CN220722035U - Wire casing warehousing and transportation integrated device - Google Patents

Wire casing warehousing and transportation integrated device Download PDF

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Publication number
CN220722035U
CN220722035U CN202322397198.9U CN202322397198U CN220722035U CN 220722035 U CN220722035 U CN 220722035U CN 202322397198 U CN202322397198 U CN 202322397198U CN 220722035 U CN220722035 U CN 220722035U
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China
Prior art keywords
arms
main
supporting
trunking
integrated device
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CN202322397198.9U
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Inventor
吴健
李玉庆
李念
彭进文
黄婷婷
刘超凡
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Foshan CRRC Sifang Rail Vehicle Co Ltd
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Foshan CRRC Sifang Rail Vehicle Co Ltd
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Abstract

The utility model provides a trunking storage and transportation integrated device which comprises a base, wherein a movable wheel and a forklift opening are arranged below the base, two main arms are vertically arranged above the base, a plurality of groups of supporting arms which are perpendicular to the main arms and extend outwards are detachably arranged on each main arm along the vertical direction, the supporting arms are symmetrically arranged on two sides of the main arms, and the supporting arms on the two main arms are arranged in a one-to-one correspondence manner. The utility model has simple integral structure, easy assembly, flexible adjustment according to the storage and transportation quantity and the specification of the wire slot, strong universality and convenient wire slot taking and placing.

