A backing plate for fast construction of temporary roads on soft roads
A technology for temporary roads and pads, applied in roads, roads, road repairs, etc., can solve the problems of small grip, short service life, service life, and strength limitations, and achieve good tensile strength
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Embodiment 1
[0041] see Figure 1 ~ Figure 3 In this embodiment, the backing plate used for quickly constructing temporary roads on soft roads is composed of a backing plate body 1 and a metal reinforcement 2 embedded in the backing plate body 1 . Wherein, the backing plate body 1 is made of polymer material, the metal reinforcing body 2 protrudes from the side of the backing plate body 1, and the protruding part is provided with a connecting buckle 2-2.
[0042] see Figure 1 ~ Figure 3 , the metal reinforcement 2 is braided by a longitudinal steel cable 2-1 and a transverse steel cable 2-1, and the longitudinal steel cable 2-1 and the transverse steel cable 2-1 are woven into a rectangular or rhombus grid (in this embodiment is square), the longitudinal steel cable 2-1 protrudes from the longitudinal two ends of the backing plate body 1, and the protruding parts of the two ends are provided with connecting buckles 2-2; the horizontal steel cable 2-1 extends from the The lateral two end...
Embodiment 2
[0050] see Figure 8 The difference between this embodiment and Embodiment 1 is that, in this embodiment, the edge of the top of the raised line 1-2 of the anti-skid stripe is provided with an inclined surface 1-3 formed by cutting off corners. This makes the ends of the protruding strips 1-2 form sharp points, thereby having better gripping force with soft road surfaces such as automobile wheels or soft sandy soil and silt.
[0051] Embodiments other than the above in this embodiment are the same as in Embodiment 1.
Embodiment 3
[0053] The difference between this embodiment and Embodiment 1 is that, in this embodiment, the metal reinforcements are multi-layered (for example, 2-3 layers), and the multi-layered metal reinforcements are arranged parallel to the thickness direction of the spacer body. By arranging multi-layer metal reinforcements, the overall rigidity of the pad can be improved, which can be flexibly set according to the rigidity requirements of the pad in specific usage occasions.
[0054] Embodiments other than the above in this embodiment are the same as in Embodiment 1.
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Abstract
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