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Tomeetthedemandforproductionandprecision,researchersandequipmentbuildersarelookingout...
To meet the demand for production and precision,researchers and equipment builders are looking outside the bounds of conventional milling,drilling,turning,and grinding. New cutting and machining processes continue to emerge along with methods for modifying the conventional techniques.
Laser-assisted machining. Laser-assisted machining is a process that has long been researched and now ready to come out the lab. In this operation, a laser beam is projected onto the part through fiber optics or some other optical-beam delivery unit, just ahead of the tool(as shown in Fig.34.1).During a cut,laser power is varied to match the profile being cut. CO2 laser are usually used with power levels from 200 to 500 W. The laser-induced heat softens the workpiece and make it easier to cut. 展开
Laser-assisted machining. Laser-assisted machining is a process that has long been researched and now ready to come out the lab. In this operation, a laser beam is projected onto the part through fiber optics or some other optical-beam delivery unit, just ahead of the tool(as shown in Fig.34.1).During a cut,laser power is varied to match the profile being cut. CO2 laser are usually used with power levels from 200 to 500 W. The laser-induced heat softens the workpiece and make it easier to cut. 展开
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To meet the demand for production and precision,researchers and equipment builders are looking outside the bounds of conventional milling,drilling,turning,and grinding. New cutting and machining processes continue to emerge along with methods for modifying the conventional techniques.
Laser-assisted machining. Laser-assisted machining is a process that has long been researched and now ready to come out the lab. In this operation, a laser beam is projected onto the part through fiber optics or some other optical-beam delivery unit, just ahead of the tool(as shown in Fig.34.1).During a cut,laser power is varied to match the profile being cut. CO2 laser are usually used with power levels from 200 to 500 W. The laser-induced heat softens the workpiece and make it easier to cut.
为了满足需求的生产和精度,研究人员和设备制造商正在看着窗外的界限传统铣、钻、车削、及研磨。新切割和加工流程不断涌现随着修正方法传统的制造工艺。
Laser-assisted加工。Laser-assisted加工是一个过程,长期以来一直研究和现在准备出来的实验室。在这个手术,镭射光束被投射通过光学纤维部分或其他optical-beam交货单位,就在Fig.34.1工具(如图)后割伤、激光功率是多种多样的匹配的轮廓被削减。CO2激光通常被使用,从200功率电平的500 .激光热软化工件,让你更容易削减。
Laser-assisted machining. Laser-assisted machining is a process that has long been researched and now ready to come out the lab. In this operation, a laser beam is projected onto the part through fiber optics or some other optical-beam delivery unit, just ahead of the tool(as shown in Fig.34.1).During a cut,laser power is varied to match the profile being cut. CO2 laser are usually used with power levels from 200 to 500 W. The laser-induced heat softens the workpiece and make it easier to cut.
为了满足需求的生产和精度,研究人员和设备制造商正在看着窗外的界限传统铣、钻、车削、及研磨。新切割和加工流程不断涌现随着修正方法传统的制造工艺。
Laser-assisted加工。Laser-assisted加工是一个过程,长期以来一直研究和现在准备出来的实验室。在这个手术,镭射光束被投射通过光学纤维部分或其他optical-beam交货单位,就在Fig.34.1工具(如图)后割伤、激光功率是多种多样的匹配的轮廓被削减。CO2激光通常被使用,从200功率电平的500 .激光热软化工件,让你更容易削减。
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