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Treatment process of corrosion-resistant and wear-resistant type water pump piston

A water pump piston and processing technology, applied in anti-corrosion coatings, coatings, fire-proof coatings, etc., can solve the problems of not being able to meet the requirements of the response speed of the let-off mechanism, the acceleration of the buffer response speed, and the lack of adjustability of the buffer, etc., to achieve Effect of increasing corrosion resistance, increasing anti-corrosion effect, increasing strength and anti-oxidation performance

Inactive Publication Date: 2017-04-26
苏州富艾姆工业设备有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] At present, the existing buffers for industrial water pumps adopt the piston structure of the oil system. In order to achieve the effect of timely delivery of the weaving beam, the piston is drilled with an oil guide hole to connect the upper and lower oil chambers to speed up the response of the buffer; The buffer lacks adjustability and cannot adapt to the response speed requirements of the let-off mechanism for different cloth products; at the same time, due to the faster response speed of the buffer, it is easy to cause obvious gaps on the cloth during the weaving process, which greatly affects the cloth. poor textile quality, resulting in a waste of raw materials and an increase in cost

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0032] This embodiment provides a treatment process for a corrosion-resistant and wear-resistant water pump piston. The surface of the piston is coated with a corrosion-resistant metal coating and a peelable anti-corrosion coating in sequence from the inside to the outside. The components of the corrosion-resistant metal coating are as follows: The mass percentages are: C: 0.05%, Zn: 0.37%, Cu: 0.35%, W: 0.28%, Nb: 0.78%, Cr: 8.35%, Si: 0.29%, Mo: 0.55%, Co: 0.15%, Al : 3.6%, rare earth: 2.68%, the rest is Fe and trace impurities;

[0033]Among the rare earths, the following components are included by weight percentage: La: 3.5%, Tm: 2.8%, Ho: 5.6%, Tb: 5.8%, Eu: 4.3%, Sm: 12.8%, and the balance is Gd;

[0034] The preparation method of corrosion-resistant metal coating is carried out according to the following steps:

[0035] Step (1): Divide the rare earth into two parts first, the first part is 1 / 4 of the total amount of rare earth, the second part is 3 / 4 of the total amou...

Embodiment 2

[0043] This embodiment provides a treatment process for a corrosion-resistant and wear-resistant water pump piston. The surface of the piston is coated with a corrosion-resistant metal coating and a peelable anti-corrosion coating in sequence from the inside to the outside. The components of the corrosion-resistant metal coating are as follows: The mass percentages are: C: 0.03%, Zn: 0.35%, Cu: 0.34%, W: 0.27%, Nb: 0.76%, Cr: 8.34%, Si: 0.28%, Mo: 0.53%, Co: 0.14%, Al : 3.5%, rare earth: 2.67%, the rest is Fe and trace impurities;

[0044] Among the rare earths, the following components are included by weight percentage: La: 3.3%, Tm: 2.7%, Ho: 5.5%, Tb: 5.7%, Eu: 4.2%, Sm: 12.7%, and the balance is Gd;

[0045] The preparation method of corrosion-resistant metal coating is carried out according to the following steps:

[0046] Step (1): Divide the rare earth into two parts first, the first part is 1 / 4 of the total amount of rare earth, the second part is 3 / 4 of the total amo...

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PUM

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Abstract

The invention discloses a treatment process of a corrosion-resistant and wear-resistant type water pump piston. From inside to outside, the surface of the piston is sequentially coated with a corrosion-resistant metal coating and a strippable anticorrosive coating, and the corrosion-resistant metal coating comprises the following components in percentage by mass: 0.02-0.05% of C, 0.33-0.37% of Zn, 0.32-0.35% of Cu, 0.25-0.28% of W, 0.75-0.78% of Nb, 8.32-8.35% of Cr, 0.27-0.29% of Si, 0.52-0.55% of Mo, 0.13-0.15% of Co, 3.4-3.6% of Al, 2.65-2.68% of rare earth, and the balance of Fe and trace impurities, wherein the rare earth comprises the following components in percentage by weight: 3.2-3.5% of La, 2.6-2.8% of Tm, 5.2-5.6% of Ho, 5.5-5.8% of Tb, 4.1-4.3% of Eu, 12.5-12.8% of Sm, and the balance of Gd.

Description

technical field [0001] The invention belongs to the technical field of textile equipment, in particular to a process for treating a corrosion-resistant and wear-resistant water pump piston. Background technique [0002] At present, the existing buffers for industrial water pumps adopt the piston structure of the oil system. In order to achieve the effect of timely delivery of the weaving beam, the piston is drilled with an oil guide hole to connect the upper and lower oil chambers to speed up the response of the buffer; The buffer lacks adjustability and cannot adapt to the response speed requirements of the let-off mechanism for different cloth products; at the same time, due to the faster response speed of the buffer, it is easy to cause obvious gaps on the cloth during the weaving process, which greatly affects the cloth. The poor textile quality has caused waste of raw materials and increased cost. Contents of the invention [0003] In order to solve the technical pro...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C09D1/00C09D175/04C09D5/10C09D5/08C09D5/20C09D7/12C09D7/06C09D7/47
CPCC08K2201/014C09D1/00C09D5/08C09D5/103C09D5/106C09D5/18C09D5/20C09D7/43C09D7/47C09D7/61C09D7/62C09D7/63C09D175/04C08L71/00C08K13/06C08K9/06C08K3/36C08K3/34C08K2003/265
Inventor 翁华明
Owner 苏州富艾姆工业设备有限公司
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