Design method for large dual-chamber skipping bucket and dual-chamber skipping bucket
A design method and skip technology, which is applied in mine lifting equipment, transportation and packaging, etc., can solve the problems such as the wall strength of the bucket reinforced by the clapboard, unsmooth discharge, uneven loading, etc., and achieve the reduction of peripheral reinforcement ribs , reduce manufacturing and operating costs, and ensure safe and reliable operation
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Embodiment 1
[0036] This embodiment is a design method of a large double-cavity skip. It should be noted that the method described in this embodiment is aimed at the vertical shaft skip, so the bucket box of the skip is always vertical in the description process, which is a box with a rectangular horizontal section and a rectangular vertical section. . Moreover, the ratio of the long side to the short side of the rectangle of the vertical section, that is, the ratio of the height to the horizontal width of the bucket box, is relatively large. It is a long rectangle, which is professionally called a deep warehouse structure. figure 1 Shown is a schematic diagram of the vertical cross-sectional shape of this deep warehouse structure, figure 1 The vertical section in is parallel to the long side of the bucket box rectangle in the horizontal plane.
[0037] The method described in this embodiment is the main point of partition analysis and design in skip design, and there are many other de...
Embodiment 2
[0059] This embodiment is an improvement of the first embodiment, and is a refinement of the first embodiment about "the step of determining the vertical height of the partition". In the "step of determining the vertical height of the partition" described in this embodiment, the partition is divided into multiple sections in the vertical direction, and the gap between each partition is larger than twice the outer dimension of the largest material particle.
[0060] The dividing plate described in this embodiment is a row of tie bars 403, such as Image 6 As shown, the gap between the tie bars can pass through the material with the largest particle size, and the outer size of the material particle refers to the largest outer size size of the material particle.
Embodiment 3
[0062] This embodiment is a large-scale double-cavity skip designed according to the design method described in the above claims, such as Figure 7 shown. The skip described in this embodiment includes: a frame 1, a bucket box 2 is arranged in the frame, the bottom of the bucket box is connected to a chute 3, and a fan-shaped gate 5 is arranged on the chute, and the bucket box is The horizontal cross-sectional shape of the rectangle is a rectangle, the ratio of the long side to the short side of the rectangle is equal to or nearly equal to 2, a partition 4 is set at the midpoint of the two opposite long sides of the rectangle, and the upper edge of the partition The distance to the upper edge of the bucket box is between 0.5 and 0.6 of the bucket box height. The distance from the lower edge of the partition to the lower edge of the bucket box is 2-5 times the size of the largest material particle.
[0063] The frame 1 described in this embodiment is the skeleton of the whole...
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