Adjustable intermediate disk body of large double-layer cage and adjusting and moving method thereof
09695017 ยท 2017-07-04
Assignee
- China University of Mining and Technology (Xuzhou, JS, CN)
- Xuzhou Coal Mine Safety Equipment Manufacture Co., Ltd. (Xuzhou, JS, CN)
Inventors
- Zhencai Zhu (Xuzhou, CN)
- Gongbo ZHOU (Xuzhou, CN)
- Changhua Hu (Xuzhou, CN)
- Guohua CAO (Xuzhou, CN)
- Wei LI (Xuzhou, CN)
- Guoan Chen (Xuzhou, CN)
- Yuxing Peng (Xuzhou, CN)
- Qingyong Du (Xuzhou, CN)
- Zhi Liu (Xuzhou, CN)
Cpc classification
International classification
Abstract
An adjustable intermediate disk body of large double-layer cage comprises cage columns, a main intermediate disk body, and a chain block and a connecting piece. An intermediate disk guide rail beam is arranged on the inner side of the cage columns, wedge bases are symmetrically arranged on the two sides of the lower part of the intermediate disk guide rail beam, a limited block with a bolt hole is arranged on the upper part of the intermediate disk guide rail beam, and an anti-disengaging plate is arranged on the intermediate disk guide rail beam. Intermediate disk wedge bodies, which match the wedge faces of the wedge bases and can only move vertically along the intermediate disk guide rail beams, are arranged on the two side faces of the main intermediate disk body, at positions corresponding to the intermediate disk guide rail beams; an intermediate disk guide wheel that is fitted with the intermediate disk guide rail beam and an intermediate disk guide wheel seat with a bolt hole are arranged on the upper part of the intermediate disk wedge body.
Claims
1. An adjustable intermediate disk body of large double-layer cage, comprising: cage columns; a main intermediate disk body arranged in between the cage columns; and a chain block and a connecting piece connected to a cage suspension board, wherein, an intermediate disk guide rail beam is arranged on an inner side of the cage columns and slidably connected to the main intermediate disk body operable to move up and down, wedge bases are arranged symmetrically on the two sides of a lower part of the intermediate disk guide rail beam and designed to fix a minimum descending position of the main intermediate disk body, each wedge base including a wedge face, a limited block is arranged on an upper part of the intermediate disk guide rail beam, a first bolt hole is arranged on the limited block and is designed to fix a maximum ascending position of the main intermediate disk body; intermediate disk wedge bodies are arranged on two side faces of the main intermediate disk body at a position aligning with and at least partiailly on either side of each of the intermediate disk guide rail beams, which are shaped to inversely correspond to the shape of the wedge faces of the wedge bases; and at least one intermediate disk guide wheel rotably connected to the intermediate disk wedge body that is operably connected to the intermediate disk guide rail beam to enable the main intermediate disk body to translate with respect to the intermediate disk guide rail beam; and at least one intermediate disk guide wheel seat with a second bolt hole is positioned on an upper part of the intermediate disk wedge body.
2. The adjustable intermediate disk body of large double-layer cage according to claim 1, wherein, an anti-disengaging plate is arranged on the intermediate disk guide rail beam.
3. An adjusting and moving method for the adjustable intermediate disk body of large double-layer cage according to claim 1, comprising: connecting the main intermediate disk body via the chain block and connecting piece after the large double-layer cage is docked at a level for transporting equipment into the cage; applying a first force in a forward direction to lift up the main intermediate disk body from the wedge bases and driving the main intermediate disk body to move upwards, and inserting the bolts into the bolt holes when the bolt holes of the intermediate disk guide wheel seats are aligned to the bolt holes of the limited blocks on the cage columns, to fix the main intermediate disk body at the level of the limited blocks; and connecting the main intermediate disk body via the chain block and connecting piece after the large double-layer cage is docked at a level for transporting equipment out of the cage, applying second force in the forward direction to release the load on the bolts, and pulling out the bolts and applying a third force in a reversed direction, to lower the main intermediate disk body onto the wedge bases.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
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(3)
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(7) Among the Figures: 1cage column, 2main intermediate disk body, 3bolt, 4chain block and connecting piece, 5cage suspension board, 1-1intermediate disk guide rail beam, 1-2wedge base, 1-3anti-disengaging plate, 1-4limited block, 2-1intermediate disk wedge body, 2-2intermediate disk guide wheel, 2-3intermediate disk guide wheel seat.
DETAILED DESCRIPTION OF THE EMBODIMENTS
(8) Hereunder the present invention will be further detailed in an embodiment, with reference to the accompanying drawings:
(9) As shown in
(10) As shown in
(11) As shown in
(12) An adjusting and moving method for the adjustable intermediate disk body of large double-layer cage described above, as follows:
(13) As shown in
(14) After the large double-layer cage is docked at a level for transporting equipment out of the cage, chain block and connecting piece 4 are connected to the main intermediate disk body 2 after the equipment is transported out of the cage, then, force is applied in the forward direction via the chain block and connecting piece 4 connected to a cage suspension board 5 to release the load on the bolts 3, and then the bolts are pulled out and force is applied in the reversed direction, to lower the main intermediate disk body 2 onto the wedge bases 1-2. In addition, the upper-layer door of the cage is of rolling shutter type or removable, and the side walls near the main intermediate disk body 2 is movable with the main intermediate disk body 2, to avoid interfering with the adjustment and movement of the main intermediate disk body 2.