CN218539067U - Elevator counterweight block carrying auxiliary tool - Google Patents

Elevator counterweight block carrying auxiliary tool Download PDF

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Publication number
CN218539067U
CN218539067U CN202220692353.2U CN202220692353U CN218539067U CN 218539067 U CN218539067 U CN 218539067U CN 202220692353 U CN202220692353 U CN 202220692353U CN 218539067 U CN218539067 U CN 218539067U
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rod
bolts
bottom plate
plate
component
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CN202220692353.2U
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Chinese (zh)
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沈慧琴
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Zhejiang Shuangyu Electromechanical Equipment Co ltd
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Zhejiang Shuangyu Electromechanical Equipment Co ltd
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Abstract

The utility model provides an elevator counterweight block carrying auxiliary tool, which relates to the technical field of carrying auxiliary tools and comprises a moving component and a lifting mechanism, wherein a vehicle plate component assembled by bolts is arranged above the moving component, the side of the vehicle plate component is provided with a mechanical component assembled by bolts, one end of the top of the mechanical component is provided with a lifting mechanism assembled by bolts, and the lifting mechanism comprises a bearing frame; the utility model discloses mainly be the rotating assembly who utilizes to set up on hydraulic stem top side, can enough play the rising and reduce, can play the effect of orientation regulation again, the steel cable rolling subassembly of one end in the cooperation, can reach corresponding regulation according to the height of depositing of product difference, utilize the electromagnetic block and the holding strip of its one end can be got the effectual clamp of product, make equipment can carry out the transportation of shifting on a large scale according to user's needs, in order to reach the burden that alleviates the staff, the realization reaches the effect of carrying the balancing weight under the situation of complicated topography.