Description

Wire casing warehousing and transportation integrated device
Technical Field
The utility model belongs to the technical field of transportation tools, and particularly relates to a wire slot storage and transportation integrated device.
Background
In the assembly process of the railway vehicle, the cables are required to be pre-assembled on the trunking and then integrally assembled on the vehicle body. Because the cable of the railway vehicle is huge and the length of the cable is longer, the number of the required trunking is large, and the trunking is generally fixed on the vehicle body in a splicing mode. The trunking is divided into multiple specifications according to the installation position and the difference of preassembled cables.
Because the number of the wire slots needed by each vehicle is large, the wire slots need to occupy large places for storage after the wire slots are manufactured, and the space utilization rate is low. In addition, the wire slot is generally packaged in the transportation process, so that the wire slot is not damaged in the transportation process.
The device for storing and transporting the wire chase in the prior art mostly has the problems that the storing and transporting quantity is limited, the flexible adjustment can not be realized according to the required storing and transporting quantity and the wire chase specification, the universality is poor, and the wire chase is not easy to take and place.
Disclosure of Invention
The utility model mainly solves the technical problem of providing the wire slot storage and transportation integrated device which can be flexibly adjusted according to the storage and transportation quantity and the wire slot specification, has strong universality and is convenient for taking and placing the wire slot.
In order to achieve the above purpose, the technical scheme of the utility model is as follows:
the wire slot storage and transportation integrated device comprises a base, wherein a movable wheel and a forklift opening are arranged below the base, two main arms are vertically arranged above the base, a plurality of groups of supporting arms which are perpendicular to the main arms and extend outwards are detachably arranged on each main arm along the vertical direction, the supporting arms are symmetrically arranged on two sides of the main arms, and the supporting arms on the two main arms are arranged in a one-to-one correspondence manner;
each main arm adopts a stainless steel tube with a 'mouth' -shaped section, a plurality of first mounting holes are formed in two symmetrical side walls of the main arm along the vertical direction, and the end parts of the supporting arms are fixedly connected with the corresponding first mounting holes through bolts.
Further, the end part of the suspension end of the supporting arm is bent upwards to form a stop part.
Further, the lengths of the bearing arms arranged from top to bottom are the same or different; alternatively, the support arm is configured in a length-adjustable configuration.
Further, the first mounting hole comprises a through hole and a clamping hole which are communicated, the through hole is located above the clamping hole, the diameter of the through hole is larger than that of the clamping hole, a bolt is mounted at the end of the supporting arm, the head of the bolt penetrates through the through hole to be inserted into the main arm, and the bolt moves downwards to enable the stud to be clamped into the clamping hole, so that detachable connection between the supporting arm and the main arm is achieved.
Further, the base includes underframe and holds in the palm the carrier plate, hold in the palm the carrier plate and weld on the underframe, the bottom fixed connection of main arm hold in the palm the carrier plate.
Further, two groups of vertical limiting rods are symmetrically arranged on the supporting plate along the width direction of the supporting plate.
Further, the backup plate is configured in a width-adjustable configuration.
Further, the bottom of the main arms obliquely extends downwards to form a reinforcing beam, and the two main arms and the reinforcing beam are movably mounted on the supporting plate through an X-direction adjusting structure and used for adjusting the distance between the two main arms.
Further, the X-direction adjusting structure comprises a chute which is arranged on the supporting plate and extends along the X direction, the bottoms of the main arm and the stiffening beam are respectively connected in the chute in a sliding manner, and are locked and fixed at any position through a locking piece;
or, the X-direction adjusting structure comprises a plurality of groups of second mounting holes which are arranged on the supporting plate along the X direction, and the bottom ends of the main arm and the reinforcing beam are fixedly connected with different second mounting holes through fasteners.
In summary, the integrated device for storing and transporting the trunking provided by the utility model has the following beneficial effects compared with the prior art:
(1) According to the utility model, the two main arms are arranged on the base, the plurality of detachable supporting arms are arranged on the main arms, and the wire slot is placed on the supporting arms corresponding to the two main arms, so that the storage and transportation of the wire slot can be realized, and the wire slot has a simple integral structure and is easy to assemble.
(2) According to the utility model, the plurality of detachable support arms are arranged on the main arm, so that the device can flexibly adjust the distance and the number between the support arms according to the storage and transportation number of the trunking and the specification of the trunking, thereby not only greatly improving the universality of the device, but also greatly facilitating the taking and placing of the trunking.
(3) According to the utility model, the main arm is arranged on the base by adopting a structure capable of being transversely adjusted, and the supporting arm is of a structure capable of being selectively adjusted in length, so that the device can be suitable for storing and transporting trunking of various specifications, and the universality of the device is further improved.
The following describes the embodiments of the present utility model in further detail with reference to the accompanying drawings.
Drawings
The accompanying drawings, which are included to provide a further understanding of the utility model and are incorporated in and constitute a part of this specification, illustrate embodiments of the utility model and together with the description serve to explain the utility model. It is evident that the drawings in the following description are only examples, from which other drawings can be obtained by a person skilled in the art without the inventive effort.
In the drawings:
FIG. 1 is a schematic view of a storage and transportation device according to an embodiment of the present utility model;
FIG. 2 is a side view of FIG. 1;
FIG. 3 is a schematic view of a storage device according to an embodiment of the present utility model after a wire slot is placed;
FIG. 4 is a side view of FIG. 3;
fig. 5 is a perspective view showing the structure of a second embodiment of the transporting device according to the present utility model.
