Product Specification
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| Payment Terms |
T/T |
Supply Ability |
500PCS/MONTH |
| Delivery Time |
30-45DAYS |
Packaging Details |
Carton Box or Crate |
| Product Type |
Precision Pneumatic Air Brush |
Body Length |
150mm |
| Nozzle Diameter |
0.35mm |
PU Air Hose Specification |
5m |
| Included Accessories |
1 spanner |
Glass Jar Capacity |
22CC |
| Brand Name |
YEEDA |
Model Number |
YD32-014 |
| Certification |
CE |
Place of Origin |
Zhejiang,China |
| High Light |
Air brush with 0.35mm nozzle
,Air brush for model painting
,Air brush with 22CC jar
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Centered on "fine spraying + easy operation", the YD32-014 Air Brush is optimized for precision needs in delicate scenarios, with core advantages as follows:
The 0.35mm nozzle is the golden size for "fine lines" and "small-area filling":
- Line Drawing: It can accurately output 0.5mm fine lines (e.g., model armor textures, nail art line patterns). Compared with 0.5mm nozzles, line precision is increased by 40% with no edge blurring;
- Low-Viscosity Compatibility: Compatible with low-viscosity media (viscosity 8-12s) such as diluted acrylic paint, nail gel, and model paint. The atomized coating particle diameter is ≤15μm (approx. 25μm for traditional air brushes), resulting in a smooth, particle-free surface after spraying—no secondary sanding is needed for model surface painting.
The brass nozzle has moderate hardness (HRC30), preventing thread stripping during disassembly. Even with frequent cleaning (e.g., switching between different color coatings), the threads remain intact. Compared with stainless steel nozzles, brass has better thermal conductivity, preventing coating from drying and hardening inside the nozzle (especially for volatile alcohol-based coatings), extending service life by 2 times. Maintenance only requires disassembly with the included spanner, and cleaning is completed in 5 minutes—easy for beginners to operate.
The push-button design supports linear adjustment of "pressing depth = paint output":
- Light Press (1-2mm stroke): Low paint output, suitable for drawing fine lines (e.g., facial textures of figurines);
- Deep Press (3-4mm stroke): Increased paint output, suitable for small-area filling (e.g., coloring model window frames);
No additional valves are needed—one hand can switch between "line drawing and filling". Compared with knob-type paint control, operation efficiency is increased by 30%, and there is less risk of paint output deviation due to misoperation.
The 65g body weighs only as much as an egg. The 150mm length fits the natural grip of the palm (palm fits the body, fingertips control the button), causing no hand soreness even after 1 hour of continuous spraying. The center of gravity of the body is concentrated in the middle, with no "top-heavy" deviation during spraying. Even when drawing curved lines (e.g., model curved surface textures), stability is maintained to avoid line distortion caused by hand shaking.
The 22CC capacity is suitable for "small-volume, multiple batches" fine scenarios:
- Material-Saving & No Waste: Only 5-8CC of coating is needed to paint a 10cm×10cm model surface (15CC or more for traditional large-caliber spray guns), which is especially suitable for expensive coatings (e.g., imported model paint) to reduce waste;
- Quick Color Change: Only 20mL of thinner is needed to clean the jar, and color change is completed in 1 minute (e.g., switching from red to blue). Compared with large-capacity jars (50CC or more), color change efficiency is increased by 60%, suitable for multi-color painting scenarios (e.g., nail art gradient patterns).
The 5m PU air hose can cover most fine operation ranges (e.g., 1.5m distance from the workbench to the wall). Its anti-bending feature supports "multi-angle spraying":
- For example, when drawing small wall murals, the air brush can be moved freely without dragging the air compressor;
- The 4mm inner diameter of the hose ensures stable air flow. Even when bent at 90°, the end pressure can still be maintained at 15-30 PSi (no obvious attenuation), avoiding uneven paint output caused by pressure fluctuations.
