Internally injected replacement support room-type coal pillar recovery method
US-11313226-B2 · Apr 26, 2022 · US
US10385692B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10385692-B2 |
| Application number | US-201616088452-A |
| Country | US |
| Kind code | B2 |
| Filing date | Dec 1, 2016 |
| Priority date | Nov 3, 2016 |
| Publication date | Aug 20, 2019 |
| Grant date | Aug 20, 2019 |
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An apparatus for pre-loading a mechanical constant-resistance single prop includes a rhombic stretchable bracket, a screw rod, a first cylindrical sleeve ring, and a second cylindrical sleeve ring. The screw rod is connected to two opposite apex corners of the rhombic stretchable bracket. A tail end of the screw rod is fixedly connected to one apex corner of the rhombic stretchable bracket. An end head of the screw rod passes through another apex corner of the rhombic stretchable bracket. The remaining two opposite apex corners of the rhombic stretchable bracket are respectively fixedly connected to edges of the first cylindrical sleeve ring and the second cylindrical sleeve ring through connecting rods. The screw rod is threadedly connected to the apex corner of the rhombic stretchable bracket through which the screw rod passes. A method for pre-loading a mechanical constant-resistance single prop is also provided.
Opening claim text (preview).
What is claimed is: 1. An apparatus for pre-loading a mechanical constant-resistance single prop, the apparatus comprising a rhombic stretchable bracket, a screw rod, a first cylindrical sleeve ring, and a second cylindrical sleeve ring, the screw rod is connected to two opposite apex corners of the rhombic stretchable bracket, a tail end of the screw rod is fixedly connected to one apex corner of the rhombic stretchable bracket, an end head of the screw rod passes through another apex corner of the rhombic stretchable bracket, the remaining two opposite apex corners of the rhombic stretchable bracket are respectively fixedly connected to edges of the first cylindrical sleeve ring and the second cylindrical sleeve ring through connecting rods, and the screw rod is threadedly connected to the apex corner of the rhombic stretchable bracket that the screw rod passes therethrough. 2. The apparatus for pre-loading a mechanical constant-resistance single prop according to claim 1 , wherein the rhombic stretchable bracket is formed of four rod pieces rotatably connected end-to-end. 3. The apparatus for pre-loading a mechanical constant-resistance single prop according to claim 1 , wherein a rotary handle is fixedly connected to the end head of the screw rod. 4. The apparatus for pre-loading a mechanical constant-resistance single prop according to claim 1 , wherein two holes are disposed at the end head of the screw rod, and a rotary handle is inserted into the two holes for fixing to the screw rod. 5. The apparatus for pre-loading a mechanical constant-resistance single prop according to claim 4 , wherein axes of the two holes are perpendicular to each other. 6. The apparatus for pre-loading a mechanical constant-resistance single prop according to claim 1 , wherein the first cylindrical sleeve ring is an openable sleeve ring, and has one side fixedly connected through a rotating shaft, and another side having a first pin hole disposed thereon, and the first cylindrical sleeve ring is closed via connection of a first pin to the first pin hole, and is opened via disconnection of the first pin from the first pin hole. 7. The apparatus for pre-loading a mechanical constant-resistance single prop according to claim 1 , wherein the second cylindrical sleeve ring is an openable sleeve ring, and has one side fixedly connected through a rotating shaft, and another side having a second pin hole disposed thereon, and the second cylindrical sleeve ring is closed via connection of a second pin to the second pin hole, and is opened via disconnection of the second pin from the second pin hole. 8. A method for pre-loading a mechanical constant-resistance single prop, the method comprising following steps: during pre-stressing, turning a rotary handle to increase a length of a screw rod between two opposite apex corners of a rhombic stretchable bracket, so as to reduce a distance between a first cylindrical sleeve ring and a second cylindrical sleeve ring; removing a first pin and a second pin, so as to allow the first cylindrical sleeve ring and the second cylindrical sleeve ring to be in an opened state; sleeving two halves of the first cylindrical sleeve ring and two halves of the second cylindrical sleeve ring respectively over an upper portion and a lower portion of a cylinder body of a single prop; inserting the first pin and the second pin in a first pin hole and a second pin hole respectively, and closing and locking the first cylindrical sleeve ring and the second cylindrical sleeve ring; and reversely turning the rotary handle to reduce the length of the screw rod between the two opposite apex corners of the rhombic stretchable bracket, so that the distance between the first cylindrical sleeve ring and the second cylindrical sleeve ring is increased, the cylinder body of the single prop that is tightly held by the two cylindrical sleeve rings rises, thus the single prop has a certain prepressure.
comprising toggle levers (lazy-tongs mechanisms B66F3/22) · CPC title
Non-telescopic props · CPC title
Lazy-tongs mechanisms {(B66F11/042 takes precedence)} · CPC title
Component parts or details of props (E21D15/43, E21D15/58, E21D15/60 take precedence) · CPC title
Details of the ends of props (for permitting step-by-step movement E21D23/06) · CPC title
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