CN216071392U - Anti-shifting stabilizing frame structure of container - Google Patents

Anti-shifting stabilizing frame structure of container Download PDF

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Publication number
CN216071392U
CN216071392U CN202121704377.7U CN202121704377U CN216071392U CN 216071392 U CN216071392 U CN 216071392U CN 202121704377 U CN202121704377 U CN 202121704377U CN 216071392 U CN216071392 U CN 216071392U
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CN
China
Prior art keywords
sucking disc
handle
container
support body
frame body
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Expired - Fee Related
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CN202121704377.7U
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Chinese (zh)
Inventor
申益美
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Guangzhou Railway Polytechnic
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Guangzhou Railway Polytechnic
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Priority to CN202121704377.7U priority Critical patent/CN216071392U/en
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Expired - Fee Related legal-status Critical Current
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Abstract

The utility model relates to the field of containers, in particular to a container anti-moving stabilizing frame structure. The anti-moving stabilizing frame structure of the container comprises a frame body, a cross rod and two groups of sucker components, wherein the cross rod transversely penetrates through two sides of the frame body, and the two groups of sucker components are respectively assembled at two ends of the cross rod and used for being adsorbed and fixed on the ground. The advantages are that: the structure design is simple and reasonable, the two sides of the container are fixed, the container is effectively prevented from transverse movement caused by sea wind or collision, and the use is simpler.

