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    • 1. 发明授权
    • Heater device used for floor material etc. and floor material with
heater contained therein
    • 用于地板材料等的加热装置和其中包含加热器的地板材料
    • US5004895A
    • 1991-04-02
    • US376818
    • 1989-07-07
    • Yoshinori NishinoJunjiro Kishigami
    • Yoshinori NishinoJunjiro Kishigami
    • F24D13/02H05B3/14H05B3/36
    • F24D13/02F24D13/024H05B3/145H05B3/36H05B2203/005H05B2203/011H05B2203/017H05B2203/026H05B2203/032Y02B30/26
    • The present invention relates to a heater device used for a floow material with a heater contained therein and the like within a room and a floor material with a heater contained therein, said heater device comprising an insulating sheet, a plurality of belt-shaped electrodes stood in a row side by side at intervals on an upper surface of said insulating sheet, a plastic radiant body layer formed on an upper surface of the insulating sheet and said belt-shaped electrodes and an insulating layer formed on an upper surface of said radiant body layer, and said floor material with a heater contained therein comprising a bed plate, a first resin layer formed on said bed plate, a pair of belt-shaped electrodes provided at an interval on said first resin layer, a radiant body layer formed on an upper surface of said first resin layer and the belt-shaped electrodes, a second resin layer formed on an upper surface of said radiant body layer and a dressed sheet provided on an upper surface of said second resin layer.The floor material and the like using such the heater device can be uniformly heated all over the surface thereof and the breakage of the heater portion is not produced even though it is cut.
    • 本发明涉及一种用于室内装有加热器等的絮状材料的加热器装置和其中包含加热器的地板材料,所述加热器装置包括绝缘片,多个带状电极站立 在所述绝缘片的上表面上间隔地并排排列,形成在所述绝缘片的上表面上的塑料辐射体层和所述带状电极以及形成在所述辐射体的上表面上的绝缘层 层,并且所述地板材料与其中包含的加热器包括床板,形成在所述床板上的第一树脂层,在所述第一树脂层上间隔设置的一对带状电极,形成在所述第一树脂层上的辐射体层 所述第一树脂层的上表面和带状电极,形成在所述辐射体层的上表面上的第二树脂层和设置在所述辐射体层的上表面上的修整片 id第二树脂层。 使用这种加热装置的地板材料等可以在其整个表面上被均匀地加热,并且加热器部分的断裂即使被切割也不会产生。
    • 2. 发明授权
    • Laminated composite pipe
    • 复合复合管
    • US3948292A
    • 1976-04-06
    • US421960
    • 1973-12-05
    • Toshiho GotoYoshinori NishinoYasukazu Yamashita
    • Toshiho GotoYoshinori NishinoYasukazu Yamashita
    • F16L59/02F16L9/18
    • F16L59/027
    • A laminated composite pipe is produced by employing a pre-formed pipe as a core and applying a layer of reinforcing fiber onto the outer surface of the pipe core which is being lowered vertically in the direction of its length through a hopper and a tubular outer mold. Resin supplied to the hopper is drawn into an annular space between the wound pipe and the outer mold and forms a layer on the wound pipe core. A flexible pipe may be used as the core, together with a resin that can be subsequently cured, thereby forming a flexible laminated composite pipe which can be covered with a parting tape, stored in reel form, and given a permanent set after installation by curing the resin. Depending upon the nature of the resin employed and upon the number of resin layers applied to the pipe core, reinforcing, insulating and stiffening properties, or any combination of such properties, may be imparted to the composite pipe. A multi-channel pipe may be formed by the application to one of the composite pipes described above of an additional tape provided with spacer projections, followed by the application of reinforcing fiber and resin.
