Mole plough bionic anti-sticking, anti-drag and wear-resistant plough shovel
A plow shovel and anti-sticking technology, which is applied in plowing, agriculture, application, etc., can solve the problems of high working resistance and easy wear, and achieve the effects of reducing fuel consumption, solving serious adhesion, and improving the ability of water storage and moisture conservation
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example 1
[0052] Example 1: A bionic drag-reducing and wear-resistant plow shovel with a convex hull structure, see Figure 9 . The shape of the convex hull is hemispherical, the ratio of the height H of the convex hull to the diameter D of the convex hull is H / D=0.5, the distribution of the convex hull on the surface adopts a regular distribution, and the distance between every two adjacent convex hulls is 10mm . The top view contour curve of the leading edge of the plow shovel tip adopts a convex hull parabola.
example 2
[0053] Example 2: A bionic drag-reducing and wear-resistant plow shovel with a rib structure, see Figure 10 . Continuous ribs are evenly distributed intermittently; the length of intermittent ribs is 1 / 10 of the width of the upper surface of the plow shovel tip at the position, that is, 12 intermittent ribs are used; the bottom width of the ribs is 10cm, and the height of the ribs is the same as that of the ribs. The bottom width ratio is 0.2. The top view contour curve of the leading edge of the shovel tip of the plow shovel adopts a convex parabola shape.
example 3
[0054] Example 3: The bionic drag-reducing and wear-resistant plow shovel with a pit structure, see Figure 11 . The shape of the small pit is spherical, the ratio of the pit height H to the pit diameter D is H / D=0.5, the distribution of small pits on the surface adopts regular distribution, and the center distance between every two adjacent pits is 10mm . The top view contour curve of the leading edge of the shovel tip of the plow shovel adopts a convex parabola shape.
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