CN216546278U - Antiskid fixing support for mass transportation of alc wallboards - Google Patents

Antiskid fixing support for mass transportation of alc wallboards Download PDF

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Publication number
CN216546278U
CN216546278U CN202122482290.6U CN202122482290U CN216546278U CN 216546278 U CN216546278 U CN 216546278U CN 202122482290 U CN202122482290 U CN 202122482290U CN 216546278 U CN216546278 U CN 216546278U
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box body
support
skidding
outer layer
plate
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CN202122482290.6U
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Inventor
唐其苗
董佳节
费恺
陈国林
张华�
尤慧
陈爱威
濮春晖
高磊
杨又申
徐俊达
马祎斌
陆珂
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Beijing Urban Construction Yatai Group Co Ltd
Beijing Yatai Zhibo Technology Development Co Ltd
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Beijing Urban Construction Yatai Group Co Ltd
Beijing Yatai Zhibo Technology Development Co Ltd
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Priority to CN202122482290.6U priority Critical patent/CN216546278U/en
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02ATECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
    • Y02A30/00Adapting or protecting infrastructure or their operation
    • Y02A30/24Structural elements or technologies for improving thermal insulation
    • Y02A30/244Structural elements or technologies for improving thermal insulation using natural or recycled building materials, e.g. straw, wool, clay or used tires

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Abstract

The utility model discloses an anti-skidding fixing support for large-batch transportation of alc wallboards, which comprises: the universal wheel is symmetrically arranged at four corners of the bottom side of the bottom support, a support table for assembling a support structure is arranged above the universal wheel, the box door is arranged on the front side of the outer box body, the rear side of the outer box body is provided with a handrail, the inner support plate is symmetrically arranged on the inner side of the outer box body, and a buffer foam plate is arranged between the inner support plate and the outer box body. This alc wallboard is transported in batches and is used anti-skidding fixed bolster in batches, can be convenient for put panel in order with vertical direction to can keep when piling up the wallboard to keep closely laminating and rock in order to avoid transporting, can also form the enclosed protection to the wallboard through the box structure of support, thereby effectively avoid rocking or impact damage face that external production produced, not only make things convenient for laborsaving to be applicable to big transportation in batches, can also promote the quality of wallboard transportation.

