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| Categories | Non Destructive Testing Equipment |
|---|---|
| Brand Name: | HUATEC |
| Certification: | CE |
| Place of Origin: | China |
| MOQ: | 10pcs |
| Payment Terms: | T/T,Western Union,Paypal |
| Supply Ability: | 10 Sets/Month |
| Delivery Time: | 7-10 working days after receipt of your payment |
| Packaging Details: | Carton packing box |
| Material: | High elasticity rubber |
| Company Info. |
| HUATEC GROUP CORPORATION |
| Verified Supplier |
| View Contact Details |
| Product List |
Rubber Bulb Dry Powder Applicator for Magnetic Particle Testing
The rubber ball dry powder applicator (Bulb Dry Powder Applicator) is a simple manual powder spraying tool based on the physical principle of air pressure difference. It is widely used in non-destructive testing (NDT), medical, pest control and other fields. The core function is to generate an airflow by squeezing the rubber ball, which then blows out the dry powder and evenly covers the target surface.
I. Core Structure (Taking NDT Magnetic Powder Spraying Ball as an
Example)
- **Rubber Ball (Bulb)**: High elasticity rubber material,
providing the power source for the device. Compression generates
airflow, and when released, it automatically retracts into the air
chamber.
- **Powder Storage Chamber/Tube Body**: Internal space for loading
dry magnetic powder, powder, and other powder materials.
- **Spray Head/Nozzle**: Front end with multiple holes (such as 32
φ0.9mm small holes), dispersing the airflow and ensuring uniform
powder spraying to prevent blockage.
- **One-way Valve/Ventilation Structure**: Some models have a
built-in one-way valve to ensure that air can flow in only one
direction, preventing powder backflow and ensuring stable powder
discharge each time during compression.
II. Detailed Working Principle (4-step cycle)
| 1. Loading Powder | Open the nozzle or powder inlet, and load dry, non-agglomerated dry powder (such as magnetic powder, pharmaceutical powder) into the powder storage chamber. Seal it tightly. |
| 2. Pressing the Rubber Ball (Pressurized Powder Injection) | - Manually squeeze the rubber ball forcefully, causing the volume
inside the ball to sharply decrease and the internal pressure to
rapidly rise, creating a positive pressure higher than the outside. - The high-pressure airflow impacts the powder storage chamber downward, causing the powder particles to suspend and flow; the airflow carries the powder through the nozzle and is uniformly sprayed out from the spray hole, covering the surface of the workpiece/target. |
| 3.Release the rubber ball (negative pressure intake) | - After releasing, the rubber ball returns to its original shape
and size due to elasticity, creating a brief negative
pressure/vacuum inside. - External air flows in through the nozzle or intake hole in one direction, replenishing the internal pressure; at the same time, it prevents the powder from flowing back and avoids clogging. |
| 4. Cyclic operation | Repeat the "squeeze - release" process, continuously generating pulse airflows to achieve continuous and controllable dry powder spraying. |
III. Principle and Features
- **Pure mechanical, no power supply**: Completely relying on
rubber elasticity and pressure difference, the structure is simple,
with low failure rate and extremely low cost.
- **High controllability**: The squeezing force can control the
powder output and spray distance. Light pressing results in a small
amount, heavy pressing results in a large amount, suitable for
precise local spraying.
- **Wide applicability**: Suitable for dry fine powders (magnetic
powder, medicinal powder,etc.), and is often used for dry powder
application in NDT (non-destructive testing) for magnetic particle
inspection.
- **Easy maintenance**: No complex components. When clogged, simply
clean the nozzle and it can be reused repeatedly.
IV. Adaptation to NDT Scenarios
In magnetic particle inspection, after the workpiece is magnetized,
defects will generate a **leakage magnetic field**; by evenly
spraying dry magnetic powder with this tool, the powder will be
attracted and gathered by the leakage magnetic field, clearly
revealing surface/near-surface defects such as cracks and pores,
and the inspection can be completed with the aid of black
light/white light observation.



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