A power device for tire production equipment
A technology for production equipment and power devices, applied in transmission devices, electromechanical devices, mechanical equipment, etc., can solve problems such as unreasonable structural design, and achieve the effects of convenient connection, high wear resistance and toughness, and long service life
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Embodiment 1
[0047] The raw materials were weighed and prepared according to the preparation method of 9Cr18 stainless steel (prior art) to form a steel material conforming to the composition and mass percentage of Example 1 in Table 1, wherein the rare earth element is La. Then the prepared steel is first subjected to heat treatment, the heat treatment includes annealing, quenching and tempering, the annealing temperature is 850°C, the quenching temperature is 1000°C, and the tempering temperature is 300°C. Finally, the fastening shaft is prepared through deep processing through conventional fastening shaft processing methods.
Embodiment 2
[0049] The raw materials were weighed according to the preparation method of 9Cr18 stainless steel (prior art) to prepare the steel material conforming to the composition and mass percentage of Example 2 in Table 1, wherein the rare earth element is Ce. Then the prepared steel is first subjected to heat treatment, the heat treatment includes annealing, quenching and tempering, the annealing temperature is 880°C, the quenching temperature is 1050°C, and the tempering temperature is 330°C. Finally, the fastening shaft is prepared through deep processing through conventional fastening shaft processing methods.
Embodiment 3
[0051] The raw materials were weighed according to the preparation method of 9Cr18 stainless steel (prior art) to prepare a steel material conforming to the composition and mass percentage of Example 3 in Table 1, wherein the rare earth element was composed of La and Ce in a mass ratio of 1:1. Then the prepared steel is first subjected to heat treatment, the heat treatment includes annealing, quenching and tempering, the annealing temperature is 900°C, the quenching temperature is 1060°C, and the tempering temperature is 350°C. Finally, the fastening shaft is prepared through deep processing through conventional fastening shaft processing methods.
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