Automatic device for machining two ends of shaft parts

A technology for shaft parts and automatic devices, which is applied to positioning devices, metal processing equipment, metal processing machinery parts, etc., can solve the problems of non-common use, low labor productivity, and inapplicability of processed workpieces, so as to improve labor productivity , Solve the problem of versatility and solve the effect of low productivity

Active Publication Date: 2014-07-16
宁波精益微型轴有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Its advantages are: loading materials at one time, processing both ends at the same time, saving auxiliary time; its disadvantages are that it is a special equipment and cannot be used universally, and it cannot be used when the length of the shaft parts changes, and the length of the shaft parts is shorter than the length of the headstock. not applicable
[0007] How to solve the long time-consuming transmission process of shaft parts, resulting in low labor productivity and how to solve the common problem of automatic processing equipment for processing workpieces have become two major technical problems that technicians in this industry urgently need to solve

Method used

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  • Automatic device for machining two ends of shaft parts
  • Automatic device for machining two ends of shaft parts
  • Automatic device for machining two ends of shaft parts

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Experimental program
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Embodiment Construction

[0044] Each reference sign name among the accompanying drawings is:

[0045] The first lathe 1, the second lathe 2, the machine body 21, the dovetail groove 211, the nut 22, the base 23, the screw rod 24, the adjustment screw 25, the inlay 26, the bin 3, the bin body 31, the bin cylinder 32, the pusher Device 33, baffle plate 34, chute 35, baffle plate 36, V-groove 37, photoelectric sensor 38, bracket 391, 392, 393, feeding mechanism 4, feeding cylinder 41, cylinder piston push rod 42, sleeve 421, Push post 422, spring 423, screw 424, gasket 425, support 43, positioning mechanism 5, positioning cylinder 51, support frame 52, support plate 53, transmission mechanism 6, driving round pulley 61, wheel body 611, mandrel 612, Rolling bearing 613, retaining ring 614, inner spacer 615, outer spacer 616, screw 617, driven round pulley 62, round belt 63, 64, motor 65, driving sprocket 66, driven sprocket 67, transmission chain 68, Supports 691, 692, 693, feeding positioning mechanism ...

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PUM

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Abstract

The invention discloses an automatic device for processing both ends of a shaft part. It includes two numerically controlled lathes: the direction of the head of the two numerically controlled lathes faces back, and they are installed on the center line of the same horizontal plane, one is fixedly installed, and the other is movably and adjustablely installed. A transmission mechanism for semi-finished shaft parts is arranged between the two lathes. The front end of the first lathe is equipped with a silo and a feeding mechanism for the blanks of shaft parts, and a positioning mechanism is provided at the rear end. The above two mechanisms cooperate to place one end of the blanks of shaft parts on the processing part of the first lathe to process one end of the workpiece The rear end of the second lathe is provided with a feeding positioning mechanism, and the front end is provided with an auxiliary positioning mechanism and a shaft parts collector, and the above two mechanisms cooperate to place the semi-finished shaft parts processed at one end on the processing part of the second lathe for processing the other end of the workpiece. The invention realizes the continuous automatic production of two lathes, and solves the two problems of low labor productivity and lack of commonality of equipment in the prior art.

Description

technical field [0001] The invention relates to a machine for automatically processing parts, in particular to an automatic device for turning both ends of shaft parts. Background technique [0002] Turning of both ends of shaft parts, including turning both ends, chamfering and grooves, or turning the outer circle of the shaft end, etc. The methods currently used are as follows: [0003] The first is: the auxiliary process is manually operated. One end of the shaft part is processed on a CNC lathe first. After the processing is completed, the shaft part is taken out, turned 180 degrees, and then sent to the next CNC lathe to process the other end of the shaft part. Because the taking out, turning around and feeding of shaft parts all need to be done manually, so one person can only take care of two lathes, so the labor productivity is low. In addition, due to the large-scale processing and production of shaft parts, the labor intensity is high, and the monotonous repeate...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): B23B15/00B23B5/16B23Q3/00
Inventor 董祥义
Owner 宁波精益微型轴有限公司
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