Belt Clamp
A belt clip and belt technology, applied in the direction of frictional clamping of detachable fasteners, flexible slender elements, applications, etc., can solve the problems of increasing space, increasing the thickness of fasteners, etc., and achieve the effect of improving efficiency
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no. 1 approach
[0050] First, the overall structure of the belt clamp 1 of this embodiment will be described below. The belt clip 1 is made of a resin material such as polypropylene and includes, such as Figures 1A to 1C As shown in , wrap the item to be clamped (eg Figure 5 The elongated strip type strap 3 and the buckle 5 on the outer surface of the wire harness 2) shown in 4a is inserted. In the case of the belt clip 1 of the present embodiment, the buckle 5 has an engaging portion 8 on its surface opposite to the belt insertion hole 4, which fits into a connecting body (such as image 3 body panel 6 shown in ) and engage with the assembly hole 7 of the connecting body.
[0051] First, the strap 3 will be described. Such as Figures 1A to 1C As shown in , the belt 3 includes a base end 9 and an elongated strip body 11 made of a thin plate extending from the base end 9 with a certain width W1 (see image 3 ), the base end is inserted from its strap into the end of the fastener 5 nea...
no. 2 approach
[0068] The anti-slip portion 36 of the second embodiment will be described below. Such as Figures 6A-6C As shown, each anti-slip portion 36 of the second embodiment includes a plurality of anti-slip elements 37, each anti-slip element 37 has a substantially isosceles trapezoidal shape in side view and is equally spaced along the longitudinal direction 12 of the belt body 11. It is continuously provided at both ends of the belt body 11 in the width direction 13 . At this time, the length L2 of the bottom 37 b of the anti-slip member 37 is set to be greater than the length L1 of the top 37 a to increase the pressing area of the operator's finger 18 . The anti-slip portion 36 of the present embodiment has a function similar to that of the anti-slip portion 17 of the first embodiment.
no. 3 approach
[0070] The anti-slip portion 38 of the third embodiment will be described below. Such as Figures 7A-7CAs shown in , the anti-slip portion 38 of the third embodiment is obtained by inclining the anti-slip member 37 of each anti-slip portion 36 of the second embodiment at predetermined angles θ1 and θ2, respectively, so as to be symmetrical in the width direction in a front view. Angles θ1 and θ2 may be the same or different. Therefore, the wall surface 39 a facing the base end 9 and the wall surface 39 b facing the distal end 11 a of each anti-slip element 39 are inclined with respect to the longitudinal direction 12 of the belt body 11 . In this case, by tilting the anti-slip element 39 to taper in the longitudinal direction 12 towards the distal end 11a of the strap 11 (i.e. to taper in the direction of pulling the strap 11), the operator's finger 18 is increased in The longitudinal direction 12 of the belt body 11 bears against the contact area of the anti-slip element ...
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