CN220264973U - Partition plate installation lifting device - Google Patents
Partition plate installation lifting device Download PDFInfo
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- CN220264973U CN220264973U CN202321302173.XU CN202321302173U CN220264973U CN 220264973 U CN220264973 U CN 220264973U CN 202321302173 U CN202321302173 U CN 202321302173U CN 220264973 U CN220264973 U CN 220264973U
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- 238000005192 partition Methods 0.000 title claims abstract description 60
- 238000009434 installation Methods 0.000 title claims abstract description 36
- 230000008093 supporting effect Effects 0.000 claims description 16
- 230000000149 penetrating effect Effects 0.000 claims description 9
- 238000010276 construction Methods 0.000 abstract description 28
- 238000009435 building construction Methods 0.000 abstract description 4
- 230000000694 effects Effects 0.000 abstract description 2
- 230000003028 elevating effect Effects 0.000 abstract description 2
- 238000005516 engineering process Methods 0.000 abstract description 2
- 229910000831 Steel Inorganic materials 0.000 description 12
- 239000010959 steel Substances 0.000 description 12
- 238000004804 winding Methods 0.000 description 3
- 230000003247 decreasing effect Effects 0.000 description 2
- 238000010586 diagram Methods 0.000 description 2
- 238000003780 insertion Methods 0.000 description 2
- 230000037431 insertion Effects 0.000 description 2
- 238000002360 preparation method Methods 0.000 description 2
- 230000032258 transport Effects 0.000 description 2
- 230000009286 beneficial effect Effects 0.000 description 1
- 230000007423 decrease Effects 0.000 description 1
- 238000000034 method Methods 0.000 description 1
- 238000004904 shortening Methods 0.000 description 1
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Abstract
The application relates to the field of building construction technology, discloses partition plate installation lifting device, and it includes the support body, be provided with the hoist engine that is used for lifting partition plate on the support body, it is used for changing to rotate on the support body the fixed pulley of hoist engine lifting wire direction, the lifting wire of hoist engine is walked around the fixed pulley, the lifting hook elevating movement of hoist engine. This application has the effect that promotes the efficiency of construction of installing prefabricated partition plate.
Description
Technical Field
The application relates to the field of building construction technology, in particular to partition plate installation lifting equipment.
Background
At present, in the building construction process, various prefabricated partition boards such as ALC boards are used more and more, and the requirements on the construction efficiency of the partition boards are higher and higher.
When installing prefabricated panels, a plate loader is often used. The ALC plate is clamped by the clamp of the plate loading machine, then the ALC plate is brought to a proper position by the clamp through multiple times of rotation and translation of the clamp, the ALC plate is loosened by the clamp, and workers subsequently install the ALC plate.
The plate loading machine is heavy, difficult to transport, needs to spend a large amount of time, has more construction steps and complex operation, has long construction time and certain requirements on operators, cannot be constructed without the skilled use of the plate loading machine, and sometimes causes construction period delay due to lack of the skilled worker. Therefore, the construction efficiency of using the plate loader is lower, and the field progress requirements of some projects cannot be met. How to improve the installation efficiency of the prefabricated partition boards is a problem of building construction.
Disclosure of Invention
In order to promote the efficiency of construction of installing prefabricated partition plate, this application provides a partition plate installation lifting device.
The application provides a partition plate installation lifting device adopts following technical scheme:
the utility model provides a partition plate installation lifting device, includes the support body, be provided with the hoist engine that is used for lifting partition plate on the support body, rotate on the support body and be provided with the fixed pulley that is used for changing hoist engine lifting wire direction, the lifting wire of hoist engine is walked around the fixed pulley, the lifting hook elevating movement of hoist engine.
