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Fatigue Properties of Welded joints of High-Carbon Steels

机译:高碳钢焊接关节的疲劳性能

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The typical tool steels of the wood-cutting industry are the unalloyed and chromium and nickel containing, low-alloyed eutectoid steels. These materials, in tempered condition have a very high, 1200-1400 MPa tensile strength. One of the major failure forms of these tools is the fatigue fracture of the tool. The high pretension and the cyclic load, caused by the cutting and the bending of the tool, easily can cause high-cycle fatigue fracture, especially at the welded area and at the heat affected zone. Thus, one of the most critical part in the manufacturing process of the bandsaw blade is the welding. We have examined the fatigue properties of three types of joints: conventional and cold wire TIG welding, MIG welding, and resistance-butt welded joints. The structure at the weld and at the heat affected zone could highly affect the life-span of the tool. Therefore the welding parameters (preheat, post welding heat treatment (PWHT), shield gas, backing gas), affecting the microstructure of the weld, also have serious affects on the fatigue properties. The influence of welding parameters on the fatigue properties were examined by low-cycle fatigue test.
机译:木材切削工业的典型工具钢是未合金化的和铬和含镍,含镍,低合金化的eutectoid钢。这些材料,在钢化条件下具有非常高,1200-1400MPa拉伸强度。这些工具的主要失败形式之一是该工具的疲劳骨折。由切割和工具的弯曲引起的高预留和循环负载容易引起高循环疲劳骨折,尤其是在焊接区域和热影响区域处。因此,带锯刀片的制造过程中最关键的部分中的一个是焊接。我们研究了三种关节的疲劳性能:常规和冷线TIG焊接,MIG焊接和电阻焊接接头。焊缝和热影响区域的结构可能会影响工具的寿命。因此,焊接参数(预热,焊接后热处理(PWHT),屏蔽气,背燃气),影响焊缝的微观结构,对疲劳性能也具有严重影响。通过低循环疲劳试验检查焊接参数对疲劳性能的影响。

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