The main elements in the figure are illustrated:
as shown in fig. 1 to 5, the base 1, the bottom frame 11, the supporting plate 12, the moving wheel 2, the forklift mouth 3, the main arm 4, the supporting arm 5, the stopper 51, the x-direction adjusting structure 6, the chute 61, the limit lever 7, the reinforcing beam 8, and the wire slot 9.
It should be noted that the drawings and the written description are not intended to limit the scope of the inventive concept in any way, but to illustrate the inventive concept to those skilled in the art by referring to the specific embodiments.
Detailed Description
For the purpose of making the objects, technical solutions and advantages of the embodiments of the present utility model more apparent, the technical solutions in the embodiments will be clearly and completely described with reference to the accompanying drawings in the embodiments of the present utility model, and the following embodiments are used to illustrate the present utility model, but are not intended to limit the scope of the present utility model.
In the description of the present utility model, it should be noted that the directions or positional relationships indicated by the terms "upper", "lower", "front", "rear", "left", "right", "vertical", "inner", "outer", etc. are based on the directions or positional relationships shown in the drawings, are merely for convenience of describing the present utility model and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a specific orientation, be configured and operated in a specific orientation, and thus should not be construed as limiting the present utility model.
In the description of the present utility model, it should be noted that, unless explicitly specified and limited otherwise, the terms "mounted," "connected," and "connected" are to be construed broadly, and may be either fixedly connected, detachably connected, or integrally connected, for example; can be mechanically or electrically connected; can be directly connected or indirectly connected through an intermediate medium. The specific meaning of the above terms in the present utility model will be understood in specific cases by those of ordinary skill in the art.
As shown in fig. 1 to 4, the integrated device for storing and transporting the trunking provided by the utility model comprises a base 1, wherein a moving wheel 2 and a forklift opening 3 are arranged below the base 1, so that an operator can conveniently push the trunking to move or transport the trunking by using a forklift.
Two main arms 4 are vertically arranged above the base 1, the main arms 4 mainly play a supporting role, a plurality of groups of bearing arms 5 which are perpendicular to the main arms 4 and extend outwards are arranged on each main arm 4, a plurality of groups of bearing arms 5 are vertically arranged on the main arms 4 from bottom to top, the bearing arms 5 on the two main arms 4 are correspondingly arranged one by one, and two ends of a wire slot 9 are simultaneously supported on the corresponding bearing arms 5 on the two main arms 4.
In this embodiment, preferably, the base 1 includes a bottom frame 11 and a supporting plate 12, where the bottom frame 11 is a rectangular frame formed by splicing and welding a plurality of cross beams and stringers (not shown in the figure), and the cross beams and stringers each use a stainless steel square beam for ensuring the bearing capacity of the whole device, and more preferably, the cross beams and stringers use square tubes of 40mm×40 mm. The support plate 12 is welded above the bottom frame 11, and the support plate 12 is preferably a stainless steel plate, and more preferably a stainless steel plate having a thickness of 1.0mm to 1.2 mm. In addition to the placement of the wire chase 9 on the support arm 5, the wire chase 9 can also be placed on the support plate 12, although other fittings can be placed as desired.
The bottom end of the main arm 4 is fixedly connected to the supporting plate 12, and the main arm 4 can be fixed to the supporting plate 12 through bolts or can be directly welded to the supporting plate 12. A rubber pad (not shown) is coated on the upper surface of the supporting plate 12, and the thickness of the rubber pad is preferably 2mm, so as to effectively avoid collision between the wire slots 9 or other accessories in the transportation process.
In order to prevent the wire grooves 9 placed on the supporting plate 12 from falling, two groups of vertical limit rods 7 are symmetrically arranged on the supporting plate 12 along the width direction, and each group of limit rods 7 is symmetrically arranged two along the length direction, namely four limit rods 7 are arranged on the supporting plate 12, and the height of each limit rod 7 is preferably more than 50mm, more preferably 70mm. The limit rod 7 is preferably detachably mounted on the supporting plate 12 by adopting threads, and an operator can flexibly mount the limit rod according to actual needs.
The fork truck mouth 3 is welded below the bottom frame 11. The moving wheel 2 comprises a front group and a rear group, and is also arranged below the bottom frame 11, and the moving wheel 2 comprises two universal wheels and two directional wheels, wherein the universal wheels are provided with braking devices.
In this embodiment, it is further preferable that the supporting arms 5 are detachably mounted on the main arm 4, and an operator can select the number and the distance of the supporting arms 5 mounted on the main arm 4 according to the needs (such as the number of the trunking 9 to be stored and transported, the height specification of the trunking 9, etc.), so as to facilitate taking and placing of the trunking 9. The spacing between the plurality of support arms 5 in the vertical direction may be the same, preferably the spacing is 150mm. Of course, the spacing between the plurality of support arms 5 may also be different.
In this embodiment, it is further preferable that the supporting arms 5 are symmetrically arranged at two sides of the main arm 4, which is beneficial to increasing the number of the disposable storage and transportation trunking 9 of the device and also beneficial to ensuring the balance of the device in the storage and transportation process. As shown in fig. 1 and 3, four support arms 5 are provided on each side of the main arm 4, and eight support arms 5 are mounted on one main arm 4.
The support arm 5 may be square, round, and preferably stainless steel. The length of the supporting arms 5, which are arranged on the supporting arms 5 up and down, can be the same or different, and the proper length of the supporting arms 5 is selected according to the width of the wire grooves 9 to be placed, so that the wire grooves 9 are prevented from shaking in the transportation process, the stability and the safety in the transportation process are improved, and the universality of the device is further improved.
In this embodiment, it is further preferable that the end portion of the suspension end of the supporting arm 5 is bent upwards to form a stop portion 51, and an arc between the stop portion 51 and the main body of the supporting arm 5 is in transition, so that the wire slot 9 can be ensured not to fall in the transportation process, and collision damage of the wire slot 9 can be effectively avoided.
