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    • 3. 发明申请
    • HEAT EXCHANGER AND ITS MANUFACTURING METHOD
    • 热交换器及其制造方法
    • US20100051249A1
    • 2010-03-04
    • US12617297
    • 2009-11-12
    • Mitsunori TANIGUCHIOsao KidoToshiaki Mamemoto
    • Mitsunori TANIGUCHIOsao KidoToshiaki Mamemoto
    • F28F3/00B21D53/02F28F3/04F28F3/12
    • F28F3/086Y10T29/4935
    • A heat exchanger is provided which has an easy-to-manufacture structure, is inexpensive, and has high quality and reliability while keeping high heat exchanging performance. The heat exchanger has first substrates (26) having first slits (30) and second slits (40) disposed substantially in parallel, and second substrates (28) having third slits (50) with substantially the same shape as that of first slits (30). The longitudinal length of second substrates (28) is set shorter than that of second slits (40). First substrates (26) and second substrates (28) are stacked so that first slits (30) communicate with third slits (50). First slits (30) and third slits (50) form tube external flow channels (60). Second slits (40) and second substrates (28) form tube internal flow channels (70). The heat exchanging section including only tubes can be formed of substrates having a slit, so that the heat exchanger can be manufactured easily and inexpensively.
    • 提供一种具有易于制造的结构,便宜并且具有高质量和可靠性同时保持高热交换性能的热交换器。 所述热交换器具有第一基板(26),所述第一基板具有基本上平行设置的第一狭缝(30)和第二狭缝(40),第二基板(28)具有与第一狭缝(30)大致相同形状的第三狭缝 )。 第二基板(28)的纵向长度被设定为比第二狭缝(40)的长度短。 第一基板(26)和第二基板(28)被堆叠,使得第一狭缝(30)与第三狭缝(50)连通。 第一狭缝(30)和第三狭缝(50)形成管外部流动通道(60)。 第二狭缝(40)和第二基板(28)形成管内部流动通道(70)。 仅包括管的热交换部可以由具有狭缝的基板形成,从而可以容易且廉价地制造热交换器。
    • 4. 发明授权
    • Heat exchanger and its manufacturing method
    • 热交换器及其制造方法
    • US07637313B2
    • 2009-12-29
    • US10593696
    • 2005-04-12
    • Mitsunori TaniguchiOsao KidoToshiaki Mamemoto
    • Mitsunori TaniguchiOsao KidoToshiaki Mamemoto
    • F28D1/03
    • F28F3/086Y10T29/4935
    • A heat exchanger which, while having excellent heat exchanging performance, has a structure easy to produce, is of low cost, and has high quality and reliability. The heat exchanger has first base plates (26), in each of which first slits (30) and second slits (40) are provided in substantially parallel to each other, and has second base plates (28), in each of which third slits (50) with substantially the same shape as a first slit (30) are provided. The length in the longitudinal direction of a second base plate (28) is set to be less than the length of a second slit (40). The first base plates (26) and the second base plates (28) are layered over each other such that the first slits (30) provided in the first base plates (26) and the third slits (50) provided in the second base plates (28) are communicated. Flow paths (60) outside tubes are constructed by the first slits (30) provided in the first base plates (26) and the third base plates (50) provided in the second base plates (28). Flow paths (70) inside the tubes are constructed by the second slits (40) provided in the first base plates (26) and the second base plates (28). Since a heat exchanging section formed only by tubes can be constructed by the base plates with the slits, the heat exchanger can be easily produced. Further, the heat exchanger can be provided at low cost.
