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    • 7. 发明申请
    • Method to make fillet welds
    • 制造角焊缝的方法
    • US20140367365A1
    • 2014-12-18
    • US13986864
    • 2013-06-13
    • YuMing ZhangYi LuJinsong ChenZeng Shao
    • YuMing ZhangYi LuJinsong ChenZeng Shao
    • B23K9/18
    • B23K9/188
    • For fillet welding, sufficient amounts of metal must be deposited in order to make welds with sufficient sizes. In conventional submerged arc welding (SAW), the heat input is proportional to the amount of metal melted and is thus determined by the required weld size. In order to reduce the needed heat input, Double-Electrode SAW (DE-SAW) method is used for fillet joints. To minimize the heat input required to produce the welds with required geometry and sizes, a gap is introduced between the panel and the tee forming a modified fillet joint design. The use of the gap improves the ability of DE-SAW to produce the required weld beads at reduced heat input and penetration capability. Major parameters including the gap, travel speed and heat input level have been selected/optimized/minimized to produce required fillet weld beads with a minimized heat input based on qualitative and quantitative analyses.
    • 对于角焊,必须沉积足够量的金属,以便制造足够尺寸的焊缝。 在传统的埋弧焊(SAW)中,热输入与金属熔化成正比,因此由所需焊接尺寸决定。 为了减少所需的热量输入,使用双电极SAW(DE-SAW)方法进行圆角接头。 为了最小化生产具有所需几何形状和尺寸的焊缝所需的热输入,在面板和三通之间引入间隙,形成改进的圆角接头设计。 间隙的使用提高了DE-SAW在降低的热输入和穿透能力下产生所需焊接珠的能力。 已经选择/优化/最小化了包括间隙,行进速度和热输入水平的主要参数,以便根据定性和定量分析产生所需的角焊缝,并以最小化的热量输入。
    • 8. 发明授权
    • Hydrogen generating device
    • 氢发生装置
    • US08834585B2
    • 2014-09-16
    • US13187531
    • 2011-07-21
    • Yu-Hsiang LinHsuan-Yi Lu
    • Yu-Hsiang LinHsuan-Yi Lu
    • B01J7/00
    • C01B3/065B01J7/02C01B2203/066H01M8/04208H01M8/065Y02E60/362
    • A hydrogen generating device is adapted for a fuel cell. The hydrogen generating device includes a casing, a button, a solid reactant, a bag-shaped body, and at least one flexible element. The casing has a containing space and an opening. The button is integrally formed and connected to the casing to seal the opening. The solid reactant is disposed in the casing. The bag-shaped body is disposed in the casing and contains a liquid reactant. The flexible element is connected to the casing and is located in the containing space. The flexible element includes a bending end, wherein the flexible element is aligned to the button and is located between the button and the bag-shaped body. When the button is pressed, the button pushes the flexible element so the bending end pierces the bag-shaped body, and the liquid reactant flows out and reacts with the solid reactant to generate hydrogen.
    • 氢气发生装置适用于燃料电池。 氢生成装置包括壳体,按钮,固体反应物,袋状体以及至少一个柔性元件。 壳体具有容纳空间和开口。 按钮整体形成并连接到壳体以密封开口。 固体反应物设置在壳体中。 袋形体设置在壳体中并含有液体反应物。 柔性元件连接到壳体并且位于容纳空间中。 柔性元件包括弯曲端,其中柔性元件与按钮对准并且位于按钮和袋状体之间。 当按钮被按下时,按钮推动柔性元件,使得弯曲端刺穿袋状体,并且液体反应物流出并与固体反应物反应产生氢气。
    • 9. 发明授权
    • Pulse modulation charging method and apparatus
    • 脉冲调制充电方法及装置
    • US08803473B2
    • 2014-08-12
    • US13288920
    • 2011-11-03
    • Chun-Yi Lu
    • Chun-Yi Lu
    • H02J7/00
    • H02J7/0093Y02B40/90
    • A pulse modulation charging method is provided for charging a rechargeable battery device. In the method, a current pulse is provided according to a charge-discharge cycle, the rechargeable battery device is charged repeatedly with a charge current pulse width, and the rechargeable battery device is discharged with a discharge current pulse width. In addition, in the method one or more voltage threshold values are further designated. When a terminal voltage of the rechargeable battery device is greater than the voltage threshold value, the charge current pulse width is gradually reduced, so as to improve charge efficiency for charging the rechargeable battery device. A pulse modulation charging apparatus is further provided, which is used for charging the rechargeable battery device according to the steps described here.
    • 提供脉冲调制充电方法来对可再充电电池装置进行充电。 在该方法中,根据充放电循环提供电流脉冲,以充电电流脉冲宽度反复充电充电电池装置,并且以放电电流脉冲宽度放电可再充电电池装置。 此外,在该方法中,进一步指定一个或多个电压阈值。 当可充电电池装置的端子电压大于电压阈值时,充电电流脉冲宽度逐渐减小,从而提高充电电池装置的充电效率。 还提供一种脉冲调制充电装置,其用于根据这里描述的步骤为可再充电电池装置充电。