CN213536970U - Conveyor hoisting device convenient to use - Google Patents
Conveyor hoisting device convenient to use Download PDFInfo
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- CN213536970U CN213536970U CN202022142713.5U CN202022142713U CN213536970U CN 213536970 U CN213536970 U CN 213536970U CN 202022142713 U CN202022142713 U CN 202022142713U CN 213536970 U CN213536970 U CN 213536970U
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Abstract
The utility model relates to a conveyor hoisting device convenient to use, which comprises a vertical suspender, a wall body fixing component, a beam fixing component, a cross beam connecting component, a cross beam and a cross beam; the vertical suspender is vertically fixed on the wall body through the wall body fixing component, or the vertical suspender is fixed in parallel with the wall body through the wall body fixing component; the vertical suspender is connected with the cross beam through the cross beam fixing component; the cross brace is connected with the vertical suspender through the cross brace connecting component; the cross brace and the cross beam are parallel to each other. The utility model discloses the combination form is various, satisfies the conveyer demand of multiple installation form.
Description
Technical Field
The utility model relates to a conveying equipment assists installation device technical field, in particular to conveyer hoist device of convenient use.
Background
The belt conveyer consists of a driving device, a tension device, a middle frame of a conveying belt and a carrier roller, wherein the conveying belt is used as a traction and bearing component, so that the belt conveyer can continuously convey scattered materials or finished products.
With the rapid development of the logistics industry, the conveying equipment installed on the ground is far from meeting the conveying requirement. The conveyor is hoisted at a high altitude by utilizing the hoisting device, so that the ground is not occupied, the space utilization rate of a factory building is improved, and the interference between stations can be avoided.
However, the current high-altitude installation mode is generally that a bracket is installed on a steel platform or welded on a house beam of a factory building. During the fixing process of the conveyor, the gap of the conveyor needs to be filled and welded by oblique iron or a flat shim iron block according to horizontal deviation. In addition, the column foot plate warping or embedded parts (or flat sizing blocks) need to be tightly attached to be welded.
The existing high-altitude installation mode has the following defects: 1. the mounting mode is complicated, the mounting error is large, and the mounting cost is high. 2. In the welding process, if the welding head can not be tightly attached to the support and then welded, the vibration of a headstock (tailstock), a speed reducer and a motor exceeds the standard due to poor contact. 3. Without a large adjustment margin.
SUMMERY OF THE UTILITY MODEL
Not enough to prior art, the utility model discloses a conveyer hoist device of convenient use.
The utility model discloses the technical scheme who adopts as follows:
a conveyor hoisting device convenient to use comprises a vertical hoisting rod, a wall fixing assembly, a beam fixing assembly, a cross beam connecting assembly, a cross beam and a cross beam; the vertical suspender is vertically fixed on the wall body through the wall body fixing component, or the vertical suspender is fixed in parallel with the wall body through the wall body fixing component; the vertical hanging rod is connected with the cross beam through the cross beam fixing assembly; the cross brace is connected with the vertical hanging rod through the cross brace connecting assembly; the cross brace and the cross beam are parallel to each other.
The method is further technically characterized in that: the wall fixing assembly comprises a hoisting screw, a first fixing piece and a first connecting piece; the hoisting screw penetrates through the first fixing piece; the first fixing piece is fixed on the first connecting piece; the first connecting piece is sleeved on the vertical hanging rod and fastened through a first fastening piece.
The method is further technically characterized in that: the first fixing piece is a stop washer; the first fixing piece is provided with a plurality of waist-shaped holes, and the first fixing piece penetrates through the waist-shaped holes; the first fixing piece and the first connecting piece are connected in a welding or buckling mode; the first fastener is a bolt.
The method is further technically characterized in that: the first connecting piece and the wall body are perpendicular to each other, or the first connecting piece and the wall body are parallel to each other.
The method is further technically characterized in that: the beam fixing assembly comprises a U-shaped hoop, a second fixing piece and a second connecting piece; the U-shaped hoop clamps the cross beam and penetrates through the cross beam; the second fixing piece supports the cross beam; the second fixing piece is fixed on the second connecting piece; the second connecting piece is sleeved on the vertical hanging rod and fastened through a second fastening piece.
The method is further technically characterized in that: the second connecting piece is perpendicular to the wall body.
