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A method of turning tooth bottom thread by using groove cutter

A turning and threading technology, applied in the field of CNC lathe processing, can solve the problems of high technical level requirements of operators, low production efficiency, gnawing knives and knives, etc., so as to save the thread grinding process, high production efficiency, and processing efficiency. high effect

Active Publication Date: 2020-11-13
钱立民 +2
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] At present, the following three processing methods are mainly used for CNC machining in the industrial field: one is the extrusion processing method, which is only suitable for the processing of large quantities of small modulus worms and small pitch thread parts, the equipment is expensive, and the price of extrusion wheels is high. The price of one pair is about tens of thousands of yuan; the second is turning on a CNC lathe, using a forming tool for turning. This processing method has low production efficiency and poor quality, and requires a high technical level of the operator. The third is to use whirlwind milling for processing, which is also the most efficient processing method at present, and can avoid the phenomenon of cutting knives. However, the price of each related equipment is about 10 million yuan, and The price of a milling head is 300,000 to 500,000 yuan, the cost is relatively high, and the processing requirements for 40-degree metric worm, 29-degree imperial worm, 30-degree internal and external trapezoidal thread, zigzag thread and various special-shaped thread parts are different. The tools are used to complete, and the number of tools used for processing varies

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0017] Embodiment 1: A method for turning tooth bottom threads with a groove cutter, the processing steps are as follows:

[0018] (1) Fixing the workpiece: clamp the workpiece to be processed on the spindle of the CNC lathe in a suitable positioning direction and use related fixtures;

[0019] (2) Select the tool: select a groove cutter with a blade width smaller than the width of the tooth bottom, and adjust the auxiliary relief angle of the cutter to avoid interference between the groove cutter and the two sides of the thread;

[0020] (3) Write a program: use the angle split method to split the head, and use the formula Zi=Xj×tga / 2 to calculate the Z-axis offset per tool required to generate the tooth profile angle, where Z is the Z-axis of the CNC lathe, and i is Z The amount of movement of the axis, X is the X-axis of the CNC lathe, j is the movement amount of the X-axis, tga represents the tangent value of the angle a, and the two half-angles of the teeth are left with ...

Embodiment 2

[0027] Embodiment 2: When processing a worm with a modulus of 1.5 or a trapezoidal thread with a pitch of 4 mm, the width of the groove cutter used is equal to the width of the tooth bottom, and other steps are the same as in Embodiment 1.

[0028] In summary, after adopting the above processing method, the present invention has the following advantages: (1) high production efficiency: process a four-headed worm with a modulus of 2.5, process it on a numerically controlled lathe with a forming knife, and the program running time alone is the least More than 120min, processing with whirlwind milling, one spiral groove needs about 15min, and four spiral grooves just need 60min, and the processing method of the present invention only needs 20min and just can finish the processing of a part; (2) processing quality is good: the present invention During the processing, the workpiece to be processed is always in the state of single-edged cutting, the cutting resistance is small, and t...

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Abstract

The invention relates to a method for turning root threads through a grooving cutter. The method comprises the following steps of (1) fixing a workpiece, specifically, clamping the workpiece onto a lathe bed; (2) selecting the cutter, specifically, selecting the grooving cutter with the cutter width less than the width of the thread roots; (3) writing a program, specifically, calculating the Z-axis per-cut offset required for generating a thread angle through the formula: Zi=Xj x tga / 2, wherein A represents the Z-axis of a numerical control lathe, i represents the movement amount of the Z-axis, X represents the X-axis of the numerical control lathe, j represents the movement amount of the X-axis, and tga represents the tangent value of the angle alpha; (4) aligning the cutter, specifically, adjusting the relative distance between the cutter and the workpiece; (5) conducting rough machining through a layering method; and (6) conducting finish machining through a left-right interpolationcutter feeding method. According to the method, the root threads are machined through the grooving cutter; the working efficiency is improved while the machining precision is improved, the machiningcost is saved, and the method can be extensively applied to the technical field of numerical control lathe machining.

Description

technical field [0001] The invention relates to the technical field of numerical control lathe processing, in particular to a method for turning tooth bottom threads by using a groove cutter. Background technique [0002] At present, the following three processing methods are mainly used for CNC machining in the industrial field: one is the extrusion processing method, which is only suitable for the processing of large quantities of small modulus worms and small pitch thread parts, the equipment is expensive, and the price of extrusion wheels is high. The price of one pair is about tens of thousands of yuan; the second is turning on a CNC lathe, using a forming tool for turning. This processing method has low production efficiency and poor quality, and requires a high technical level of the operator. The third is to use whirlwind milling for processing, which is also the most efficient processing method at present, and can avoid the phenomenon of cutting knives. However, the...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): B23G1/00B23G1/44
CPCB23G1/00B23G1/44
Inventor 钱立民田艳平闫新安
Owner 钱立民
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