By adopting the technical scheme, the fixed pulleys change the action track and the direction of the acting force of the hoisting wire of the winch, the hoisting wire and the lifting hook of the winch extend to the position suitable for hoisting the partition plate through the fixed pulleys, a worker ties up the partition plate by using the steel wire rope, then the lifting hook of the winch hooks the steel wire rope, the winch contracts the hoisting wire, the lifting hook of the winch moves up with the partition plate, the worker manually regulates and controls the angle of the partition plate during the upward movement of the partition plate, so that the partition plate meets the installation position condition, after the hoisting is completed, the worker takes away the lifting hook of the steel wire rope, then the hoisting wire of the winch extends, and the lifting hook of the winch descends to prepare for the next hoisting;
the winding machine only winds the hanging wire and stretches the hanging wire, the construction steps are simple, the construction time is saved, the operation of workers is simple, the probability of construction period delay caused by lack of skilled workers is reduced, the fixed pulleys facilitate the installation of the winding machine, and the installation time is saved.
Preferably, the frame body comprises a plurality of cross bars and vertical bars which are mutually spliced, and the cross bars and the vertical bars are mutually vertically spliced.
Through adopting above-mentioned technical scheme, at first, the workman will not have horizontal pole and montant transportation that assemble and advance the construction site, then splice, convenient transportation, the main part frame of support body is constituteed to horizontal pole and montant.
Preferably, the frame body comprises a plurality of diagonal rods, and the diagonal rods, the cross rods and the vertical rods are spliced to form a right-angled triangle structure.
Through adopting above-mentioned technical scheme, the diagonal draw bar that does not have the concatenation is transported along with the montant and horizontal pole and is got into construction site, and diagonal draw bar, horizontal pole, montant form right triangle structure, increase the firm degree of support body.
Preferably, a plurality of buckling plates are fixed on the vertical rod, a plurality of first jacks are formed in the buckling plates in a penetrating mode, first connectors are arranged at two ends of the cross rod, first clamping grooves are formed in the first connectors, the buckling plates are arranged in the first clamping grooves in a clamping mode, first connecting holes are formed in the first connectors in a penetrating mode, the first connecting holes are communicated with the first clamping grooves, the first connecting holes are aligned with the first jacks, bolts are inserted into the first connecting holes in a plugging mode, and the bolts are inserted into the first connecting holes and the first jacks at the same time.
Through adopting above-mentioned technical scheme, first joint detains on the knot dish through first double-layered groove, and the horizontal pole links to each other with the montant this moment, then the bolt peg graft simultaneously in first spliced eye and first jack, and horizontal pole and montant splice each other.
Preferably, a plurality of second jacks are arranged on the buckling disc in a penetrating mode, connecting plates are arranged at two ends of the diagonal draw bar, a second connector is fixed on the connecting plates, a second clamping groove is formed in the second connector, the buckling disc is arranged in the second clamping groove in a clamping mode, a second connecting hole is arranged on the second connector in a penetrating mode, the second connecting hole is communicated with the second clamping groove, the second connecting hole is aligned with the second jacks, the plug pins are inserted into the second connecting holes, and the plug pins are inserted into the second connecting holes and the second jacks at the same time.
Through adopting above-mentioned technical scheme, the second connects and buckles on the knot dish through the second clamp groove, and diagonal draw bar and montant link to each other this moment, then the bolt peg graft simultaneously in second connecting hole and second jack, and diagonal draw bar and montant splice each other.
Preferably, the bolt is wedge-shaped, and the width of the maximum cross section of the bolt is larger than that of the maximum cross sections of the first connecting hole and the second connecting hole.
Through adopting above-mentioned technical scheme, the workman strikes the bolt with the hammer, and the bolt card deadlocks and fixes in first connecting hole and second connecting hole for connect between horizontal pole and the montant, between diagonal draw bar and the montant more stably.
Preferably, the support diagonal rod for supporting is arranged on the frame body, and one end of the support diagonal rod, far away from the frame body, extends downwards in an inclined mode and is used for abutting against the ground.
Through adopting above-mentioned technical scheme, support the diagonal bar and prevent the support body to empty, support the stability of diagonal bar promotion support body, and support the diagonal bar and share the bearing for the support body, support the bearing capacity of diagonal bar promotion support body.
Preferably, a plurality of blessing Ma Lun are arranged at the bottom of the frame body.
Through adopting above-mentioned technical scheme, when needing the adjustment support body position, the fuma wheel rolls subaerial, conveniently removes the support body, when need not remove the support body, locks fu Ma Lun.
