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A kind of magnesium alloy fluorine-free electroless nickel plating solution and its nickel plating process

A fluorine chemistry and magnesium alloy technology, which is applied in the field of fluorine-free environment-friendly electroless nickel plating solution on magnesium alloy and its nickel plating process, can solve the problem of unsatisfactory electroless plating speed, coating appearance and coating combination, and difficult fluoride ion wastewater. To deal with and accelerate tooth degradation and other problems, to reduce costs and risks of environmental pollution, facilitate safe discharge, and increase the thickness of the coating

Inactive Publication Date: 2017-10-31
HUNAN UNIV +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Fluoride is used in two commonly used plating solutions, and the existence of fluoride ions not only restricts the material of the plating tank, but also is harmful to the human body and will accelerate the degeneration of teeth. The biggest problem is that fluoride ion wastewater is very Difficult to treat, the cost of wastewater treatment is very high, and it cannot be discharged into the environment in large quantities, otherwise it will cause serious environmental pollution
No buffering agent is added in the alkaline plating solution formula of CN100476024C, so that the electroless plating speed, the appearance of the coating and the combination of the coating are all unsatisfactory
At present, some people have used alkaline plating solution for magnesium alloys, and have adopted the mode of secondary nickel plating, such as the public scheme of CN103215574A adopts the secondary nickel plating mode of alkaline and neutral nickel plating, but the price is used in the plating solution formula Expensive nickel acetate, added sodium fluoride or potassium fluoride in the alkaline plating solution, added ammonium bifluoride in the neutral plating solution, all introduced fluoride in the plating solution; CN100570000C public scheme adopts alkaline, acidic nickel plating Secondary nickel plating method, but ammonium bifluoride is added to the alkaline and acidic plating solutions, and fluoride is still used in the plating solution, which cannot achieve fluorine-free environmental protection nickel plating, and the corrosion resistance and compactness are not good

Method used

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  • A kind of magnesium alloy fluorine-free electroless nickel plating solution and its nickel plating process
  • A kind of magnesium alloy fluorine-free electroless nickel plating solution and its nickel plating process
  • A kind of magnesium alloy fluorine-free electroless nickel plating solution and its nickel plating process

Examples

Experimental program
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Effect test

Embodiment 1

[0053] Magnesium alloy fluorine-free electroless nickel plating solution: including alkaline fluorine-free electroless nickel plating solution and acidic fluorine-free electroless nickel plating solution;

[0054] The alkaline fluorine-free electroless nickel plating solution has a pH value of 11 and consists of: nickel sulfate 25g / L; sodium hypophosphite 30g / L; sodium citrate 30 g / L; sodium carbonate 30 g / L; Urea 0.5 mg / L;

[0055] The acidic fluorine-free electroless nickel plating solution has a pH value of 5.5 and is composed of: nickel sulfate 20 g / L; sodium hypophosphite 20 g / L; citric acid 5 g / L; thiourea 1 mg / L.

[0056] Magnesium alloy fluorine-free electroless nickel plating process:

[0057] (1) Polishing: Polish the AZ91D magnesium alloy sample with a polishing machine and wash it with water;

[0058] (2) Degreasing and degreasing: wash with acetone solvent for 10 min under the action of ultrasonic waves at room temperature;

[0059] (3) Alkali washing: use lye ...

Embodiment 2

[0074] The magnesium alloy fluorine-free electroless nickel plating solution and its nickel plating process are the same as in Example 1, the only difference being that in step (6) of the magnesium alloy fluorine-free electroless nickel plating process, the alkaline fluorine-free electroless nickel plating The time was changed to 60 min.

Embodiment 3

[0076] The magnesium alloy fluorine-free electroless nickel plating solution and its nickel plating process are the same as in Example 1, the only difference being: in the process step (7) of the magnesium alloy fluorine-free electroless nickel plating process, the plating time of the acidic fluorine-free electroless nickel plating Change to 60 min.

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Abstract

A magnesium alloy fluorine-free electroless nickel plating solution and nickel plating process thereof, the nickel plating solution includes an alkaline fluorine-free electroless nickel plating solution and an acidic fluorine-free electroless nickel plating solution; the pH of the alkaline fluorine-free electroless nickel plating solution Value is 10~12, and its composition is: nickel salt, sodium hypophosphite, citrate, sodium carbonate and thiourea; The pH value of described acidic fluorine-free electroless nickel plating solution is 4~6, and its composition is: nickel salt , sodium hypophosphite, citric acid and thiourea. The nickel plating process includes the following steps: polishing, degreasing and degreasing, alkali washing, pickling, activation, alkaline fluorine-free electroless nickel plating, acidic fluorine-free electroless nickel plating, and passivation. The plating solution of the present invention does not contain fluorine, is safe in composition, and does not pollute the environment. The outer layer of the composite coating obtained by nickel plating is an amorphous nickel-phosphorus alloy, and the composite coating has high compactness, good corrosion resistance, good bonding force, and good Industrial application prospects.

Description

technical field [0001] The invention relates to an electroless nickel-plating solution and a nickel-plating process thereof, in particular to a fluorine-free and environment-friendly electroless nickel-plating solution and a nickel-plating process on a magnesium alloy. Background technique [0002] Magnesium alloys have many unique advantages, such as low density, high specific strength and specific stiffness, and superior damping, machinability, and casting properties. They have been increasingly widely used in the automotive industry, aerospace industry, and electronics industry. Although magnesium is rich in raw materials and ranks eighth among natural resources, its poor corrosion resistance as a structural material restricts its wider use. [0003] In the electroless nickel plating of magnesium alloys, it is necessary to avoid the strong corrosion reaction and displacement reaction between the magnesium substrate and the components of the plating solution in order to su...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C23C18/36
Inventor 胡波年余刚闫大龙
Owner HUNAN UNIV
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