CN215974764U - Building construction is with lifting machine that is convenient for have shock-absorbing function - Google Patents

Building construction is with lifting machine that is convenient for have shock-absorbing function Download PDF

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CN215974764U
CN215974764U CN202122219631.0U CN202122219631U CN215974764U CN 215974764 U CN215974764 U CN 215974764U CN 202122219631 U CN202122219631 U CN 202122219631U CN 215974764 U CN215974764 U CN 215974764U
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building construction
spring
slide rail
base
convenient
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CN202122219631.0U
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亓剑
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Abstract

The utility model discloses a hoist which is used for building construction and is convenient to have a damping function; the method comprises the following steps: the bottom of the base is provided with a fixed wheel; the surface mounting of base has the slide rail, the inside of slide rail is provided with coupling spring, coupling spring's one end is connected with the connecting block, the outer wall of connecting block has cup jointed the shock attenuation cotton, the one end of connecting block is connected with the connecting plate, the surface bonding of connecting plate has the cushion. This lifting machine for building construction is convenient for have shock-absorbing function, when bearing the seat and sliding on the slide rail and holding in the palm the end, through the compression of cushion and connecting spring, can absorb the impact force that bears the seat striking connecting plate, and through the inflation compression of shock attenuation cotton, can absorb the elasticity when connecting spring resets and kick-backs to reduce the impact force when bearing the seat and holding in the palm the end, reach absorbing purpose.

