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    • 2. 发明授权
    • Liquid cooling system for notebook computer
    • 笔记本电脑液体冷却系统
    • US06791834B2
    • 2004-09-14
    • US10307964
    • 2002-12-03
    • Tsuyoshi NakagawaYasushi NehoTatsuhiko MatsuokaMasahito SuzukiMasaaki EishimaKenichi NagashimaShinji MatsushitaKatsuhiro ArakawaKenichi Saito
    • Tsuyoshi NakagawaYasushi NehoTatsuhiko MatsuokaMasahito SuzukiMasaaki EishimaKenichi NagashimaShinji MatsushitaKatsuhiro ArakawaKenichi Saito
    • H05K520
    • G06F1/203G06F1/1616G06F1/1681G06F2200/201G06F2200/203
    • In a liquid-cooling system for a notebook personal computer having a body part including a CPU and a chip set respectively mounted on a mother board and an HDD, and a display part rotatably supported by the body part, a heat receiving head is fixed to at least one heat generation part including the CPU. A tube filled with cooling liquid is connected to the heat receiving head. The tube connected to the heat receiving head is disposed in series on at least one heat generation part including the chip set so as to collect the heat generated from each heat generation part. The tube is also laid in a meandering or zigzagging pattern between a liquid crystal panel and a housing of the display part. The heat generated from each heat generation part is absorbed at part of the tube by the cooling liquid that circulates in the tube and functions as a heat transfer medium. The absorbed heat is then radiated at another part of the tube. Consequently, the heat generated from the chip set including the CPU and other heat sources such as the HDD can be radiated together to the outside. Local temperature rising is prevented. An uniform temperature environment is attained on all the surfaces of the body part.
    • 在具有包括CPU和分别安装在母板和HDD上的芯片组的主体部分的笔记本个人计算机的液体冷却系统中,以及由主体部分可旋转地支撑的显示部分,热接收头被固定到 至少一个包括CPU的发热部分。 充满冷却液的管被连接到热接收头。 连接到受热头的管串联设置在包括芯片组的至少一个发热部分上,以收集从每个发热部产生的热量。 该管也在液晶面板和显示部分的壳体之间以曲折或锯齿状的图案放置。 由每个发热部产生的热量通过在管中循环的冷却液在管的一部分被吸收,起到传热介质的作用。 然后吸收的热量在管的另一部分被辐射。 因此,从包括CPU的芯片组和诸如HDD的其它热源产生的热可以一起辐射到外部。 防止局部温升。 在身体部位的所有表面上均匀地达到温度环境。
    • 4. 发明授权
    • Method for diagnosing the life of a solder connection
    • 用于诊断焊料连接寿命的方法
    • US5291419A
    • 1994-03-01
    • US938517
    • 1992-01-06
    • Ryohei SatohKatsuhiro ArakawaKiyoshi KanaiTsutomu TakahashiTakaji TakenakaHaruhiko Imada
    • Ryohei SatohKatsuhiro ArakawaKiyoshi KanaiTsutomu TakahashiTakaji TakenakaHaruhiko Imada
    • G01N3/00G01N3/32G01N3/60G01M5/00
    • G01N3/00G01N3/32G01N3/60G01N2203/0224G01N2203/0296
    • A method for evaluating the life of a connection between members including the steps of extracting parameters defining the shearing strain of a predetermined model representing the connection thereby to calculate the values of plural shearing strains of the connection, calculating the equivalent strain amplitude corresponding to thermal fatigue stress for each of the values of the plural shearing strains defining the relationship between the shearing strain and the equivalent strain amplitude, formulating a life evaluation criterion equation expressed using the equivalent strain amplitude, calculating, for the connection, the equivalent strain amplitude corresponding to each of the shearing strains actually measured using the equation, and substituting the equivalent strain amplitude for the life evaluation criterion equation to acquire the life of the connection. Further, in this method, an equation for evaluating the advancement of a crack is made using the equivalent strain amplitude, and the equivalent is substituted for the crack advancement evaluation equation to calculate the length of the crack.
    • 一种用于评估构件之间的连接寿命的方法,包括提取定义表示连接的预定模型的剪切应变的参数的步骤,从而计算连接的多个剪切应变值,计算对应于热疲劳的等效应变幅度 制定剪切应变与等效应变幅度之间的关系的多个剪切应变中的每个值的应力,制定使用等效应变振幅表示的寿命评估标准方程,为连接计算对应于每个剪切应变的等效应变幅度 的剪切应变使用等式实际测量,并将等效应变幅度代入寿命评估标准方程来获得连接的寿命。 此外,在该方法中,使用等效应变振幅来进行用于评价裂纹的推进的方程,并且将等效物代入裂纹推进评价方程式来计算裂纹的长度。