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The Dynamic Interlocking Structure Of The Wedge-shaped Tension Clamp

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The mechanism of clamp fiber optic dead end clamp originates from the geometric fit between the wedge and the main body groove. When the conductor is under force, the wedge displaces along the inclined surface of the inner cavity. This movement deepens the contact between the clamping surface and the conductor, creating a stable pressure transmission path and continuously increasing the mechanical engagement depth.

The main body of fixed dead end clamp is usually made of high-strength materials, and its internal cavity design is adapted to the contour of the wedge block so that it can naturally complete position adjustment and fine adjustment when the load conditions change, realizing a certain degree of self-compensation mechanism. This process is achieved through the mechanical interaction between the wedge and the groove. As the tension on the conductor increases, the wedge mechanism moves inward, further strengthening the engagement between the clamp and the conductor.

The Dynamic Interlocking Structure Of The Wedge-shaped Tension Clamp

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