The method is further technically characterized in that: the cross brace connecting assembly comprises a third connecting piece, a third fixing piece, a connecting screw rod, a cross brace connecting piece and a limiting piece; the third connecting piece is fixed on the third fixing piece; the third fixing piece is connected with the cross brace connecting piece in a counter-pulling manner through the connecting screw rod; the limiting piece clamps the cross beam; the cross brace connecting piece is connected with the limiting piece through bolts.
The method is further technically characterized in that: the cross brace connecting assembly comprises a third connecting piece, a third fixing piece, a connecting screw rod, a rotary connecting piece, a cross brace connecting piece and a limiting piece; the third connecting piece is fixed on the third fixing piece; the third fixing piece is connected with the rotary connecting piece in a counter-pulling manner through the connecting screw rod; the rotary connecting piece and the cross brace connecting piece can be connected in a relatively rotating way; the limiting piece clamps the cross beam; the cross brace connecting piece is connected with the limiting piece through bolts.
The method is further technically characterized in that: the rotary connecting piece is provided with an arc-shaped limiting groove; a third fastener penetrates through the arc-shaped limiting groove; the third fastener connects the swivel connector and the wale connector.
The method is further technically characterized in that: the cross brace supports the conveyor; the conveyor is installed on the cross brace in a gradient mode or in a horizontal mode.
The utility model has the advantages as follows:
1. the main structural members of the utility model, such as the vertical hanging rod and the cross brace, all adopt the mode of punching holes by square pipes, and compared with the existing hoisting installation mode, for example, structural members such as angle steel and/or folded plates are adopted, the square pipes are taken as common sectional materials, and are easy to purchase; the surface punching is easy to process and has low cost; the square tube is used as a support piece and a connecting piece, the surface is smooth, and the installation and construction are convenient; the surface array punches a hole, and the regulation according to the condition on convenient scene is adjusted, and the adjustment is convenient, nimble.
2. The utility model discloses a main structure is connected to fixed subassembly of wall body, fixed subassembly of crossbeam and stull coupling assembling, need not to erect steel platform or welding hoisting point, and suitable environment is wide, is suitable for and many places installation sites such as factory building wall body, room roof beam.
3. The utility model discloses a main structure spare is connected to fixed subassembly of wall body, fixed subassembly of crossbeam and stull coupling assembling, can make up out many sets of hoist device fast.
4. When the later stage conveyer has the problem that needs reform transform and adjust, wall body fixed subassembly, crossbeam fixed subassembly and stull coupling assembling need not all reinstallations, and proper adjustment spare part can be adjusted and is accomplished.
5. The utility model discloses a mounting means of hoist and mount greatly saves installation space, when needing maintenance or renewal part, convenient operation.
6. The utility model discloses the combination form is various, satisfies the requirement of the conveyer of multiple installation form, can carry out single, double-line installation, also can carry out level and have the installation of slope to satisfy various material and carry the requirement.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is an enlarged schematic view of a point a in fig. 1.
Fig. 3 is a schematic structural view of a wall fixing assembly.
FIG. 4 is a first front view of the wall mount assembly.
FIG. 5 is a first rear view of the wall mount assembly.
FIG. 6 is a second front view of the wall mount assembly.
FIG. 7 is a second rear view of the wall mount assembly.
Fig. 8 is a schematic structural view of the beam fixing assembly.
FIG. 9 is a front view of the beam securing assembly.
FIG. 10 is a side view of the beam securing assembly.
Fig. 11 is a first front view of the wale connecting assembly.
Fig. 12 is a second front view of the wale connecting assembly.
In the figure: 100. a vertical boom; 200. a wall fixing assembly; 201. hoisting a screw rod; 202. a first fixing member; 203. a first connecting member; 204. a first fastener; 300. a beam fixing assembly; 301. a U-shaped hoop; 302. a second fixing member; 303. a second connecting member; 304. a second fastener; 400. a cross brace connecting component; 401. a third connecting member; 402. a third fixing member; 403. connecting a screw rod; 404. a cross brace connecting piece; 405. a limiting member; 406. a rotating connector; 407. a third fastener; 500. a cross brace; 600. a cross beam; 700. a conveyor.
Detailed Description
The foregoing and other features, aspects and utilities of the present invention will be apparent from the following detailed description of the embodiments, which is to be read in connection with the accompanying drawings. Directional terms as referred to in the following examples, for example: up, down, left, right, front or rear, etc., are simply directions with reference to the drawings. Therefore, the directional terminology used is for the purpose of description and is not intended to be limiting, and moreover, like reference numerals will be used to refer to like elements throughout.