Preferably, the screw rod is fixed on the fuma wheel, a screw hole is formed in the frame body, and the screw rod is in threaded fit with the screw hole.
By adopting the technical scheme, the screw rod is matched with the screw hole, so that the support structure Ma Lun can be simply and quickly installed.
In summary, the present application includes at least one of the following beneficial technical effects:
1. the fixed pulley changes the action track and the direction of the acting force of the hoisting wire of the hoisting machine, the hoisting wire and the lifting hook of the hoisting machine extend to a position suitable for hoisting the partition board through the fixed pulley, a worker uses a steel wire rope to bind the partition board, then the lifting hook of the hoisting machine hooks the steel wire rope, the hoisting machine contracts the hoisting wire, the lifting hook of the hoisting machine moves upwards with the partition board, the worker manually regulates and controls the angle of the partition board during the upward movement of the partition board, so that the partition board meets the installation position condition, after the hoisting is completed, the worker takes away the hoisting machine lifting hook on the steel wire rope, then the hoisting wire of the hoisting machine extends, the hoisting machine lifting hook descends, the next hoisting is prepared, the hoisting machine only works by winding the hoisting wire and extending the hoisting wire, the construction steps are simple, the construction time is saved, the operation of the worker is simple, the probability of shortening the construction period delay caused by lack of skilled workers is reduced, the fixed pulley is convenient for the installation of the hoisting machine, and the installation time is saved;
2. firstly, a worker transports a cross bar and a vertical bar which are not assembled into a construction site, and then the cross bar and the vertical bar are spliced, so that the transportation is convenient, and the cross bar and the vertical bar form a main body frame of a frame body;
3. the support diagonal bar prevents the frame body from toppling over, supports the stability degree of diagonal bar lifting frame body, and supports the diagonal bar and share the bearing for the frame body, supports the bearing capacity of diagonal bar lifting frame body.
Drawings
Fig. 1 is a schematic structural diagram of a partition plate installation hoisting device according to an embodiment of the present application.
Fig. 2 is a partial enlarged view at a in fig. 1.
Fig. 3 is a schematic cross-sectional view of a partition plate installation and hoisting device at a first joint according to an embodiment of the present application.
Fig. 4 is a schematic cross-sectional view of a partition plate installation hoisting device at a second joint according to an embodiment of the present application.
Fig. 5 is a schematic diagram of a cross-sectional structure of a partition plate installation hoisting device on a fuma wheel according to an embodiment of the application.
Reference numerals illustrate: 1. a frame body;
11. a vertical rod; 111. a buckle plate; 1111. a first jack; 1112. a second jack; 112. a screw hole;
12. a cross bar; 121. a first joint; 1211. a first clamping groove; 1212. a first receiving hole;
13. a diagonal draw bar; 131. a splice plate; 132. a second joint; 1321. a second clamping groove; 1322. a second receiving hole;
14. a plug pin;
2. a hoist; 3. a fixed pulley; 4. a support rod; 5. supporting the diagonal rod; 6. a screw; 7. fu Ma Lun.
Detailed Description
The present application is described in further detail below in conjunction with figures 1-5.
The embodiment of the application discloses partition plate installation lifting device.
Referring to fig. 1, a partition plate installation hoisting device comprises a frame body 1, wherein a winch 2 is installed on the frame body 1, a fixed pulley 3 is rotatably installed on the frame body 1, and the height of the fixed pulley 3 is larger than that of the winch 2. The lifting wire of the winch 2 extends around the fixed pulley 3 and then extends downwards in the vertical direction, and the tail end of the lifting wire of the winch 2 is provided with a lifting hook, and the lifting hook of the winch 2 moves up and down in the vertical direction.