Description

Elevator counterweight block carrying auxiliary tool
Technical Field
The utility model relates to a transport appurtenance technical field especially relates to an elevator is to pouring weight transport appurtenance.
Background
The counterweight iron blocks are made of cast iron, and the size of the counterweight iron blocks is suitable for being conveniently moved by installation or maintenance personnel.
Present transport appurtenance is difficult to carry out effectual adaptation to the change of environment topography in the use, causes and often needs to spend more efforts, causes great burden scheduling problem for the staff, consequently, the utility model provides an elevator carries appurtenance to the pouring weight 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 an elevator is to pouring weight transport appurtenance, this elevator is to pouring weight transport appurtenance mainly utilizes the rotating assembly who sets up well in hydraulic stem top side, can reach the rising and reduce, can play the effect of orientation regulation again, the steel cable rolling subassembly of one end in the cooperation, can reach corresponding regulation according to the deposit height of product difference, the electromagnetic block and the holding strip that utilize its one end can be got the effectual clamp of product, make equipment can carry out the transportation of shifting on a large scale according to user's needs, in order to reach the burden that alleviates the staff, the realization reaches the effect of carrying the balancing weight under the situation of complicated topography.
For realizing the purpose of the utility model, the utility model discloses a following technical scheme realizes: an elevator counterweight block carrying auxiliary tool comprises a moving component and a lifting mechanism, wherein a vehicle plate component assembled by bolts is arranged above the moving component, a mechanical component assembled by bolts is arranged on the side of the vehicle plate component, and the lifting mechanism assembled by bolts is arranged at one end of the top of the mechanical component;
the lifting mechanism comprises a bearing frame, a winding drum, a steel cable, an iron chain, a fixed plate, an electromagnetic block, a cylinder rod and a shovel-shaped clamp, the bearing frame is connected to one end of the top of the mechanical assembly through a bolt, the output end of the bearing frame is connected with the winding drum, the steel cable is wound on the outer side of the winding drum, the iron chain is arranged at one end of the steel cable, the fixed plate connected with a clamping ring is arranged at one end of the iron chain, the electromagnetic block is arranged on the bottom side of the fixed plate, the cylinder rod is arranged at two ends of the fixed plate, and the shovel-shaped clamp is arranged at one end of the cylinder rod.
The improved structure is characterized in that the winding drum is connected with a steel cable and an iron chain in a winding manner, the iron chain is sleeved with the fixed plate through a clamping ring, the air cylinder rod and the shovel-shaped clamp are symmetrically distributed at two ends of the fixed plate, and the inner side of one end of the shovel-shaped clamp is of a wedge-shaped structure.
The improved structure is characterized in that the moving component comprises a universal wheel, a rubber support, a wheel carrier and a supporting block, the rubber support is arranged above the universal wheel, the wheel carrier is arranged on the rubber support, and the supporting block is arranged above the periphery of the wheel carrier.
The improved scooter is characterized in that the scooter plate component comprises a bottom plate, rubber cushion strips, guardrails, a transverse rod, a pull rod, a movable inclined plate, a rotating seat and a supporting arm, the bottom plate is connected with the supporting block through bolts, the top side of the bottom plate is provided with the rubber cushion strips distributed in a plurality of groups in parallel, the guardrails are arranged on the periphery of the bottom plate, one end of the bottom plate is connected with the transverse rod through bolts, the pull rod is arranged on one side of the transverse rod, the movable inclined plate is movably connected with the other end of the bottom plate, the rotating seat is arranged below one end of the bottom plate, and the supporting arm is arranged on one side of the rotating seat.
The improved structure is characterized in that the mechanical assembly comprises a nut base, a support rod, a track beam, a screw rod, a slider, a hydraulic rod, a rotating body seat, a telescopic rod and a bolt base, the nut base is connected with the two sides of the bottom plate through bolts, the track beam is supported above the nut base through the support rod, the screw rod is arranged on the track beam, and the screw rod is connected with the slider through bolts.
The improved structure is characterized in that a hydraulic rod is arranged on the top side of the sliding block, a rotating body seat is connected to one end of the hydraulic rod in a rotating mode, an expansion rod is arranged at one end of the rotating body seat, and a bolt base is arranged at one end of the expansion rod.
The beneficial effects of the utility model are that:
