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    • 2. 发明申请
    • LASER-INDUCED METALLURGICAL BONDING DRIVEN WITHOUT CONTACT
    • 激光诱导的冶金结合无接触
    • US20120103949A1
    • 2012-05-03
    • US13334156
    • 2011-12-22
    • Glenn S. DaehnJohn C. Lippold
    • Glenn S. DaehnJohn C. Lippold
    • B23K26/20B23K20/00B23K37/04
    • B23K26/22B23K20/06B23K2101/125
    • A laser, aimed at a flyer plate tab, causes optical energy to be directed at the tab, specifically, at a top surface thereof. Energy impacting the tab accelerates the tab into an impact with a target sheet in a time on the order of about 10−5 seconds. The impact occurs in excess of 100 m/s, resulting in a metallurgical bond between the tab and the target sheet. The laser preferably strikes the top surface in a normal direction, based upon an initial angularity of the tab relative to the target. The laser emission may be augmented by an ablative layer on the top surface or a transparent covering on the top surface that reacts against the expanding gas from ablative activity on the top surface. The weld is formed without physical contact between the welding device and the tab.
    • 针对飞翼板片的激光器导致光能被引导到突片,特别是在其顶表面处。 影响标签的能量在大约10-5秒的时间内将标签加速到与目标纸张的冲击。 冲击发生在超过100m / s,导致凸片和目标片之间的冶金结合。 基于突片相对于目标的初始角度,激光优选沿正向方向撞击顶表面。 激光发射可以通过顶表面上的可消除层或顶表面上的透明覆盖物增强,其与顶表面上的烧蚀活性反应于膨胀气体。 焊接形成在焊接装置和接头之间没有物理接触。
    • 3. 发明授权
    • Chromium-free welding consumable
    • 无铬焊接耗材
    • US07425229B2
    • 2008-09-16
    • US11090976
    • 2005-03-25
    • Gerald S. FrankelJohn C. Lippold
    • Gerald S. FrankelJohn C. Lippold
    • B23K35/20C22C19/03
    • B23K35/3033B23K35/004B23K35/0261C22C19/03
    • A chromium-free welding consumable and a method of welding stainless steel to reduce the presence of chromium emissions. The consumable is made from an alloy that reduces the emission of chromium during a welding process, and include predominantly nickel, with between approximately five and twenty five percent by weight copper, up to approximately five percent by weight of palladium, up to approximately ten percent by weight of molybdenum and up to five percent non-copper alloying ingredients. Welding consumables made from the alloy are particularly well-suited for welding austenitic stainless steels, such as type 304 stainless steel. The method involves using chromium-free weld filler material with a stainless steel base material.
    • 无铬焊接材料和不锈钢焊接方法,以减少铬的排放。 消耗品由合金制成,其在焊接过程中减少了铬的排放,并且主要包括镍,其中铜含量约为5至25重量%,高达约5重量%的钯,高达约10重量% 的钼和至多5%的非铜合金成分。 由合金制成的焊接材料特别适用于焊接奥氏体不锈钢,如304不锈钢。 该方法涉及使用不锈钢基材的无铬焊料填充材料。
    • 4. 发明授权
    • Low-temperature laser spot impact welding driven without contact
    • 低温激光点冲击焊接驱动无接触
    • US08084710B2
    • 2011-12-27
    • US12921249
    • 2009-03-09
    • Glenn S. DaehnJohn C. Lippold
    • Glenn S. DaehnJohn C. Lippold
    • B23K26/00B23K20/12
    • B23K26/22B23K20/06B23K2101/125
    • A laser, aimed at a flyer plate tab, causes optical energy to be directed at the tab, specifically, at a top surface thereof. Energy impacting the tab accelerates the tab out of an initial bent position, straightening it into an impact with a target sheet. The impact occurs in excess of 100 m/s, resulting in a metallurgical bond between the tab and the target sheet. The laser preferably strikes the top surface in a normal direction, based upon an initial angularity of the tab relative to the target. The laser emission, preferably in the range of 1 to 100 Joules delivered in a microsecond, may be augmented by an ablative layer on the top surface or a transparent covering on the top surface that reacts against the expanding gas from ablative activity on the top surface. The weld is formed without physical contact between the welding device and the tab.
