Wear, corrosion and rust resistant metal pipeline

A wear-resistant pipeline, anti-corrosion and anti-rust technology, which is applied in the direction of pipeline anti-corrosion/rust protection, pipeline protection, pipeline damage/wear prevention, etc. The effect of heat treatment cycle, strong resistance to organic solvents, and low production cost

Active Publication Date: 2013-09-11
NANTONG LITAI CHEM EQUIP
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0014] However, anti-corrosion coatings in the prior art are usually difficult to balance water resistance, anti-fouling effect, and high temperature resistance

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0062] A) Preparation of wear-resistant pipe body

[0063] 1) To obtain materials, select raw materials with the following chemical composition weight percentages:

[0064] C: 1.6%, V: 4.5%,

[0065] W: 9.1%, Mo: 7.6%,

[0066] Cr: 3.8%, RE: 0.15%,

[0067] Mn: 0.7%, Si: 0.05%,

[0068] B: 0.02%, Al: 0.2%,

[0069] Nb: 0.08%, Ni: 0.1%,

[0070] The balance is Fe and trace unavoidable impurities;

[0071] 2) Mix and heat ordinary steel scrap, micro-carbon ferrochromium, ferroniobium, ferronickel, ferrotungsten, ferromolybdenum, ferrochromium, ferroniobium, ferronickel and ferromanganese, add carbon with pig iron or graphite, mix and heat and melt into molten steel After the molten steel is melted, ferrosilicon is added for pre-deoxidation;

[0072] 3) According to the distribution ratio of raw materials, adjust the composition in front of the furnace and raise the temperature to 1580°C, then add aluminum blocks for final deoxidation, and then leave the furnace;

[0073]...

Embodiment 2

[0097] A) Preparation of wear-resistant pipe body

[0098] 1) To obtain materials, select raw materials with the following chemical composition weight percentages:

[0099] C: 2.7%, V: 6.0%,

[0100] W: 6.9%, Mo: 5.3%,

[0101] Cr: 5.4%, RE: 0.23%,

[0102] Mn: 0.6%, Si: 0.08%,

[0103] B: 0.01%, Al: 0.5%,

[0104] Nb: 1.1%, Ni: 0.2%,

[0105] The balance is Fe and trace unavoidable impurities;

[0106] 2) Mix and heat ordinary steel scrap, micro-carbon ferrochromium, ferroniobium, ferronickel, ferrotungsten, ferromolybdenum, ferrochromium, ferroniobium, ferronickel and ferromanganese, add carbon with pig iron or graphite, mix and heat and melt into molten steel After the molten steel is melted, ferrosilicon is added for pre-deoxidation;

[0107] 3) According to the distribution ratio of raw materials, adjust the composition in front of the furnace and raise the temperature to 1600°C, then add aluminum blocks for final deoxidation, and then leave the furnace;

[0108] 4)...

Embodiment 3

[0132] A) Preparation of wear-resistant pipe body

[0133] 1) To obtain materials, select raw materials with the following chemical composition weight percentages:

[0134] C: 3.7%, V: 8.5%,

[0135] W: 3.2%, Mo: 2.4%,

[0136] Cr: 8.9%, RE: 0.4%,

[0137] Mn: 0.3%, Si: 1.0%,

[0138] B: 0.01%, Al: 0.8%,

[0139] Nb: 2.4%, Ni: 0.3%,

[0140] The balance is Fe and trace unavoidable impurities;

[0141] 2) Mix and heat ordinary steel scrap, micro-carbon ferrochromium, ferroniobium, ferronickel, ferrotungsten, ferromolybdenum, ferrochromium, ferroniobium, ferronickel and ferromanganese, add carbon with pig iron or graphite, mix and heat and melt into molten steel After the molten steel is melted, ferrosilicon is added for pre-deoxidation;

[0142] 3) According to the distribution ratio of raw materials, adjust the composition in front of the furnace and raise the temperature to 1630°C, then add aluminum blocks for final deoxidation, and then leave the furnace;

[0143] 4)...

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Abstract

The invention relates to a wear, corrosion and rust resistant metal pipeline. The metal pipeline is manufactured by manufacturing a wear-resistant pipeline body through centrifugal casting, carrying out the processes of quenching, high-temperature tempering, solid solution strengthening thermal treatment and double tempering and dispersion hardening thermal treatment, then electrostatically spraying a rust-resistant coating on the outer wall of the pipeline, and finally air-spraying a corrosion-resistant coating on the inner wall of the pipeline. The metal pipeline has higher hardness and wear resistance, and the corrosion-resistant coating of the metal pipeline has excellent water resistance, antifouling effect and high temperature resistance.

Description

technical field [0001] The invention relates to a pipeline, in particular to a metal wear-resistant, anti-corrosion and anti-rust pipeline. [0002] Background technique [0003] There are three main forms of material failure: fracture, corrosion, and wear. Although unlike the other two forms, material wear rarely causes catastrophic damage to metal workpieces, but the economic losses it causes are quite staggering. According to statistics, about 75%-80% of the failed mechanical parts are caused by metal wear. About 30%-50% of the energy supplied to the machine is consumed in the process of friction and wear. Parts wear out After that, it will not only affect the use efficiency of machinery and equipment, but also consume a lot of manpower and material resources to replace parts and repair equipment. The economic losses caused by wear and tear are about 120 billion US dollars per year in the United States and about 50 billion marks per year in Germany. According to 2005 A...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C22C37/10C22C38/56C22C38/54C21D1/18F16L57/06F16L58/04
Inventor 张延
Owner NANTONG LITAI CHEM EQUIP
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