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- W1521728143 abstract "The Aerospace Industry has adopted laser technology from its early days and several laser-aided manufacturing processes have become routine. Lasers can deliver energy from zero to a trillion watts in a small spot in an instant. That generated a wide portfolio. For example, laser peening needs more than 109 W cm−2, whereas laser welding can be accomplished with 106 W cm−2; laser drilling requires 108 W cm−2 compared to 105 W cm−2 or more for laser cladding and solid free form formation. The mechanism for different processes is different although the energy source is common. Interaction time for each process is different, too. Laser shock peening utilizes nanosecond pulses compared to millisecond pulses for drilling. Welding and cladding are generally carried out with continuous wave. The role they play is also varied. Drilling generates cooling holes for turbine blades to enhance the operating temperature whereas shot peening produces residual compressive stress on the blades to improve fatigue properties and reduce crack propagation. Welding is mostly used to join structural components whereas cladding repair of reconfigured aerospace components is used to increase their service life. This chapter will discuss the four most common uses of lasers in Aerospace Industry Manufacturing." @default.
- W1521728143 created "2016-06-24" @default.
- W1521728143 creator A5086774479 @default.
- W1521728143 date "2010-12-15" @default.
- W1521728143 modified "2023-09-23" @default.
- W1521728143 title "Lasers in Aerospace Industry Manufacturing" @default.
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- W1521728143 doi "https://doi.org/10.1002/9780470686652.eae208" @default.
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