    • 具有优异的热交换性能的热交换器具有易于生产的结构,成本低,质量可靠。 热交换器具有第一基板(26),其中每个基板彼此基本平行地设置有第一狭缝(30)和第二狭缝(40),并且具有第二基板(28),每个基板 (50)具有与第一狭缝(30)基本相同的形状。 第二基板(28)的纵向长度被设定为小于第二狭缝(40)的长度。 第一基板(26)和第二基板(28)彼此层叠,使得设置在第一基板(26)中的第一狭缝(30)和设置在第二基板(26)中的第三狭缝 (28)。 管外部的流路(60)由设置在第一基板(26)中的第一狭缝(30)和设置在第二基板(28)中的第三基板(50)构成。 管内的流路(70)由设置在第一基板(26)和第二基板(28)中的第二狭缝(40)构成。 由于仅由管形成的热交换部可以由具有狭缝的基板构成,因此能够容易地制造热交换器。 此外,可以以低成本提供热交换器。
    • 5. 发明授权
    • Heat exchanger and its manufacturing method
    • 热交换器及其制造方法
    • US08230909B2
    • 2012-07-31
    • US12617325
    • 2009-11-12
    • Mitsunori TaniguchiOsao KidoToshiaki Mamemoto
    • Mitsunori TaniguchiOsao KidoToshiaki Mamemoto
    • F28F3/00F28F9/22
    • F28F3/086Y10T29/4935
    • A heat exchanger is provided which has an easy-to-manufacture structure, is inexpensive, and has high quality and reliability while keeping high heat exchanging performance. The heat exchanger has first substrates (26) having first slits (30) and second slits (40) disposed substantially in parallel, and second substrates (28) having third slits (50) with substantially the same shape as that of first slits (30). The longitudinal length of second substrates (28) is set shorter than that of second slits (40). First substrates (26) and second substrates (28) are stacked so that first slits (30) communicate with third slits (50). First slits (30) and third slits (50) form tube external flow channels (60). Second slits (40) and second substrates (28) form tube internal flow channels (70). The heat exchanging section including only tubes can be formed of substrates having a slit, so that the heat exchanger can be manufactured easily and inexpensively.
    • 提供一种具有易于制造的结构,便宜并且具有高质量和可靠性同时保持高热交换性能的热交换器。 所述热交换器具有第一基板(26),所述第一基板具有基本上平行设置的第一狭缝(30)和第二狭缝(40),第二基板(28)具有与第一狭缝(30)大致相同形状的第三狭缝 )。 第二基板(28)的纵向长度被设定为比第二狭缝(40)的长度短。 第一基板(26)和第二基板(28)被堆叠,使得第一狭缝(30)与第三狭缝(50)连通。 第一狭缝(30)和第三狭缝(50)形成管外部流动通道(60)。 第二狭缝(40)和第二基板(28)形成管内部流动通道(70)。 仅包括管的热交换部可以由具有狭缝的基板形成,从而可以容易且廉价地制造热交换器。
    • 6. 发明申请
    • Heat Exchanger And Its Manufacturing Method
    • 换热器及其制造方法
    • US20080135218A1
    • 2008-06-12
    • US10593696
    • 2005-04-12
    • Mitsunori TaniguchiOsao KidoToshiaki Mamemoto
    • Mitsunori TaniguchiOsao KidoToshiaki Mamemoto
    • F28D1/04B21D53/02
    • F28F3/086Y10T29/4935
    • A heat exchanger which, while having excellent heat exchanging performance, has a structure easy to produce, is of low cost, and has high quality and reliability. The heat exchanger has first base plates (26), in each of which first slits (30) and second slits (40) are provided in substantially parallel to each other, and has second base plates (28), in each of which third slits (50) with substantially the same shape as a first slit (30) are provided. The length in the longitudinal direction of a second base plate (28) is set to be less than the length of a second slit (40). The first base plates (26) and the second base plates (28) are layered over each other such that the first slits (30) provided in the first base plates (26) and the third slits (50) provided in the second base plates (28) are communicated. Flow paths (60) outside tubes are constructed by the first slits (30) provided in the first base plates (26) and the third base plates (50) provided in the second base plates (28). Flow paths (70) inside the tubes are constructed by the second slits (40) provided in the first base plates (26) and the second base plates (28). Since a heat exchanging section formed only by tubes can be constructed by the base plates with the slits, the heat exchanger can be easily produced. Further, the heat exchanger can be provided at low cost.
