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| Brand Name: | FUTURE |
| MOQ: | 100000SET |
| Price: | Negotiable |
| Packaging Details: | CARTON |
| Payment Terms: | TT,LC,D/A,D/P |
The High-Temperature Resistant Male paint valve is a critical tool for aerospace component spraying, where precision and heat resistance are non-negotiable. As a professional male-type paint valve for aerospace use, it adopts Inconel alloy as the core material—this superalloy can withstand temperatures up to 600°C, avoiding valve deformation when spraying high-temperature resistant paints (such as ceramic-based aerospace paints) on engine components or fuselage frames. Its quick-response flow control system allows operators to adjust paint output in 0.1-second increments, matching the ultra-precise requirements of aerospace part spraying (e.g., thin-walled turbine blades). The male paint flow valve also features a dual-layer sealing structure: the inner layer is made of high-temperature fluororubber to prevent paint leakage, while the outer layer resists aerospace fuel vapor erosion. It is fully compatible with automated aerospace spraying robots and manual spraying guns, requiring no specialized adapters. Whether in aircraft engine manufacturing plants or satellite component workshops, this Male paint valve maintains stable performance, ensuring the paint film adheres firmly to aerospace parts and meets strict industry standards.
Aerospace component manufacturing facilities, including aircraft engine factories (for turbine blade, combustion chamber spraying) and satellite assembly workshops (for satellite frame, antenna housing anti-high temperature coating). It is also ideal for spraying heat-resistant layers on rocket propellant tank components.
Specifications:
| Component | Part Description |
| Mounting cup | Both sides with clear lacquered tinplate ,with down dimples |
| Outer gasket | Buna |
| Inner gasket | Butyl |
| Stem | Double orifice 1* φ 0.51mm natural |
| Spring | Stainless steel |
| Housing | tail orifice Dia φ2*φ0.33mm orange |
| Dip tube | standard natural color |
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How does the Paint Dispenser Valve ensure accurate flow?
Is this valve suitable for industrial use?
How does the valve enhance control during application?
Can this valve integrate with existing systems?
How does this valve increase productivity?
|
| Brand Name: | FUTURE |
| MOQ: | 100000SET |
| Price: | Negotiable |
| Packaging Details: | CARTON |
| Payment Terms: | TT,LC,D/A,D/P |
The High-Temperature Resistant Male paint valve is a critical tool for aerospace component spraying, where precision and heat resistance are non-negotiable. As a professional male-type paint valve for aerospace use, it adopts Inconel alloy as the core material—this superalloy can withstand temperatures up to 600°C, avoiding valve deformation when spraying high-temperature resistant paints (such as ceramic-based aerospace paints) on engine components or fuselage frames. Its quick-response flow control system allows operators to adjust paint output in 0.1-second increments, matching the ultra-precise requirements of aerospace part spraying (e.g., thin-walled turbine blades). The male paint flow valve also features a dual-layer sealing structure: the inner layer is made of high-temperature fluororubber to prevent paint leakage, while the outer layer resists aerospace fuel vapor erosion. It is fully compatible with automated aerospace spraying robots and manual spraying guns, requiring no specialized adapters. Whether in aircraft engine manufacturing plants or satellite component workshops, this Male paint valve maintains stable performance, ensuring the paint film adheres firmly to aerospace parts and meets strict industry standards.
Aerospace component manufacturing facilities, including aircraft engine factories (for turbine blade, combustion chamber spraying) and satellite assembly workshops (for satellite frame, antenna housing anti-high temperature coating). It is also ideal for spraying heat-resistant layers on rocket propellant tank components.
Specifications:
| Component | Part Description |
| Mounting cup | Both sides with clear lacquered tinplate ,with down dimples |
| Outer gasket | Buna |
| Inner gasket | Butyl |
| Stem | Double orifice 1* φ 0.51mm natural |
| Spring | Stainless steel |
| Housing | tail orifice Dia φ2*φ0.33mm orange |
| Dip tube | standard natural color |
![]()
![]()
![]()
![]()
How does the Paint Dispenser Valve ensure accurate flow?
Is this valve suitable for industrial use?
How does the valve enhance control during application?
Can this valve integrate with existing systems?
How does this valve increase productivity?