Crack controlling means for laser deposition formed metal parts
A technology of laser cladding and control methods, which is applied in laser welding equipment, metal processing equipment, manufacturing tools, etc., can solve the problems of laser cladding forming cracks and poor versatility, and achieve the reduction of residual thermal stress, crack reduction, The effect of eliminating residual stress
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Embodiment 1
[0014] The 8-layer laser cladding forming test was carried out on the nickel-based alloy, the laser power was 1.5KW, and the scanning speed was 100mm / min. When the temperature closed-loop control was not adopted, when the cladding reached 4 to 5 layers, a crisp crackling sound could be heard; When the cladding forming contour closes the parts, the overlap of the cladding layer is seriously overheated and collapses, the formed parts are warped and deformed, and a large number of micro-cracks or even macro-cracks appear at the junction with the matrix; when the PID is used to control the molten pool temperature in a closed loop, The temperature distribution of the cladding layer is uniform, the surface precision is improved, and the cracks in the cladding layer almost disappear.
Embodiment 2
[0016] Carry out 8-layer laser cladding forming test on nickel-based alloy, laser power 1.5KW, scanning speed 120mm / min, introduce ultrasonic vibration device during forming process, vibration frequency 25KHz, and adjust the output power in the range of 150-500W, observe the ultrasonic vibration Effects on tissue and cracks. When the power of the ultrasonic vibrator is 150W, the microstructure of the nickel-based alloy formed by laser cladding is similar to the structure without ultrasonic vibration, which is composed of thick dendrites grown by epitaxial growth. The number of cracks within 100mm range is 10 under the microscope; When the vibration power was increased to 250W, the originally well-developed dendrites were broken and became short, the grains were obviously refined, and the number of cracks within 100mm was reduced to 6; as the vibration power was increased to 500W, the structure of the cladding layer The morphology has changed significantly, the dendrite branche...
Embodiment 3
[0018] An 8-layer laser cladding forming test was carried out on nickel-based alloy powder. The laser power was 1.5KW and the scanning speed was 120mm / min. Ultrasonic vibration was introduced during the forming process and PID was used to control the molten pool temperature in a closed-loop manner. The vibration frequency was 25KHz and the vibration power was 500W. The surface of the formed test piece is smooth without cracks.
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