Description

Antiskid fixing support for mass transportation of alc wallboards
Technical Field
The utility model relates to the technical field of production and processing of alc wallboards, in particular to an anti-skidding fixing support for mass transportation of alc wallboards.
Background
The alc wallboard is a building material made of autoclaved lightweight concrete, is mainly used for wall materials or roof surfaces, has good heat insulation performance, has the advantages of sound insulation, fire resistance, frost resistance and the like, and is a plate material with long service life, low cost and safety.
The alc wallboard is used as a common building material, when a large amount of alc wallboards are conveyed and transported after being processed, the alc wallboards are generally horizontally stacked and stored in order to save transportation cost, but the fixing mode adopted on common transportation equipment is the traditional binding band fixing mode, and further certain shaking can be generated due to road bumping in the transportation process, so that the alc wallboard is easy to damage, the light concrete batten simple transportation tool disclosed by the patent CN209667118U comprises a movable wheel, the movable wheel is connected with a rotating shaft, a fixing base is fixedly arranged on the rotating shaft, a supporting frame is arranged on the fixing base, a limiting device is movably arranged on the supporting frame and matched with the light concrete batten, the structure can fix the boards through the limiting device, but the alc wallboards cannot be supported by enough friction force when being placed at a vertical angle, thereby easily lead to removing in-process panel not hard up or rock to be unfavorable for carrying out safe firm big batch transportation to panel, to above-mentioned problem, urgent need carry out the innovative design on original anti-skidding fixed bolster's basis.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide an anti-skidding fixing support for large-batch transportation of alc wallboards, and aims to solve the problems that the support for large-batch transportation of alc wallboards is provided in the background technology, the boards are easy to shake and slide in a common horizontal stacking mode, the boards are not favorable to being stably stored and transported, the boards cannot be conveniently and quickly taken and placed, and the quality of board transportation is not favorable to being improved.
In order to achieve the purpose, the utility model provides the following technical scheme: the utility model provides an alc wallboard is transported in batches and is used anti-skidding fixed bolster, includes:
universal wheels are symmetrically arranged at four corners of the bottom side of the bottom bracket, and a support table for assembling a bracket structure is arranged above the universal wheels;
the box door is arranged on the front side of the outer layer box body, and the rear side of the outer layer box body is provided with a handrail;
the inner layer support plate is symmetrically arranged on the inner side of the outer layer box body, and a buffer foam plate is arranged between the inner layer support plate and the outer layer box body.
The setting up of above-mentioned structure makes the device can be convenient for the manpower transport to can carry out half package formula protection to the wallboard that transports in batches, thereby form the multilayer isolation protection to wallboard panel, and then avoid rocking or impact damage panel that external environment caused.
Preferably, the long banding bottom frid is installed to the equidistance still on the outer box bottom side face, and the bottom frid is the vertical fixation structure on outer box bottom side face to the bottom frid rotates with the chamber door to be connected, and the setting up of above-mentioned structure makes panel pile up with vertical connection state and puts in the device, and can keep the inseparable laminating between the polylith wallboard, and can be convenient for place the wallboard fast and take out, hoisting device's transportation efficiency.
Preferably, the maximum rotation angle of the box door on the bottom groove plate is 90 degrees, front door groove plates are arranged on the inner side faces of the box door at equal intervals, the front door groove plates and the bottom groove plates are located at corresponding position angles in a front-back mode, meanwhile, spring telescopic rods are further arranged between the box door and the bottom support, the device can be convenient to keep a stable horizontal supporting state after the front door groove plates are opened, wallboard plates are inserted and placed according to the front door groove plates and the bottom groove plates corresponding to the angles, and therefore the wallboard plates can be pushed and pulled quickly to be taken and placed conveniently.
Preferably, the spring telescopic link still is provided with bottom pivot and top pivot respectively in bottom support and chamber door linking position department, and the spring telescopic link constitutes elastic telescopic structure with the qianmen frid, and the setting up of above-mentioned structure makes the chamber door structure can stabilize and open and shut to avoid receiving concrete wall weight and compressive deformation, and promoted the convenience that auxiliary stay panel packed into the box.
Preferably, inlayer mounting panel and outer box nested connection, and inlayer mounting panel outward surface are the protruding column structure of net to the inlayer mounting panel is the aluminum alloy material, and outer box is stainless steel simultaneously, and the setting up of above-mentioned structure makes the fixed bolster structure of wallboard more firm stable, and when can effectively alleviate the weight of transshipment equipment, keeps the shock resistance of box shell, and then has promoted the security and the practicality of transshipment equipment.