The following describes a specific embodiment of the present embodiment with reference to the drawings.
Fig. 1 is a schematic structural diagram of the present invention. As shown in fig. 1, a conveyor lifting device convenient to use includes a vertical suspension rod 100, a wall fixing assembly 200, a beam fixing assembly 300, a wale connecting assembly 400, a wale 500 and a beam 600. The vertical hanger bar 100 is vertically fixed to the wall by the wall fixing assembly 200, or the vertical hanger bar 100 is fixed in parallel to the wall by the wall fixing assembly 200. The vertical hanger bar 100 is connected to the cross bar 600 by a cross bar securing assembly 300. The wale 500 is connected to the vertical suspension bar 100 by a wale connection assembly 400. The wale 500 and the cross member 600 are parallel to each other.
Fig. 3 is a schematic structural view of a wall fixing assembly, fig. 4 is a first front view of the wall fixing assembly, and fig. 5 is a first rear view of the wall fixing assembly. Referring to fig. 3 to 5, the wall fixing assembly 200 includes a lifting screw 201, a first fixing member 202, and a first connecting member 203. The hoisting screw 201 passes through the first fixing member 202. The first fixing member 202 is fixed on the first connecting member 203. The first connector 203 is fitted over the vertical boom 100 and fastened by a first fastener 204. The first connector 203 and the wall are perpendicular to each other. The first fixing member 202 is a stopper washer. The first fixing member 202 is provided with a plurality of waist-shaped holes, and the first fixing member 202 penetrates through the waist-shaped holes. The first fixing member 202 and the first connecting member 203 are welded or snap-fit connected. The first fasteners 204 are bolts. The wall mounting assembly 200 is used when it is desired to mount vertically from a wall.
FIG. 6 is a second front view of the wall mount assembly, and FIG. 7 is a second rear view of the wall mount assembly. Referring to fig. 6 and 7, the wall fixing assembly 200 includes a lifting screw 201, a first fixing member 202, and a first connecting member 203. The hoisting screw 201 passes through the first fixing member 202. The first fixing member 202 is fixed on the first connecting member 203. The first connector 203 is fitted over the vertical boom 100 and fastened by a first fastener 204. The first connector 203 and the wall are parallel to each other. The first fixing member 202 is a stopper washer. The first fixing member 202 is provided with a plurality of waist-shaped holes, and the first fixing member 202 can pass through the waist-shaped holes according to the stress condition of the conveyor 700 and can be fastened after being moved in the waist-shaped holes appropriately. The first fixing member 202 and the first connecting member 203 are welded or snap-fit connected. The first fasteners 204 are bolts. The wall mounting assembly 200 is used when it is desired to mount from the side of a wall.
Fig. 8 is a schematic structural view of the beam fixing assembly, fig. 9 is a front view of the beam fixing assembly, and fig. 10 is a side view of the beam fixing assembly. Referring to fig. 8 to 10, the beam fixing assembly 300 includes a U-shaped hoop 301, a second fixing member 302 and a second connecting member 303. The U-shaped hoop 301 clamps the cross beam 600, and the U-shaped hoop 301 penetrates through the cross beam 600. The second mount 302 supports the cross member 600. The second fixing member 302 is fixed to the second connecting member 303. The second connector 303 is fitted over the vertical hanger bar 100 and fastened by a second fastener 304. The second connector 303 and the wall are perpendicular to each other. The beam securing assembly 300 is used when vertical mounting from a beam is desired.
Fig. 11 is a first front view of the wale connecting assembly. As shown in fig. 11, the wale connecting assembly 400 includes a third connecting member 401, a third fixing member 402, a connecting screw 403, a wale connecting member 404, and a stopper 405. The third connecting member 401 is fixed to the third fixing member 402. The third fixing member 402 is coupled to the wale connecting member 404 by a coupling screw 403. The stopper 405 catches the beam 600. The wale connecting member 404 and the stopper 405 are bolted. The wale link assembly 400 is used when the conveyor 700 is horizontally installed.
