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    • 4. 发明申请
    • Total heat exchanging element
    • 总热交换元件
    • US20080047699A1
    • 2008-02-28
    • US11892915
    • 2007-08-28
    • Masaru TakadaHidemoto AraiYouichi SugiyamaHisao YokoyaKenzo TakahashiJunji HaradaMasayuki Tsubaki
    • Masaru TakadaHidemoto AraiYouichi SugiyamaHisao YokoyaKenzo TakahashiJunji HaradaMasayuki Tsubaki
    • F28F3/00
    • F28D21/0015F24F3/147F24F2003/1435F28D9/0062
    • When latent heat is transferred between the two airflows flowing along the respective sides of each partition member, not only a layer of moisture absorbent but also a layer of flame retardant lies in the direction of transfer of the moisture. Thus, even if the moisture is absorbed by the layer of moisture absorbent, the layer of flame retardant resists the moisture transfer so that the amount of transfer of the moisture decreases in that part with a drop in the moisture permeability of the partition member. To solve the problem, there is provided a total heat exchanging element comprising partition members and spacing members having moisture permeable portions provided with moisture permeability and flame resisting portions provided with flame retardancy, the both portions not overlapping with each other within each single member. For example, the partition members have the moisture permeable portions provided with moisture permeability, and the spacing members have the moisture resisting portions provided with flame retardancy.
    • 当在沿着每个分隔构件的相应侧面流动的两个气流之间转移潜热时,不仅一层吸湿剂而且一层阻燃剂位于水分转移的方向上。 因此,即使水分被吸湿剂层吸收,阻燃层抵抗水分转移,使得在该部分水分的转移量随分隔构件的透湿性降低而降低。 为了解决这个问题,提供了一种总热交换元件,其包括具有透湿部分和具有阻燃性的阻燃部分的透湿部分的分隔部件和间隔部件,两部分在每个单个部件内彼此不重叠。 例如,分隔构件具有透湿性的透湿部分,并且间隔部件具有提供阻燃性的防潮部分。
    • 5. 发明授权
    • Total heat exchanging element
    • 总热交换元件
    • US07299862B2
    • 2007-11-27
    • US10891016
    • 2004-07-15
    • Masaru TakadaHidemoto AraiYouichi SugiyamaHisao YokoyaKenzo TakahashiJunji HaradaMasayuki Tsubaki
    • Masaru TakadaHidemoto AraiYouichi SugiyamaHisao YokoyaKenzo TakahashiJunji HaradaMasayuki Tsubaki
    • F28F13/18
    • F28D21/0015F24F3/147F24F2003/1435F28D9/0062
    • When latent heat is transferred between the two airflows flowing along the respective sides of each partition member, not only a layer of moisture absorbent but also a layer of flame retardant lies in the direction of transfer of the moisture. Thus, even if the moisture is absorbed by the layer of moisture absorbent, the layer of flame retardant resists the moisture transfer so that the amount of transfer of the moisture decreases in that part with a drop in the moisture permeability of the partition member. To solve the problem, there is provided a total heat exchanging element comprising partition members and spacing members having moisture permeable portions provided with moisture permeability and flame resisting portions provided with flame retardancy, the both portions not overlapping with each other within each single member. For example, the partition members have the moisture permeable portions provided with moisture permeability, and the spacing members have the moisture resisting portions provided with flame retardancy.
    • 当在沿着每个分隔构件的相应侧面流动的两个气流之间转移潜热时,不仅一层吸湿剂而且一层阻燃剂位于水分转移的方向上。 因此,即使水分被吸湿剂层吸收,阻燃层抵抗水分转移,使得在该部分水分的转移量随分隔构件的透湿性降低而降低。 为了解决这个问题,提供了一种总热交换元件,其包括具有透湿部分和具有阻燃性的阻燃部分的透湿部分的分隔部件和间隔部件,两部分在每个单个部件内彼此不重叠。 例如,分隔构件具有透湿性的透湿部分,并且间隔部件具有提供阻燃性的防潮部分。
    • 6. 发明授权
    • Humidifier
    • 加湿器
    • US5624610A
    • 1997-04-29
    • US680554
    • 1996-07-09
    • Hisao YokoyaKenzo Takahashi
    • Hisao YokoyaKenzo Takahashi
    • F24F6/04B01F3/04
    • F24F3/1417F24F6/04F24F6/043F24F2003/1435
    • A humidifier includes water guide members (107) made of sheet-like porous material and the water guide member (107) is enclosed in an envelope-shaped film member formed of moisture permeable films (108) which allow no water but water vapor to permeate therethrough. The water guide member (107) and the film member are both combined to form a flat water guide component (104) of composite structure. Rows of ribs (105) for forming a plurality of parallel air channels (115) and water supply members (106) each having water supply holes (111) communicating with the water guide components (104) to supply water thereto are provided, and the ribs (105) and the water supply member (106) are joined to one side of the water guide component (104) to constitute a moistening function member (101) permeable to water. A plurality of moistening function members (101) are laminated so that the water supply holes tightly stick each other and that air supply layers (102) with the ribs (105) and water retention layers (103) with the water guide components (Q04) are alternately arranged one over another.
