CN212790881U - Feeding device for artificial synthetic diamond solid alkali - Google Patents
Feeding device for artificial synthetic diamond solid alkali Download PDFInfo
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- CN212790881U CN212790881U CN202021535525.2U CN202021535525U CN212790881U CN 212790881 U CN212790881 U CN 212790881U CN 202021535525 U CN202021535525 U CN 202021535525U CN 212790881 U CN212790881 U CN 212790881U
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- pulley
- haulage rope
- loading
- loading board
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Abstract
The utility model relates to an artificial synthesis diamond solid alkali loading attachment, its structure includes the cantilever boom be provided with first pulley and second pulley on the cantilever boom be provided with first haulage rope on cantilever boom or the ground, the winding has first haulage rope on the hoist engine, first haulage rope is walked around in proper order second pulley and first pulley top, and first haulage rope end connection has the carriage lower extreme is provided with the loading board, the front end of loading board is articulated the front end of carriage be provided with the second hoist engine on the carriage, the rear end of loading board pass through the second haulage rope with the second hoist engine is connected the rear end of loading board is provided with the fixation clamp. The utility model discloses operating personnel's safety has been guaranteed to operating personnel's intensity of labour has been alleviateed.
Description
Technical Field
The utility model relates to a loading attachment, specifically speaking are synthetic diamond solid base loading attachment.
Background
During purification of the synthetic diamond, strong acid is used as an oxidant to remove graphite and amorphous carbon, and a large amount of acid gas is generated in the process and needs to be neutralized and absorbed by alkali liquor. The alkali liquor is obtained by dissolving solid alkali in the dissolving tank, and traditional alkali liquor dissolving tank is located subaerial, but the jar mouth is according to ground height about 1.5 meters, needs the manual work to lift the solid of piece alkali in bags to the jar mouth and pours into, and operating personnel intensity of labour is too big on the one hand, if on the other hand has solid liquid spill carelessly when pouring into, can cause the injury to operating personnel, and the safety guarantee does not put in place completely.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing an artificial synthesis diamond solid alkali loading attachment to solve now need artifical lifting and empty solid alkali and lead to artifical intensity of labour big, the unable problem that ensures operating personnel personal safety.
The utility model discloses a realize like this: the utility model provides an artificial synthesis diamond solid alkali loading attachment, includes the cantilever boom be provided with first pulley and second pulley on the cantilever boom or subaerial being provided with first haulage rope, the winding has first haulage rope on the hoist engine, first haulage rope walks around in proper order second pulley and first pulley top, and first haulage rope end connection has the lift frame lower extreme is provided with the loading board, the front end of loading board is articulated the front end of lift frame be provided with the second hoist engine on the lift frame, the rear end of loading board pass through the second haulage rope with the second hoist engine is connected the rear end of loading board is provided with the fixation clamp.
The cantilever frame comprises a vertical rod and a horizontal rod positioned at the upper end of the vertical rod, and a first fixing rod and a second fixing rod which are consistent in length are arranged on the horizontal rod.
The first pulleys are two in number, the two first pulleys are located at two ends of the first fixing rod respectively, the two second pulleys are two in number, the two second pulleys are located at two ends of the second fixing rod respectively, the two first traction ropes are two in number, and the two first traction ropes are installed on the first pulley and the second pulley on one side respectively.
The first winding machine comprises a motor, a winding shaft is connected to a rotating shaft of the motor, a bearing seat fixed on the ground or on a cantilever frame is arranged at the end of the winding shaft, and the two first traction ropes are wound on the winding shaft at the same time.
When the second traction rope is in a loose state, the rear end of the loading plate is slightly lower than the front end.