Description

Building construction is with lifting machine that is convenient for have shock-absorbing function
Technical Field
The utility model relates to the technical field of building construction, in particular to a hoister with a damping function for building construction.
Background
The hoist is large mechanical equipment for transportation by changing potential energy, such as a mine hoist, a dam-crossing hoist and the like. The elevator, the overhead traveling crane, the winch, the stable vehicle, the crane, the hoist and the like can be called as a hoisting machine, the hoisting machine generally refers to large-scale mechanical equipment with high power and high hoisting capacity, the flexible steel wire rope and transported goods are dragged by power machinery to move up and down to finish the transportation process, and the hoisting machine has the characteristics of low driving power, wide hoisting range, good operation reliability and the like, and is widely applied to the food processing fields of buildings, ports and docks and the like.
There are many kinds of elevators on the market, but the elevator for building construction has the following problems when in use:
1. the existing hoister for building construction in the market drags a flexible steel wire rope to pull a cargo carrying box to transport cargos through a power machine, and the pulling transportation mode is easy to cause the condition of supporting the bottom when a base of the carrying box slides on a slide rail, so that the base of the carrying box is damaged by collision between the base of the carrying box and the slide rail;
2. the opening of the bearing box of the existing elevator for building construction in the market can not be closed, so that goods are easy to splash during transportation;
3. the existing elevator for building construction in the market is easy to shake during operation, so that the elevator cannot be stably placed;
improvements are needed to address the above issues to meet market demands.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a lifting machine for building construction, which is convenient to have a damping function, and aims to solve the problems that the conventional lifting machine for building construction in the market provided by the background art is used for dragging a flexible steel wire rope to pull a cargo carrying box to transport cargos through a power machine, the lifting and transporting mode is easy to cause the condition of bottom support when a carrying box base slides on a slide rail, the carrying box base and the slide rail are damaged by collision, the opening of the carrying box of the conventional lifting machine for building construction in the market cannot be closed, cargos are easy to splash during transportation, and the conventional lifting machine for building construction in the market is easy to shake during operation, so that the lifting machine cannot be stably placed.
In order to achieve the purpose, the utility model provides the following technical scheme: a hoist for building construction is convenient to have a shock absorption function; the method comprises the following steps:
the bottom of the base is provided with a fixed wheel;
the surface mounting of base has the slide rail, the inside of slide rail is provided with coupling spring, coupling spring's one end is connected with the connecting block, the outer wall of connecting block has cup jointed the shock attenuation cotton, the one end of connecting block is connected with the connecting plate, the surface bonding of connecting plate has the cushion.
Preferably, the connecting plate passes through to constitute the elastic linkage structure between connecting spring, connecting block and shock attenuation cotton and the slide rail, and the cushion is the rubber material, through above-mentioned structure, when bearing the seat and sliding on the slide rail and holding in the palm the end, through the compression of cushion and connecting spring, can absorb the impact force that bears the seat striking connecting plate, and through the cotton inflation compression of shock attenuation, can absorb the elasticity when connecting spring resets and kick-backs to reduce the impact force when bearing the seat and holding in the palm the end, reach absorbing purpose.
Preferably, the slide rail includes:
bear the seat, sliding connection is in on the slide rail, the surface of bearing the seat is connected with the bearing box, the surface of bearing the box is provided with the apron, the surface mounting of apron has the handle, the surface of bearing the box is connected with the fixed block, one side of apron is connected with the buckle, the inside of buckle is provided with the block spring, the one end of block spring is connected with the bayonet lock.
Preferably, be connected for rotating between apron and the fixed block, and the apron passes through the buckle, constitute elasticity block connection structure between block spring and the bayonet lock and the bearing box, and the bayonet lock passes through to constitute elasticity extending structure between block spring and the buckle, through above-mentioned structure, the inside of bearing box is packed into with the material, press the bayonet lock again, make bayonet lock extrusion block spring and remove the inside of buckle, rotate the apron at last, make the bayonet lock run through the inside of fixed block, so that fix the apron, make the open end of bearing box shelter from, reach the purpose that prevents the material and splash.
Preferably, the base includes:
the slide bar, sliding connection be in the inside of base, the draw-in groove has been seted up on the surface of slide bar, the inside through connection of slide bar has the support lead screw, the surface of base is connected with the butt joint piece, the inside rotation of butt joint piece is connected with spacing card.
Preferably, the draw-in groove is equidistant evenly distributed at the equal surface of slide bar, and be threaded connection between slide bar and the support lead screw, and be connected for rotating between spacing card and the butt joint piece, through above-mentioned structure, place equipment in required position, slide bar to suitable position again, rotate spacing card, the inside that makes spacing card insert the draw-in groove is fixed the slide bar, rotate the support lead screw at last, make the support lead screw support equipment, so that prevent that equipment from rocking, reach the purpose that equipment stably put.
Compared with the prior art, the utility model has the beneficial effects that: the elevator with the damping function for building construction is characterized in that when the bearing seat slides on the sliding rail to support the bottom, the cushion and the connecting spring are compressed, can absorb the impact force of the bearing seat impacting the connecting plate, and can absorb the elasticity of the connecting spring when the connecting spring is reset and rebounded through the expansion and compression of the damping cotton, so as to reduce the impact force when the bearing seat supports the bottom and achieve the aim of shock absorption, and when the materials are loaded into the bearing box, by rotating the cover plate and pressing the bayonet lock, the bayonet lock penetrates through the inside of the fixed block so as to fix the cover plate and shield the open end of the bearing box, thereby achieving the purpose of preventing materials from splashing, and place equipment in required position, through sliding slide bar to suitable position to rotate the inside that the spacing card inserted the draw-in groove, rotate the support lead screw at last and support equipment, so that prevent that equipment from rocking, reach the purpose that equipment stably put.