In order to ensure that the surface of the wire chase 9 is not scratched, it is further preferred that the surface of the support arm 5 is also covered with a layer of rubber or transparent PVE mat.
In order to increase the supporting strength of the main arms 4 and facilitate the installation of the supporting arms 5, in this embodiment, each main arm 4 is preferably a stainless steel tube with a "mouth" shape in cross section, more preferably, a square tube with a cross section of 40mm×40mm is adopted, a plurality of first mounting holes (not shown in the figure) are formed on two symmetrical side walls of the main arm 4 along the vertical direction, and the end portions of the supporting arms 5 are fixedly connected with the corresponding first mounting holes through bolts (not shown in the figure). The number of the first mounting holes can be more than the number of the bearing arms 5 to be mounted, and an operator can select a proper first mounting hole for mounting according to actual needs.
For convenient dismouting support arm 5, still further preferred in this embodiment, first mounting hole is including the through hole and the card hole of intercommunication, the through hole is located the top of card hole, the diameter of through hole is greater than the diameter of card hole, the diameter of through hole is also greater than the diameter of the bolt head of support arm 5 tip bolt simultaneously, the diameter of card hole is less than the diameter of bolt head, the bolt head of support arm 5 tip bolt passes the inside of inserting square pipe from the through hole, the bolt downwardly moving makes the double-screw bolt card go into card downthehole realization support arm 5 and main arm 4 between can dismantle the connection.
In order to ensure the supporting strength of the main arm 4, in this embodiment, the reinforcing beam 8 extends obliquely downward from the bottom of the main arm 4, the top end of the reinforcing beam 8 is welded on the main arm 4, and the bottom end is welded on the supporting plate 12, or is fixedly connected through bolts, and the reinforcing beam 8 plays a role in reinforcing and supporting the main arm 4.
The utility model mainly comprises a base 1, two main arms 4 arranged on the base 1 and a plurality of supporting arms 5 detachably arranged on the main arms 4, wherein the wire slots 9 are arranged on the supporting arms 5 corresponding to the two main arms 4, so that the storage and the transportation of the wire slots 9 can be realized, and the whole structure is simple and easy to assemble.
According to the utility model, the plurality of detachable supporting arms 5 are arranged on the main arm 4, so that the device can flexibly adjust the distance and the number between the supporting arms 5 according to the storage and transportation number of the trunking 9 and the specification of the trunking, thereby not only greatly improving the universality of the device, but also greatly facilitating the taking and placing of the trunking.
Embodiment two:
the embodiment provides another technical scheme, and the difference with the embodiment is that as shown in fig. 5, two main arms 4 are movably mounted on the base 1 through an X-direction adjusting structure 6, and an operator can adjust the distance between the two main arms 4 according to the length of the wire slots 9 required to be stored and transported on the device, so that the universality of the device is further improved, and the device can be suitable for the wire slots with various specifications.
The X-direction adjusting structure 6 includes a sliding groove 61 extending in the X-direction on the supporting plate 12, and the bottoms of the main arm 4 and the reinforcing beam 8 are slidably connected in the sliding groove 61, respectively, and are locked and fixed in any position by a locking member (not shown). The sliding structure and the locking member between the main arm 4 and the reinforcement beam 8 and the slide groove 61 may be any structure in the prior art as long as the relative sliding and fixing can be realized.
Embodiment III:
the second difference between the present embodiment and the second embodiment is that the X-direction adjusting structure 6 includes a plurality of groups of second mounting holes (not shown in the drawing) arranged along the X-direction on the supporting plate 12, each group of second mounting holes includes at least two, and the bottom ends of the main arm 4 and the reinforcing beam 8 are fixedly connected with different second mounting holes through fasteners, so that the mounting position of the main arm 4 can be adjusted, and the adjustment of the distance between the two main arms 4 can be realized.
Embodiment four:
the present embodiment provides another solution, which is different from the first embodiment in that the supporting plate 12 is configured in a width-adjustable structure.
The supporting plate 12 can be divided into three sections in the width direction, one section in the middle is fixed, the bottom ends of the main arms 4 are fixed on the supporting plate 12 of the middle fixed section, the supporting plates 12 on two sides adopt telescopic structures, the supporting plates 12 on two sides are of nested structures with the middle fixed section, when the width needs to be increased, the supporting plates 12 on two sides can be pulled out and fixed through locking pieces, when the width needs not to be increased, the fixed sections can be retracted, the locking pieces are used for fixing, and the limiting rods 7 are arranged on the telescopic sections on two sides. This is advantageous for further increasing the versatility of the device and for storing more trunkings 9 or accessories of different specifications at one time.
Fifth embodiment:
the present embodiment provides another solution, which differs from the first embodiment in that the support arm 5 is configured as a length adjustable structure.
The support arm 5 adopts two-section structure, and one section is fixed section, and the one end of fixed section is fixed on the main arm 4, and another section is the movable segment, and the movable segment nestification is in the fixed section, draws the movable segment and is used for the length of extension support arm 5, and the indentation is used for shortening the length of support arm 5, realizes the fixed of relative position through the cooperation of spring buckle and a plurality of draw-in holes between movable segment and the fixed section. The length of support arm 5 can be adjusted according to the width of wire casing 9 that needs to place on this support arm 5 to operating personnel, avoids wire casing 9 to have the transportation in-process to produce to rock, influences transportation safety, also is favorable to further promoting the commonality of device simultaneously.
The foregoing description is only a preferred embodiment of the present utility model, and the present utility model is not limited to the above-mentioned embodiment, but is not limited to the above-mentioned embodiment, and any simple modification, equivalent change and modification made by the technical matter of the present utility model can be further combined or replaced by equivalent embodiments within the scope of the technical proposal of the present utility model without departing from the scope of the technical proposal of the present utility model.

