CN217894984U - Hoist device is used in stone material processing - Google Patents

Hoist device is used in stone material processing Download PDF

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Publication number
CN217894984U
CN217894984U CN202221117355.5U CN202221117355U CN217894984U CN 217894984 U CN217894984 U CN 217894984U CN 202221117355 U CN202221117355 U CN 202221117355U CN 217894984 U CN217894984 U CN 217894984U
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strip
motor
hoisting
support component
lifter plate
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CN202221117355.5U
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Chinese (zh)
Inventor
林团集
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Macheng Jinchuan Stone Technology Co ltd
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Macheng Jinchuan Stone Technology Co ltd
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Abstract

The utility model provides a hoisting device for stone processing, which relates to the technical field of hoisting devices and comprises a support component and a hoisting mechanism, wherein the support component is provided with a conveying component connected by a hinge, two sides of the support component are provided with moving components assembled by bolts, one end of the top of each moving component is provided with the hoisting mechanism fixedly connected, and the hoisting mechanism comprises a top block, an electric winding drum, a steel cable rope, a lifting plate, a plurality of sections of telescopic rods, a hinged strip, a second motor, a movable strip, a cylinder group and an inclined plane shovel tooth; the utility model discloses mainly utilize and set up the multiunit loop bar in the top side of lifter plate, because the multiunit loop bar possesses the telescopic structure of multiunit, therefore ensured the enough distance of lift for when rolling wire rope receive and releases the lifter plate, can play fixed stone material lift focus position, at the operation in-process that goes up and down, can not cause the dislocation that the centrobaric shakiness leads to drop even, promoted the security of equipment.