the utility model discloses mainly be the rotating assembly who utilizes to set up on hydraulic stem top side, can enough play the rising and reduce, can play the effect of orientation regulation again, the steel cable rolling subassembly of one end in the cooperation, can reach corresponding regulation according to the height of depositing of product difference, utilize the electromagnetic block and the holding strip of its one end can be got the effectual clamp of product, make equipment can carry out the transportation of shifting on a large scale according to user's needs, in order to reach the burden that alleviates the staff, the realization reaches the effect of carrying the balancing weight under the situation of complicated topography.
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 a three-dimensional structure of the winding drum and the steel cable of the present invention;
fig. 4 is a schematic view of the three-dimensional structure of the cylinder rod and the spade clamp of the present invention.
Wherein: 1. a moving member; 101. a universal wheel; 102. a rubber support; 103. a wheel carrier; 104. supporting the supporting block; 2. a vehicle panel assembly; 201. a base plate; 202. a rubber filler strip; 203. a guardrail; 204. a cross bar; 205. a pull rod; 206. a movable sloping plate; 207. rotating the base; 208. a supporting arm; 3. a mechanical assembly; 301. a nut base; 302. a support bar; 303. a track beam; 304. a screw rod; 305. a slider; 306. a hydraulic lever; 307. a rotator base; 308. a telescopic rod; 309. a bolt base; 4. a lifting mechanism; 401. a bearing bracket; 402. winding the roll; 403. a wire rope; 404. an iron chain; 405. a fixing plate; 406. an electromagnetic block; 407. a cylinder rod; 408. and (4) shoveling and clamping.
Detailed Description
In order to deepen the understanding of the present invention, the following embodiments are combined to further detail the present invention, and the present embodiment is only used to explain the present invention, and does not constitute the limitation of the protection scope of the present invention.
According to the drawings in fig. 1-4, the embodiment provides an elevator counterweight block carrying auxiliary tool, which comprises a moving member 1 and a lifting mechanism 4, wherein a bolt-assembled car plate component 2 is arranged above the moving member 1, a bolt-assembled mechanical component 3 is arranged on the side of the car plate component 2, and the lifting mechanism 4 is arranged at one end of the top of the mechanical component 3;
the lifting mechanism 4 comprises a bearing frame 401, a winding drum 402, a steel cable 403, an iron chain 404, a fixing plate 405, an electromagnetic block 406, a cylinder rod 407 and a shovel clamp 408, the bearing frame 401 is connected to one end of the top of the mechanical assembly 3 through a bolt, the output end of the bearing frame 401 is connected with the winding drum 402, the steel cable 403 is wound on the outer side of the winding drum 402, the iron chain 404 is arranged at one end of the steel cable 403, the fixing plate 405 connected with a clamping ring is arranged at one end of the iron chain 404, the electromagnetic block 406 is arranged on the bottom side of the fixing plate 405, the cylinder rod 407 is arranged at two ends of the fixing plate 405, and the shovel clamp 408 is arranged at one end of the cylinder rod 407.
The winding drum 402 is connected with a steel cable 403 and an iron chain 404 in a winding manner, the iron chain 404 is sleeved with a fixing plate 405 through a clamping ring, air cylinder rods 407 and shovel-shaped clamps 408 are symmetrically distributed at two ends of the fixing plate 405, and the inner side of one end of each shovel-shaped clamp 408 is of a wedge-shaped structure.
In this embodiment, when the bolt base 309 moves to a position right above the product, the winding drum 402 inside the bearing frame 401 is started to let the steel cable 403 release so that the steel cable 403 and the iron chain 404 descend to a height suitable for grabbing the product, then the electromagnetic block 406 below the fixing plate 405 at one end of the iron chain 404 runs, the counterweight block is sucked by magnetic force, meanwhile, the cylinder rod 407 outputs power to let the shovel-shaped clamp 408 at one end contract to grab the counterweight block, and then the winding drum 402 inside the bearing frame 401 is started to make the fixing plate 405 drive the counterweight block to ascend around the steel cable 403 and the iron chain 404.
The moving component 1 comprises a universal wheel 101, a rubber support 102, a wheel carrier 103 and a supporting and supporting block 104, wherein the rubber support 102 is arranged above the universal wheel 101, the wheel carrier 103 is arranged above the rubber support 102, and the supporting and supporting block 104 is arranged above the periphery of the wheel carrier 103.
In this embodiment, the rubber mount 102 disposed above the universal wheel 101 can play a role of shock absorption when the device moves, and the wheel carrier 103 and the support bracket 104 form a frame structure, so that the device can play a role of firm connection when moving, so as to prevent the device from being disassembled.