Fig. 12 is a second front view of the wale connecting assembly. As shown in fig. 12, the wale connecting assembly 400 includes a third connecting member 401, a third fixing member 402, a connecting screw 403, a rotary connecting member 406, a wale connecting member 404, and a stopper 405. The third connecting member 401 is fixed to the third fixing member 402. The third fixing member 402 is coupled to be opposite-pulled by a coupling screw 403 and a rotary coupling member 406. The rotational connector 406 and the wale connector 404 are relatively rotatably connected. The stopper 405 catches the beam 600. The wale connecting member 404 and the stopper 405 are bolted. The rotating connection member 406 is provided with an arc-shaped limiting groove. The third fastening member 407 is inserted into the arc-shaped limiting groove. A third fastener 407 connects the swivel connector 406 and the wale connector 404. The wale link assembly 400 is used when the conveyor 700 is installed at an incline.
Preferably, the vertical hanger bar 100, the first connector 203, the second connector 303, the third connector 401 and the wale 500 are punched square pipes, that is, surface arrays of the square pipes are punched, and the punched square pipes can be cut into corresponding lengths according to the width of the conveyor 700 and the distance between two adjacent conveying rollers of the conveyor 700.
Fig. 2 is an enlarged schematic view of a point a in fig. 1. Referring to fig. 1 and 2, the installation principle of the present invention is as follows:
first, the number of the vertical booms 100, wales 500, and cross beams 600, which function as a main structure, is determined according to the installation form of the conveyor 700.
Then, the forms of the wall fixing assembly 200, the girder fixing assembly 300 and the wale connecting assembly 400, which function as a connecting body structure, are determined according to whether the conveyor 700 is horizontally installed or obliquely installed.
When the wall body is required to be vertically installed, the first connecting piece 203 and the wall body are perpendicular to each other, the first fixing piece 202 is attached to the wall body, and the hoisting screw 201 sequentially penetrates through the waist-shaped hole of the first fixing piece 202 and the wall body to fix the first fixing piece 202 on the wall body. The first fixing member 202 is fixed on the first connecting member 203 by a welding or snap-fit connection. The first connector 203 is fitted over the vertical boom 100 and fastened by a first fastener 204.
When the wall body is required to be installed from the side face, the first connecting piece 203 and the wall body are parallel to each other, the first fixing piece 202 is attached to the wall body, and the hoisting screw 201 sequentially penetrates through the waist-shaped hole of the first fixing piece 202 and the wall body to fix the first fixing piece 202 on the wall body. The first fixing member 202 is fixed on the first connecting member 203 by a welding or snap-fit connection. The first connector 203 is fitted over the vertical boom 100 and fastened by a first fastener 204.
When the vertical hanger bar 100 and the cross bar 600 are coupled, i.e., need to be vertically installed by the beam, the second connector 303 and the wall body are perpendicular to each other. The U-shaped hoop 301 clamps the cross beam 600, and the U-shaped hoop 301 penetrates through the cross beam 600. The second mount 302 supports the cross member 600. The second fixing member 302 is fixed to the second connecting member 303. The second connector 303 is fitted over the vertical hanger bar 100 and fastened by a second fastener 304.
When the conveyor 700 is horizontally installed on the wale 500 to connect the vertical suspension bar 100 and the wale 500 by the wale connecting assembly 400, the third link 401 is fixed on the third fixing member 402. The third fixing member 402 is coupled to the wale connecting member 404 by a coupling screw 403. The stopper 405 catches the beam 600. The wale connecting member 404 and the stopper 405 are bolted.
Alternatively, when the conveyor 700 is obliquely installed on the wale 500, the third connecting member 401 is fixed on the third fixing member 402. The third fixing member 402 is coupled to be opposite-pulled by a coupling screw 403 and a rotary coupling member 406. The rotational connector 406 and the wale connector 404 are relatively rotatably connected. The stopper 405 catches the beam 600. The wale connecting member 404 and the stopper 405 are bolted.
In the description of the embodiments of the present invention, it should be further noted that unless explicitly stated or limited otherwise, the terms "disposed" and "connected" should be interpreted broadly, and may be, for example, fixedly connected, detachably connected, or integrally connected; can be mechanically or electrically connected; they may be connected directly or indirectly through intervening media, or they may be interconnected between two elements. The specific meaning of the above terms in the present invention can be understood in specific cases to those skilled in the art.
The above description is for the purpose of explanation and not limitation of the invention, which is defined in the claims, and any modifications may be made without departing from the basic structure of the invention.