Description

Hoist device is used in stone material processing
Technical Field
The utility model relates to a hoist device technical field especially relates to a hoist device is used in stone material processing.
Background
The hoisting device is a device for hoisting equipment, workpieces, appliances, materials and the like by utilizing various hoisting machines and tools to change the positions of the equipment, the workpieces, the appliances, the materials and the like.
Current hoist device is difficult to carry out stable lifting to the stone material in the vertical direction in the use, causes the focus unstability, can lead to certain dangerous accident scheduling problem, consequently, the utility model provides a hoist device is used in stone material processing in order to solve the problem that exists among the prior art.
SUMMERY OF THE UTILITY MODEL
To the above problem, the utility model provides a hoist device is used in stone material processing, this hoist device is used in stone material processing mainly utilizes the top side at the lifter plate to set up the multiunit loop bar, because the multiunit loop bar possesses the telescopic structure of multiunit, therefore ensured the enough distance of lift, make when winding steel cable receive and releases the lifter plate, can play fixed stone material lift focus position, in the operation process that goes up and down, can not cause the dislocation that the centrobaric shakiness leads to drop even, the security that has promoted equipment.
For realizing the purpose of the utility model, the utility model discloses a following technical scheme realizes: a hoisting device for stone machining comprises a support member and a hoisting mechanism, wherein a conveying assembly connected by a hinge is arranged on the support member, moving assemblies assembled by bolts are arranged on two sides of the support member, and the hoisting mechanism is fixedly connected with one end of the top of each moving assembly;
hoisting machine constructs including putting kicking block, electronic receipts reel, steel cable rope, lifter plate, multisection telescopic link, articulated strip, second motor, activity strip, cylinder group and inclined plane forming relieved tooth, put kicking block fixed connection in the top one end of removal subassembly, the interior border side of putting the kicking block is provided with electronic receipts reel, just electronic receipts reel has around having connect steel cable rope, steel cable rope's below is provided with the lifter plate, just four group tops of lifter plate are provided with the multisection telescopic link, the below of lifter plate is provided with the articulated strip of bolt assembly, articulated strip is connected with the output of second motor, the below of articulated strip is provided with the activity strip, just be provided with cylinder group on the activity strip, the output of cylinder group runs through the activity strip is connected with the inclined plane forming relieved tooth.
The multi-section telescopic rod is of a multi-section sleeve type structure, the hinge strips and the second motor are symmetrically distributed on the central axis of the lifting plate, and the inner end of the inclined plane shovel tooth is of an inclined plane structure.
The support component comprises a support pad, a rack, a bedplate and a bearing supporting plate, wherein the rack is arranged on the top side of the support pad, the bedplate assembled by bolts is arranged on the top side of the rack, and the bearing supporting plate assembled by bolts is arranged above the two sides of the bedplate.
The improved structure is characterized in that the conveying component comprises a motor, a belt pulley set, a rotating shaft disc, a circular gear, a transmission leather strip and conveying rollers, the motor is arranged above the inner side of the rack, the output end of the motor penetrates through the rack and is connected with the belt pulley set, the output end of the belt pulley set penetrates through the bearing supporting plate and is connected with the rotating shaft disc, the inner side of the rotating shaft disc is connected with the transmission leather strip through the circular gear in a meshed mode, and the inner side of the rotating shaft disc is provided with the conveying rollers.
The improved structure of the bearing support plate is characterized in that the moving assembly comprises a damping base, side frames, groove boxes, electric lead screws, sliding blocks, electric rotating seats, sleeve rods and pneumatic telescopic rods, the damping base is arranged on two sides of the bearing support plate, the side frames are arranged on the top sides of the damping base, the groove boxes are arranged on the top sides of the side frames, and the sliding blocks are connected to the groove boxes through the electric lead screws in a threaded mode.
The improved structure is characterized in that an electric rotating seat is arranged on the inner side of the sliding block, a loop bar is connected to the output end of the electric rotating seat, and a pneumatic telescopic rod is arranged at one end of the loop bar.
The utility model has the advantages that:
the utility model discloses mainly utilize and set up the multiunit loop bar in the top side of lifter plate, because the multiunit loop bar possesses the telescopic structure of multiunit, therefore ensured the enough distance of lift for when rolling wire rope receive and releases the lifter plate, can play fixed stone material lift focus position, at the operation in-process that goes up and down, can not cause the dislocation that the centrobaric shakiness leads to drop even, promoted the security of equipment.
Drawings
Fig. 1 is a schematic perspective view of the present invention;
fig. 2 is a schematic bottom perspective view of the present invention;
FIG. 3 is a schematic view of the three-dimensional structure of the circular gear and the transmission leather strip of the present invention;
fig. 4 is the three-dimensional structure schematic diagram of the hoisting mechanism of the utility model.
Wherein: 1. a bracket member; 101. a support pad; 102. a rack; 103. a platen; 104. a bearing pallet; 2. a delivery assembly; 201. an electric motor; 202. a pulley set; 203. rotating the shaft disc; 204. a circular gear; 205. driving the leather strips; 206. a conveying roller; 3. a moving assembly; 301. a shock-absorbing base; 302. a side frame; 303. a slot box; 304. an electric screw rod; 305. a slider; 306. an electric rotating base; 307. a loop bar; 308. a pneumatic telescopic rod; 4. a hoisting mechanism; 401. placing a top block; 402. an electric winding drum; 403. a steel cable; 404. a lifting plate; 405. a multi-section telescopic rod; 406. a hinge strip; 407. a second motor; 408. a movable bar; 409. a cylinder group; 4010. and (4) forming relieved teeth on the inclined surface.
Detailed Description
In order to deepen the understanding of the present invention, the following embodiments will be combined to make the present invention do further details, and the present embodiment is only used for explaining the present invention, and does not constitute the limitation of the protection scope of the present invention.
According to the drawings shown in fig. 1-4, the embodiment provides a hoisting device for stone processing, which comprises a support member 1 and a hoisting mechanism 4, wherein the support member 1 is provided with a conveying assembly 2 connected by a hinge, two sides of the support member 1 are provided with moving assemblies 3 assembled by bolts, and one end of the top of each moving assembly 3 is provided with the hoisting mechanism 4 fixedly connected;