1. When bearing the seat and sliding on the slide rail and holding in the palm the end, through the compression of cushion and connecting spring, can absorb the impact force that bears seat striking connecting plate, and through the cotton inflation compression of shock attenuation, can absorb the elasticity when connecting spring resets and kick-backs to impact force when reducing and bear the seat and hold in the palm the end reaches absorbing purpose.
2. Pack the material into the inside of bearing box, press the bayonet lock again, make bayonet lock extrusion block spring and remove the inside of buckle, rotate the apron at last, make the bayonet lock run through the inside of fixed block to fix the apron, make the open end of bearing box shelter from, reach the purpose that prevents the material and splash.
3. Place equipment in required position, slide the slide bar to suitable position again, rotate spacing card, make the inside that spacing card inserted the draw-in groove fixed the slide bar, rotate the support lead screw at last, make the support lead screw support equipment to prevent that equipment from rocking, reach the purpose that equipment stably put.
Drawings
FIG. 1 is a schematic front view of the present invention;
FIG. 2 is a schematic top view of a cover plate according to the present invention;
FIG. 3 is a side view, a cross section and an enlarged structure of the slide rail according to the present invention;
FIG. 4 is a side view, a cross section and an enlarged structure of the sliding bar of the present invention.
In the figure: 1. a base; 2. a fixed wheel; 3. a slide rail; 4. a connecting spring; 5. connecting blocks; 6. damping cotton; 7. a connecting plate; 8. a soft cushion; 9. a bearing seat; 10. a carrying case; 11. a cover plate; 12. a handle; 13. a fixed block; 14. buckling; 15. a snap spring; 16. a bayonet lock; 17. a slide bar; 18. a card slot; 19. a support screw rod; 20. a butt joint block; 21. and (6) limiting the card.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Referring to fig. 1-4, the present invention provides a technical solution: a hoist for building construction is convenient to have a shock absorption function; the method comprises the following steps:
the bottom of the base 1 is provided with a fixed wheel 2;
base 1's surface mounting has slide rail 3, slide rail 3's inside is provided with connecting spring 4, connecting spring 4's one end is connected with connecting block 5, the cotton 6 of shock attenuation has been cup jointed to connecting block 5's outer wall, connecting block 5's one end is connected with connecting plate 7, connecting plate 7's surface bonding has cushion 8, connecting plate 7 passes through connecting spring 4, constitute the elastic linkage structure between connecting block 5 and the cotton 6 of shock attenuation and the slide rail 3, and cushion 8 is the rubber material, when bearing seat 9 slides on slide rail 3 at the bottom of the palm, through cushion 8 and connecting spring 4's compression, can absorb the impact force that bears seat 9 striking connecting plate 7, and the inflation compression through shock attenuation cotton 6, can absorb the elasticity when connecting spring 4 resets and kick-backs, so that reduce the impact force when bearing seat 9 at the bottom of the palm, reach absorbing purpose.
The slide rail 3 is connected with a bearing seat 9 in a sliding way, the surface of the bearing seat 9 is connected with a bearing box 10, the surface of the bearing box 10 is provided with a cover plate 11, the surface of the cover plate 11 is provided with a handle 12, the surface of the bearing box 10 is connected with a fixed block 13, one side of the cover plate 11 is connected with a buckle 14, the inside of the buckle 14 is provided with a clamping spring 15, one end of the clamping spring 15 is connected with a bayonet 16, the cover plate 11 is rotatably connected with the fixed block 13, the cover plate 11 forms an elastic clamping connection structure with the bearing box 10 through the buckle 14, the clamping spring 15 and the bayonet 16, and the bayonet 16 forms an elastic telescopic structure with the buckle 14 through the clamping spring 15, materials are loaded into the inside of the bearing box 10, then the bayonet 16 is pressed, the bayonet 16 extrudes the clamping spring 15 and moves to the inside of the buckle 14, finally, the cover plate 11 is rotated, so that the bayonet 16 penetrates through the inside of the fixed block 13, so as to fix the cover plate 11, shield the opening end of the bearing box 10 and achieve the purpose of preventing the materials from splashing.
Base 1's inside sliding connection has slide bar 17, draw-in groove 18 has been seted up on slide bar 17's surface, slide bar 17's inside through connection has support lead screw 19, base 1's surface is connected with butt joint piece 20, butt joint piece 20's inside is rotated and is connected with spacing card 21, draw-in groove 18 is equidistant evenly distributed at slide bar 17 equipartition, and be threaded connection between slide bar 17 and the support lead screw 19, and be connected for rotating between spacing card 21 and the butt joint piece 20, place equipment in required position, slide bar 17 to suitable position again, rotate spacing card 21, the inside that makes spacing card 21 insert draw-in groove 18 is fixed slide bar 17, rotate support lead screw 19 at last, make support lead screw 19 support equipment, so that prevent that equipment from rocking, reach the purpose that equipment stably put.
In summary, the following steps: as shown in fig. 1-4, when using the elevator for building construction, which is convenient for having a shock-absorbing function, firstly, when the bearing seat 9 slides on the slide rail 3 to support the bottom, the impact force of the bearing seat 9 hitting the connecting plate 7 can be absorbed by the compression of the soft cushion 8 and the connecting spring 4, and the elasticity of the connecting spring 4 when it returns to the rebound can be absorbed by the expansion and compression of the shock-absorbing cotton 6, so as to reduce the impact force when the bearing seat 9 supports the bottom, thereby achieving the purpose of shock absorption, and when the material is loaded into the interior of the bearing box 10, the bayonet 16 can be penetrated through the interior of the fixing block 13 by rotating the cover plate 11 and pressing the bayonet 16, so as to fix the cover plate 11, shield the open end of the bearing box 10, thereby achieving the purpose of preventing the material from splashing, and the equipment can be placed at a desired position, by sliding the slide rod 17 to a proper position, and rotating the limit card 21 to be inserted into the bayonet 18, and finally, the supporting screw rod 19 is rotated to support the equipment, so that the equipment is prevented from shaking, and the purpose of stably placing the equipment is achieved, and the elevator with the damping function for building construction is characterized.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.