Claims (10)
1. The utility model provides a conveyer hoist device that convenient used which characterized in that: comprises a vertical suspender (100), a wall body fixing component (200), a beam fixing component (300), a cross brace connecting component (400), a cross brace (500) and a beam (600); the vertical hanging rod (100) is vertically fixed on a wall body through the wall body fixing component (200), or the vertical hanging rod (100) is fixed in parallel with the wall body through the wall body fixing component (200); the vertical suspension rod (100) is connected with the cross beam (600) through the cross beam fixing assembly (300); the wale (500) is connected with the vertical suspension rod (100) through the wale connecting assembly (400); the wale (500) and the cross beam (600) are parallel to each other.
2. The convenient-to-use conveyor hoist device of claim 1, characterized in that: the wall fixing assembly (200) comprises a hoisting screw (201), a first fixing piece (202) and a first connecting piece (203); the hoisting screw rod (201) penetrates through the first fixing piece (202); the first fixing piece (202) is fixed on the first connecting piece (203); the first connecting piece (203) is sleeved on the vertical hanging rod (100) and is fastened through a first fastening piece (204).
3. The convenient-to-use conveyor hoist device of claim 2, characterized in that: the first fixing piece (202) is a stop washer; the first fixing piece (202) is provided with a plurality of waist-shaped holes, and the first fixing piece (202) penetrates through the waist-shaped holes; the first fixing piece (202) and the first connecting piece (203) are connected in a welding or buckling mode; the first fastener (204) is a bolt.
4. The convenient-to-use conveyor hoist device of claim 2, characterized in that: the first connecting piece (203) and the wall body are perpendicular to each other, or the first connecting piece (203) and the wall body are parallel to each other.
5. The convenient-to-use conveyor hoist device of claim 1, characterized in that: the beam fixing assembly (300) comprises a U-shaped hoop (301), a second fixing piece (302) and a second connecting piece (303); the U-shaped hoop (301) clamps the cross beam (600), and the U-shaped hoop (301) penetrates through the cross beam (600); the second fixing piece (302) supports the cross beam (600); the second fixing piece (302) is fixed on the second connecting piece (303); the second connecting piece (303) is sleeved on the vertical hanging rod (100) and is fastened through a second fastening piece (304).
6. The convenient-to-use conveyor hoist device of claim 5, characterized in that: the second connecting piece (303) is perpendicular to the wall body.
7. The convenient-to-use conveyor hoist device of claim 1, characterized in that: the cross brace connecting assembly (400) comprises a third connecting piece (401), a third fixing piece (402), a connecting screw rod (403), a cross brace connecting piece (404) and a limiting piece (405); the third connecting piece (401) is fixed on the third fixing piece (402); the third fixing piece (402) is connected with the cross brace connecting piece (404) in a counter-pulling way through the connecting screw rod (403); the limiting piece (405) clamps the cross beam (600); the cross brace connecting piece (404) is connected with the limiting piece (405) through bolts.
8. The convenient-to-use conveyor hoist device of claim 1, characterized in that: the cross brace connecting assembly (400) comprises a third connecting piece (401), a third fixing piece (402), a connecting screw rod (403), a rotating connecting piece (406), a cross brace connecting piece (404) and a limiting piece (405); the third connecting piece (401) is fixed on the third fixing piece (402); the third fixing piece (402) is connected in a split mode through the connecting screw rod (403) and the rotary connecting piece (406); the rotary connector (406) and the cross brace connector (404) can be connected in a relatively rotating way; the limiting piece (405) clamps the cross beam (600); the cross brace connecting piece (404) is connected with the limiting piece (405) through bolts.
9. The convenient-to-use conveyor hoist device of claim 8, characterized in that: the rotary connecting piece (406) is provided with an arc-shaped limiting groove; a third fastener (407) penetrates through the arc-shaped limiting groove; the third fastener (407) connects the swivel connector (406) and the wale connector (404).
10. The convenient-to-use conveyor hoist device of claim 1, characterized in that: the wale (500) supports a conveyor (700); the conveyor (700) is mounted either grade-wise or horizontally above the wale (500).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202022142713.5U CN213536970U (en) | 2020-09-25 | 2020-09-25 | Conveyor hoisting device convenient to use |
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CN202022142713.5U CN213536970U (en) | 2020-09-25 | 2020-09-25 | Conveyor hoisting device convenient to use |
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CN213536970U true CN213536970U (en) | 2021-06-25 |
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CN202022142713.5U Active CN213536970U (en) | 2020-09-25 | 2020-09-25 | Conveyor hoisting device convenient to use |
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