Description

Anti-shifting stabilizing frame structure of container
Technical Field
The utility model relates to the field of containers, in particular to a container anti-moving stabilizing frame structure.
Background
Logistics is a process of organically combining functions such as transportation, storage, loading, unloading and carrying, packaging, circulation processing, distribution, information processing and the like to realize user requirements according to actual needs in the process of physically flowing articles from a supply place to a receiving place, and promotes the synchronization of production and market by taking warehousing as a center. The container is an indispensable ring in the logistics transportation, and in the container use process, often can cause the container drunkenness because of the sea wind in the harbor district or unexpected collision, probably can cause goods damage or logistics staff injured in the discharge process, influence the use.
SUMMERY OF THE UTILITY MODEL
The utility model aims to solve the technical problem of providing a container anti-moving stabilizing frame structure, which effectively overcomes the defects of the prior art.
The technical scheme for solving the technical problems is as follows:
the utility model provides a steadying frame structure is prevented scurrying by container, includes support body, horizontal pole and two sets of sucking disc subassemblies, and the both sides of above-mentioned support body are transversely run through to above-mentioned horizontal pole, and two sets of above-mentioned sucking disc subassemblies are assembled respectively in the both ends of above-mentioned horizontal pole for adsorb and be fixed in subaerial.
On the basis of the technical scheme, the utility model can be further improved as follows.
Further, the support body is a hollow plate with a V-shaped cross section, the end face of one end of the support body is a vertical plane, the other end of the support body extends downwards towards the end of the support body in an inclined mode, and the lower ends of the two sides of the support body are respectively provided with a horizontal supporting chassis.
Further, the cavity inside the frame body is filled with a plastic plate with grid corrugations, and the bottom surface of the plastic plate is flush with the bottom surface of the frame body.
Furthermore, a vertical ribbed plate is connected between the upper part of the supporting chassis and the outer surface of the corresponding side of the frame body.
Further, the sucker component comprises a sucker main rod, a sucker and a handle, the sucker main rod is vertically arranged, the upper end of the sucker is fixedly connected with the corresponding end of the cross rod, the top of the sucker is provided with a pressure bearing plate surface, the pressure-bearing plate surface is provided with an air hole communicated with the inner area of the sucker, the lower end of the sucker main rod hermetically penetrates through the pressure-bearing plate surface and a through hole matched with the top of the sucker, the handle can be assembled on one side of the main rod of the sucker in an up-and-down overturning manner, one end of the handle is provided with an extrusion end which is in extrusion fit with the top of the pressure bearing plate surface, the other end of the handle is an operation end, the handle can be overturned up and down to be horizontal or vertical under the action of external force, and in the process of turning upwards to be vertical, the extrusion end is tightly attached to the top of the pressure-bearing disk surface, and the sucker is pressed downwards, and when the handle is turned to be vertical, the air hole on the pressure bearing plate surface is sealed by the pressing end.
Furthermore, the handle is rotatably connected with one side of the main rod of the sucker through a rotating shaft vertical to the handle.
Further, the frame body and the cross rod are both steel components, and the surfaces of the frame body and the cross rod are coated with antirust coatings.
The utility model has the beneficial effects that: the structure design is simple and reasonable, the two sides of the container are fixed, the container is effectively prevented from transverse movement caused by sea wind or collision, and the use is simpler.
Drawings
FIG. 1 is a side view of the tamper-resistant stabilizer structure for a container of the present invention;
FIG. 2 is a schematic view of the container tamper-resistant stabilizer structure of the present invention with the handle horizontal;
fig. 3 is a schematic structural view illustrating the structure of the container tamper-resistant stabilizer structure according to the present invention, in which the suction cups are pressed while the handles are turned upward.
In the drawings, the components represented by the respective reference numerals are listed below:
1. a frame body; 2. a cross bar; 3. a sucker component; 11. a support chassis; 12. plastic plate materials; 31. a main rod of the sucker; 32. a suction cup; 33. a handle; 321. a pressure-bearing disk surface; 331. extruding the end; 332. a rotating shaft.
Detailed Description
The principles and features of this invention are described below in conjunction with the following drawings, which are set forth by way of illustration only and are not intended to limit the scope of the utility model.
Example (b): as shown in fig. 1, 2 and 3, the anti-shifting stabilizing frame structure of the container of the embodiment comprises a frame body 1, a cross rod 2 and two sets of sucker components 3, wherein the cross rod 2 transversely penetrates through two sides of the frame body 1, and the two sets of sucker components 3 are respectively assembled at two ends of the cross rod 2 and are used for being fixed on the ground in an absorption manner.
The using process is as follows:
the plurality of stabilizing frames are distributed on two sides (or all around) of the container, the frame body 1 is abutted against the side ends of the container and supported on the ground, and then the sucker assemblies 3 at two ends of the cross rod 2 are respectively adsorbed on the ground, so that the container can be stably supported, the transverse movement of the container caused by sea wind or collision is effectively prevented, and the use is very simple.
As a preferred embodiment, the frame body 1 is a hollow plate with a V-shaped cross section, one end surface of the hollow plate is a vertical plane, the other end extends downwards and slantingly towards the end part, and the lower ends of the two sides of the frame body 1 are respectively provided with a horizontal supporting chassis 11.
In this embodiment, 1 one end of support body is established to vertical plane, and mainly used leans on with container side is inseparable to offset, and the other end sets up for the slope of relatively gentler, can reduce the possibility of turning on one's side, and the absorption on two sets of sucking disc subassemblies 3 of deuterogamying and ground just can be with the firm location in the container side of steady rest to for the container provides better stable supporting effect, and, support body 1 adopts the cavity design, and its cost is lower.
