A kind of gear and its manufacturing method

A manufacturing method and gear technology, applied in the direction of belts/chains/gears, components with teeth, portable lifting devices, etc., can solve the problems of low material utilization, high product cost, low production efficiency, etc., and achieve high product quality , high production efficiency and low material consumption

Inactive Publication Date: 2015-09-09
UNIV OF JINAN
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

These fields require gears with small weight, small transmission torque, stable transmission, and low noise, so gears made of engineering plastics are the first choice, but affected by temperature, the dimensions of plastic gears such as aperture, index circle diameter, and backlash will change. Disadvantages such as unstable transmission, loud noise, low transmission torque, easy wear, easy deformation, etc.
Later, the gears made of light aluminum alloy have the characteristics of light weight, low density, good plasticity, easy to master and easy processing of aluminum matrix composite technology, but their strength is still low and their wear resistance is poor. The transmission parts are limited. At present, most of the traditional gear production adopts the traditional cutting method, which has low material utilization rate, low production efficiency and high product cost.

Method used

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  • A kind of gear and its manufacturing method
  • A kind of gear and its manufacturing method
  • A kind of gear and its manufacturing method

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 2

[0046] The difference from Example 1 is that the silicon-aluminum alloy substrate is different, and this example is A390, see Table 1;

[0047] The network skeleton components are different, see Table 2;

[0048] Stainless steel wire diameters are different, see Table 2;

[0049] The mold is heated to 300°C, the pre-forging temperature is 450°C, the final forging temperature is 380°C, and the upper die speed is 150mm / s.

[0050] The performance parameters after forming are shown in Table 3.

Embodiment 3

[0052] It is basically the same as Example 1, the difference is:

[0053] Stainless steel wire diameters are different, see Table 2;

[0054] The volume fraction of reinforcement is different, see Table 2;

[0055] The impregnation temperature is different, see Table 2;

[0056] The die is heated to 400°C, the pre-forging temperature is 480°C, the final forging temperature is 400°C, and the upper die speed is 200mm / s.

[0057] The performance parameters after forming are shown in Table 3.

Embodiment 4

[0059] It is basically the same as Example 1, except that: the network skeleton components are different, see Table 2;

[0060] Stainless steel wire diameters are different, see Table 2;

[0061] The volume fraction of reinforcement is different, see Table 2;

[0062] The impregnation temperature is different, see Table 2;

[0063] 10000KN friction press is used to precision forge the side shaft gear.

[0064] The performance parameters after forming are shown in Table 3.

[0065] Table 1

[0066]

[0067] Table 2

[0068]

[0069] table 3

[0070]

[0071] To sum up, the gear provided by the present invention has the advantages of excellent performance, reasonable process, moderate price, high strength, small specific gravity, etc., and the fracture toughness of the material is further improved through the network braided skeleton, which can replace the existing non-ferrous metal profiles and expand The scope of use meets the needs of actual production,...

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Abstract

The invention provides a gear and a method for manufacturing the same. The gear comprises an alloy base body and a reinforcing body which is embedded in the alloy base body and is a gear framework woven from transverse steel wires and longitudinal steel wires in a staggered manner. By the method for manufacturing the gear, a process of performing two forging steps in one heat and an ion sputtering and spraying method are adopted. Compared with the prior art, the gear and the method for manufacturing the same maintain characteristics of high strength, high hardness, high temperature resistance and high heat conduction coefficient of the conventional steel and iron materials, also have characteristics of good plasticity and low density of an aluminum alloy material. By the method for manufacturing the gear, the obtained gear is complete in shape and dimension and is light through plastic deformation such as precision forging, tooth profile deformation is low, the wear resistance of a tooth surface is increased, meshing noise is low, and the gear is long in service life and has excellent popularization and application value.

Description

technical field [0001] The invention relates to the technical field of gears, in particular to a gear and a manufacturing method thereof. Background technique [0002] As one of the most basic parts for transmitting motion and power, gears have been widely used in the industrial field, especially in the detection of printing equipment, locomotives, ships, power plants, steel mills, railway tracks and other fields. These fields require gears with small weight, small transmission torque, stable transmission, and low noise, so gears made of engineering plastics are the first choice, but affected by temperature, the dimensions of plastic gears such as aperture, index circle diameter, and backlash will change. Transmission instability, loud noise, low transmission torque, easy wear, easy deformation and other shortcomings. Later, the gears made of light aluminum alloy have the characteristics of light weight, low density, good plasticity, easy to master aluminum matrix composite...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): F16H55/17F16H55/06B22D18/02
Inventor 王守仁刘高志田希杰王砚军宋令惠王敏
Owner UNIV OF JINAN
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