The utility model is arranged beside the dissolving tank, the lifting frame is driven to move up and down by the first winch, when solid alkali needs to be added, the lifting frame is firstly lowered to the ground, a bag of solid alkali is placed on the loading plate, the rear end of the bag is clamped on the loading plate by the fixing clamp, and the front end of the bag is opened; lifting the lifting frame through a first winch to enable the front end of the loading plate to be just above the port of the dissolving tank; and starting the second winch, wherein the second winch pulls the rear end of the loading plate to lift, so that the loading plate is inclined, the solid alkali in the bag can be scattered out from the opening along the inclined plane, and the scattered solid alkali just falls into the dissolving tank to complete the solid alkali loading operation. Whole operation only needs the manual work to place the solid alkali of bagging-off and fix on loading the board, and other lifts and topples over and all accomplish by the device is automatic, and operating personnel only need carry out the remote control outside safe distance can, guaranteed operating personnel's safety to operating personnel's intensity of labour has been alleviateed.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is a left side view of fig. 1.
In the figure: 1. a cantilever mount; 2. a lifting frame; 3. a first winch; 4. a first pulley; 5. a second pulley; 6. a first pull cord; 7. a second hoist; 8. a second pull cord; 9. a loading plate; 10. a fixing clip; 11. a first fixing lever; 12. a second fixing bar; 1-1, vertical rods; 1-2, horizontal rods; 3-1, a motor; 3-2, winding shafts; 3-3, bearing seat.
Detailed Description
As shown in fig. 1 and 2, the utility model discloses a cantilever frame 1 is provided with first pulley 4 and second pulley 5 on cantilever frame 1, be provided with first haulage rope 3 at cantilever frame 1 or subaerial, the winding has first haulage rope 6 on the hoist engine, first haulage rope 6 walks around second pulley 5 and first pulley 4 top in proper order, and there is lifting frame 2 at 6 end connection of first haulage rope, be provided with loading plate 9 at lifting frame 2 lower extreme, the front end of loading plate 9 articulates the front end at lifting frame 2, be provided with second hoist engine 7 on lifting frame 2, the rear end of loading plate 9 is connected through second haulage rope 8 and second hoist engine 7, be provided with fixation clamp 10 at the rear end of loading plate 9.
The cantilever frame 1 comprises a vertical rod 1-1 and a horizontal rod 1-2 positioned at the upper end of the vertical rod 1-1, a first fixing rod 11 and a second fixing rod 12 which are consistent in length are arranged on the horizontal rod 1-2, the first fixing rod 11 is positioned at the front end of the horizontal rod 1-2, and the second fixing rod 12 is positioned at the rear end of the horizontal rod 1-2.
The first pulleys 4 are two in total, the two first pulleys 4 are respectively located at two ends of the first fixing rod 11, the second pulleys 5 are two in total, the two second pulleys 5 are respectively located at two ends of the second fixing rod 12, the first traction ropes 6 are two in total, and the two first traction ropes 6 are respectively installed on the first pulleys 4 and the second pulleys 5 on one side. The both sides of lifting frame 2 are drawn by a first haulage rope 6 respectively, and the end of first haulage rope 6 divide into two and connect the rope, connect the rope and connect both ends around lifting frame 2 respectively for two, and the tip of two haulage ropes is drawn the four corners at 2 tops of lifting frame respectively, makes 2 lift in-process of whole lifting frame more stable, can not take place skew and rotation.
The first winch 3 comprises a motor 3-1, a winding shaft 3-2 is connected to a rotating shaft of the motor 3-1, a bearing seat 3-3 fixed on the ground or on the cantilever frame 1 is arranged at the end part of the winding shaft 3-2, the two first traction ropes 6 are wound on the winding shaft 3-2 at the same time, the two first traction ropes 6 are wound on one winding shaft 3-2 at the same time, and the winding shaft 3-2 rotates to enable the two traction ropes to be wound or unfolded synchronously, so that the lifting frame 2 can lift stably without left and right inclination.
When the second hauling rope 8 is in a loose state, the rear end of the loading plate 9 is slightly lower than the front end, so that the bag filled with the solid alkali and placed on the loading plate 9 is inclined towards the rear side, the solid alkali is prevented from spilling in the lifting process, when the second hauling rope 8 is pulled by the second winch 7 to ascend, the rear end of the loading plate 9 gradually ascends, the bag is inclined forwards, and the solid alkali is spilled out from an opening at the front end.