When the hoisting machine is used, a worker uses a steel wire rope to bind the partition plate, then the lifting hook of the hoist 2 hooks the steel wire rope, the hoist 2 contracts a lifting wire, the lifting hook of the hoist 2 moves upwards with the partition plate, the worker manually adjusts and controls the angle of the partition plate during the upward movement of the partition plate, so that the partition plate meets the installation position condition, the hoisting of the partition plate is realized, after the hoisting is finished, the worker takes away the lifting hook of the hoist 2 on the steel wire rope, then the lifting wire of the hoist 2 stretches, and the lifting hook of the hoist 2 descends to prepare for the next hoisting;
the winch 2 only winds up the hanging wire and stretches the hanging wire, the construction steps are simple, the construction time is saved, the operation of workers is simple, the workers can perform construction only by training, compared with a plate loading machine with operation difficulty, no skilled worker is needed, and the probability of construction period delay caused by lack of the skilled worker is reduced;
the fixed pulley 3 changes the action track of the lifting wire of the winch 2 and the direction of the acting force, and the lifting wire and the lifting hook of the winch 2 can extend to a position suitable for lifting the partition plate, so that the installation position of the winch 2 is more flexible, the installation of the winch 2 is convenient, and the installation time is saved.
Referring to fig. 1, a scaffold body 1 is a disc buckle type scaffold, and the scaffold body 1 includes a plurality of vertical rods 11, a plurality of cross rods 12 and a plurality of diagonal rods 13 which are spliced with each other. The vertical rod 11 is vertical in axis, the horizontal rod 12 is horizontal in axis, and the diagonal draw bar 13 is inclined in axis.
Specifically, there are six vertical bars 11, the vertical bars 11 are divided into two groups, and each group of vertical bars 11 has two vertical bars 11 with a longer length and one vertical bar 11 with a shorter length.
In every montant 11 of group, the bottom of three montant 11 flushes and all is used for supporting subaerial, and three montant 11 is located same vertical plane, and three montant 11 are arranged according to length, short order (i.e. every montant 11 of group all has a long montant 11 to be close to short montant 11, a long montant 11 keeps away from short montant 11), all splice a plurality of horizontal poles 12 between the montant 11, form square frame column structure when horizontal pole 12 and montant 11 splice.
The diagonal rods 13 are installed between adjacent vertical rods 11, specifically, in each group of vertical rods 11, two diagonal rods 13 are spliced between two long vertical rods 11, and one diagonal rod 13 is spliced between adjacent short vertical rods 11 and long vertical rods 11.
And, for all montants 11, splice a plurality of horizontal poles 12 between two long montants 11 that are close to short montant 11, two sets of montants 11 interconnect like this.
During the use, initially montant 11, horizontal pole 12 and diagonal draw bar 13 do not splice each other, and the workman is transported montant 11, horizontal pole 12 and diagonal draw bar 13 into the construction site earlier, and the transportation is convenient, saves transit time, then splices montant 11, horizontal pole 12 and diagonal draw bar 13 into support body 1, and support body 1 is a dish knot type scaffold, and it is simple swift to assemble, and it is very little to take time, and montant 11 and horizontal pole 12 constitute support body 1 main part, form square frame structure when horizontal pole 12 and montant 11 splice, form triangular structure after diagonal draw bar 13 splice, promote the stability degree of support body 1.
Referring to fig. 1, a cross bar 12 is spliced between two long vertical bars 11 far from the short vertical bars 11, and the fixed pulley 3 is coaxially rotatably mounted on the cross bar 12.
Referring to fig. 1, two parallel support rods 4 are disposed on the frame 1, the height of each support rod 4 is lower than that of the fixed pulley 3, the axis of each support rod 4 is horizontal, two ends of each support rod 4 are welded to two cross rods 12 respectively, and the two cross rods 12 are located between the long vertical rods 11 and the short vertical rods 11 of the same group respectively. The hoist 2 is installed on two bracing pieces 4, and hoist 2's lifting wire slope upwards extends to fixed pulley 3 department earlier, and hoist 2's lifting wire avoids horizontal pole 12 in the middle of the extension, and hoist 2's lifting wire walks around fixed pulley 3 week side top and then extends along vertically decurrent direction, and hoist 2's lifting hook is along vertical direction lift.