Sweep subassembly 2 includes bottom plate 201, rubber filler strip 202, guardrail 203, horizontal pole 204, pull rod 205, movable sloping plate 206, rotate seat 207 and trailing arm 208, bottom plate 201 bolted connection is in the top that supports tray 104, the top side of bottom plate 201 is provided with the rubber filler strip 202 of multiunit parallel distribution, bottom plate 201 is provided with guardrail 203 in the top all around, the one end bolted connection of bottom plate 201 has horizontal pole 204, and one side of horizontal pole 204 is provided with pull rod 205, the other end of bottom plate 201 is provided with swing joint's movable sloping plate 206, the one end below of bottom plate 201 is provided with rotates seat 207, and one side of rotating seat 207 is provided with trailing arm 208.
In this embodiment, at first spur pull rod 205 of horizontal pole 204 one side, make equipment remove the region of processing, when fixed plate 405 drives the balancing weight and rises, start mechanical component 3's subassembly cooperation, make fixed plate 405 drive the balancing weight and move the top of bottom plate 201 top side rubber filler strip 202, letting fixed plate 405 drive the balancing weight and place the top at rubber filler strip 202, because there is guardrail 203 bottom plate 201 top all around, can play the effect of protection, after having placed the product, will spur pull rod 205 and make equipment remove the uninstallation region, utilize mutually supporting of mechanical component 3 and elevating system 4 down, accomplish the uninstallation with the product, play the effect of transport.
The mechanical assembly 3 comprises a nut base 301, a support rod 302, a track beam 303, a screw rod 304, a sliding block 305, a hydraulic rod 306, a rotating body seat 307, a telescopic rod 308 and a bolt base 309, wherein the nut base 301 is connected to two sides of the bottom plate 201 through bolts, the track beam 303 is supported above the nut base 301 through the support rod 302, the screw rod 304 is arranged on the track beam 303, and the screw rod 304 is connected with the sliding block 305 through bolts.
In this embodiment, the nut bases 301 disposed on two sides of the bottom plate 201 are convenient for a user to assemble and disassemble, the track beam 303 supported by the support rods 302 can improve the balance of the operation of the device, then the screw rods 304 on the track beam 303 are started to rotate, so that the screw rods 304 drive the sliders 305 to move to the operation position, and then the hydraulic rods 306 above the sliders 305 are started to output power to lift the rotator base 307, so that the rotator base 307 rotates to the operation angle.
The top side of the slider 305 is provided with a hydraulic rod 306, and one end of the hydraulic rod 306 is rotatably connected with a swivel seat 307, one end of the swivel seat 307 is provided with an expansion link 308, and one end of the expansion link 308 is provided with a bolt base 309.
In this embodiment, when the swivel base 307 rotates to the working angle, the cylinder of the telescopic rod 308 is started, so that the bolt base 309 at one end of the telescopic rod 308 moves right above the working product.
The working principle of the elevator for the weight block carrying auxiliary tool is as follows: firstly pulling a pull rod 205 on one side of a cross rod 204 to enable the equipment to move to a processing area, then starting a screw rod 304 on a track beam 303 to rotate, enabling the screw rod 304 to drive a slide block 305 to move to a working position, then starting a hydraulic rod 306 above the slide block 305 to output power to enable a swivel base 307 to lift, enabling the swivel base 307 to rotate to a working angle, when the swivel base 307 rotates to the working angle, starting a cylinder carried by a telescopic rod 308 to enable a bolt base 309 at one end of the telescopic rod 308 to move to the position right above a working product, when the bolt base 309 moves to the position right above the product, starting a winding drum 402 on the inner side of a bearing frame 401 to enable a steel cable to be unwound so that the steel cable 403 and the iron chain 404 are lowered to a height suitable for grabbing the product, then utilizing an electromagnetic block 406 below a fixing plate 405 at one end of the iron chain 404 to move, utilizing a magnetic force to suck a balancing weight, simultaneously enabling the cylinder rod 407 to output power to enable a shovel clamp 408 at one end to be retracted to grab the balancing weight, then starting the winding drum 402 on the inner side of the bearing frame 401 to connect the steel cable 403 and the iron chain 404 to enable the fixing plate 405 to lift so that the fixing plate 405 to drive a lifting rubber pad 202 to move to be placed above the lifting protection device 201, and the lifting protection plate 202, and the lifting protection device 201 of the lifting pad 201 can be lifted by utilizing the lifting pad 201, and the lifting protection device, and lifting pad 201 can be lifted by utilizing the lifting pad.
The foregoing illustrates and describes the principles, general features, and advantages of the present invention. It should be understood by those skilled in the art that the present invention is not limited to the above embodiments, and the above embodiments and descriptions are only illustrative of the principles of the present invention, and that various changes and modifications may be made without departing from the spirit and scope of the present invention, and all such changes and modifications fall within the scope of the present invention as claimed. The scope of the invention is defined by the appended claims and equivalents thereof.

