Laser machining device and method for machining pipe-shaped materials
A technology of laser processing and pipe materials, which is applied in the direction of metal processing, tubular objects, laser welding equipment, etc., and can solve the problem of high cost
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Embodiment 1
[0021] see figure 1 , in this embodiment, the present invention is a kind of laser processing device for pipe material processing, comprises: computer control system 1, laser device 2, beam expander 3, beam rotation module 4, laser cutting head 5, rotating device 8, Coolant conveying device 7, and processing platform 6; Wherein, described beam rotation module 4, beam expander 3, arrange along the laser light path in turn, rotate and expand the laser beam in turn; by the computer control system 1 Control the laser 2 to emit laser light, and synchronously control the rotation of the beam rotation module 4 and the movement of the processing platform 6 in the X and Y directions, the laser cutting head 5 is fixed on the processing platform 6, and the laser beam passing through the laser cutting head 5 Acting on the pipe 100 fixed on the rotating device 8 , the coolant conveying device 7 feeds the coolant from one end of the pipe 100 to make the laser cutting head 5 process the pipe...
Embodiment 2
[0033] In this embodiment, the device is used for processing cardiovascular stents, and it is difficult to achieve high-quality processing of cardiovascular stents by traditional processing methods. Cardiovascular stents such as stainless steel, titanium-nickel alloy, and polymer materials can be processed by the above-mentioned devices and processing methods.
[0034] Wherein the laser 2 is an ultrafast laser, that is, a picosecond or femtosecond laser.
[0035] First, the tubular material used to prepare the cardiovascular stent is placed on the rotating device 8 and clamped, and it can rotate at a uniform speed around the central axis with the rotating device 8;
[0036] Then, the computer control system 1 controls the laser 2 to emit laser light, and synchronously controls the rotation of the beam rotation module 4 and the movement of the processing platform 6 in the X and Y directions, and the laser cutting head 5 is fixed on the processing platform 6 , the laser through...
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