Preferably, the buffering cystosepiment is connected with the gomphosis of inlayer mounting panel, and still the equidistance is provided with back frid on the inlayer mounting panel side to back frid and bottom frid are in the position angle that corresponds around each other, and the setting up of above-mentioned structure makes the box structure can possess good shock protection function, and can carry out spacing fixed to wallboard panel from many angles, thereby prevents that panel from appearing rocking, has strengthened the stability of wallboard when transporting.
Preferably, the level is provided with the anti-skidding splint of rectangular shape still in back frid front side, and anti-skidding splint both sides surface is the cockscomb structure, and back frid and anti-skidding splint and inlayer mounting panel constitute the integral structure, inlayer mounting panel top still is provided with 4 elastic anti-skidding bandages of having with the horizontal direction equidistance simultaneously, the setting up of above-mentioned structure makes the polylith wallboard when vertical range, can strengthen frictional force through the anti-skidding splint that set up between the wallboard, and then avoid leading to the wallboard to jolt in transit, and can carry out all-round fixed protection to the wallboard, thereby make the wallboard can not fall out or shake from top to bottom and produce the problem of wearing and tearing.
Compared with the prior art, the utility model has the beneficial effects that: the anti-skidding fixing support for the large-batch transportation of the alc wallboards adopts a novel structural design, can conveniently limit and fix the wallboards when the device is used, keeps the wallboards tightly attached to each other, improves the stability of a large number of wallboards during the transportation, and can increase the friction force between the boards, thereby avoiding the damage of the boards due to jolting and shaking in the transportation process;
1. the structure that the bottom groove plate, the front door groove plate and the back groove plate are arranged among the outer layer box body, the box door and the inner layer support plate respectively is characterized in that the bottom groove plate, the front door groove plate and the back groove plate are positioned at horizontal angles corresponding to one another one by one, so that the plates can be conveniently grouped, inserted and fixed, the principle that friction force generated by close fitting contact of the plates is enhanced is achieved, and the purposes that the device can conveniently limit and fix the wallboards and keep the wallboards tightly fitted with one another so as to improve the stability of a large number of wallboards during transportation are achieved;
2. connect back frid on the inlayer mounting panel, the structure of anti-skidding splint and anti-skidding bandage, can closely laminate the coarse face of wallboard through cockscomb structure anti-skidding splint on the frid of back, and then strengthen the frictional force between face and the anti-skidding splint, and utilize the anti-skidding bandage that can elastically stretch out and draw back to carry out spacing fixed on panel upper portion, in order to avoid the principle that panel falls out, the realization device can increase the frictional force between the panel, thereby avoid panel to rock the function of damage because of jolting in transit.
Drawings
FIG. 1 is a schematic perspective view of the present invention;
FIG. 2 is a schematic view of a semi-sectional three-dimensional structure of an outer box body of the present invention;
FIG. 3 is a schematic perspective view of an inner layer support plate according to the present invention;
FIG. 4 is a schematic perspective view of a bottom bracket according to the present invention;
FIG. 5 is a schematic perspective view of a cushioning foam sheet according to the present invention;
fig. 6 is a schematic perspective view of the door of the present invention.
In the figure: 1. a bottom bracket; 2. a universal wheel; 3. a support table; 4. an outer box body; 5. a bottom slot plate; 6. a box door; 7. a front door channel plate; 8. a spring telescopic rod; 9. a bottom rotating shaft; 10. a top rotating shaft; 11. a handrail; 12. an inner layer support plate; 13. a cushioning foam board; 14. a back channel plate; 15. an anti-slip splint; 16. an antiskid bandage.
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. 1-6, the present invention provides a technical solution: the utility model provides an alc wallboard is transported in batches and is used anti-skidding fixed bolster, includes: the universal wheel 2 is symmetrically arranged at four corners of the bottom side of the bottom bracket 1, a support table 3 for assembling a bracket structure is arranged above the universal wheel 2, the box door 6 is arranged at the front side of the outer box 4, the handrail 11 is arranged at the rear side of the outer box 4, the inner bracket plate 12 is symmetrically arranged at the inner side of the outer box 4, and the buffer foam plate 13 is also arranged between the inner bracket plate 12 and the outer box 4;
when using the device, at first with wallboard panel from the horizontal chamber door 6 vertical propelling movement of opening in outer box 4, rotate closed chamber door 6 afterwards and keep outer box 4 and inlayer mounting panel 12 to wallboard panel formation half parcel protection to and promote handrail 11 and utilize bottom bracket 1 bottom universal wheel 2 to carry out convenient removal when transporting, through the bolt fastening protection between brace table 3 and the outer box 4 and controlling means's stability, and utilize intermediate layer buffering foam board 13 to carry out the buffer protection when bumping.
