Main Webbing Material
The harness's primary load-bearing webbing is woven as a single, continuous piece from high-strength industrial polyester, measuring 45mm in width. This material is resistant to stretching, abrasion, and aging; it maintains stable mechanical strength even under conditions involving prolonged sun exposure, friction on construction sites, and exposure to mild chemicals. This results in a longer overall service life and a higher safety factor for load-bearing.
Rear Primary Load-Bearing D-Ring
A high-strength, forged, one-piece load-bearing D-ring is mounted at the center of the back. The forging process ensures high structural integrity, making the ring resistant to deformation or cracking. Serving as the core load-bearing attachment point for the entire system, it provides a secure connection for protective accessories such as energy-absorbing lanyards and fall-arrest shock-absorbing lanyards. The connection is tight and secure, eliminating risks of slippage or breakage and ensuring reliable load-bearing performance.
Auxiliary D-Rings on Shoulder Straps
Small metal D-rings are independently positioned on the outer side of both the left and right shoulder straps. These can be used to attach tool lanyards, positioning lanyards, or small work accessories, meeting needs for tool restraint and temporary auxiliary anchoring during work at heights, thereby expanding the equipment's versatility.
Multi-Point Adjustable Design
The product features four independent length-adjustment mechanisms corresponding to four key adjustment points: the chest strap, the waist load-bearing belt, and the left and right thigh straps. Operators can freely adjust the tension and length of the webbing at each point to suit their height and body shape, achieving a personalized fit that contours to the body. Once worn, the harness remains stable without shifting on the shoulders or constricting the waist, and leg straps provide even support without restricting movement. This design ensures that, in the event of a fall, impact forces are evenly distributed, enhancing both wearing comfort and protective stability.