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Transverse feeding mechanism of internal meshing forced kinematic chain roller mill

A technology of forced movement and tool-feeding mechanism, applied in mechanical equipment, manufacturing tools, belts/chains/gears, etc., can solve the problem of inability to improve accuracy, and achieve the effect of high machining accuracy and strong versatility

Pending Publication Date: 2019-06-14
YIYANG KANGYI MACHINERY DEV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] The internal meshing forced kinematic chain roller mill horizontal tool feeding mechanism proposed by the present invention aims to solve the technical problem that the existing gear tooth profile processing technology cannot improve the precision of the processed gear after quenching

Method used

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  • Transverse feeding mechanism of internal meshing forced kinematic chain roller mill
  • Transverse feeding mechanism of internal meshing forced kinematic chain roller mill
  • Transverse feeding mechanism of internal meshing forced kinematic chain roller mill

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Embodiment Construction

[0023] It should be understood that the specific embodiments described here are only used to explain the present invention, not to limit the present invention.

[0024] like Figure 1 to Figure 4 As shown, the first embodiment of the present invention proposes an internal meshing forced kinematic chain roller grinding machine transverse feed mechanism, which is used to make the main shaft installed with the inner ring gear to be processed axially Repeated movement, the transverse tool feed mechanism includes a horizontal manual tool feed assembly 10 for manually driving the main shaft to repeatedly move axially in the processed inner ring The motorized tool walking assembly 20 and the X-axis slide table 30 connected with the lateral manual tool feeding assembly 10 and the lateral motor feeding assembly 20, wherein the lateral manual tool feeding assembly 10 includes a fixed gear 154 arranged on the machine tool, and the X axis The shaft slide table 30 is fixedly connected to ...

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Abstract

The invention discloses a transverse feeding mechanism of an internal meshing forced kinematic chain roller mill. The transverse feeding mechanism of the internal meshing forced kinematic chain rollermill comprises a transverse manual-operation feeding assembly, a transverse engine-driven feeding assembly and an X-axis sliding table connected with the transverse manual-operation feeding assemblyand the transverse engine-driven feeding assembly. The transverse manual-operation feeding assembly comprises a fixed gear arranged on a machine tool, a worm wheel seat fixedly connected with the X-axis sliding table, a worm wheel fixedly arranged on the worm wheel seat, a screw rod sleeved with the worm wheel, a spline arranged at one end of the screw rod, a duplex gear which sleeves the spline and can move axially relative to the spline, a worm which meshes with the worm wheel, a hand wheel which sleeves the worm and a hand wheel handle fixed to the hand wheel. According to the transverse feeding mechanism of the internal meshing forced kinematic chain roller mill, the tooth-shaped tooth surface of the quenched gear has high machining precision, and the transverse feeding mechanism of the internal meshing forced kinematic chain roller mill can be suitable for machining various internal gear rings and has high universality.

Description

technical field [0001] The invention relates to the field of roller mills, in particular to a transverse knife-feeding mechanism of an inner meshing forced kinematic chain roller mill. Background technique [0002] A gear is a mechanical element with gears on the rim that continuously mesh to transmit motion and power. Gears are toothed mechanical parts that can mesh with each other, and they are widely used in mechanical transmission and the entire mechanical field. With the development of production, the stability of gear operation has been paid more attention. The gear tooth shape processing technology is generally: hobbing (or shaper) → carburizing and quenching (or induction hardening) → correction datum → grinding, the gear will be deformed after carburizing or induction hardening, therefore, the processed gear After quenching, it is necessary to finish the tooth surface and tooth shape. In the prior art, for products such as cylindrical gears, the honing process is ...

Claims

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Application Information

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IPC IPC(8): B23Q5/40B23F19/02
Inventor 石卫民刘智伟邓海鹰
Owner YIYANG KANGYI MACHINERY DEV