Claims (9)

1. The utility model provides a wire casing warehousing and transportation integrated device, includes the base the removal wheel and fork truck mouth are installed to the below of base, its characterized in that: two main arms are vertically arranged above the base, a plurality of groups of supporting arms which are perpendicular to the main arms and extend outwards are detachably arranged on each main arm along the vertical direction, the supporting arms are symmetrically arranged on two sides of the main arms, and the supporting arms on the two main arms are arranged in a one-to-one correspondence manner;
each main arm adopts a stainless steel tube with a 'mouth' -shaped section, a plurality of first mounting holes are formed in two symmetrical side walls of the main arm along the vertical direction, and the end parts of the supporting arms are fixedly connected with the corresponding first mounting holes through bolts.
2. The trunking storage and transportation integrated device of claim 1, wherein: the end part of the suspension end of the supporting arm is bent upwards to form a stop part.
3. The trunking storage and transportation integrated device of claim 1, wherein: the lengths of the bearing arms arranged from top to bottom are the same or different; alternatively, the support arm is configured in a length-adjustable configuration.
4. The trunking storage and transportation integrated device of claim 1, wherein: the first mounting hole comprises a through hole and a clamping hole which are communicated, the through hole is located above the clamping hole, the diameter of the through hole is larger than that of the clamping hole, a bolt is mounted at the end of the supporting arm, the head of the bolt penetrates through the through hole and is inserted into the main arm, and the bolt moves downwards to enable the stud to be clamped into the clamping hole, so that detachable connection between the supporting arm and the main arm is achieved.
5. The trunking storage and transportation integrated device according to any one of claims 1 to 4, wherein: the base comprises a bottom frame and a supporting plate, the supporting plate is welded on the bottom frame, and the bottom end of the main arm is fixedly connected to the supporting plate.
6. The trunking storage and transportation integrated device of claim 5, wherein: two groups of vertical limiting rods are symmetrically arranged on the supporting plate along the width direction of the supporting plate.
7. The trunking storage and transportation integrated device of claim 5, wherein: the backup plate is configured in a width-adjustable configuration.
8. The trunking storage and transportation integrated device of claim 5, wherein: the bottom of the main arms obliquely extends downwards to form a stiffening beam, and the two main arms and the stiffening beam are movably mounted on the supporting plate through an X-direction adjusting structure and used for adjusting the distance between the two main arms.
9. The trunking storage and transportation integrated device of claim 8, wherein: the X-direction adjusting structure comprises a chute which is arranged on the supporting plate and extends along the X direction, the bottoms of the main arm and the stiffening beam are respectively connected in the chute in a sliding manner, and are locked and fixed at any position through a locking piece;
or, the X-direction adjusting structure comprises a plurality of groups of second mounting holes which are arranged on the supporting plate along the X direction, and the bottom ends of the main arm and the reinforcing beam are fixedly connected with different second mounting holes through fasteners.
CN202322397198.9U 2023-09-05 2023-09-05 Wire casing warehousing and transportation integrated device Active CN220722035U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322397198.9U CN220722035U (en) 2023-09-05 2023-09-05 Wire casing warehousing and transportation integrated device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322397198.9U CN220722035U (en) 2023-09-05 2023-09-05 Wire casing warehousing and transportation integrated device

Publications (1)

Publication Number Publication Date
CN220722035U true CN220722035U (en) 2024-04-05

Family

ID=90500415

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322397198.9U Active CN220722035U (en) 2023-09-05 2023-09-05 Wire casing warehousing and transportation integrated device

Country Status (1)

Country Link
CN (1) CN220722035U (en)

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