the hoisting mechanism 4 comprises a top placing block 401, an electric winding drum 402, a steel cable 403, a lifting plate 404, a multi-section telescopic rod 405, a hinged strip 406, a second motor 407, a movable strip 408, a cylinder group 409 and inclined plane relieved teeth 4010, wherein the top placing block 401 is fixedly connected to one end of the top of the moving assembly 3, the electric winding drum 402 is arranged on the inner side of the top placing block 401, the steel cable 403 is wound on the electric winding drum 402, the lifting plate 404 is arranged below the steel cable 403, the multi-section telescopic rods 405 are arranged above four groups of the lifting plate 404, the hinged strip 406 assembled by bolts is arranged below the lifting plate 404, the hinged strip 406 is connected with the output end of the second motor 407, the movable strip 408 is arranged below the hinged strip 406, the cylinder group 409 is arranged on the movable strip 408, and the output end of the cylinder group 409 penetrates through the movable strip 408 and is connected with the inclined plane relieved teeth 4010.
The multi-section telescopic rod 405 is of a multi-section sleeve type structure, the hinge strips 406 and the second motor 407 are symmetrically distributed around the central axis of the lifting plate 404, and the inner end of the inclined relieving 4010 is of an inclined surface structure.
In this embodiment, when the top-placing block 401 is located right above the stone, the electric winding drum 402 is started to operate to extend the steel cable 403, so that the steel cable 403 drives the lifting plate 404 to operate to the working height under the cooperation of the multiple sections of telescopic rods 405, then the second motor 407 is started to output power to drive the hinge bar 406 to rotate, so that the hinge bar 406 drives the movable bar 408 to clamp the stone, and then the cylinder group 409 is started to output power to drive the output end of the cylinder group 409 so that the inclined shovel teeth 4010 clamp and lift the stone.
The support component 1 comprises a support pad 101, a rack 102, a bedplate 103 and bearing supporting plates 104, wherein the rack 102 is arranged on the top side of the support pad 101, the bolt-assembled bedplate 103 is arranged on the top side of the rack 102, and the bolt-assembled bearing supporting plates 104 are arranged above two sides of the bedplate 103.
In this embodiment, the upper platen 103 is first supported by the table 102 on the top side of the support pads 101, the apparatus is placed in the work location for storage, and then the support pads 104 are bolted over both sides of the platen 103 to facilitate the user's installation of the transport assembly 2.
Conveying assembly 2 includes motor 201, pulley group 202, rotating shaft dish 203, circular gear 204, transmission leather strap 205 and conveying roller 206, motor 201 sets up the inboard top at rack 102, the output of motor 201 runs through rack 102 and is connected with pulley group 202, and pulley group 202's output runs through bearing plate 104 and is connected with rotating shaft dish 203, rotating shaft dish 203's inboard is connected with transmission leather strap 205 through circular gear 204 meshing, rotating shaft dish 203's interior limit side is provided with conveying roller 206.
In this embodiment, move subassembly 3 and hoisting machine and construct 4 next, make the stone material move on conveying roller 206, start hoisting machine and construct 4 uninstallation with the stone material in proper order, drive pulley group 202 operation through starter motor 201 output power, make pulley group 202 drive the round gear 204 of the inboard side of rotating shaft dish 203 and rotate, because round gear 204 is connected with transmission leather strap 205 meshing, therefore can drive the operation of multiunit parallel distribution's conveying roller 206, make conveying roller 206 can drive the stone material and move the destination.
The moving assembly 3 comprises a shock absorption base 301, side frames 302, a slot box 303, an electric screw 304, a sliding block 305, an electric rotating seat 306, a sleeve rod 307 and a pneumatic telescopic rod 308, wherein the shock absorption base 301 is arranged on two sides of the bearing support plate 104, the side frames 302 are arranged on the top sides of the shock absorption base 301, the slot box 303 is arranged on the top sides of the side frames 302, and the sliding block 305 is connected to the slot box 303 through the electric screw 304 in a threaded manner.
In this embodiment, the damping base 301 is connected to the two sides of the bearing support plate 104 by bolts, so that the damping base 301 and the side frame 302 can perform a damping effect under an interaction, and then the sliding block 305 is connected to the top side of the side frame 302 by the electric screw 304 provided on the groove box 303 through threads, and the electric screw 304 is started to drive the sliding block 305 to operate.
The interior limit side of sliding block 305 is provided with electronic roating seat 306, and the output of electronic roating seat 306 is connected with loop bar 307, and the one end of loop bar 307 is provided with pneumatic telescopic link 308.
In this embodiment, when the sliding block 305 moves to the processing position, the electric rotating base 306 is started to output power to drive the loop bar 307 to rotate to the processing orientation angle, and then the telescopic rod 308 is started to extend and retract so as to adjust the top block 401 to move right above the stone.
The working principle of the hoisting device for stone processing is as follows: firstly, the upper bedplate 103 is supported by the rack 102 on the top side of the supporting pad 101, the equipment is placed in a working place for storage, then the bearing supporting plate 104 is bolted above two sides of the bedplate 103 so as to facilitate the installation of the conveying assembly 2 by a user, the damping base 301 is connected by bolts on two sides of the bearing supporting plate 104 so that the damping effect can be achieved under the interaction of the damping base 301 and the side frame 302, then the sliding block 305 is connected by the electric screw 304 arranged on the top side of the side frame 302 by a groove box 303 in a threaded manner, the electric screw 304 is started to drive the sliding block 305 to operate, when the sliding block 305 operates to a processing position, the electric rotating seat 306 is started to output power to drive the sleeve rod 307 to rotate to a processing orientation angle, then the telescopic motion of the pneumatic telescopic rod 308 is started to adjust the top block 401 to operate to be right above the stone, when the top block 401 is positioned right above the stone, the electric winding drum 402 is started to run to extend the steel cable 403, so that the steel cable 403 drives the lifting plate 404 to run to the working height under the cooperation of the multiple sections of telescopic rods 405, then the second motor 407 is started to output power to drive the hinge strip 406 to rotate, so that the hinge strip 406 drives the movable strip 408 to clamp the stone, then the cylinder group 409 is started to output power to drive the output end of the cylinder group 409 to drive the inclined relieving 4010 to clamp and lift the stone, then the moving assembly 3 and the hoisting mechanism 4 are run to drive the stone to run onto the conveying rollers 206, the hoisting mechanism 4 is sequentially started to unload the stone, the belt pulley group 202 is driven to run by the power output of the starting motor 201, so that the belt pulley group 202 drives the circular gear 204 at the inner side of the rotating shaft disc 203 to rotate, and the circular gear 204 is meshed with the driving leather strips 205, so that multiple groups of conveying rollers 206 distributed in parallel can be driven to run, so that the conveying roller 206 can drive the stone to move to the destination.
The foregoing illustrates and describes the principles, general features, and advantages of the present invention. It will be understood by those skilled in the art that the present invention is not limited to the above embodiments, and that the foregoing embodiments and descriptions are provided only to illustrate the principles of the present invention without departing from the spirit and scope of the present invention. The scope of the invention is defined by the appended claims and equivalents thereof.