    • 加湿器包括由片状多孔材料制成的导水部件(107),并且导水部件(107)封闭在由透湿膜(108)形成的外壳形状的膜部件中,该膜部件不允许水而水蒸汽渗透 通过。 导水构件(107)和薄膜构件都组合形成复合结构的扁平导水构件(104)。 提供了用于形成多个平行空气通道(115)的肋条(105)和供水构件(106),每个排水构件具有与导水部件(104)连通以供应水的供水孔(111),并且 肋(105)和供水构件(106)连接到导水部件(104)的一侧以构成可渗透水分的润湿功能部件(101)。 多个加湿功能部件(101)被层叠,使得供水孔彼此紧密接合,并且具有引导部件(Q04)的具有肋(105)和保水层(103)的供气层(102) 交替地彼此排列。
    • 7. 发明授权
    • Heat exchanger
    • 热交换器
    • US4616695A
    • 1986-10-14
    • US699163
    • 1985-02-07
    • Kenzo TakahashiNobuo KumazakiHisao YokoyaHironobu NakamuraTadakatsu Kachi
    • Kenzo TakahashiNobuo KumazakiHisao YokoyaHironobu NakamuraTadakatsu Kachi
    • F28F3/08F28D9/00F24H3/02
    • F28D9/0068
    • A heat exchanger of a construction having a plurality of plates disposed in mutual confrontation at a predetermined spaced interval among them to separate two fluids to be subjected to heat-exchange; a fin disposed in the space interval among the mutually opposed plates to form a plurality of parallel flow paths for controlling flow of the two fluids in the spaced interval, the spaced interval formed by the plates being in a plurality of stacked layers, and the portion where the fin is present and the empty space where no fin is present being so disposed in the plurality of space intervals in layer form that they may be staggered in the direction of stacking the plates; and a control member provided in each of the space intervals in layer form to separate and alternately lead into each space interval the primary fluid and the secondary fluid so as to effect the heat exchanging operation between the primary fluid and the secondary fluid in the course of their passage through the spaced interval in layer, while producing a flow rate distribution in each of the fin sections and the empty sections by a static pressure loss distribution in the fin section.
    • 一种结构的热交换器,具有多个板,它们之间以预定的间隔间隔相互对置设置,以分离两个待进行热交换的流体; 在彼此相对的板之间的空间间隔中设置的翅片,以形成多个平行的流动路径,用于控制间隔间隔中的两种流体的流动,由多个层叠形成的间隔间隔, 其中存在翅片,并且没有翅片存在的空闲空间被布置在层的形式的多个空间间隔中,使得它们可以沿堆叠板的方向交错; 以及控制构件,其设置在层形式的每个空间间隔中,以分离并交替地引导到每个空间间隔中的主要流体和次级流体,以便在主流体和次级流体的过程中实现热交换操作 它们通过层间隔开的间隔,同时通过翅片部分中的静态压力损失分布在每个翅片部分和空部分中产生流量分布。
    • 8. 发明授权
    • Heat exchanger
    • 热交换器
    • US07320361B2
    • 2008-01-22
    • US11260137
    • 2005-10-28
    • Hidemoto AraiHisao YokoyaKenzou TakahashiYouichi SugiyamaMasaru TakadaMasataka Yoshino
    • Hidemoto AraiHisao YokoyaKenzou TakahashiYouichi SugiyamaMasaru TakadaMasataka Yoshino
    • F28F3/02
    • F28D21/0015F28D9/0062
    • A known heat exchanger has a lower rate of blocking the movement of moisture through the joint as compared to a joint bonded with a moisture impermeable adhesive because the corrugated and flat substrates are bonded with thermoplastic fibers by performing heating and pressurizing treatments, but has insufficient moisture permeability because both the flat substrate, which is a partition, and the corrugated substrate, which is a space retaining plate, have a poor moisture permeability.In a heat exchanger in which two types of air flows are directed across a moisture permeable partition plate spaced apart from an adjacent partition plate by a space retaining plate, and perform heat exchange between them through the partition plate, a joint is formed by bonding the partition plate and the space retaining plate using fluoro-resin or hydrocarbon resin containing a hydrophilic group to provide an excellent moisture absorption and diffusion property.