    • 具有优异的热交换性能的热交换器具有易于生产的结构,成本低,质量可靠。 热交换器具有第一基板(26),其中每个基板彼此基本平行地设置有第一狭缝(30)和第二狭缝(40),并且具有第二基板(28),每个基板 (50)具有与第一狭缝(30)基本相同的形状。 第二基板(28)的纵向长度被设定为小于第二狭缝(40)的长度。 第一基板(26)和第二基板(28)彼此层叠,使得设置在第一基板(26)中的第一狭缝(30)和设置在第二基板(26)中的第三狭缝 (28)。 管外部的流路(60)由设置在第一基板(26)中的第一狭缝(30)和设置在第二基板(28)中的第三基板(50)构成。 管内的流路(70)由设置在第一基板(26)和第二基板(28)中的第二狭缝(40)构成。 由于仅由管形成的热交换部可以由具有狭缝的基板构成,因此能够容易地制造热交换器。 此外,可以以低成本提供热交换器。
    • 8. 发明授权
    • Manifold incorporating a thermoelectric module and a cooling device using the thermoelectric module
    • 包含热电模块的歧管和使用该热电模块的冷却装置
    • US06354086B1
    • 2002-03-12
    • US09319467
    • 1999-07-29
    • Hisayoshi InoueShohei InamoriMasatsugu FujimotoToshio UetsujiOsao Kido
    • Hisayoshi InoueShohei InamoriMasatsugu FujimotoToshio UetsujiOsao Kido
    • F25B2102
    • H01L35/30F25B21/02
    • A manifold having such a built-in and round thermoelectric module that is capable of coming into an efficient contact with heat exchanging media, to afford an improved efficiency of heat exchange. The module easy to manufacture has a structure facilitating the multiplication of its thermoelectric elements. The manifold (1) generally consisting of a heating side section (2) and a cooling side section (3) has a cooling side agitator (5), a heating side agitator (6), the module (7) and a motor assembly (8), all incorporated in or attached to the manifold. The module has heat transfer upright faces (50,51) so that any bubbles coming into cavities (52,55) are allowed to ascend along the faces and then leave the manifold (1) through outlets (22,43) protruding from an upper portion of the manifold. Permanent magnets (33) accompanying the agitators (5,6) act to transmit torque from one of them (6) to the other (5). Square thermoelectric elements (111) are sandwiched between aluminum discs (112,113) to form a generally round module (120).
    • 具有这种内置和圆形热电模块的歧管,其能够与热交换介质有效接触,以提供改进的热交换效率。 易于制造的模块具有便于其热电元件倍增的结构。 通常由加热侧部分(2)和冷却侧部分(3)组成的歧管(1)具有冷却侧搅拌器(5),加热侧搅拌器(6),模块(7)和马达组件 8),所有这些都并入或连接到歧管。 模块具有热传递直立面(50,51),使得进入空腔(52,55)的任何气泡都沿着表面上升,然后通过从上部突出的出口(22,43)离开歧管(1) 歧管的一部分。 伴随搅拌器(5,6)的永磁体(33)用于将扭矩从其中一个(6)传递到另一个(5)。 方形热电元件(111)被夹在铝盘(112,113)之间以形成大致圆形的模块(120)。
    • 10. 发明授权
    • Manifold with built-in thermoelectric module
    • 集成有内置热电模块
    • US06490869B1
    • 2002-12-10
    • US09936844
    • 2001-11-20
    • Toshio UetsujiSyouhei InamoriOsao KidoKenichi MorishitaMasatsugu Fujimoto
    • Toshio UetsujiSyouhei InamoriOsao KidoKenichi MorishitaMasatsugu Fujimoto
    • F25B2102
    • F25B21/02
    • A thermoelectric module (7) having exothermic and endothermic surfaces, which are heated and cooled, respectively, when an electric current is supplied thereto is built in a manifold body (17), and a cavity (10c, 10d, 20d) is defined therein for entry of a fluid medium in cooperation with at least one of the exothermic and endothermic surfaces, together with a hollow (10a, 10b, 20a, 20b) that extends from an outside to the cavity. A stirring member (5) having a stirring portion (15) integrated together with a rotor (16) within the manifold body (17) for stirring the fluid medium within the cavity is disposed within the manifold body, so that a motor can be formed by the rotor (16) and a stator (8). In this structure, the stirring member (5) is rotated by supplying electric power to the stator (8), to allow the fluid medium to reach the cavity (10c, 10d) through the interior of the rotor (16).
    • 具有放热和吸热表面的热电模块(7)分别在供应电流时被加热和冷却,并在其中限定了一个空腔(10c,10d,20d), 用于与放热和吸热表面中的至少一个协同进入流体介质,以及从外部延伸到空腔的中空(10a,10b,20a,20b)。 具有搅拌部(5)的搅拌部(5)与歧管体(17)内的转子(16)一体形成,用于搅拌空腔内的流体介质的搅拌部(5)配置在歧管体内,能够形成马达 通过转子(16)和定子(8)。 在该结构中,通过向定子(8)供给电力使搅拌部件(5)旋转,使流体介质通过转子(16)的内部到达空腔(10c,10d)。