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An energy-saving vibration prevention hammer

A technology of anti-vibration hammer and heavy hammer, which is applied in the field of electric power fittings, can solve the problem of large loss of anti-vibration hammer, and achieve the effect of refining grains, reducing eddy current loss, and uniform distribution

Inactive Publication Date: 2010-07-28
PHOENIX TECH GROUP
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0006] In order to solve the technical problem that the energy loss of the existing anti-vibration hammer is large in the transmission line, the purpose of the present invention is to provide an energy-saving anti-vibration hammer

Method used

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  • An energy-saving vibration prevention hammer
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  • An energy-saving vibration prevention hammer

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0041] Such as figure 1 , figure 2 The energy-saving anti-vibration hammer shown includes a heavy hammer 7, a steel hinge line 8, a pressing plate 1, and a pressing plate accessory 2. The heavy hammer 7 is fixed on both ends of the steel hinge line 8, and the pressing plate 1 and pressing plate accessory 2 are arranged on the steel hinge. Middle of line 8. A sleeve 9 is provided between the weight 7 and the steel strand 8 and a water leakage hole 17 is provided below the weight 7.

[0042] Such as image 3 , Figure 4 As shown, the lower part of the pressure plate 1 is bent to form a hook 12 that matches the steel strand 8; the upper part of the pressure plate 1 is recessed to form a crimping groove 13 that is compatible with the transmission line 10; Small piece connecting tongue 11.

[0043] Such as Figure 5 , Image 6 As shown, the upper part of the pressure plate attachment 2 is recessed to form a crimping groove 16, and the pressure plate 1 and the crimping grooves 13 and 1...

Embodiment 2

[0047] Such as Figure 7 The energy-saving anti-vibration hammer shown includes a heavy hammer 7, a steel hinge line 8, a pressing plate 1, and a pressing plate accessory 2. The heavy hammer 7 is fixed on both ends of the steel hinge line 8, and the pressing plate 1 and pressing plate accessory 2 are arranged on the steel hinge. Middle of line 8. The pressing plate 1 and the pressing plate accessory 2 are connected by upper and lower fastening bolts 5.

[0048] The pressure plate 1 and the pressure plate attachment 2 mentioned above are made of austenitic non-magnetic steel materials.

[0049] The composition of austenitic non-magnetic steel is as follows: manganese 22%, chromium 3%, aluminum 1.5%, carbon 0.21%, composite rare earth element 0.2%, sulfur <0.04%, phosphorus <0.04%, the rest is iron.

Embodiment 3

[0051] The composition of austenitic non-magnetic steel is as follows: manganese 22%, chromium 3%, aluminum 1.5%, carbon 0.19%, composite rare earth element 0.2%, sulfur <0.04%, phosphorus <0.04%, the rest is iron.

[0052] The structure of the anti-vibration hammer is as in Example 1.

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Abstract

This invention relates to one electrical wares and to one energy saving resonance proof hammer, which comprises heavy hammer, steel hinge wire, wire clamper, wherein, heavy hammer is fixed on both ends of steel hinge wire; the wire clamper is set with steel hinge middle part by use of Ovshinsky magnetic steel materials. This invention adopts above technique to improve the clamper materials to reduce energy consumption.

Description

technical field [0001] The invention relates to an electric power fitting, in particular to an energy-saving anti-vibration hammer. Background technique [0002] With the development of my country's electric power industry, the transmission capacity has increased significantly, and the energy consumption of the anti-vibration hammer in the transmission line has gradually attracted people's attention. Because the wire clip of existing anti-vibration hammer is generally made of malleable cast iron and Q235 steel material ferromagnetic material. When the alternating current passes through the wire, a closed magnetic circuit is formed on the clamp of the anti-vibration hammer. The ferromagnetic material is repeatedly magnetized under the action of the alternating magnetic field, and the change of its magnetic induction always lags behind the change of the magnetic field ( the hysteresis phenomenon). In the process of repeated magnetization, due to the repeated turning of the m...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): H02G7/14C22C38/38
Inventor 高文枢
Owner PHOENIX TECH GROUP