Scenario Requirement: A model maker paints details on 10 1/144-scale Gundam models (approx. 150cm² surface area each), including 0.8mm armor texture lines and 2mm-wide window frame filling. Diluted model paint (viscosity 10s) is used, matching a 0.15m³/min small air compressor with pressure adjusted to 18-25 PSi.
Operation Process:
- Preparation: Install the 0.35mm nozzle, fill the glass jar with 15CC of model paint (e.g., silver armor paint), connect the air hose to the air compressor and adjust the pressure to 18 PSi. Test lines on a waste plastic plate (ensure 0.8mm fine and uniform lines);
- Fine Painting:
- Line Drawing: Lightly press the button (1.5mm stroke), keep 5cm away from the model, and move uniformly along the armor texture—15 minutes for line drawing per model;
- Frame Filling: Adjust the pressure to 25 PSi, press the button to a 3mm stroke, keep 8cm away, and fill the window frames (2mm wide per side)—8 minutes per model; - Color Change & Cleaning: Change color after completing 2 models (e.g., from silver to red), rinse the jar and nozzle with model paint thinner (taking 2 minutes), and hang on the metal hanger after cleaning.
Result: Painting of 10 models is completed in 3 days (5 days with traditional air brushes). Armor lines have no blurring, frame filling has no overflow, and the model detail restoration rate reaches 95% (customer feedback: "Clear textures, comparable to professional mass-produced models"). The coating utilization rate is 75% (only 50% for traditional air brushes).
Scenario Requirement: A manicurist creates gradient blush nails + fine gold line patterns on 10 pairs of nails (5 nails per hand, approx. 1.5cm² per nail). Nail-specific gel (diluted to 8s viscosity) is used, matching a 0.1m³/min nail air pump with pressure adjusted to 15-20 PSi.
Operation Process:
- Preliminary Debugging: Fill the glass jar with 8CC of blush nail gel (pink), adjust the pressure to 15 PSi, and test the gradient effect on a nail tip (control concentration by lightly pressing the button);
- Nail Art Painting:
- Gradient Blush: Press the button to a 1mm stroke, keep 3cm away from the nail, and spray in a circular motion (to form a gradient effect)—2 minutes per nail;
- Fine Gold Lines: Replace with gold nail gel, adjust the pressure to 20 PSi, press the button to a 1mm stroke, keep 5cm away, and draw 0.5mm fine gold lines (outlining the nail edge)—1 minute per nail; - Tool Storage: After completion, rinse the jar and nozzle with nail gel cleaner, and hang on the metal hanger on the nail table (saving table space).
Result: Painting of 10 pairs of nails is completed in 5 hours (8 hours with traditional brush painting). The gradient transition is natural without gaps, and the gold lines are smooth without breaks. Customer satisfaction reaches 98%, and the manicurist reports: "Precise paint control, saving half the time compared to brush painting".
Scenario Requirement: A DIY enthusiast draws plant texture patterns on 20 wooden badges (5cm diameter each, approx. 20cm² surface area). Diluted acrylic paint (viscosity 12s) is used, matching a 0.12m³/min small air compressor with pressure adjusted to 22-28 PSi.
Operation Process:
- Preparation: Fill the glass jar with 10CC of green acrylic paint, adjust the pressure to 22 PSi, and test leaf lines on a waste wood chip (ensure 1mm width);
- Pattern Drawing:
- Leaf Outline: Lightly press the button to a 1.2mm stroke, keep 6cm away from the badge, and draw leaf outlines (3 leaves per badge, taking 3 minutes);
- Detail Filling: Adjust the pressure to 28 PSi, press the button to a 2.5mm stroke, and fill leaf textures (gradient from light green to dark green, taking 2 minutes); - Finished Product Handling: After drawing, rinse the jar with clean water (acrylic paint is easy to clean), dry the air brush, and store it.
Result: 20 badges are completed in 4 hours (7 hours with traditional brush painting). There is no paint accumulation on the wooden surface, and the textures are clear and layered. The badge selling price is increased by 50% (due to exquisite details), and the acrylic paint utilization rate reaches 80% (no waste).