Claims (6)

1. An elevator counterweight block carrying auxiliary tool comprises a moving component (1) and a lifting mechanism (4), and is characterized in that: a vehicle plate component (2) assembled by bolts is arranged above the moving component (1), a mechanical component (3) assembled by bolts is arranged on the side of the vehicle plate component (2), and a lifting mechanism (4) assembled by bolts is arranged at one end of the top of the mechanical component (3);
the lifting mechanism (4) comprises a bearing frame (401), a winding drum (402), a steel cable (403), an iron chain (404), a fixing plate (405), an electromagnetic block (406), a cylinder rod (407) and a shovel-shaped clamp (408), wherein the bearing frame (401) is connected to one end of the top of the mechanical assembly (3) through a bolt, the output end of the bearing frame (401) is connected with the winding drum (402), the steel cable (403) is wound on the outer side of the winding drum (402), the iron chain (404) is arranged at one end of the steel cable (403), the fixing plate (405) connected through a clamping ring is arranged at one end of the iron chain (404), the electromagnetic block (406) is arranged on the bottom side of the fixing plate (405), the cylinder rods (407) are arranged at two ends of the fixing plate (405), and the shovel-shaped clamp (408) is arranged at one end of the cylinder rod (407).
2. An elevator counterweight block handling aid as defined in claim 1, wherein: the winding drum (402) is connected with a steel cable (403) and an iron chain (404) in a winding manner, the iron chain (404) is sleeved with a fixing plate (405) through a clamping ring, the cylinder rod (407) and the shovel-shaped clamp (408) are symmetrically distributed at two ends of the fixing plate (405), and the inner side of one end of the shovel-shaped clamp (408) is of a wedge-shaped structure.
3. An elevator counterweight block handling aid as defined in claim 1, wherein: the moving component (1) comprises a universal wheel (101), a rubber support (102), a wheel carrier (103) and a supporting support block (104), wherein the rubber support (102) is arranged above the universal wheel (101), the wheel carrier (103) is arranged on the rubber support (102), and the supporting support block (104) is arranged above the periphery of the wheel carrier (103).
4. An elevator counterweight movement aid according to claim 3, wherein: sweep subassembly (2) include bottom plate (201), rubber filler strip (202), guardrail (203), horizontal pole (204), pull rod (205), activity swash plate (206), rotate seat (207) and trailing arm (208), bottom plate (201) bolted connection be in support the top of tray (104), the top side of bottom plate (201) is provided with multiunit parallel distribution's rubber filler strip (202), the top all around of bottom plate (201) is provided with guardrail (203), the one end bolted connection of bottom plate (201) has horizontal pole (204), just one side of horizontal pole (204) is provided with pull rod (205), the other end of bottom plate (201) is provided with swing joint's activity swash plate (206), the one end below of bottom plate (201) is provided with rotates seat (207), just one side of rotating seat (207) is provided with trailing arm (208).
5. An elevator counterweight movement aid according to claim 4, wherein: the mechanical assembly (3) comprises a nut base (301), a supporting rod (302), a track beam (303), a screw rod (304), a sliding block (305), a hydraulic rod (306), a rotating body seat (307), a telescopic rod (308) and a bolt base (309), wherein the nut base (301) is connected to two sides of the bottom plate (201) through bolts, the track beam (303) is supported above the nut base (301) through the supporting rod (302), the screw rod (304) is arranged on the track beam (303), and the screw rod (304) is connected with the sliding block (305) through bolts.
6. An elevator counterweight-carrying aid as defined in claim 5, wherein: the top side of slider (305) is provided with hydraulic stem (306), and the one end swivelling joint of hydraulic stem (306) has swivel seat (307), the one end of swivel seat (307) is provided with telescopic link (308), just the one end of telescopic link (308) is provided with bolt base (309).
CN202220692353.2U 2022-03-28 2022-03-28 Elevator counterweight block carrying auxiliary tool Active CN218539067U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202220692353.2U CN218539067U (en) 2022-03-28 2022-03-28 Elevator counterweight block carrying auxiliary tool

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202220692353.2U CN218539067U (en) 2022-03-28 2022-03-28 Elevator counterweight block carrying auxiliary tool

Publications (1)

Publication Number Publication Date
CN218539067U true CN218539067U (en) 2023-02-28

Family

ID=85258980

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202220692353.2U Active CN218539067U (en) 2022-03-28 2022-03-28 Elevator counterweight block carrying auxiliary tool

Country Status (1)

Country Link
CN (1) CN218539067U (en)

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