Claims (6)

1. A hoist for building construction is convenient to have a shock absorption function; it is characterized by comprising:
the bottom of the base (1) is provided with a fixed wheel (2);
the surface mounting of base (1) has slide rail (3), the inside of slide rail (3) is provided with connecting spring (4), the one end of connecting spring (4) is connected with connecting block (5), the outer wall of connecting block (5) has cup jointed shock attenuation cotton (6), the one end of connecting block (5) is connected with connecting plate (7), the surface bonding of connecting plate (7) has cushion (8).
2. The elevator convenient for building construction to have the shock absorption function as claimed in claim 1, wherein the connecting plate (7) forms an elastic linkage structure with the sliding rail (3) through a connecting spring (4), a connecting block (5) and shock absorption cotton (6), and the cushion (8) is made of rubber.
3. A hoist for building construction facilitating shock absorbing function according to claim 1, characterized in that the slide rail (3) comprises:
bear seat (9), sliding connection is in on slide rail (3), the surface of bearing seat (9) is connected with bearing box (10), the surface of bearing box (10) is provided with apron (11), the surface mounting of apron (11) has handle (12), the surface of bearing box (10) is connected with fixed block (13), one side of apron (11) is connected with buckle (14), the inside of buckle (14) is provided with block spring (15), the one end of block spring (15) is connected with bayonet lock (16).
4. The hoister for building construction convenient to have shock absorption function according to claim 3, characterized in that the cover plate (11) is rotatably connected with the fixed block (13), the cover plate (11) forms an elastic clamping connection structure with the bearing box (10) through the buckle (14), the clamping spring (15) and the clamping pin (16), and the clamping pin (16) forms an elastic telescopic structure through the clamping spring (15) and the buckle (14).
5. A hoist for building construction facilitating shock absorbing function according to claim 1, characterized in that the base (1) comprises:
slide bar (17), sliding connection be in the inside of base (1), draw-in groove (18) have been seted up on the surface of slide bar (17), the inside through connection of slide bar (17) has support screw (19), the surface connection of base (1) has butt joint piece (20), the inside rotation of butt joint piece (20) is connected with spacing card (21).
6. The hoisting machine convenient for shock absorption for building construction as claimed in claim 5, wherein the clamping grooves (18) are uniformly distributed on the equal surfaces of the sliding rods (17) at equal intervals, the sliding rods (17) are in threaded connection with the support screw rods (19), and the limiting clamps (21) are in rotational connection with the butting blocks (20).
CN202122219631.0U 2021-09-14 2021-09-14 Building construction is with lifting machine that is convenient for have shock-absorbing function Active CN215974764U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122219631.0U CN215974764U (en) 2021-09-14 2021-09-14 Building construction is with lifting machine that is convenient for have shock-absorbing function

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122219631.0U CN215974764U (en) 2021-09-14 2021-09-14 Building construction is with lifting machine that is convenient for have shock-absorbing function

Publications (1)

Publication Number Publication Date
CN215974764U true CN215974764U (en) 2022-03-08

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122219631.0U Active CN215974764U (en) 2021-09-14 2021-09-14 Building construction is with lifting machine that is convenient for have shock-absorbing function

Country Status (1)

Country Link
CN (1) CN215974764U (en)

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