A kind of processing method of tapered sleeve gauge measuring tool
A processing method and a technology of gauges, which are applied in the processing field of tapered sleeve gauges, can solve the problems of low production efficiency, long processing cycle, and high manufacturing costs, and achieve the effects of improving processing efficiency, optimizing process plans, and reducing manufacturing costs
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specific Embodiment approach 1
[0020] Specific implementation mode one: combine Figure 1-Figure 5 Illustrate this embodiment, the specific steps of the processing method of the sleeve gauge measuring tool of this embodiment are as follows:
[0021] Step 1: Carry out six-sided milling of the sleeve gauge blank 1. The size of the sleeve gauge blank 1 is 180mm×105.5mm×48mm, and the two sides of the front end of the sleeve gauge blank 1 are respectively processed with auxiliary surfaces 2 of 30mm×105.5mm. The six-sided milling parameters of gauge blank 1 are: speed 280r / min, feed rate 100mm / min, depth of cut 3mm;
[0022] Step 2: On the processed six-sided milling sleeve blank 1, determine the position 3 of the stringing hole 3 according to the coordinate size of the hole 4, and process the stringing hole 3 of the hole 4 by a fitter, wherein the diameter of the stringing hole 3 is 3 mm;
[0023] Step 3: Based on the auxiliary surface 2, rough mill the inner arc-shaped surface 5 and the outer arc-shaped surfac...
specific Embodiment approach 2
[0032] Specific implementation mode two: combination figure 1 To illustrate this embodiment, the process parameters of the heat treatment in step 4 of this embodiment are: first heat the sleeve gauge blank 1 to 820°C-840°C in a medium temperature furnace, keep it warm for 30 minutes, and then put the sleeve gauge blank 1 into the water tank Cool to 300°C-400°C, then put it in an oil tank and cool to room temperature 20°C, and finally put it in a tempering furnace and heat it to 560°C, and keep it warm for 2 hours. With this setting, the surface hardness of each part of the sleeve gauge is consistent and wear-resistant during use. After adopting this heat treatment process, the sleeve gauge has good dimensional stability and the deformation after finishing is controlled in the best state. Other compositions and connections are the same as in the first embodiment.
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Abstract
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