Specifically, as shown in fig. 1 and 4, strip-shaped bottom groove plates 5 are further equidistantly mounted on the inner bottom side surface of the outer box 4, the bottom groove plates 5 are in a vertical fixing structure on the inner bottom side surface of the outer box 4, the bottom groove plates 5 are rotatably connected with the box door 6, when a large number of wallboards are loaded, the box door 6 is horizontally rotated and opened and then is used as a channel for movement of the wallboards for supporting, and then the wallboards are sequentially inserted into the bottom groove plates 5 on the bottom surface of the outer box 4 in an upright state, so that the wallboards are limited and fixed by the bottom groove plates 5 to strengthen a contact surface between the wallboards;
the biggest turned angle of chamber door 6 on bottom frid 5 is 90, and it is provided with preceding door frid 7 still to the equidistance on the 6 medial surfaces of chamber door, and preceding door frid 7 is in the position angle that corresponds around each other with bottom frid 5, still be provided with spring telescopic link 8 between chamber door 6 and the bottom support 1 simultaneously, chamber door 6 forms the passageway parallel with ground after bottom frid 5 is improved level and is rotated, slide the bottom frid 5 with panel along the passageway of preceding door frid 7 this moment, and the pressure that produces chamber door 6 when concrete wallboard removed can support the buffering through spring telescopic link 8.
Specifically, as shown in fig. 3 and 6, the spring telescopic rod 8 is further provided with a bottom rotating shaft 9 and a top rotating shaft 10 at the joint position of the bottom bracket 1 and the box door 6, and the spring telescopic rod 8 and the front door groove plate 7 form an elastic telescopic structure, and the spring telescopic rod 8 can move telescopically along with the opening and closing of the box door 6 by the rotation of the bottom rotating shaft 9 and the top rotating shaft 10, so that the box door 6 can be effectively supported and fixed to keep stable;
inner support plate 12 and 4 nested connections of outer box, and inner support plate 12 outward surface is the protruding column structure of net, and inner support plate 12 is the aluminum alloy material, outer box 4 is stainless steel material simultaneously, when the device meets external impact when transporting, the grid structure of inner support plate 12 can stabilize the support face and keep firm, and difficult distortion, the stainless steel material of outer box 4 and the aluminum alloy material of inner support plate 12 are light and firm simultaneously, can be convenient for swiftly transport.
Specifically, as shown in fig. 2 and 5, the buffer foam plate 13 is embedded and connected with the inner layer support plate 12, the back groove plates 14 are further arranged on the side surface of the inner layer support plate 12 at equal intervals, and the back groove plates 14 and the bottom groove plates 5 are located at the corresponding front and back position angles, so that when external impact occurs, the buffer foam plate 13 can be used for performing impact resistance protection on the inner plates, and the back groove plates 14 inserted among a plurality of groups of plates are used for limiting and fixing the wall plates, thereby keeping the stability of the plates in the device;
the 14 front sides of back frid level still is provided with the anti-skidding splint 15 of rectangular shape, and anti-skidding splint 15 both sides surface is jagged structure, and back frid 14 and anti-skidding splint 15 constitute the integral structure with inlayer mounting panel 12, inlayer mounting panel 12 top still is provided with 4 with the horizontal direction equidistance and has elastic anti-skidding bandage 16 simultaneously, coarse concrete wallboard surface closely laminates before back frid 14, and then the frictional force has been strengthened, and the wallboard between through back frid 14 interval has certain clearance, consequently can't keep firm, utilize the sawtooth structure on anti-skidding splint 15 surface can strengthen the friction between the panel this moment, utilize anti-skidding bandage 16 to shelter from spacing and prevent that panel from droing to fall out to the wallboard top simultaneously.
The working principle is as follows: when the device is used, as shown in figures 1-6, firstly, the box door 6 is rotated and opened along the outer box body 4, the flexible rotation is realized between the bottom rotating shaft 9 and the top rotating shaft 10 through the spring telescopic rod 8 to keep stable support, then the wall boards are pushed into the outer box body 4 along the front door groove plate 7 on the box door 6 in sequence and are inserted and fixed with the bottom groove plate 5 and the back groove plate 14 correspondingly arranged at the bottom and the side surface of the inner support plate 12, thereby the wall boards are limited and fixed by utilizing the groove plate structure, meanwhile, the wall boards with gaps are fixed by utilizing the sawtooth structure of the anti-skid clamping plates 15 to strengthen the friction force between rough wall boards, thereby avoiding looseness during transportation, after the wall boards are completely assembled, the anti-skid binding bands 16 are wound around the top of the wall boards and are fixed, further, the handrails 11 are pushed, and the universal wheels 2 at the bottom of the bottom support 1 are utilized for transportation and movement, the working principle of the anti-skidding fixing support for mass transportation of the alc wall plates is that.
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 (7)