A1: It is mostly caused by high coating viscosity or unfiltered impurities. Handle step by step:
- Dilute the Coating: Low-viscosity coatings need to be controlled at 8-12s (tested with a viscosity cup). If it exceeds 12s, add a corresponding thinner (model thinner for model paint, clean water for acrylic paint), stir evenly, and retest (ensure no sediment);
- Filter Impurities: Particle impurities in the coating (e.g., unevenly stirred acrylic paint) will block the 0.35mm nozzle—filter the coating through a 200-mesh sieve before pouring it into the jar to prevent impurities from entering;
- Unclog the Nozzle: If blocked, gently insert the cleaning needle (included with the spanner) into the nozzle (avoid scratching the inner wall with force). After unclogging, rinse with thinner and test whether the paint output is smooth;
Prevention: Clean the nozzle within 10 minutes after each use to prevent coating from drying and hardening.
A2: It is mostly caused by unstable air pressure or unadapted button stroke, not a structural problem. It can be adjusted quickly:
- Stabilize Air Pressure: If the air compressor displacement is <0.1m³/min (e.g., mini air pump), it will cause pressure fluctuations—replace with an air compressor of ≥0.1m³/min, or install a 500mL air tank (to stabilize pressure) to ensure the working pressure has no fluctuations within 15-30 PSi;
- Adapt to Button Stroke: Push-button paint control requires "uniform pressing". If the pressing speed is uneven, it will cause uneven paint output—practice the "light press-deep press-release" action on a waste workpiece to familiarize yourself with the paint output corresponding to 1-4mm strokes. Mastery is achievable in 10 minutes;
- Check Sealing: Air leakage at the connection between the button and the body will also affect paint output—remove the button assembly, check if the sealing ring is deformed (replace with an original sealing ring if deformed), and test after reinstallation.
A3: Solve it with "external jar + operation skills" without replacing the air brush:
- External Large-Capacity Jar: Contact the merchant to purchase a "22CC to 50CC glass jar adapter" and replace the original 22CC jar with a 50CC large-capacity jar (still compatible with the 0.35mm nozzle). Only one refill is needed for 30cm² spraying;
- Bulk Premixed Coating: Premix the required coating according to the dosage (e.g., 30CC for 30cm²) and pour it into a clean container. Use a dropper to extract coating for each refill (avoid repeated pouring and waste);
- Operation Optimization: For large-area filling, adjust the pressure to 30 PSi (maximum paint output), keep the air brush moving at a uniform speed (2cm/s), reduce residence time, and cover 10cm² with one continuous spray to reduce refilling frequency.
A4: A 0.08m³/min air pump is only suitable for small-area emergencies. ≥0.1m³/min is recommended for large-area/high-precision scenarios:
- Small-Area Emergency (e.g., one nail painting, 5cm² model detail): A 0.08m³/min air pump can support 15-20 PSi pressure, but the "intermittent spraying" method (10s spraying + 5s pause) must be adopted to avoid pressure dropping below 15 PSi (causing poor atomization). The single spraying area should not exceed 5cm²;
- Large-Area/High-Precision Scenarios (e.g., filling over 10cm², fine line drawing): Must replace with an air pump of ≥0.1m³/min. Otherwise, problems such as "sudden pressure drop → reduced paint output → line thinning/uneven filling" will occur, affecting detail precision (e.g., line thickness deviation exceeding 0.3mm);
- Adaptation Suggestion: When choosing an air pump, prioritize models with "displacement 0.1-0.2m³/min and pressure regulating valve". The pressure regulating valve can stably output 15-30 PSi to ensure spraying precision. Mini air pumps are only suitable for temporary trials and not recommended for long-term use.

Company Details
Bronze Gleitlager
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Business Type:
Manufacturer,Trading Company
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Employee Number:
110~120
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Ecer Certification:
Verified Supplier
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