    • 针对飞翼板片的激光器导致光能被引导到突片,特别是在其顶表面处。 冲击突片的能量将拉片从初始弯曲位置加速,使其拉直成与目标片材的冲击。 冲击发生在超过100m / s,导致凸片和目标片之间的冶金结合。 基于突片相对于目标的初始角度,激光优选沿正向方向撞击顶表面。 激光发射优选在1至100焦耳的范围内,以微秒形式递送,可以通过顶表面上的可消除层或顶表面上的透明覆盖物来增强,该覆盖物在顶表面上的消融活性反应膨胀气体 。 焊接形成在焊接装置和接头之间没有物理接触。
    • 7. 发明授权
    • Chromium-free welding consumable
    • 无铬焊接耗材
    • US07743967B2
    • 2010-06-29
    • US12028891
    • 2008-02-11
    • Gerald S. FrankelJohn C. Lippold
    • Gerald S. FrankelJohn C. Lippold
    • B23K26/20B23K35/30B23K103/04
    • B23K35/3033B23K35/004B23K35/0261C22C19/03
    • A chromium-free welding consumable and a method of welding stainless steel to reduce the presence of chromium emissions. The consumable is made from an alloy that reduces the emission of chromium during a welding process, and include predominantly nickel, with between approximately five and twenty five percent by weight copper, up to approximately five percent by weight of palladium, up to approximately ten percent by weight of molybdenum and up to five percent non-copper alloying ingredients. Welding consumables made from the alloy are particularly well-suited for welding austenitic stainless steels, such as type 304 stainless steel. The method involves using chromium-free weld filler material with a stainless steel base material.
    • 无铬焊接材料和不锈钢焊接方法,以减少铬的排放。 消耗品由合金制成,其在焊接过程中减少了铬的排放,并且主要包括镍,其中铜含量约为5至25重量%,高达约5重量%的钯,高达约10重量% 的钼和至多5%的非铜合金成分。 由合金制成的焊接材料特别适用于焊接奥氏体不锈钢,如304不锈钢。 该方法涉及使用不锈钢基材的无铬焊料填充材料。
    • 10. 发明申请
    • LOW-TEMPERATURE SPOT IMPACT WELDING DRIVEN WITHOUT CONTACT
    • 低温喷射冲击焊接,无接触
    • US20110000953A1
    • 2011-01-06
    • US12921249
    • 2009-03-09
    • Glenn S. DaehnJohn C. Lippold
    • Glenn S. DaehnJohn C. Lippold
    • B23K20/06B23K20/00B23K31/02
    • B23K26/22B23K20/06B23K2101/125
    • A laser, aimed at a flyer plate tab, causes optical energy to be directed at the tab, specifically, at a top surface thereof. Energy impacting the tab accelerates the tab out of an initial bent position, straightening it into an impact with a target sheet. The impact occurs in excess of 100 m/s, resulting in a metallurgical bond between the tab and the target sheet. The laser preferably strikes the top surface in a normal direction, based upon an initial angularity of the tab relative to the target. The laser emission, preferably in the range of 1 to 100 Joules delivered in a microsecond, may be augmented by an ablative layer on the top surface or a transparent covering on the top surface that reacts against the expanding gas from ablative activity on the top surface. The weld is formed without physical contact between the welding device and the tab.
    • 针对飞翼板片的激光器导致光能被引导到突片,特别是在其顶表面处。 冲击突片的能量将拉片从初始弯曲位置加速,使其拉直成与目标片材的冲击。 冲击发生在超过100m / s,导致凸片和目标片之间的冶金结合。 基于突片相对于目标的初始角度,激光优选沿正向方向撞击顶表面。 激光发射优选在1至100焦耳的范围内,以微秒形式递送,可以通过顶表面上的可消除层或顶表面上的透明覆盖物来增强,该覆盖物在顶表面上的消融活性与膨胀气体反应 。 焊接形成在焊接装置和接头之间没有物理接触。