When the fixed pulley is used, the fixed pulley 3 is arranged on the cross rod 12, and when the fixed pulley 3 is arranged, the fixed pulley 3 is spliced between the vertical rods 11, and the cross rod 12 is not arranged right below the fixed pulley 3 at the moment, so that the partition plate is convenient to hoist; after the frame body 1 is assembled, the supporting rod 4 is welded on the cross rod 12, the winch 2 is installed, and a lifting wire and a lifting hook of the winch 2 extend to the position below the fixed pulley 3 suitable for lifting the partition plate.
Referring to fig. 2, the vertical rod 11 is coaxially and fixedly sleeved with a plurality of equally spaced fastening plates 111, and the fastening plates 111 are provided with a plurality of first insertion holes 1111 and a plurality of second insertion holes 1112 in a penetrating manner along a vertical direction.
Referring to fig. 2 and 3, the two ends of the cross bar 12 are fixedly provided with first connectors 121, the first connectors 121 are provided with first clamping grooves 1211, the first connectors 121 and the first clamping grooves 1211 are in a concave shape, the buckling disc 111 is clamped in the first clamping grooves 1211, and the buckling disc 111 is matched with the first clamping grooves 1211. The first connector 121 is provided with a first connecting hole 1212 in a penetrating manner along the vertical direction, the first connecting hole 1212 is communicated with a first clamping groove 1211, the first connecting hole 1212 is a taper hole with the cross section decreasing along the vertical downward direction, the first connecting hole 1212 is aligned with the first inserting hole 1111, a plug pin 14 is inserted into the first connecting hole 1212, the plug pin 14 is wedge-shaped, the cross section of the plug pin 14 decreases along the vertical downward direction, the maximum width of the cross section of the plug pin 14 is larger than the maximum width of the cross section of the first connecting hole 1212, the plug pin 14 is inserted into the first connecting hole 1212 and the first inserting hole 1111 at the same time, and the outer wall of the plug pin 14 is anastomotic and clung to the inner wall of the first connecting hole 1212.
When the novel combined type vertical frame is used, the first connector 121 is buckled on the buckling disc 111 through the first clamping groove 1211, at the moment, the cross rods 12 are connected with the vertical rods 11, then the bolts 14 are simultaneously inserted into the first connecting holes 1212 and the first inserting holes 1111, a worker uses a hammer to downwards strike the bolts 14, the bolts 14 are blocked and locked in the first connecting holes 1212, at the moment, the cross rods 12 and the vertical rods 11 are mutually fixed, the cross rods 12 and the vertical rods 11 are transversely and vertically spliced to form the base frame of the frame body 1, and the splicing mode is simple and rapid, so that the preparation time during construction can be saved.
Referring to fig. 2 and 4, the two ends of the diagonal draw bar 13 are fixed with a connection plate 131, the connection plate 131 is fixed with a second connector 132, the second connector 132 is provided with a second clamping groove 1321, the buckle plate 111 is clamped in the second clamping groove 1321, the buckle plate 111 is matched with the second clamping groove 1321, the second connector 132 is provided with a second connecting hole 1322 in a penetrating way along the vertical direction, the second connecting hole 1322 is a taper hole with the cross section decreasing along the vertical downward direction, the second connecting hole 1322 is communicated with the second clamping groove 1321, the second connecting hole 1322 is aligned with the second inserting hole 1112, the second connecting hole 1322 is also internally inserted with a plug pin 14, the width of the largest cross section of the plug pin 14 is larger than the width of the largest cross section of the second connecting hole 1322, the plug pin 14 is simultaneously inserted into the second connecting hole 1322 and the second inserting hole 1112, and the outer wall of the plug pin 14 is matched with and clung to the inner wall of the second connecting hole 1322.
When the novel combined type lock catch is used, the second connector 132 is buckled on the buckle plate 111 through the second clamping groove 1321, then the bolt 14 is simultaneously inserted into the second connecting hole 1322 and the second inserting hole 1112, a worker uses a hammer to downwards strike the bolt 14, the bolt 14 is blocked and locked in the second connecting hole 1322, and the diagonal draw bar 13 is fixed with the vertical rod 11 at the moment, so that the assembling mode is simple and quick, and the preparation time during construction can be saved; and, montant 11 and horizontal pole 12 constitute square frame form the structure, and diagonal draw bar 13 forms right triangle's structure with montant 11, horizontal pole 12, promotes the stability degree and the load capacity of support body 1.