Preferably, a plastic plate 12 with grid corrugations is filled in the cavity inside the frame body 1, and the bottom surface of the plastic plate 12 is flush with the bottom surface of the frame body 1.
In this scheme, filling plastics sheet material 12 in the hollow region of support body 1, can play the effect of supporting the packing to support body 1 inside, support body 1 central control region that can be again also can closely laminate with ground and support for support body 1 is more steady in the support on ground, that is to say under the prerequisite of guaranteeing to support steadily, has alleviateed the weight and the cost of whole support body 1.
In a preferred embodiment, vertical reinforcing ribs are connected between the upper portion of the supporting chassis 11 and the outer surface of the corresponding side of the frame body 1.
In this embodiment, the reinforcing rib plate can make the structure between the supporting chassis 11 and the frame body 1 stronger and not easy to break.
The edge of one outward side of the supporting chassis 11 is designed to be arc-shaped and not sharp, and the situation of accidental injury caused by operation of workers can be reduced on the premise that the supporting performance is not changed.
As a preferred embodiment, the suction cup assembly 3 includes a suction cup main rod 31, a suction cup 32 and a handle 33, the suction cup main rod 31 is vertically disposed, the upper end of the suction cup main rod 31 is fixedly connected to the corresponding end of the cross bar 2, a pressure-bearing plate 321 is disposed on the top of the suction cup 32, an air hole communicated with the inner area of the suction cup 32 is formed on the pressure-bearing plate 321, the lower end of the suction cup main rod 31 is hermetically penetrated through the pressure-bearing plate 321 and a through hole matched with the top of the suction cup 32, the handle 33 is assembled on one side of the suction cup main rod 31 in a vertically turnable manner, one end of the handle 33 is a pressing end 331 press-fitted with the top of the pressure-bearing plate 321, the other end is an operating end, the handle 33 can be turned over vertically or horizontally under an external force, and turned over vertically, so that the pressing end 331 is tightly attached to the top of the pressure-bearing plate 321, and presses the suction cup 32 downward, and when the handle 33 is turned to be vertical, the pressing end 331 seals the air hole on the pressure-bearing plate 321.
In this embodiment, when the container is used, the frame body 1 is supported on the ground and tightly abuts against the side end of the container, then the suction cup 32 falls on the ground, then the handle 33 is operated by external force to turn upwards, so that the squeezing end 331 of the handle 33 gradually contacts with the pressure-bearing plate surface 321 on the top of the suction cup 32, the suction cup 32 is gradually squeezed downwards (so that the air in the suction cup 32 is discharged from the gap on the edge of the bottom surface), until the handle 33 is turned to be vertical or nearly vertical, the squeezing end 331 pushes the suction cup 32 to have maximum deformation (in this state, the air in the suction cup 32 is almost evacuated to form a negative pressure cavity), the suction cup 32 is firmly adsorbed on the ground, and the squeezing end 331 seals the air hole on the pressure-bearing plate surface 321 in this state to maintain the air pressure difference between the inside and the outside of the suction cup 32, when the stabilizing frame needs to be removed, the handle 33 is turned downwards, make extrusion end 331 relieve the downward extrusion force to pressure-bearing disk 321 gradually, this in-process, extrusion end 331 dodges the gas pocket on the pressure-bearing disk 321, and external gas gets into sucking disc 32, and after the extra atmospheric pressure of sucking disc 32 was balanced, the adsorption affinity on sucking disc 32 and ground disappeared, and it can to remove whole steady rest, and on the whole, the operation is very simple, swift, and sucking disc subassembly 3 design benefit is to the location effect preferred of steady rest.
It should be noted that: after the handle 33 is turned upwards to the squeezing end 331 to seal the air hole, the handle 33 and the main sucker rod 31 can be fixed by an additional fixing device.
Generally, a sleeve is fixed on the upper end of the suction cup main rod 31, and the sleeve is sleeved and fixed on the corresponding end of the cross rod 2, so as to ensure the stable assembly of the suction cup main rod 31 and the cross rod 2.
Preferably, the pressure-bearing disk 321 is a steel disk, which is not easy to deform and wear.
Preferably, the handle 33 is rotatably connected to one side of the suction cup main lever 31 by a rotating shaft 332 perpendicular thereto.
The rotating shaft 332 is vertically connected and fixed (welded) with the main sucker rod 31, and the handle 33 is provided with a pin hole for the rotating shaft 332 to pass through, so that the handle 33 can be ensured to be capable of well overturning relative to the main sucker rod 31.
In this embodiment, a buffer layer is filled between the inner wall of the gap at the joint of the middle of the handle 33 and the suction cup main rod 31.
Preferably, the frame body 1 and the cross bar 2 are both steel members, and the surfaces of the frame body and the cross bar are coated with antirust coatings, so that the corrosion of the whole stabilizing frame is reduced.
In the above scheme, the cross rod 2 is firmly fixed with the frame body 1 in a welding mode after penetrating through the frame body 1.
In the whole embodiment, the length of the handle 33 should be not less than 100mm, and the distance between the operating end of the handle 33 and the rotating shaft 332 should be greater than the distance (i.e. the moment) between the pressing end 331 and the rotating shaft 332, so as to facilitate the labor-saving operation of the personnel.
In the present embodiment, the pressing end 331 has a disk shape or a disk-like shape, that is, a surface contacting (pressing) the pressure bearing disk surface 321 is a circular arc surface or a circular arc-like surface.
Of course, all the steel members or rusty members involved in the stabilizer in this embodiment may be subjected to rust prevention treatment.
The above description is only for the purpose of illustrating the preferred embodiments of the present invention and is not to be construed as limiting the utility model, and any modifications, equivalents, improvements and the like that fall within the spirit and principle of the present invention are intended to be included therein.

