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機械手臂自動化焊接方法介紹

發(fā)布:2024-03-05 瀏覽:0

機械手臂自動化焊接方法主要有以下幾種:

There are several main methods for automated welding of robotic arms:

點焊:點焊是為常用的一種焊接方法,適用于焊接薄板材料。

Spot welding: Spot welding is a commonly used welding method, suitable for welding thin plate materials.

機械手臂先將焊點定位到工件上,然后對焊點進行短暫加熱,將兩個金屬部件焊接在一起。

The robotic arm first positions the solder joint on the workpiece, then briefly heats the solder joint to weld the two metal components together.

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線焊:線焊通常用于焊接較大的工件,可以通過機械手臂自動完成鋼板的拼接,同時確保焊接位置的準(zhǔn)確性和質(zhì)量。機械手臂通過預(yù)設(shè)路徑和程序?qū)⒑稿a絲按照一定的角度和速度進行焊接。

Wire welding: Wire welding is usually used to weld larger workpieces and can automatically complete the splicing of steel plates through a robotic arm, while ensuring the accuracy and quality of welding positions. The robotic arm welds the solder wire at a certain angle and speed through a preset path and program.

氣體保護焊:氣體保護焊是一種適用范圍廣泛的焊接方法,通常用于焊接有一定厚度的金屬材料。機械手臂控制焊槍、焊炬等設(shè)備沿被焊接材料的輪廓進行焊接,同時加入保護氣體以防止氧氣與焊接金屬的反應(yīng)。

Gas shielded welding: Gas shielded welding is a widely applicable welding method, usually used for welding metal materials with a certain thickness. The robotic arm controls equipment such as welding guns and torches to weld along the contour of the material being welded, while adding protective gas to prevent the reaction between oxygen and the welding metal.

激光焊接:激光焊接是一種新興的焊接技術(shù),利用高能激光束直接將工件熔化,焊接速度快、質(zhì)量高,適用于高精度和高強度的要求。機械手臂通過預(yù)設(shè)路徑和控制程序,將激光束精確地定位在焊接區(qū)域完成焊接。機械手臂自動化焊接中,機械手臂需要結(jié)合各種傳感器、攝像頭、編程控制軟件等來完成精確定位、路徑規(guī)劃和焊接參數(shù)控制等任務(wù),對于提高焊接效率和質(zhì)量有很大作用。

Laser welding: Laser welding is an emerging welding technology that uses high-energy laser beams to directly melt workpieces, with fast welding speed and high quality, suitable for high-precision and high-strength requirements. The robotic arm precisely positions the laser beam in the welding area through preset paths and control programs to complete welding. In automated welding of robotic arms, various sensors, cameras, programming control software, etc. need to be combined to complete tasks such as precise positioning, path planning, and welding parameter control, which plays a significant role in improving welding efficiency and quality.

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