HA/Ti coating

A coating and pure titanium technology, applied in the field of medical materials, can solve the problems of high process temperature, complicated equipment and high cost

Inactive Publication Date: 2019-06-04
翁健平
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The process temperature of this method is high, causing most of the HA to decompose and phase change, which seriously affects the biological properties of t

Method used

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Embodiment Construction

[0014] The present invention will be described in detail below with specific examples.

[0015] A kind of HA / Ti coating, comprises the steps:

[0016] A) Titanium plate treatment, grind the pure titanium plate with 1200#SiC sandpaper to remove the surface oxide layer, and then treat it with acidic caustic solution for use; wherein, the acidic caustic solution is a mixture of 10% HNO3 and 1% HF solution . B) with the treated pure titanium plate in step A) as the cathode, and the nickel sheet as the anode, the electrochemical deposition method is used to prepare the coating, and the electrolyte is 10 -4 mol / L CaCl 2 and Na 2 HPO 4 The mixed solution of calcium and phosphorus in which the molar concentration ratio of calcium and phosphorus is 2:1, and the pH value is adjusted to 5.5-7.0, and the electrochemical deposition is carried out under boiling conditions, and the current density during electrochemical deposition is 1.25-1.75mA / cm 2 Between, the deposition time is 100-...

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Abstract

The invention relates to a HA/Ti coating in the field of medical materials. The HA/Ti coating is prepared through the following steps that A) a titanium plate is treated, wherein a pure titanium plateis ground through a 1200#SiC abrasive paper so as to remove a surface oxidation layer, and then undergoes industrial treatment through an acidic etchant for later use; B) the pure titanium plate treated in the step A) is taken as a cathode, a nickel sheet is used as an anode plate, the coating is prepared through an electrochemical deposition method, an electrolyte is a CaCl2 and Na2HPO4 mixed solution of 10<-4> mol/L, wherein the molar concentration ratio of calcium to phosphorus is 2 to 1, moreover, the pH value is adjusted to be 5.5-7.0, electrochemical deposition is performed under a boiling condition, then the cathode is taken out, and the calcium-phosphorus salt coating is prepared. In the method, an electrochemical hydrogen evolution reaction is an important induction step, necessary OH<-> is provided for the second-step chemical precipitation process, meanwhile, the hydrogen evolution process can also affect the degree of oversaturation of the electrolyte near the surface of the electrode, so that the surface morphology and grain size of the HA coating of the surface of the electrode are further affected, the calcium-phosphorus salt coating prepared on the surface of the titanium plate by adopting the method has good preferred orientation, and can have the relatively good capacity of promoting the growth of hard tissues after being implanted into a living body, moreover, the size of the grain cross section of the calcium-phosphorus salt coating is small, the stability is good, and the morphology of the coating is uniform.

Description

technical field [0001] The invention relates to the field of medical materials, in particular to a HA / Ti coating prepared on a titanium surface by an electrochemical deposition method. Background technique [0002] Uniform coating of hydroxyapatite with excellent biological activity on the surface of medical titanium metal to improve the biological performance of orthopedic replacement materials is a common research hotspot in the medical and materials fields. Metal titanium and its alloys were the first choice for artificial orthopedic materials in the early years because of their good mechanical properties. However, titanium is an inert metal and lacks osteoinductive ability. When in contact with the physiological environment of the human body, it cannot form a chemical bond with bone and cannot promote new bone growth. For this reason, a large number of studies have attempted to improve the biological properties of titanium implant surfaces. The most effective is to coa...

Claims

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Application Information

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IPC IPC(8): C25D9/08
Inventor 翁健平
Owner 翁健平
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