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Ultrafine-Keyhole Welding Process Using Single-Mode Fiber Laser

机译:使用单模光纤激光器的超细钥匙孔焊接工艺

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Deep penetration welding process with ultra-fine keyhole of thin stainless steel foil with thickness between 10 μm and 100 μm was studied using a single mode Yb-fiber laser with a CW maximum output of 40W. The spot size of approximately 10 m at 1/e e2-power point of the maximum value was obtained, which provides power density of 10 -108W/cm W/cm2 at 40W. Ultra-fine keyhole process was discussed based on energy coupled to the specimen W WC, the laser energy passing though the metal foil W , WP and the back-reflected laser power W WR and keyhole process was compared with that of electron beam welding. It was found that defocusing by the refraction in the plume cannot be neglected without assist gas in laser welding with such a fine spot diameter at especially low welding speeds. Although the critical power density for keyhole welding was 1 to 2 orders larger higher than the case of macrowelding, keyhole was maintained up to at least 1m/s at 25W, providing penetration depth of 50 μm, if the keyhole condition is once fulfilled in microwelding. Humping is suppressed in microwelding because the flow path beside the keyhole is kept larger even at very high welding speeds resulting in reduced flow velocity of the molten metal.
机译:使用单模YB-光纤激光器研究了具有厚度为10μm和100μm的厚度的薄不锈钢箔的深度渗透焊接工艺,具有CW最大输出为40W。获得的最大值的1 / E E2功率点的光斑尺寸约为10μm,为40W提供10 -108W / cm W / cm 2的功率密度。基于耦合到试样W WC的能量讨论超细钥匙孔工艺,通过金属箔W,WP和背反射激光功率W WR和锁孔工艺的激光能量与电子束焊接进行比较。发现通过羽毛中的折叠散焦不能被忽略,而无需辅助气体焊接的气体,特别是低焊接速度。尽管锁孔焊接的临界功率密度比Macrowelding的情况较高1至2个次数,但如果钥匙孔条件曾经在微型孔条件下实现,则将钥匙孔保持高达至少1m / s的孔径,提供50μm的穿透深度。在微孔中抑制了驼峰,因为即使在非常高的焊接速度下,钥匙孔旁边的流动路径保持较大,导致熔融金属的流速减小。

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