研究了RE Ni W P SiC PTFE复合镀层的抗氧化性。结果表明 :RE Ni W P SiC PTFE复合镀层随着氧化温度的升高 ,氧化膜的重量增加 ,但在 80 0°C以下氧化温度对镀层的增重不显著 ;80 0°C以上 ,镀层的增重迅速增加。通过对三种镀...研究了RE Ni W P SiC PTFE复合镀层的抗氧化性。结果表明 :RE Ni W P SiC PTFE复合镀层随着氧化温度的升高 ,氧化膜的重量增加 ,但在 80 0°C以下氧化温度对镀层的增重不显著 ;80 0°C以上 ,镀层的增重迅速增加。通过对三种镀层抗氧化性能的比较可知 ,RE Ni W P SiC PTFE镀层的抗氧化性不如Ni W P、Ni W P SiC及RE Ni W P SiC三种镀层好。展开更多
研究了电流密度、镀液温度、pH值和PTFE等对电沉积RE Ni W P SiC PTFE复合镀层性能的影响。结果表明 ,镀态下镀层的硬度在 42 0~ 5 5 0Hv之间 ,当镀液中PTFE浓度为 2 5ml/L时 ,磨损量最小 ,但镀层的耐蚀性却最差 ;而当镀液中PTFE浓度为...研究了电流密度、镀液温度、pH值和PTFE等对电沉积RE Ni W P SiC PTFE复合镀层性能的影响。结果表明 ,镀态下镀层的硬度在 42 0~ 5 5 0Hv之间 ,当镀液中PTFE浓度为 2 5ml/L时 ,磨损量最小 ,但镀层的耐蚀性却最差 ;而当镀液中PTFE浓度为 30ml/L时 。展开更多
Corrosion rate and anode polarization curves of electrodeposited RE-Ni-W-P-SiC-PTFE composite coating in various concentrations of phosphoric and ferric chloride were researched. The results show that corrosion rate o...Corrosion rate and anode polarization curves of electrodeposited RE-Ni-W-P-SiC-PTFE composite coating in various concentrations of phosphoric and ferric chloride were researched. The results show that corrosion rate of the composite coatings increases with the increasing concentrations of phosphoric and ferric chloride, and reaches the maximum value when phosphoric concentration is 40% and ferric chloride concentration is 20% (mass fraction, the same below if not mentioned). Anode polarization curves of the composite coatings show that anode polarization current density of the composite coatings heat-treated at 200 ℃ or 500 ℃ is lower than that of other coatings heat-treated at 300 ℃ or 400 ℃, which displays that the composite coatings heat-treated at 200 ℃ or 500 ℃ have better corrosion resistance. Besides, corrosion resistance of the composite coating heat-treated at 500 ℃ is better than that as deposited and RE-Ni-W-P-SiC composite coating heat-treated at 400 ℃, and is also better than that of 316L stainless steel.展开更多
文摘研究了RE Ni W P SiC PTFE复合镀层的抗氧化性。结果表明 :RE Ni W P SiC PTFE复合镀层随着氧化温度的升高 ,氧化膜的重量增加 ,但在 80 0°C以下氧化温度对镀层的增重不显著 ;80 0°C以上 ,镀层的增重迅速增加。通过对三种镀层抗氧化性能的比较可知 ,RE Ni W P SiC PTFE镀层的抗氧化性不如Ni W P、Ni W P SiC及RE Ni W P SiC三种镀层好。
文摘研究了电流密度、镀液温度、pH值和PTFE等对电沉积RE Ni W P SiC PTFE复合镀层性能的影响。结果表明 ,镀态下镀层的硬度在 42 0~ 5 5 0Hv之间 ,当镀液中PTFE浓度为 2 5ml/L时 ,磨损量最小 ,但镀层的耐蚀性却最差 ;而当镀液中PTFE浓度为 30ml/L时 。
基金Project([2002]24) supported by the National Development and Reform Commission of China
文摘Corrosion rate and anode polarization curves of electrodeposited RE-Ni-W-P-SiC-PTFE composite coating in various concentrations of phosphoric and ferric chloride were researched. The results show that corrosion rate of the composite coatings increases with the increasing concentrations of phosphoric and ferric chloride, and reaches the maximum value when phosphoric concentration is 40% and ferric chloride concentration is 20% (mass fraction, the same below if not mentioned). Anode polarization curves of the composite coatings show that anode polarization current density of the composite coatings heat-treated at 200 ℃ or 500 ℃ is lower than that of other coatings heat-treated at 300 ℃ or 400 ℃, which displays that the composite coatings heat-treated at 200 ℃ or 500 ℃ have better corrosion resistance. Besides, corrosion resistance of the composite coating heat-treated at 500 ℃ is better than that as deposited and RE-Ni-W-P-SiC composite coating heat-treated at 400 ℃, and is also better than that of 316L stainless steel.