Referring to fig. 1, both sides of a frame body 1 are welded with supporting diagonal rods 5, and one ends of the supporting diagonal rods 5, which are far away from the frame body 1, extend obliquely downwards and are used for supporting the ground. Specifically, the two supporting diagonal rods 5 are welded to the two long vertical rods 11 close to the short vertical rod 11, respectively, and the supporting diagonal rods 5 extend downwards along the direction away from the winch 2 and from both sides of the frame body 1.
When the lifting hook of the winch 2 is used for lifting partition boards under the fixed pulleys 3, the partition boards are large in weight, the supporting inclined rods 5 have supporting effect on the frame body 1, the supporting inclined rods 5 prevent the frame body 1 from toppling over, the supporting inclined rods 5 lift the stability of the frame body 1, the supporting inclined rods 5 share bearing for the frame body 1, and the supporting inclined rods 5 lift the carrying capacity of the frame body 1.
Referring to fig. 5, a screw hole 112 is coaxially formed in the bottom of the vertical rod 11, a screw rod 6 is connected in the screw hole 112 in a threaded manner, and a clamp Ma Lun 7 is fixedly installed at one end of the screw rod 6.
When the novel support is used, the Fuma wheel 7 is installed on the vertical rod 11 through the screw hole 112 and the screw rod 6, the installation is simple, when the position of the support body 1 needs to be adjusted, the Fu Ma Lun 7 rolls on the ground, the support body 1 is convenient to move, and when the support body 1 does not need to be moved, the Fu Ma Lun 7 is locked.
The implementation principle of the partition plate installation hoisting equipment is as follows:
the worker splices the vertical rod 11, the cross rod 12 and the diagonal draw bar 13 into the frame body 1, then installs the winch 2 and the fixed pulley 3 on the frame body 1, the lower part of the fixed pulley 3 is suitable for hoisting the partition plate, the lifting wire of the winch 2 is changed by the fixed pulley 3 to move in the direction and the acting force direction, at the moment, the lifting hook of the winch 2 moves up and down below the fixed pulley 3, the worker binds the steel wire rope on the partition plate, then the lifting hook of the winch 2 hangs the steel wire rope, at the moment, the winch 2 winds up, the lifting hook of the winch 2 lifts up with the partition plate, the worker manually regulates and controls the angle of the partition plate during lifting so that the partition plate can meet the installation requirement, after the partition plate is positioned at a proper position, the winch 2 stops, at the moment, the worker takes the lifting hook of the winch 2 away from the steel wire rope, the lifting wire is stretched by the winch 2, the lifting hook is lowered, the next hoisting is convenient, the frame body 1 is prevented from toppling down and weight is shared by the diagonal support bar 4, and the stability and the load capacity of the frame body 1 are lifted;
when in hoisting, the construction steps of the winch 2 are simple, compared with the construction steps of a complex plate loader, the construction efficiency can be improved, meanwhile, the winch 2 is convenient to operate, no skilled worker is needed, and the probability of construction period delay caused by lack of the skilled worker is reduced;
when the frame body 1 is transported into a construction place, the frame body 1 is not spliced and is divided into a vertical rod 11, a cross rod 12 and a diagonal draw bar 13, so that the transportation is convenient, and when the frame body 1 is installed, the frame body 1 is a disc buckle type scaffold, the splicing mode among the vertical rod 11, the cross rod 12 and the diagonal draw bar 13 is simple and quick, and a worker can splice the frame body 1 quickly;
the pommel wheel 7 can be quickly arranged on the vertical rod 11 through the screw hole 112 and the screw rod 6, when the position of the frame body 1 needs to be adjusted, the pommel wheel 7 rolls, and when the position of the frame body 1 does not need to be adjusted, the pommel Ma Lun 7 is locked.
The foregoing are all preferred embodiments of the present application, and are not intended to limit the scope of the present application in any way, therefore: all equivalent changes in structure, shape and principle of this application should be covered in the protection scope of this application.
