|
Power |
25W |
|
Product Size |
310x310x1000mm |
|
Gift box dimension |
430x280x305mm |
|
Power |
25W |
|
Product Size |
310x310x1000mm |
|
Gift box dimension |
430x280x305mm |
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Center of gravity design:
Weighted base: By using metal or other heavy materials, the base is made heavier to lower the center of gravity, thereby improving the overall stability of the fan.
Wide base design: Design a wide base to make the fan less likely to tilt during operation. This design can provide additional support when the fan is subjected to external forces (such as strong winds).
Material selection:
Anti-slip material: Use anti-slip materials with high friction coefficients (such as rubber or polyurethane) on the surface of the base to increase the adhesion between the base and the ground and prevent sliding.
Durability: Choose wear-resistant materials to ensure that the anti-slip effect can be maintained after long-term use.
Base shape:
Tapered or wide edge: Using a tapered design or increasing the edge width can increase the contact area of the base, disperse gravity, and reduce the risk of tipping.
Groove design: Add grooves or corrugated structures to the bottom of the base to further increase friction.
Anti-seismic structure:
Internal support frame: Design internal support structures, such as cross brackets, to reduce the vibration generated by the fan during operation and improve stability.
Shock-absorbing materials: Shock-absorbing materials (such as foam or rubber) are used on the support structure to effectively absorb vibration.
Anti-slip pads:
Replaceable pads: Replaceable anti-slip pads are set at the bottom of the base, allowing users to choose the appropriate anti-slip material according to the type of ground.
Shape design: The pads can be designed with a larger contact surface or a special shape to increase the anti-slip effect.
Structural test:
Tilt test: Perform a tilt test to ensure that the fan can remain stable at a certain angle.
Vibration test: Simulate vibrations under different operating conditions to test the stability and seismic resistance of the base.