Universal joint clamping machining tool and machining method
A universal joint and tooling technology, used in metal processing equipment, metal processing mechanical parts, clamping and other directions, can solve the problems of inability to locate parts, low production efficiency, inconvenient processing and production, etc. Axiality and symmetry, the effect of improving production efficiency
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Embodiment 2
[0044] Such as image 3 As shown, the difference between this embodiment and Embodiment 1 is that multiple sets of mounting grooves 2 distributed horizontally and / or vertically are provided on the base, and a positioning adjustment mechanism is provided outside the notch of each mounting groove. This structural arrangement facilitates the simultaneous clamping and positioning of multiple parts, and facilitates the simultaneous processing and manufacture of universal joints for multiple parts. Each structure in the tooling is all the same as in Example 1, so it is not repeated here. The tooling with this structure can process multiple universal joints at the same time, improving production efficiency. The method of processing multiple universal joints at the same time is similar to the processing method in embodiment 1, except that the processing method in embodiment 1 is used to operate multiple parts at the same time.
[0045] In addition, positioning and clamping grooves a...
Embodiment 3
[0047] The difference between this embodiment and Embodiment 1 is that there is a guide rail on the base 1, the top surface of the guide rail and the bottom surface of the installation groove are in the same plane, the clamping plate 4 is provided with a slot for clamping the guide rail, and the positioning adjustment mechanism drives The clamping plate slides along the guide rail to adjust the distance between the clamping plate and the notch of the installation groove. Through this structural arrangement, it is convenient to adjust the distance from the clamping plate to the notch of the installation groove, and can adapt to the processing of parts with different specifications and longitudinal dimensions, thereby improving the applicability of the tooling.
Embodiment 4
[0049]The difference between this embodiment and Embodiment 1 is that the two ends of the notch of the installation groove and the corresponding positions of the clamping plate form a semicircular slot with a gap, and the other two semicircular slots are respectively located on the other side of the installation groove. two corners. In this structural setting, a semicircular slot hole with a gap is formed at the two ends of the notch of the installation slot and the corresponding position of the clamping plate. The gap space is increased, so that there is a certain pre-pressed opening and closing space during clamping, which is convenient for tool loading, and also reduces the contact area of the tool here, reduces the collision rate, and also provides rounded corners for tool processing. pre-orientation space.
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