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Manufacturing method of power drive belt that can generate power output and drive equipment

A technology of power drive and drive equipment, applied in the field of preparation of power drive belts, to achieve high development and application value, simple preparation process, and low cost

Inactive Publication Date: 2010-10-13
SHANDONG UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The fuels used in internal combustion engines and thermal power generation are all non-renewable energy sources, and non-renewable energy sources are currently in short supply, and the preparation process of internal combustion engines and electric motors is complicated and costly

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0020] Embodiment 1: A kind of preparation method of the power driving belt that self produces power output and can drive equipment, comprises the following steps:

[0021] The first step is to select and determine the chemical composition of the TiNi alloy according to the temperature of the geothermal heat and the low-temperature hot water discharged by the enterprise;

[0022] In the second step, the TiNi alloy determined in the first step is cold-drawn into wire;

[0023] The third step intercepts the TiNi alloy wire according to the diameter of the driving wheel and the driven wheel and the distance between the two wheels;

[0024] In the fourth step, the two ends of the intercepted TiNi alloy wire are connected by electric welding with spot welding equipment to form a TiNi alloy power drive belt;

[0025] The fifth step is to smooth the solder joints in the fourth step with sandpaper, and then tap the solder joints and welding heat-affected zone repeatedly with a small ...

Embodiment 2

[0030] Embodiment 2: A kind of preparation method of the power driving belt that self produces power output and can drive equipment, comprises the following steps:

[0031] The first step is to select and determine the chemical composition of the TiNi alloy according to the temperature of the geothermal heat and the low-temperature hot water discharged by the enterprise;

[0032] In the second step, the TiNi alloy determined in the first step is cold-drawn into wire;

[0033] The third step intercepts the TiNi alloy wire according to the diameter of the driving wheel and the driven wheel and the distance between the two wheels;

[0034] In the fourth step, the two ends of the intercepted TiNi alloy wire are connected by electric welding with spot welding equipment to form a TiNi alloy power drive belt;

[0035] The fifth step is to smooth the solder joints in the fourth step with sandpaper, and then tap the solder joints and welding heat-affected zone repeatedly with a small ...

Embodiment 3

[0040] Embodiment 3: A kind of preparation method of the power driving belt that self produces power output and can drive equipment, comprises the following steps:

[0041] The first step is to select and determine the chemical composition of the TiNi alloy according to the temperature of the geothermal heat and the low-temperature hot water discharged by the enterprise;

[0042] In the second step, the TiNi alloy determined in the first step is cold-drawn into wire;

[0043] The third step intercepts the TiNi alloy wire according to the diameter of the driving wheel and the driven wheel and the distance between the two wheels;

[0044] In the fourth step, the two ends of the intercepted TiNi alloy wire are connected by electric welding with spot welding equipment to form a TiNi alloy power drive belt;

[0045] The fifth step is to smooth the solder joints in the fourth step with sandpaper, and then tap the solder joints and welding heat-affected zone repeatedly with a small ...

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PUM

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Abstract

The invention relates to a manufacturing method of a power drive belt that can self-generate power output and drive equipment, which comprises the following steps of: choosing and determining the chemical compositions of TiNi alloy; cold-drawing the TiNi alloy into threads or cold-rolling the TiNi alloy into strips; cutting off TiNi alloy threads or strips; connecting both ends of the TiNi alloy threads or strips cut off to form a TiNi alloy power drive belt; putting the TiNi alloy power drive belt into a heating furnace for heating and preserving temperature; and cooling the belt. The invention is simple in manufacturing technology and low in manufacturing price. When in use, the alloy power drive belt is only required to be installed on driven equipment and two belt wheels in hot water,and can drive all machinery equipment by fully using terrestrial heat and low-temperature hot water discharged by enterprises. At a place with terrestrial heat and low-temperature hot water, the alloypower drive belt can combine with a solar water heater and can replace an internal combustion engine and a motor completely. Therefore, the invention has relatively high development and application value.

Description

technical field [0001] The invention relates to a preparation method of a power drive belt, in particular to a preparation method of a power drive belt capable of generating power output and driving equipment. [0002] Background technique [0003] The current machinery and equipment are all driven by internal combustion engines or electric motors. The fuels used in internal combustion engines and thermal power generation are all non-renewable energy sources, and the non-renewable energy sources are currently in short supply, and the preparation process of internal combustion engines and electric motors is complicated and costly. In the case of increasing shortage of non-renewable energy sources, it is urgent to develop a method that no longer uses non-renewable energy sources, but only uses low-temperature geothermal heat and low-temperature hot water discharged by enterprises that cannot be fully utilized under the existing technical conditions, or a technology that is mat...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): F03G7/06
Inventor 耿贵立
Owner SHANDONG UNIV
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