A device for machining holes in automobile machinery parts
A technology of mechanical parts and turning holes, which is applied in the direction of metal processing machinery parts, metal processing, feeding devices, etc., can solve the problems of processing efficiency constraints, inability to switch drill bits, and time-consuming manual disassembly and installation of drill bits, etc., to achieve lifting work Efficiency, the effect of ensuring stable rotation
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Embodiment 1
[0032] see Figure 1-Figure 9 , a device for machining holes for automobile mechanical parts, comprising a processing table 1, a support frame 3 is installed on the processing table 1 through a sliding mechanism, a rotating cylinder 22 driven by a drive motor 4 is installed on the supporting frame 3, and the rotating cylinder 22 There are several paired arc-shaped clamping blocks 36 slidingly installed in the inner radial direction, and a push ring 6 is slidably installed on the rotating cylinder 22, and the push ring 6 is abutted with 36 pairs of cylindrical pieces for driving the arc-shaped clamping blocks. The thrust sliding assembly is provided with a rotary wheel 17 installed on the processing table 1, and several drill bits 16 of different specifications are evenly installed on the rotary wheel 17. An equiangular rotary mechanism is installed on the processing table 1, and the equiangular rotary mechanism is used for When the rotary wheel 17 is driven to rotate at an equ...
Embodiment 2
[0040] On the basis of Embodiment 1, in addition, the equiangular rotary mechanism includes a turntable 11 rotatably installed on the processing table 1, a transmission pin 9 is eccentrically fixed on the turntable 11, and a sheave 8 is coaxially connected to the rotary wheel 17. The sheave 8 is evenly provided with several radial grooves 13 distributed radially, and the transmission pin 9 is slidably adapted to the radial grooves 13 .
[0041] For details, see Figure 8 As shown, by shaking the crank handle 10, the transmission pin 9 and the rotary wheel 17 can be driven to rotate. During the rotation of the transmission pin 9, it slides and fits with the radial groove 13. At this time, the sheave 8 can rotate at an equal angle. The transmission pin 9 and the radial groove 13 are adapted once by sliding, and the sheave 8 drives the rotary wheel 17 to rotate at a certain angle, so that another drill bit 16 is rotated to a position opposite to the column 18. Drill bits 16 of d...
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