Anti-oxidization and wear-resistance composite coating for four pipes of power plant boiler
A composite coating, anti-oxidation technology, applied in the direction of coating, metal material coating process, melting spray plating, etc., can solve problems such as leakage, and achieve the effect of improved service life, improved uniformity, and high melting point
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Embodiment 1
[0013] The powder with the composition of 75wt.%NiCoCrAlY+25wt.%ZrC was mixed evenly with a planetary high-energy ball mill, and a new high-temperature anti-oxidation, wear and erosion coating with a thickness of 200μm was prepared by plasma spraying. The specific process is shown in the table 1 shows:
[0014] Table 1. Process parameters of the first group of low-pressure plasma spraying coatings composed of NiCoCrAlY-ZrC
[0015] Voltage (v)
[0016] 50~60
Embodiment 2
[0018] The powder with the composition of 80wt.%NiCoCrAlY+20wt.%ZrC was mixed evenly with a planetary high-energy ball mill, and a new high-temperature anti-oxidation, wear and erosion coating with a thickness of 250μm was prepared by plasma spraying. The specific process is shown in the table 2 shows:
[0019] Table 2. Process parameters of the second group of low-pressure plasma spraying to prepare coatings composed of NiCoCrAlY-ZrC system
[0020] Voltage (v)
Embodiment 3
[0022] The powder with the composition of 70wt.%NiCoCrAlY+30wt.%ZrC was mixed evenly with a planetary high-energy ball mill, and a new high-temperature anti-oxidation, wear and erosion coating with a thickness of 250μm was prepared by plasma spraying. The specific process is shown in the table 3 shows:
[0023] Table 3. Process parameters of the third group of low-pressure plasma spraying coatings composed of NiCoCrAlY-ZrC
[0024] Voltage (v)
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