1. An anti-skidding fixing support for mass transportation of alc wallboards mainly comprises a bottom support and an outer layer box body, wherein the outer layer box body is arranged on the upper part of the bottom support, and the whole outer layer box body is in a cuboid shape;
it is characterized by comprising the following steps:
universal wheels are symmetrically arranged at four corners of the bottom side of the bottom bracket, and a support table for assembling a bracket structure is arranged above the universal wheels;
the box door is arranged on the front side of the outer layer box body, and the rear side of the outer layer box body is provided with a handrail;
the inner layer support plate is symmetrically arranged on the inner side of the outer layer box body, and a buffer foam plate is arranged between the inner layer support plate and the outer layer box body.
2. The anti-skidding fixing support for large batch transportation of alc wallboards as claimed in claim 1, wherein: the bottom side surface of the outer layer box body is also provided with long-strip-shaped bottom groove plates at equal intervals, the bottom groove plates are of a vertical fixing structure on the bottom side surface of the outer layer box body, and the bottom groove plates are rotatably connected with the box door.
3. The anti-skidding fixing support for large batch transportation of alc wallboards as claimed in claim 1, wherein: the maximum rotation angle of the box door on the bottom groove plate is 90 degrees, front door groove plates are arranged on the inner side face of the box door at equal intervals, the front door groove plates and the bottom groove plates are located at the corresponding position angles from front to back, and meanwhile, a spring telescopic rod is arranged between the box door and the bottom support.
4. The anti-skidding fixing support for large batch transportation of alc wallboards as claimed in claim 3, wherein: the spring telescopic rod is further provided with a bottom rotating shaft and a top rotating shaft at the joint position of the bottom support and the box door respectively, and the spring telescopic rod and the front door groove plate form an elastic telescopic structure.
5. The anti-skidding fixing support for large batch transportation of alc wallboards as claimed in claim 1, wherein: the inner layer supporting plate is connected with the outer layer box body in an embedded mode, the outer surface of the inner layer supporting plate is of a grid convex structure, the inner layer supporting plate is made of aluminum alloy materials, and the outer layer box body is made of stainless steel materials.
6. The anti-skidding fixing support for large batch transportation of alc wallboards as claimed in claim 1, wherein: the buffer foam plate is connected with the inner layer support plate in an embedded mode, back groove plates are arranged on the side face of the inner layer support plate at equal intervals, and the back groove plates and the bottom groove plates are located at the position angles corresponding to each other in the front-back mode.
7. The anti-skidding fixing support for large batch transportation of alc wallboards as claimed in claim 6, wherein: the back frid front side still level is provided with the anti-skidding splint of rectangular shape, and anti-skidding splint both sides surface is serration structure to back frid and anti-skidding splint constitute integrated structure with the inlayer mounting panel, and inlayer mounting panel top still is provided with 4 elastic anti-skidding bandages with the horizontal direction equidistance simultaneously.
CN202122482290.6U 2021-10-15 2021-10-15 Antiskid fixing support for mass transportation of alc wallboards Active CN216546278U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122482290.6U CN216546278U (en) 2021-10-15 2021-10-15 Antiskid fixing support for mass transportation of alc wallboards

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122482290.6U CN216546278U (en) 2021-10-15 2021-10-15 Antiskid fixing support for mass transportation of alc wallboards

Publications (1)

Publication Number Publication Date
CN216546278U true CN216546278U (en) 2022-05-17

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ID=81566640

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122482290.6U Active CN216546278U (en) 2021-10-15 2021-10-15 Antiskid fixing support for mass transportation of alc wallboards

Country Status (1)

Country Link
CN (1) CN216546278U (en)

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