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    • 1. 发明授权
    • Internally grooved heat exchanger pipe and metal bar working roll for internally grooved heat exchanger pipes
    • 内部带槽换热器管和金属棒工作辊,用于内部开槽换热器管
    • US06340050B1
    • 2002-01-22
    • US09582235
    • 2000-09-08
    • Yasutoshi MoriKouzi YamamotoKenzi NakamizoToshiaki Hashizume
    • Yasutoshi MoriKouzi YamamotoKenzi NakamizoToshiaki Hashizume
    • F28F140
    • B21B27/005B21B1/227B21B27/03B21C37/083B21C37/20F28F1/40Y10T29/49384
    • An internally-grooved heat exchanger tube according to the present invention is structured such that the internal surface is divided into a plurality of continuous areas (W1, W2) parallel to the axial direction (L) of the tube, a large number of fins (10, 11) different in at least one selected among lead angle (&thgr;, &thgr;′) to the axial direction (L) of the tube, fin vertical angle (&agr;, &agr;′) and fin pitch (p, p′) are formed in the adjacent areas (W1, W2), and a boundary portion (a) between the adjacent areas (W1, W2) is formed in the state of meandering to the axial direction (L) of the tube. A metal strip machining roll for an internally-grooved heat exchanger tube according to the present invention is structured such that a plurality of roll pieces (2a, 2b) each having a large number of grooves (20, 21) on each outer surface are combined together in layers parallel to the axial direction, and a contact surface (c) of one roll piece (2a) with its adjacent roll piece (2b) forms an inclined surface.
    • 根据本发明的内槽式热交换器管被构造成使得内表面被分成与管的轴向(L)平行的多个连续区域(W1,W2),大量翅片 形成从管角度(θ,θ')到管轴方向(L)中选择的至少一个不同的翅片垂直角(α,α')和翅片间距(p,p') 在相邻区域(W1,W2)和相邻区域(W1,W2)之间的边界部分(a)处于与管的轴向(L)相对的状态下形成。 根据本发明的内槽式热交换器管被构造成使得在每个外表面上具有大量凹槽(20,21)的多个辊片(2a,2b)被组合在一起,其平行于 形成一个辊片(2a)与其相邻的辊片(2b)的接触表面(c) 一个倾斜的表面。
    • 3. 发明申请
    • Light source device and projector
    • 光源设备和投影机
    • US20070189016A1
    • 2007-08-16
    • US11705761
    • 2007-02-14
    • Kentaro YamauchiToshiaki Hashizume
    • Kentaro YamauchiToshiaki Hashizume
    • F21V7/00
    • F21V7/0025H01J61/045H01J61/86H04N5/7441
    • A light source device includes: a light source lamp having a light-emitting tube with a discharge space and a pair of electrodes disposed in the discharge space of the light-emitting tube; a reflector extending in a substantially concave shape in section, the reflector reflecting a light beam irradiated from the light source lamp; and a sub-reflection mirror having a reflection surface that is disposed to face a reflection surface of the reflector, the sub-reflection mirror reflecting a part of the light beam irradiated from the light source lamp toward the discharge space. The light-emitting tube has a light-emitting section having the discharge space therein and sealing sections provided on both sides of the light-emitting section. The sub-reflection mirror is formed in a shape of a bowl that covers the light-emitting section of the light-emitting tube, the sub-reflection mirror having an opening for mounting the sub-reflection mirror to the light-emitting tube by allowing one of the sealing sections of the light-emitting tube to be inserted thereinto. A heat insulating member is provided to at least a part of the light-emitting section and the other one of the sealing sections of the light-emitting tube.
