Spiral spring quenching heat treatment process adopting water-soluble quenching medium
A technology of quenching medium and coil spring, which is applied in heat treatment furnaces, heat treatment equipment, manufacturing tools, etc., can solve the problems of low hardenability, hardness, strength, plasticity and fatigue properties, etc., and achieve improved fatigue limit, best strength and Effect of plasticity, refinement of martensitic substructure
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Embodiment 1
[0014] Put the 60Si2CrVAT spring steel into the resistance furnace and heat it to 870°C for 30 minutes, then take it out, put it into 5%PAG, 10%PAG, 13%PAG, 15%PAG, 20%PAG and mechanical quenching respectively Quenching treatment is carried out in oil, the temperature of the quenching medium is room temperature, and the medium should be evenly stirred during the quenching process, then tempered in an isothermal furnace at 440°C for 1.5h, and finally cooled to room temperature with oil.
[0015] The performance test results after heat treatment are shown in the table below:
[0016]
[0017] It can be seen from the data in the table that quenching with PAG quenching medium can improve the hardness, strength and plasticity of spring steel more than traditional quenching oil quenching; in addition, after quenching with the above-mentioned concentration of PAG, no quenching cracks appear in the spring steel , through several tests to determine the best use of PAG water-soluble ...
Embodiment 2
[0018] Embodiment 2: adopt the heat treatment process among the embodiment one, quenching medium is changed into 13%PAG and quenching oil, the spring steel after heat treatment is processed into standard fatigue sample respectively, then carry out fatigue test on fatigue testing machine, record and adopt The fatigue limit σ-1 after quenching with 13%PAG quenching medium is 781.5MPa, while the fatigue limit σ-1 after traditional oil quenching is only 713.9MPa, indicating that using 13%PAG as a quenching medium instead of traditional oil quenching can improve the spring steel fatigue performance.
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