Claims (9)
1. Partition plate installation lifting device, its characterized in that: the lifting device comprises a frame body (1), wherein a winch (2) for lifting a partition plate is arranged on the frame body (1), a fixed pulley (3) for changing the direction of a lifting wire of the winch (2) is rotatably arranged on the frame body (1), the lifting wire of the winch (2) bypasses the fixed pulley (3), and a lifting hook of the winch (2) moves up and down.
2. The partition wall panel installation hoisting device of claim 1 wherein: the frame body (1) comprises a plurality of cross bars (12) and vertical bars (11) which are mutually spliced, and the cross bars (12) and the vertical bars (11) are mutually vertically spliced.
3. The partition wall panel installation hoisting device of claim 2 wherein: the frame body (1) comprises a plurality of diagonal rods (13), and the diagonal rods (13) are spliced with the cross rods (12) and the vertical rods (11) to form a right triangle structure.
4. A partition panel installation hoisting apparatus as claimed in claim 3 wherein: a plurality of buckling discs (111) are fixed on the vertical rods (11), a plurality of first jacks (1111) are formed in the buckling discs (111) in a penetrating mode, first connectors (121) are arranged at two ends of the cross rod (12), first clamping grooves (1211) are formed in the first connectors (121), the buckling discs (111) are clamped in the first clamping grooves (1211), first connecting holes (1212) are formed in the first connectors (121) in a penetrating mode, the first connecting holes (1212) are communicated with the first clamping grooves (1211), the first connecting holes (1212) are aligned with the first jacks (1111), bolts (14) are inserted into the first connecting holes (1212) in a plugging mode, and the bolts (14) are inserted into the first connecting holes (1212) and the first jacks (1111) simultaneously.
5. The partition wall panel installation hoisting device of claim 4 wherein: the utility model discloses a buckle dish, buckle dish (111) are gone up and are run through and have been seted up a plurality of second jacks (1112), the both ends of diagonal draw bar (13) are provided with joint board (131), be fixed with second joint (132) on joint board (131), second clamp groove (1321) have been seted up on second joint (132), buckle dish (111) clamp is located in second clamp groove (1321), run through on second joint (132) and have been seted up second connecting hole (1322), second connecting hole (1322) with second clamp groove (1321) intercommunication, second connecting hole (1322) with second jack (1112) align, also peg graft in second connecting hole (1322) bolt (14), peg graft simultaneously in second connecting hole (1322) with in second jack (1112).
6. The partition wall panel installation hoisting device of claim 5 wherein: the bolt (14) is wedge-shaped, and the maximum width of the cross section of the bolt (14) is larger than the maximum width of the cross sections of the first connecting hole (1212) and the second connecting hole (1322).
7. The partition wall panel installation hoisting device of claim 1 wherein: the support is characterized in that a support diagonal rod (5) for supporting is arranged on the frame body (1), and one end, far away from the frame body (1), of the support diagonal rod (5) extends obliquely downwards and is used for being abutted to the ground.
8. The partition wall panel installation hoisting device of claim 1 wherein: a plurality of fuma wheels (7) are arranged at the bottom of the frame body (1).
9. The partition wall panel installation hoisting device of claim 8 wherein: screw rods (6) are fixed on the fuma wheels (7), screw holes (112) are formed in the frame body (1), and the screw rods (6) are in threaded fit with the screw holes (112).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202321302173.XU CN220264973U (en) | 2023-05-24 | 2023-05-24 | Partition plate installation lifting device |
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Application Number | Priority Date | Filing Date | Title |
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CN202321302173.XU CN220264973U (en) | 2023-05-24 | 2023-05-24 | Partition plate installation lifting device |
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CN220264973U true CN220264973U (en) | 2023-12-29 |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
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CN118529650A (en) * | 2024-07-26 | 2024-08-23 | 上海建工七建集团有限公司 | Lifting device and use method thereof |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
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CN118529650A (en) * | 2024-07-26 | 2024-08-23 | 上海建工七建集团有限公司 | Lifting device and use method thereof |
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