    • 通过使用预成形管作为芯并通过料斗和管状外模在其长度方向垂直降低的管芯的外表面上施加一层增强纤维来制造层压复合管, 。 提供给料斗的树脂被吸入到缠绕管和外部模具之间的环形空间中,并在缠绕管芯上形成一层。 可以使用柔性管作为芯,并且可以随后固化的树脂,从而形成柔软的层压复合管,其可以被分离的带覆盖,以卷轴形式存储,并且在安装之后通过固化赋予永久变形 树脂。 根据所使用的树脂的性质和施加到管芯上的树脂层的数量,可以赋予复合管的增强,绝缘和加强性能或这些性质的任何组合。 多通道管可以通过应用于上述复合管中的一个形成有设置有间隔件突起的附加带,随后应用增强纤维和树脂而形成。
    • 3. 发明授权
    • Yacht
    • 游艇
    • US4913079A
    • 1990-04-03
    • US269798
    • 1988-11-10
    • Yoshinori Nishino
    • Yoshinori Nishino
    • B63B5/24B63H20/04
    • B63B5/24B63H20/04
    • The invention relates to a yacht. The yacht has a body, and this body comprises at least outer and inner skins formed of a resin material incorporating reinforcement fibers therein, and a formed styrol material as a foamed synthetic resin member filled between the skin layers. Therefore, the body is resistant to compression force, tensile force, and bending force, and well withstands the impact force of waves. By use of these materials, the yacht is inexpensive to construct and is lightweight so that good improvement in speed can be obtained.
    • 本发明涉及一种游艇。 该游艇具有一个主体,该主体至少包括由其中包含增强纤维的树脂材料形成的外表皮和内表皮,以及填充在表皮层之间的形成的发泡合成树脂构件的苯乙烯材料。 因此,身体抵抗压缩力,拉力和弯曲力,并能很好地承受波浪的冲击力。 通过使用这些材料,该游艇的构造便宜且重量轻,可以获得良好的速度提高。
    • 4. 发明授权
    • Butterfly valve
    • 蝶阀
    • US4604254A
    • 1986-08-05
    • US735858
    • 1985-05-20
    • Masahiko YamamotoYoshinori NishinoTadayoshi UdaYoshiteru SonodaToshio Suyama
    • Masahiko YamamotoYoshinori NishinoTadayoshi UdaYoshiteru SonodaToshio Suyama
    • F16K1/226F16K1/228F16K27/02F16K1/22B28B7/22
    • F16K1/228F16K1/2261F16K27/0272Y10T137/7036
    • A butterfly valve comprises a substantially cylindrical casing (20) having an annular valve seat (A) on its inner peripheral surface, and a valve disk (44) disposed within the casing (20) and rotatable about an axis (35). The valve disk (44) is formed at an outer peripheral edge portion with an annular groove (52) in which an annular valve seal (51) is partially fitted. The valve seal (51) is adapted for pressing contact with the valve seat (A) at a predetermined pressure and anchored in the annular groove (52) by resin (58) pressure-injected into the annular groove (52) through a resin injection channel (53) in communication with the groove. Accordingly, the seal pressure of the valve seal (51) on the valve seat (A) can be set to the predetermined value at all times even if the dimensions of the valve seat (A) and the valve disk (44) and the position of the axis of rotation (35) involve errors.
    • 蝶阀包括在其内周表面上具有环形阀座(A)的基本上圆柱形的壳体(20),以及设置在壳体(20)内并可围绕轴线(35)旋转的阀盘(44)。 阀盘(44)在外周边缘部分形成有环形槽(52),环形阀密封件(51)部分地装配在该环形槽中。 阀门密封件51适于以预定的压力与阀座(A)压力接触并通过树脂注入到环形槽(52)中的树脂(58)固定在环形槽52中。 通道(53)与凹槽连通。 因此,即使阀座(A)和阀盘(44)的尺寸以及阀座(A)的位置,也可以始终将阀座(A)上的阀密封件(51)的密封压力始终设定为规定值 的旋转轴(35)涉及错误。
    • 5. 发明申请
    • Hot Water-Water Mixing Faucet
    • 热水 - 水混合龙头
    • US20080035209A1
    • 2008-02-14
    • US11630260
    • 2006-01-23
    • Isao NegishiYoshinori NishinoEiji Seki
    • Isao NegishiYoshinori NishinoEiji Seki
    • F16K31/70
    • G05D23/1353Y10T137/2499
    • [Problem]To completely close the space between the hot-water valve 3a and the hot-water valve seat a when ejecting the cold water, without increasing the size of the temperature-sensitive coil spring 5 constituted by the SMA spring. [Solution]In a hot water-water mixing faucet for holding a control valve body 3 in a balanced position between two springs, a bias spring 4 and a temperature-sensitive coil spring 5, and moves an adjusting screw 6a, which supports the bias spring 4, in an axial direction to change setting of the supporting position of the bias spring 4, a rear end side of the bias spring 4 is supported by a supporting member g which is formed separately from the adjusting screw 6a, the supporting member g is slidably inserted in the axial direction into a through-hole 63 provided on the adjusting screw 6a and is connected detachably to the adjusting screw 6a by means of an abutting section t1 provided in an area protruding from the through-hole 63 toward the bias spring 4 side, and a lifting spring 7, which biases the supporting member g to pull the supporting member g back toward the side opposite to the bias spring 4 to the adjusting screw 6a, is provided between an area protruding from the through-hole 63 toward the side opposite to the bias spring 4 and the adjusting screw 6a.
