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Brand: Reliant Lab
Reliant Lab Wall Bracket for Vibration Needle
SKU: TB-WA-66470
Estimated Delivery By: Apr 16 - Apr 18 




MRP : ₹1104 ₹799
28% OFF!
Estimated Delivery By: Apr 16 - Apr 18 
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₹799 (Including GST)
MRP : ₹1104
28% OFF!
Get Extra ₹12 OFF on Prepaid Orders
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Short Description
Reliant Lab Wall Bracket
For Vibration Needle
Country of origin: India
Specifications
- Brand: Reliant Lab
- Shape : L
- Nut Type : chuck nuts
- Number of Holes : 2
Description
The Wall Bracket is a robust, L-shaped mounting assembly engineered to be fixed permanently to a laboratory wall. Unlike stand mounted systems, which are prone to bench-top vibrations and wobbling, the wall bracket leverages the mass of the building's structure to ensure the suspension point remains stationary. It features a heavy cast iron or powder-coated steel frame with pre drilled holes for secure mounting. At the end of the cantilever arm is a precision split chuck or a clamping nut designed to grip suspension wires of various diameters (from 20 to 32 SWG), ensuring they hang perfectly vertical and centered.
Features
:- Heavy Duty Cast Construction: Made from seasoned cast iron or thick gauge steel to eliminate flexing and dampen ambient acoustic vibrations.
- Precision Split Chuck: Features a hardened steel clamping mechanism that holds the test wire securely without crimping or damaging it.
- Vertical Alignment Path: The suspension point is precision centered to ensure that the gravitational axis of the pendulum aligns with the wire.
- Corrosion Resistant Finish: Typically finished with an oven baked powder coating or hammer-tone paint to prevent rusting in laboratory environments.
Applications
:- Modulus of Rigidity Determination: Ensures that the "fixed end" of the wire in Searle’s or Barton’s apparatus does not slip during torque application.
- Vibration Analysis: Acting as a stable anchor for studying damped and forced oscillations in advanced mechanics.
- Long-Term Creep Studies: Maintaining a constant tension point for monitoring the deformation of metal wires over extended periods.

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