • Method for diagnosing laminated rubber
    • 用于诊断层压橡胶的方法
    • JP2010048762A
    • 2010-03-04
    • JP2008215414
    • 2008-08-25
    • Airec Engineering CorpSwcc Showa Device Technology Co LtdTakenaka Komuten Co Ltdアイレック技建株式会社昭和電線デバイステクノロジー株式会社株式会社竹中工務店
    • SUZUKI YASUSUKEIGARASHI SHINYANAGASHIMA YUJISEKI MOTONARIKATO NAOKIYANAGI KATSUYUKI
    • G01N29/04
    • PROBLEM TO BE SOLVED: To provide a method for diagnosing the rubber layer of a laminated rubber with ultrasonic waves.
      SOLUTION: A nondestructive inspection device 10 inspects the presence of a damage from the external surface to the inside of a rubber layer 18 in a state that a laminated rubber 22 supports a building 44. The nondestructive inspection device 10 has a personal computer 40 as a controller and analyzer, and a pulse generating device 42 generates pulses in accordance with an instruction from the personal computer 40 and transmit them through a cable 28 to an ultrasonic probe 24. The ultrasonic probe 24 generates ultrasonic waves from the pulses from the pulse generating unit 42. The ultrasonic waves generated is entered through a cylinder 24L and an inspection jig 46, from the external surface to the inside of the rubber layer 18. The incident ultrasonic waves are reflected in the rubber layer 18 and received by the ultrasonic probe 25 through the inspecting jig 46 on a receiving side. The ultrasonic probe 25 transmits ultrasonic waves to the personal computer 40. The personal computer 40 diagnoses the presence of a damage in a time from pulse generation to ultrasonic reception.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种用超声波诊断层压橡胶的橡胶层的方法。 解决方案:非破坏性检查装置10在层压橡胶22支撑建筑物44的状态下检查从橡胶层18的外表面到内部的损伤的存在。非破坏性检查装置10具有个人计算机 40作为控制器和分析器,并且脉冲发生装置42根据来自个人计算机40的指令产生脉冲,并通过电缆28将其发送到超声波探头24.超声波探头24从来自 产生的超声波通过气缸24L和检查夹具46从橡胶层18的外表面到内部进入。入射的超声波被反射在橡胶层18中并被超声波接收 探头25通过接收侧的检查夹具46。 超声波探头25向个人计算机40发送超声波。个人计算机40诊断从脉冲发生到超声波接收的时间的损坏。 版权所有(C)2010,JPO&INPIT
    • 50. 发明专利
    • Noise insulating device
    • 噪声绝缘装置
    • JP2009139481A
    • 2009-06-25
    • JP2007313634
    • 2007-12-04
    • Swcc Showa Device Technology Co Ltd昭和電線デバイステクノロジー株式会社
    • KITAMURA YUTAKAYAMA KEIICHI
    • G10K11/16F04D29/66H01F30/00
    • PROBLEM TO BE SOLVED: To effectively insulate noise from a noise source which generates heat, with a simple configuration. SOLUTION: The noise insulating device includes: a housing 3 for wrapping a device 2 which generates heat and sound; and a sound permeable film 4 and a sheet type sound absorbing material 5, which are separately arranged in the housing 3. The sound permeable film 4 and the sound absorbing material 5 are arranged to be perpendicular to a transmission direction of air transmission sound, and the sound permeable film 4 is arranged at an upper stream side of the sound absorbing material 5. The sound permeable film 4 is composed of a material which has characteristics for separating sound and heat, for example, a resin-made film etc. of a micron order thickness, such as a finely-woven fabric material, or a polyvinylidenechloride-based synthetic film, with a number of dense minute apertures. COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:以简单的配置有效地隔离产生热量的噪声源的噪声。 解决方案:隔音装置包括:用于包裹产生热和声的装置2的壳体3; 以及分离设置在壳体3中的透声膜4和片状吸音材料5.透声膜4和吸声材料5布置成垂直于空气传播声的传播方向,并且 透声膜4布置在吸声材料5的上游侧。透声膜4由具有分离声音和热的特性的材料构成,例如树脂膜等 微米级厚度,例如微细织物材料或聚偏二氯乙烯基合成膜,具有多个致密的微孔。 版权所有(C)2009,JPO&INPIT