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Comparison of Laser Welding Strength And Ordinary Welding Strength

Views: 0     Author: Site Editor     Publish Time: 2025-01-15      Origin: Site

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The strength of laser welding is usually about 10% -30% higher than that of ordinary welding. This improvement is mainly due to the high energy density and precise welding process of laser welding, which makes the weld more uniform and firm. ‌


Comparison of Strength between Laser Welding and Conventional Welding


Welding strength: The strength of laser welding is usually about 10% -30% higher than that of ordinary welding. This is because the laser beam can accurately focus on the welding point, forming high-quality welds, thereby improving the strength and sealing of the welding.


Welding quality: The quality of laser welding is better than that of ordinary welding. The heat affected zone of laser welding is small, the weld depth to width ratio is high, the weld is smooth and beautiful, and there are few welding defects. In contrast, ordinary welding has a larger heat affected zone, lower weld depth to width ratio, rough and unsightly welds, and more welding defects.


Application areas: Laser welding has a wide range of applications in aerospace, automotive manufacturing, electronic equipment, and other fields. Ordinary welding is widely used in various industrial manufacturing, but laser welding is gradually replacing traditional welding in some fields due to its high strength and high quality.


The process principles and application scenarios of laser welding and ordinary welding


Process principle: Laser welding uses high-energy density laser beams for local heating and melting, suitable for welding thin-walled materials and precision parts. Ordinary welding involves melting and connecting through an arc or other heat source, and is suitable for conventional welding of various materials.


Application scenario: Laser welding is suitable for precision parts manufacturing that require high-quality welds due to its high precision and strength. Ordinary welding is widely used in fields such as automobile manufacturing, construction, and machinery to meet the needs of large-scale production and low cost.


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