CN220221881U - Coiled material placing table convenient to transfer - Google Patents

Coiled material placing table convenient to transfer Download PDF

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Publication number
CN220221881U
CN220221881U CN202321433561.1U CN202321433561U CN220221881U CN 220221881 U CN220221881 U CN 220221881U CN 202321433561 U CN202321433561 U CN 202321433561U CN 220221881 U CN220221881 U CN 220221881U
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China
Prior art keywords
mounting
plate
column
transfer
groove
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CN202321433561.1U
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Chinese (zh)
Inventor
王少亮
蔡永斌
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Zhejiang Shuchuang Intelligent Equipment Co ltd
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Zhejiang Shuchuang Intelligent Equipment Co ltd
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Abstract

The utility model discloses a coiled material placing table convenient to transfer, which comprises supporting legs, wherein an installation frame is arranged at the upper end of each supporting leg, a fixing plate is arranged on the installation frame, and limiting plates are hinged to two sides of the fixing plate; the mounting frame is internally and fixedly provided with a mounting plate, a moving column is arranged on the mounting plate in a penetrating way, and the mounting plate is in clearance fit with the moving column; a supporting plate is further arranged in the mounting frame, and the lower end of the moving column is connected with the supporting plate; the supporting plate is hung below the mounting plate through a guide bolt; the upper end face of the movable column is provided with a contact part, and the contact part is propped against the bottom of the limiting plate. The utility model can limit the positions of the coiled materials and reduce the shaking amplitude of the coiled materials in the transferring process, thereby reducing the falling probability of the coiled materials.