Claims (6)

1. The utility model provides a stone material processing is with hoist and mount device, includes support component (1) and hoisting machine structure (4), its characterized in that: the support component (1) is provided with a conveying component (2) connected through a hinge, two sides of the support component (1) are provided with moving components (3) assembled through bolts, and one end of the top of each moving component (3) is provided with a hoisting mechanism (4) fixedly connected with the top of the moving component;
hoisting mechanism (4) is including putting kicking block (401), electronic receipts reel (402), steel cable (403), lifter plate (404), multisection telescopic link (405), articulated strip (406), second motor (407), activity strip (408), cylinder group (409) and inclined plane forming relieved tooth (4010), it is in to put kicking block (401) fixed connection the top one end of removal subassembly (3), the interior border side of putting kicking block (401) is provided with electronic receipts reel (402), just electronic receipts reel (402) is around having connected steel cable (403), the below of steel cable (403) is provided with lifter plate (404), just four group tops of lifter plate (404) are provided with multisection telescopic link (405), the below of lifter plate (404) is provided with articulated strip (406) of bolt assembly, articulated strip (406) is connected with the output of second motor (407), the below of articulated strip (406) is provided with activity strip (408), and be provided with activity cylinder group (409) on strip (408), the output of cylinder group (408) runs through the inclined plane (4010).
2. The hoisting device for stone processing as claimed in claim 1, wherein: the multi-section telescopic rod (405) is of a multi-section sleeve type structure, the hinge strip (406) and the second motor (407) are symmetrically distributed on the central axis of the lifting plate (404), and the inner end of the inclined plane relieved tooth (4010) is of an inclined plane structure.
3. The hoisting device for stone processing as claimed in claim 1, wherein: the support component (1) comprises a supporting pad (101), a rack (102), a bedplate (103) and bearing supporting plates (104), wherein the rack (102) is arranged on the top side of the supporting pad (101), the bedplate (103) assembled by bolts is arranged on the top side of the bedplate (102), and the bearing supporting plates (104) assembled by bolts are arranged above two sides of the bedplate (103).
4. The hoisting device for stone processing as claimed in claim 3, wherein: conveying assembly (2) include motor (201), pulley group (202), rotating shaft dish (203), round gear (204), transmission leather strap (205) and conveying roller (206), motor (201) set up the inboard top of rack (102), the output of motor (201) runs through rack (102) is connected with pulley group (202), just the output of pulley group (202) runs through bearing plate (104) is connected with rotating shaft dish (203), the inboard of rotating shaft dish (203) is connected with transmission leather strap (205) through round gear (204) meshing, the interior limit side of rotating shaft dish (203) is provided with conveying roller (206).
5. The hoisting device for stone processing as claimed in claim 3, wherein: the moving assembly (3) comprises a shock absorption base (301), side frames (302), groove boxes (303), electric screw rods (304), sliding blocks (305), electric rotating seats (306), sleeve rods (307) and air telescopic rods (308), wherein the shock absorption base (301) is arranged on two sides of the bearing supporting plate (104), the side frames (302) are arranged on the top sides of the shock absorption base (301), the groove boxes (303) are arranged on the top sides of the side frames (302), and the sliding blocks (305) are connected to the groove boxes (303) through the electric screw rods (304) in a threaded mode.
6. The hoisting device for stone processing as claimed in claim 5, wherein: the interior limit side of sliding block (305) is provided with electric rotating seat (306), just the output of electric rotating seat (306) is connected with loop bar (307), the one end of loop bar (307) is provided with pneumatic telescopic link (308).
CN202221117355.5U 2022-05-11 2022-05-11 Hoist device is used in stone material processing Active CN217894984U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221117355.5U CN217894984U (en) 2022-05-11 2022-05-11 Hoist device is used in stone material processing

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221117355.5U CN217894984U (en) 2022-05-11 2022-05-11 Hoist device is used in stone material processing

Publications (1)

Publication Number Publication Date
CN217894984U true CN217894984U (en) 2022-11-25

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ID=84110712

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202221117355.5U Active CN217894984U (en) 2022-05-11 2022-05-11 Hoist device is used in stone material processing

Country Status (1)

Country Link
CN (1) CN217894984U (en)

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