Claims (7)

1. The utility model provides a container anti-channeling steady rest structure which characterized in that: including support body (1), horizontal pole (2) and two sets of sucking disc subassembly (3), horizontal pole (2) transversely run through the both sides of support body (1), it is two sets of sucking disc subassembly (3) assemble respectively in the both ends of horizontal pole (2) are used for adsorbing to be fixed in subaerially.
2. A container anti-play stabilizer structure according to claim 1, characterized in that: the support body (1) is a hollow plate with a V-shaped cross section, one end face of the support body is a vertical plane, the other end of the support body extends downwards towards the inclined end of the support body, and the lower ends of the two sides of the support body (1) are respectively provided with a horizontal supporting chassis (11).
3. A container anti-play stabilizer structure according to claim 2, characterized in that: the plastic plate material (12) with grid corrugations is filled in the cavity in the frame body (1), and the bottom surface of the plastic plate material (12) is flush with the bottom surface of the frame body (1).
4. A container anti-play stabilizer structure according to claim 2, characterized in that: vertical reinforcing rib plates are connected between the upper part of the supporting chassis (11) and the outer surface of the corresponding side of the frame body (1).
5. A container anti-play stabilizer structure according to claim 1, characterized in that: the sucking disc component (3) comprises a sucking disc main rod (31), a sucking disc (32) and a handle (33), wherein the sucking disc main rod (31) is vertically arranged, the upper end of the sucking disc main rod is fixedly connected with the corresponding end of the cross rod (2), a pressure bearing disc surface (321) is arranged at the top of the sucking disc (32), an air hole communicated with the internal area of the sucking disc (32) is formed in the pressure bearing disc surface (321), the lower end of the sucking disc main rod (31) penetrates through the through hole in the top adaptation of the pressure bearing disc surface (321) and the sucking disc (32), the handle (33) can be vertically overturned to be assembled on one side of the sucking disc main rod (31), one end of the handle (33) is arranged to be an extruding end (331) which is in extrusion fit with the top of the pressure bearing disc surface (321), the other end of the handle is an operating end, and the handle (33) can be overturned to be horizontal or vertical under the external force action and can be upwards overturned to be vertical, the extrusion end (331) is tightly attached to the top of the pressure-bearing disk surface (321), the sucker (32) is extruded downwards, and when the handle (33) is turned to be vertical, the extrusion end (331) seals the air hole in the pressure-bearing disk surface (321).
6. A container anti-play stabilizer structure according to claim 5, characterized in that: the handle (33) is rotatably connected with one side of the sucking disc main rod (31) through a rotating shaft (332) perpendicular to the handle.
7. A container anti-play stabilizer structure according to any one of claims 1 to 5, characterized in that: the frame body (1) and the cross rod (2) are both steel components, and the surfaces of the frame body and the cross rod are coated with antirust coatings.
CN202121704377.7U 2021-07-26 2021-07-26 Anti-shifting stabilizing frame structure of container Expired - Fee Related CN216071392U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121704377.7U CN216071392U (en) 2021-07-26 2021-07-26 Anti-shifting stabilizing frame structure of container

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121704377.7U CN216071392U (en) 2021-07-26 2021-07-26 Anti-shifting stabilizing frame structure of container

Publications (1)

Publication Number Publication Date
CN216071392U true CN216071392U (en) 2022-03-18

Family

ID=80666523

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121704377.7U Expired - Fee Related CN216071392U (en) 2021-07-26 2021-07-26 Anti-shifting stabilizing frame structure of container

Country Status (1)

Country Link
CN (1) CN216071392U (en)

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Granted publication date: 20220318