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Alloy powder capable of producing compression stress in the fused-on layer

A technology of compressive stress and alloy powder, which is applied in the field of alloy powder, can solve problems such as large tensile stress on the surface of structures, failure of metal structures, fatigue crack stress, etc., so as to delay the generation of fatigue cracks and stress corrosion cracks, prolong service life, The effect of preventing stress corrosion cracking

Inactive Publication Date: 2006-08-02
TIANJIN UNIV
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  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

However, after actual manufacturing and processing, there will be high levels of tensile stress locally in the metal structure, or additional tensile stress caused by stress concentration. After superimposed working loads, cracks will appear in these parts, especially fatigue cracks and stress corrosion cracks. Causes premature failure of metal structures
It is possible to alleviate some stress concentration problems by using the above-mentioned process methods, but for failure problems mainly caused by fracture, these methods are helpless, but will cause greater tensile stress on the surface of the structure

Method used

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  • Alloy powder capable of producing compression stress in the fused-on layer
  • Alloy powder capable of producing compression stress in the fused-on layer
  • Alloy powder capable of producing compression stress in the fused-on layer

Examples

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Embodiment 1

[0048] In Example 1 and Example 2, F3 alloy powder is used. When the stress concentration is equivalent to that of Comparative Example 1 and 2, the cladding layer has compressive stress, so the fatigue strength of the welded joint is greatly improved. Therefore, the use of compressive stress alloy powder combined with spraying, spray welding, spray melting, remelting and other processes can effectively improve the fatigue performance of metal components.

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PUM

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Abstract

The alloy powder capable of producing compression stress in the fused-on layer consists of Cr 6.0-12.0 wt%, Ni 5.0-11.0 wt%, Mn 0.5-1.8 wt%, Mo 0.1-0.9 wt%, Nb 0.1- 0.9 wt%, Ti 0.1-0.9 wt%, Si 0.1-0.9 wt%, except Fe. It has grain size of 50-200 microns, solid phase change temperature after melting and solidifying of 100-300 deg.c, and structure comprising martensite in 50-90 % and austenite in 10-50 %. The present invention is used in raising the fatigue resistance, stress corrosion resistance, safety and service life of iron and steel material, mechanical structure and equipment. The method and material of the present invention may be used in producing composite material product with compression stress in the surface.

Description

technical field [0001] The invention relates to an alloy powder, in particular to an alloy powder suitable for processes such as spray coating, spray welding, spray melting and remelting. Background technique [0002] By the end of 2005, my country's steel output was close to 300 million tons, 80-90% of which was used to manufacture large metal structures and equipment, which played an important role in improving people's living standards and social progress. However, large-scale metal structures and equipment often have failure problems, causing huge economic losses and even personal casualties. Therefore, their reliability and safety have always been a concern of people. [0003] Fracture, corrosion, and wear are the three main forms of metal structure failure. In order to reduce the failure loss caused by this, many methods of surface modification of metal materials have been proposed, such as: spray coating, spray welding, spray melting an...

Claims

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Application Information

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IPC IPC(8): B22F1/00C22C1/05
Inventor 王文先霍立兴王东坡张中平张玉凤荆洪阳
Owner TIANJIN UNIV
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