    • 光源装置包括:具有放电空间的发光管和布置在发光管的放电空间内的一对电极的光源灯; 反射器,其基本上呈凹形的部分延伸,所述反射器反射从所述光源灯照射的光束; 以及副反射镜,其具有设置成面对反射器的反射面的反射面,副反射镜将从光源灯照射的一部分光束反射向放电空间。 发光管具有其中具有放电空间的发光部分和设置在发光部分两侧的密封部分。 副反射镜形成为覆盖发光管的发光部的碗状,副反射镜具有用于通过允许将副反射镜安装到发光管的开口 要插入其中的发光管的密封部分之一。 在发光部的至少一部分和发光管的密封部的另一方面设置隔热部件。
    • 6. 发明申请
    • Method of manufacturing reflective mirror, illumination device, and projector
    • 制造反射镜,照明装置和投影仪的方法
    • US20050083494A1
    • 2005-04-21
    • US10916603
    • 2004-08-12
    • Toshiaki Hashizume
    • Toshiaki Hashizume
    • G02F1/13C03B23/07F21S2/00F21V7/00F21V7/06F21V7/08F21V7/09F21V13/00F21Y101/00G03B21/14G03B21/28
    • H04N9/315C03B23/07G03B21/2066
    • A reflective mirror manufacturing method for manufacturing a reflective mirror used in an illumination device including an arc tube including a light-emitting portion and a reflective mirror including a reflective surface that reflects light from the light-emitting portion in a predetermined direction, includes: a first step of forming a tube by heating a tube consisting of a material of the reflective mirror, thereafter putting the tube in a form block, applying internal pressure with an inert gas to cause a center portion of the tube to expand, so that part of an inner surface of the expanded center portion includes a shape corresponding to the reflective surface of the reflective mirror; a second step of cutting the tube at the center portion to form a reflective mirror member; and a third step of forming a reflective layer on an inner surface of the reflective mirror member. For this reason, it becomes possible to manufacture, at an inexpensive manufacturing cost, a smooth reflective mirror whose surface roughness is extremely small and whose light use efficiency is high.
    • 一种用于制造反射镜的反射镜制造方法,包括:包括发光部分的电弧管和包括反射表面的反射镜,所述反射镜包括反射表面,所述反射表面沿预定方向反射来自所述发光部分的光,所述反射镜制造方法包括: 通过加热由反射镜的材料构成的管,然后将管置于模块中,用惰性气体施加内压使管的中心部分膨胀来形成管的第一步骤,使得部分 扩张中心部分的内表面包括与反射镜的反射表面对应的形状; 第二步骤,在中心部分切割管以形成反射镜构件; 以及在反射镜构件的内表面上形成反射层的第三步骤。 因此,可以以廉价的制造成本制造表面粗糙度非常小,光使用效率高的平滑反射镜。
    • 10. 发明授权
    • Polarizer and optical device using the polarizer
    • 偏振器和使用偏振器的光学装置
    • US06833953B2
    • 2004-12-21
    • US10105452
    • 2002-03-26
    • Atsushi MiyazawaToshiaki Hashizume
    • Atsushi MiyazawaToshiaki Hashizume
    • G02B530
    • G02B5/3025G02B5/3083
    • A polarizer for converting incident light beam into a linear polarization light beam has a base plate of a material of low linear expansion coefficient, high thermal conductivity or low photoelastic constant, a birefringent portion formed by arranging minute metal concave tread on a surface of light-emission side of the base plate in stripe, and a protection plate covering the birefringent portion and made of the same material as the base plate, the base plate and the protection plate being bonded by an elastic adhesive on the periphery thereof so that the birefringent portion is sealed and enclosed by the protection plate and the elastic adhesive.
    • 用于将入射光束转换为线偏振光束的偏振器具有低线性膨胀系数,高导热性或低光弹性常数的材料的基板,通过在发光体的表面上布置微小的金属凹形胎面形成的双折射部分, 基板的发光侧,覆盖双折射部的保护板,由与基板相同的材料制成,基板和保护板通过弹性粘合剂在其周边上接合,使得双折射部分 密封并由保护板和弹性粘合剂包围。