The fixing frame on the loading plate 9 is an elastic clamp, and the rear end of the bag is clamped on the loading plate 9 through elasticity, so that the bag is prevented from moving and falling off the loading plate 9 in the pouring process.
The utility model is arranged beside a dissolving tank, the lifting frame 2 is driven to move up and down through the first winch 3, when solid alkali needs to be added, the lifting frame 2 is firstly lowered to the ground, a bag of solid alkali is placed on the loading plate 9, the rear end of the bag is clamped on the loading plate 9 through the fixing clamp 10, and the front end of the bag is opened; lifting the lifting frame 2 by the first winch 3 to ensure that the front end of the loading plate 9 is just positioned above the port of the dissolving tank; and starting the second winch 7, wherein the second winch 7 pulls the rear end of the loading plate 9 to lift, so that the loading plate 9 is inclined, the solid alkali in the bag can be scattered out from the opening along the inclined plane, and the scattered solid alkali just falls into the dissolving tank to finish the solid alkali feeding operation. And finally, the second winch 7 rotates reversely to reset the loading plate 9, the first winch 3 rotates reversely to lower the lifting frame 2 to the ground, and the empty bag is taken down to prepare for the next feeding operation.
The whole operation only needs to manually place and fix the bagged solid alkali on the loading plate 9, other lifting and dumping are automatically completed by the device, and an operator only needs to remotely control the device at a safe distance, so that the safety of the operator is ensured, and the labor intensity of the operator is reduced.
Claims (5)
1. The utility model provides an artificial synthesis diamond solid alkali loading attachment, its characterized in that, includes the cantilever boom be provided with first pulley and second pulley on the cantilever boom or subaerial being provided with first haulage rope, the winding has first haulage rope on the hoist engine, first haulage rope is walked around in proper order second pulley and first pulley top, and first haulage rope end connection has the sash lower extreme is provided with the loading board, the front end of loading board is articulated the front end of sash be provided with the second hoist engine on the sash, the rear end of loading board pass through the second haulage rope with the second hoist engine is connected the rear end of loading board is provided with the fixation clamp.
2. The synthetic diamond solid base loading device according to claim 1, wherein the cantilever frame comprises a vertical rod and a horizontal rod at the upper end of the vertical rod, and the horizontal rod is provided with a first fixing rod and a second fixing rod which are consistent in length.
3. The loading device of claim 2, wherein the number of the first pulleys is two, and two first pulleys are respectively disposed at both ends of the first fixing rod, and the number of the second pulleys is two, and two second pulleys are respectively disposed at both ends of the second fixing rod, and the number of the first pulling ropes is two, and two first pulling ropes are respectively mounted on the first pulley and the second pulley at one side thereof.
4. The feeding device for the solid base of synthetic diamond according to claim 3, wherein the first hoister comprises a motor, a winding shaft is connected to a rotating shaft of the motor, a bearing seat fixed on the ground or on the cantilever frame is arranged at the end of the winding shaft, and the two first hauling ropes are simultaneously wound on the winding shaft.
5. The synthetic diamond solid base loading device according to claim 1, wherein the loading plate has a rear end slightly lower than a front end when the second pulling rope is in a relaxed state.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202021535525.2U CN212790881U (en) | 2020-07-29 | 2020-07-29 | Feeding device for artificial synthetic diamond solid alkali |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202021535525.2U CN212790881U (en) | 2020-07-29 | 2020-07-29 | Feeding device for artificial synthetic diamond solid alkali |
Publications (1)
Publication Number | Publication Date |
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CN212790881U true CN212790881U (en) | 2021-03-26 |
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN202021535525.2U Active CN212790881U (en) | 2020-07-29 | 2020-07-29 | Feeding device for artificial synthetic diamond solid alkali |
Country Status (1)
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CN (1) | CN212790881U (en) |
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2020
- 2020-07-29 CN CN202021535525.2U patent/CN212790881U/en active Active
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