    • [问题]在不增加由SMA弹簧构成的感温螺旋弹簧5的尺寸的情况下,在喷射冷水时,完全关闭热水阀3a和热水阀座a之间的空间。 [解决方案]在用于将控制阀体3保持在两个弹簧,偏置弹簧4和感温螺旋弹簧5之间的平衡位置的热水 - 水混合龙头中,并且移动调节螺钉6a,其支撑 偏置弹簧4沿轴向改变偏置弹簧4的支撑位置的设定,偏置弹簧4的后端侧由与调节螺钉6a分开形成的支撑构件g支撑,支撑构件 构件g沿轴向滑动地插入到设置在调节螺钉6a上的通孔63中,并且通过设置在从通孔突出的区域中的抵接部分t 1可拆卸地连接到调节螺钉6a 63朝向偏置弹簧4侧,并且提升弹簧7,其将支撑构件g偏压以将支撑构件g向与调节螺钉6a的偏置弹簧4相反的一侧向后拉动, th e通孔63朝向与偏置弹簧4相对的一侧和调节螺钉6a。
    • 7. 发明授权
    • Method and apparatus for molding bent pipes made up of composite material
    • 由复合材料制成弯管的方法和装置
    • US4483670A
    • 1984-11-20
    • US422560
    • 1982-09-24
    • Masahiko YamamotoYoshinori NishinoAkio KomuraTomio Ebisu
    • Masahiko YamamotoYoshinori NishinoAkio KomuraTomio Ebisu
    • B29C33/50B29C43/12B29C5/04
    • B29C33/50B29C43/12B29L2023/004
    • A method and apparatus for manufacturing bent pipes of a composite material composed of resin and filling materials such as reinforcing materials and aggregates by employing a cylindrical molding tool which is deformable between straight-axis form and bent-axis form. Materials are supplied into the molding tool held in horizontally straight condition while the tool is rotated about a horizontal axis, and are molded into a pipe by centrifugal molding. Rotation of the tool is stopped when the pipe molded therein is in uncured state, then the tool is subjected to bending. The resulting bent pipe is removed after it is cured. Before the tool is bent, a bag made of a flexible sheet material is inserted into the pipe and inflated to straighten out the inner periphery of the pipe so as to protect the pipe from any possibility of deformation during bending operation. The molding tool is preferably made of such resilient material as rubber, is incased in a peripherally divisible frame or bellows-type flexible frame which, in turn, is suitably incased in a rotary frame. More preferably, the molding tool has a hollow space provided between its inner and outer walls; by filling liquid in the hollow space it is possible to achieve fine roundness in pipe molding irrespective of dimensional errors with the molding tool or frame.