    • 与通过不透湿粘合剂接合的接头相比,已知的热交换器具有较低的阻塞水分通过接头的速率,因为通过进行加热和加压处理,波纹状和平坦的基底与热塑性纤维结合,但水分不足 渗透性,因为作为隔板的平坦基板和作为空间保持板的波纹状基板都具有差的透湿性。 在两个类型的空气流通过间隔板与相邻隔板间隔开的透湿分隔板的热交换器中,通过分隔板进行热交换,通过将接合 隔板和空间保持板,其使用含有亲水基团的氟树脂或烃树脂,以提供优异的吸湿扩散性。
    • 9. 发明授权
    • Separator manufacturing apparatus
    • 分离器制造装置
    • US4963081A
    • 1990-10-16
    • US430507
    • 1989-11-01
    • Hisao Yokoya
    • Hisao Yokoya
    • B29C31/06B29C43/22B29C43/58H01M2/18
    • B29C43/58B29C31/06B29C43/224H01M2/18
    • A separator manufacturing apparatus includes a transfer roller (2) with a plurality of annular shaping grooves (1) having a predetermined shape in cross section which are formed in the outer circumferential surface of the transfer roller in its circumferential direction, a resin feeding device (4) with nozzles (3) feed a hot-melt type resin to the annular shaping grooves (1) of the transfer roller (2), a base paper feeding device (5) to feed a continuous paper (W) at a predetermined speed to the outer circumferential surface of the transfer roller (2) supplied with the resin to thereby form by transfer a plurality of ribs (9) on a surface of the continuous paper (W), and a fault detecting device (6, 36, 46) to detect the shape and /or a dimension of the rib (9) formed by transfer. A resin drop receiving device (53) or an annular shaping groove cleaning device (63) may be provided so that maintenance of the transfer roller (2) can be easy.
    • 分离器制造装置包括:转印辊(2),其具有形成在转印辊的周向外周面上的具有规定形状的多个环状成形槽(1),树脂供给装置 如图4所示,喷嘴(3)将热熔型树脂供给到转印辊(2)的环形成形槽(1),原纸供给装置(5)以预定速度供给连续纸(W) 通过在连续纸(W)的表面上传送多个肋(9)而形成通过供给树脂的转印辊(2)的外周面,以及故障检测装置(6,36,46 )以检测通过转印形成的肋(9)的形状和/或尺寸。 可以设置树脂滴接收装置(53)或环形成形槽清洁装置(63),使得转印辊(2)的维护变得容易。
    • 10. 发明授权
    • Separator manufacturing apparatus
    • 分离器制造装置
    • US4897026A
    • 1990-01-30
    • US251365
    • 1988-09-30
    • Hisao Yokoya
    • Hisao Yokoya
    • B29C31/06B29C43/22B29C43/58H01M2/18
    • B29C43/58B29C31/06B29C43/224H01M2/18
    • A separator manufacturing apparatus includes a transfer roller (2) with a plurality of annular shaping grooves (1) having a predetermined shape in cross section which are formed in the outer circumferential surface of the transfer roller (2) in its circumferential direction, a resin feeding device (4) with nozzles (3) to feed a hot-melt type resin to the annular shaping grooves (1) of the transfer roller (2), a base paper feeding device (5) to feed a continuous paper (w) at a predetermined speed to the outer circumferential surface of the transfer roller (2) supplied with the resin to thereby form by transfer a plurality of ribs (9) on a surface of the continuous paper (w), and a fault detecting device (6, 36, 46) to detect the shape and/or a dimension of the rib (9) formed by transfer. A resin drop receiving device (53) or an annular shaping groove cleaning device (63) may be provided so that maintenance of the transfer roller (2) can be easy.
    • 分离器制造装置包括:转印辊(2),其具有在转印辊(2)的周向形成的外周面上形成有规定形状的多个环状成形槽(1),树脂 进料装置(4),其具有用于将热熔型树脂供给到转印辊(2)的环形成形槽(1)的喷嘴(3),供纸装置(5) 以预定的速度传送到供给树脂的转印辊(2)的外周面,从而通过在连续纸(w)的表面上传送多个肋(9)而形成,以及故障检测装置(6) ,36,46)以检测通过转印形成的肋(9)的形状和/或尺寸。 可以设置树脂滴接收装置(53)或环形成形槽清洁装置(63),使得转印辊(2)的维护变得容易。