Stainless steel tension lock
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The working principle of the stainless steel tension lock is based on the combination of mechanical transmission and elastic potential energy. It uses an internal spring to provide power and works with the lock catch to achieve automatic tensioning and locking. Its core structure includes the lock body, telescopic tension rod, spring, lock catch and operating mechanism.
Energy storage and connection: The operating mechanism drives the telescopic lever to extend, connecting the fixed object with the fixed point. The internal spring is compressed or stretched to store energy.
Release and tensioning: Reverse operation mechanism. The spring releases its elastic potential energy, pulling the telescopic lever back, generating tension to make the object tightly connected.
Locking and maintaining: The lock engages with the lever through mechanisms such as clasps or threads, preventing retraction and maintaining a stable tensioned state.
Unlocking and disassembly: Operating the unlocking component to release the lock, the lever can extend again, completing the disassembly.
Partial design (such as push-button type) compresses the main spring by pressing the button. After releasing, the spring pushes the latch to insert into the lock, the wedge-shaped structure generates preload force, combined with the limit step to prevent loosening, ensuring no gap movement.









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