    • 一种用于制造由树脂和填充材料如增强材料和骨料组成的复合材料的弯曲管的方法和装置,该方法和装置采用可在直轴形和弯轴形之间变形的圆柱形模具。 当工具围绕水平轴旋转时,将材料供给到水平直线状态的模具中,并通过离心模塑成型为管。 当模制在其中的管子处于未固化状态时,工具的旋转停止,然后该工具受到弯曲。 所得到的弯管在固化后被去除。 在工具弯曲之前,将由柔性片材制成的袋子插入管中并充气以使管道的内周伸直,以便在弯曲操作期间保护管道不发生变形的可能性。 模制工具优选地由诸如橡胶的弹性材料制成,被包围在可外围可分割的框架或波纹管型柔性框架中,该框架或波纹管型柔性框架进而适当地在旋转框架中被覆盖。 更优选地,模制工具具有设置在其内壁和外壁之间的中空空间; 通过在中空空间中填充液体,可以实现管模中的细圆度,而与成型工具或框架的尺寸误差无关。
    • 9. 发明授权
    • Method for molding bent pipes made up of composite material
    • 由复合材料制成弯曲管道的方法
    • US4518556A
    • 1985-05-21
    • US254051
    • 1981-04-14
    • Masahiko YamamotoYoshinori NishinoAkio KomuraTomio Ebisu
    • Masahiko YamamotoYoshinori NishinoAkio KomuraTomio Ebisu
    • B29C33/50B29C43/12B29C5/04
    • B29C33/50B29C43/12B29L2023/004
    • A method and apparatus for manufacturing bent pipes of a composite material composed of resin and filling materials such as reinforcing materials and aggregates by employing a cylindrical molding tool which is deformable between straight-axis form and bent-axis form. Materials are supplied into the molding tool held in horizontally straight condition while the tool is rotated about a horizontal axis, and are molded into a pipe by centrifugal molding. Rotation of the tool is stopped when the pipe molded therein is in uncured state, then the tool is subjected to bending. The resulting bent pipe is removed after it is cured. Before the tool is bent, a bag made of a flexible sheet material is inserted into the pipe and inflated to straighten out the inner periphery of the pipe so as to protect the pipe from any possibility of deformation during bending operation. The molding tool is preferably made of such resilient material as rubber, is incased in a peripherally divisible frame or bellows-type flexible frame which, in turn, is suitably incased in a rotary frame. More preferably, the molding tool has a hollow space provided between its inner and outer walls; by filling liquid in the hollow space it is possible to achieve fine roundness in pipe molding irrespective of dimensional errors with the molding tool or frame.
    • 一种用于制造由树脂和填充材料如增强材料和骨料组成的复合材料的弯曲管的方法和装置,该方法和装置采用可在直轴形和弯轴形之间变形的圆柱形模具。 当工具围绕水平轴旋转时,将材料供给到水平直线状态的模具中,并通过离心模塑成型为管。 当模制在其中的管子处于未固化状态时,工具的旋转停止,然后该工具受到弯曲。 所得到的弯管在固化后被去除。 在工具弯曲之前,将由柔性片材制成的袋子插入管中并充气以使管道的内周伸直,以便在弯曲操作期间保护管道不发生变形的可能性。 模制工具优选地由诸如橡胶的弹性材料制成,被包围在可外围可分割的框架或波纹管型柔性框架中,该框架或波纹管型柔性框架进而适当地在旋转框架中被覆盖。 更优选地,模制工具具有设置在其内壁和外壁之间的中空空间; 通过在中空空间中填充液体,可以实现管模中的细圆度,而与成型工具或框架的尺寸误差无关。
    • 10. 发明授权
    • Hot water-water mixing faucet
    • 热水水混合龙头
    • US07832650B2
    • 2010-11-16
    • US11630260
    • 2006-01-23
    • Isao NegishiYoshinori NishinoEiji Seki
    • Isao NegishiYoshinori NishinoEiji Seki
    • G05D23/185G05D23/13
    • G05D23/1353Y10T137/2499
    • A hot water-water mixing faucet holds a control valve body in a balanced position between a bias spring and a temperature-sensitive coil spring. An adjusting screw 6a supports the bias spring in an axial direction to change setting of the supporting position of the bias spring, and a rear end side of the bias spring is supported by a supporting member which is formed separately from the adjusting screw. The supporting member is slidably inserted in the axial direction into a through-hole provided on the adjusting screw and is connected detachably to the adjusting screw by an abutting section provided in an area protruding from the through-hole toward the bias spring side. A lifting spring biases the supporting member to pull the supporting member back toward the side opposite to the bias spring to the adjusting screw 6a.
    • 热水 - 水混合龙头将控制阀体保持在偏置弹簧和温度敏感螺旋弹簧之间的平衡位置。 调节螺钉6a沿轴向支撑偏置弹簧,以改变偏置弹簧的支撑位置的设定,偏置弹簧的后端侧由与调节螺钉分开形成的支撑构件支撑。 支撑构件沿轴向滑动地插入设置在调节螺钉上的通孔中,并且通过设置在从通孔向偏置弹簧侧突出的区域中的抵接部分可拆卸地连接到调节螺钉。 提升弹簧偏压支撑构件,以使支撑构件朝向与偏压弹簧相对的一侧向调整螺钉6a拉动。