Description

Coiled material placing table convenient to transfer
Technical Field
The utility model relates to the field of coiled material transportation, in particular to a coiled material placing table convenient to transfer.
Background
The coiled material is coiled strip or ribbon material. Mainly include aluminum foil coiled materials in the food field, amorphous strips in the amorphous field, coiled steel in the metal field, and the like. Because the outer surface of coiled material is arc-shaped structure, when the coiled material needs to be transported, the coiled material is generally placed on the placing table, and then the placing table is lifted by equipment such as a forklift and the like to be transported in a concentrated manner. However, most of existing placing tables are simple in structure, the upper surface of the existing placing tables is generally flat, coiled materials possibly roll to two sides in the transferring process, and once the jolt degree is large, falling situations possibly occur.
And the part of the placing table is provided with a structure with two side tilted middle concave parts, so that a placing groove similar to an arc shape is formed, and the coiled material can be placed in the placing groove, so that the movement of the coiled material is limited. However, because the concave degree of the formed placing groove is fixed, the diameters of coiled materials with different types and specifications are not the same, if the diameters of the coiled materials are larger, the contact points of the two sides of the coiled materials with the surface of the placing table are positioned at lower positions after the coiled materials are placed, the bottommost part of the coiled materials can not be contacted with the surface of the placing table, most part of the coiled materials are exposed outside the placing groove, and the limiting effect on the coiled materials is not ideal; if the diameter of the coil is small, there will be a gap between the coil and the placement groove after the coil is placed, and the coil may roll in the placement groove.
Disclosure of Invention
The utility model aims to provide a coiled material placing table which is convenient to transfer. The utility model can limit the positions of the coiled materials and reduce the shaking amplitude of the coiled materials in the transferring process, thereby reducing the falling probability of the coiled materials.
The technical scheme of the utility model is as follows: the coiled material placing table convenient to transfer comprises supporting legs, wherein an installation frame is arranged at the upper end of each supporting leg, a fixed plate is arranged on the installation frame, and limiting plates are hinged to two sides of the fixed plate; the mounting frame is internally and fixedly provided with a mounting plate, a moving column is arranged on the mounting plate in a penetrating way, and the mounting plate is in clearance fit with the moving column; a supporting plate is further arranged in the mounting frame, and the lower end of the moving column is connected with the supporting plate; the supporting plate is hung below the mounting plate through a guide bolt; the upper end face of the movable column is provided with a contact part, and the contact part is propped against the bottom of the limiting plate.
In the coiled material placing table convenient to transfer, the contact portion comprises a mounting groove arranged on the upper end face of the movable column, the mounting groove is internally provided with the mounting column, the surface of the mounting column is provided with a groove, the inner wall of the groove is rotationally connected with a rotating shaft through a bearing, the outer portion of the rotating shaft is provided with a roller, and the upper portion of the roller extends out of the groove and is propped against the bottom of the limiting plate on the same side.
In the coiled material placing table convenient to transfer, the inner wall of the mounting frame is fixedly connected with a cross beam, and the mounting plate is fixedly arranged on the cross beam.
In the coiled material placing table convenient to transfer, the surface of the mounting plate is provided with a round hole, and the movable column is sleeved inside the round hole in a sliding manner.
In the coiled material placing table convenient to transfer, the bottom of the mounting column is elastically connected with the bottom in the mounting groove through a spring, a round rod is arranged at the bottom of the mounting column, and the spring is sleeved outside the round rod; the lateral part of erection column is provided with the keyway, and the lateral part of removal post is provided with the through-hole that is linked together with the mounting groove, is provided with the spacer pin in the through-hole, and the tip of spacer pin extends to in the keyway.
In the coiled material placing table convenient to transfer, the guide bolt comprises a screw cap and a screw rod arranged below the screw cap, and the lower end of the screw rod is fixed with the supporting plate; the surface of mounting panel is provided with the jack, and the upper end of screw rod passes the jack and is connected with the nut to the diameter of nut is greater than the bore of jack.
In the coiled material placing table convenient to transfer, the number of the mounting plates is two, and the mounting plates are respectively positioned at two ends of the supporting plate.
In the coiled material placing table convenient to transfer, each mounting plate is provided with two moving columns, and the moving columns are positioned at two side end parts of the mounting plate.
In the coiled material placing table convenient to transfer, the supporting plates are not contacted with the cross beam.
In the coiled material placing table convenient to transfer, the limiting plates are hinged to two sides of the fixing plate through hinge.
Compared with the prior art, the utility model has the following beneficial effects:
1. in the utility model, a fixing plate is arranged on a mounting frame, and two sides of the fixing plate are hinged with a limiting plate through a hinge; the mounting frame is internally and fixedly provided with a mounting plate, a moving column is arranged on the mounting plate in a penetrating way, and the moving column is in sliding connection with the mounting plate; the inside of the mounting frame is also provided with a supporting plate, the supporting plate is hung below the mounting plate through a guide bolt, and the lower end of the moving column is connected with the supporting plate; the upper end face of the movable column is provided with a mounting groove, a mounting column is arranged in the mounting groove, a groove is formed in the surface of the mounting column, the inner wall of the groove is rotatably connected with a rotating shaft through a bearing, a roller is arranged outside the rotating shaft, and the upper portion of the roller extends out of the groove and abuts against the bottom of the limiting plate on the same side. When coiled materials need to be transported, the fork of the forklift is extended to the lower side of the supporting plate, then the fork is lifted upwards, and the supporting plate is driven to move upwards together after being contacted with the supporting plate. The supporting plate drives the moving column to move upwards, and then drives the mounting column and the roller to move upwards. Because the gyro wheel offsets with the bottom of limiting plate, so, the gyro wheel can drive the limiting plate and upwards rotate certain angle at the in-process that moves up, under the circumstances of guaranteeing coiled material bottommost and fixed plate contact, the limiting plate of both sides can live the downside parcel of coiled material to reduce coiled material rocking in the transportation process, reduced the probability of dropping of coiled material, and the rotation range of limiting plate can be adjusted according to the diameter of coiled material, satisfies the function of spacing to the coiled material of different diameters.
2. In the utility model, the bottom of the mounting column is elastically connected with the bottom in the mounting groove through the spring, the bottom of the mounting column is provided with the round rod, and the spring is sleeved outside the round rod. Since the amplitude of the upward movement of the pallet and the moving column is fixed, i.e., the distance between the pallet and the beam. However, in the case of a large diameter coil, the limit plate is limited in the range of upward rotation, and if the limit plate is rotated upward to the maximum, a large recombination is caused to the roller under the pressure of the coil. Therefore, through setting up the spring in the bottom of erection column, can allow gyro wheel and erection column to move the short distance downwards under the pressure of coiled material, the erection column can remove to the mounting groove promptly, and the limiting plate also need not to rotate to maximum limit angle, can play spacing effect to the coiled material can. Through the design, the load born by the roller can be effectively reduced, and the loss of the roller is reduced.
3. According to the utility model, the side part of the mounting column is provided with the key groove, the side part of the moving column is provided with the through hole communicated with the mounting groove, the through hole is internally provided with the limiting pin, the end part of the limiting pin extends into the key groove, and the limiting pin and the key groove are arranged to play a role in guiding the movement of the mounting column, so that the mounting column and the roller can only move up and down, the mounting column and the roller are prevented from transversely rotating, namely, the rolling direction of the roller and the rotating direction of the limiting plate are in the same plane, and the loss of the roller is reduced.
Drawings
FIG. 1 is a schematic diagram of the structure of the present utility model;
FIG. 2 is a schematic view of the structure of the inside of the mounting frame of the present utility model;
FIG. 3 is a schematic view of the assembly structure between the pallet and the mounting plate of the present utility model;
FIG. 4 is a schematic view of the structure of the mounting plate of the present utility model;
FIG. 5 is a schematic view of the assembly of the mobile column and the mounting column of the present utility model;
FIG. 6 is a schematic view of the assembly of the mounting post and roller of the present utility model.
The marks in the drawings are: 1-supporting feet; 2-mounting frames; 3-fixing plates; 4, limiting plates; 5-hinges; 6-supporting plates; 7-a cross beam; 8-mounting plates; 9-a guide bolt; 10-moving the column; 11-mounting slots; 12-mounting posts; 13-through holes; 14-a limiting pin; 15-rotating shaft; 16-keyway; 17-round bars; 18-a spring; 19-grooves; 20-rolling wheels; 21-a round hole; 22-jack.
Detailed Description
The utility model is further illustrated by the following figures and examples, which are not intended to be limiting.
Examples: the utility model provides a coiled material places platform convenient to shift, is shown as the figure 1, includes supporting legs 1, and the upper end of supporting legs 1 is provided with mounting bracket 2, be provided with fixed plate 3 on the mounting bracket 2, the both sides of fixed plate 3 have limiting plate 4 through articulating, specifically, limiting plate 4 articulates in the both sides of fixed plate 3 through hinge 5.
As shown in fig. 2, the mounting plate 8 is fixedly arranged in the mounting frame 2, specifically, the beam 7 is fixedly connected with the inner wall of the mounting frame 2, the mounting plate 8 is fixedly arranged on the beam 7, and the mounting plate 8 can be connected with the beam 7 through screws. In this embodiment, the number of the mounting plates 8 is two. As shown in fig. 3, the mounting plate 8 is provided with a moving column 10 in a penetrating way, the mounting plate 8 and the moving column 10 are in clearance fit, and in particular, as shown in fig. 4, the surface of the mounting plate 8 is provided with a round hole 21, and the moving column 10 is sleeved in the round hole 21 in a sliding way. In this embodiment, two moving columns 10 are disposed on each mounting plate 8, and the moving columns 10 are located at two side ends of the mounting plate 8. The inside of the mounting frame 2 is also provided with a supporting plate 6, and mounting plates 8 are respectively positioned at two ends of the supporting plate 6. The lower end of the moving column 10 is connected with the supporting plate 6, the supporting plate 6 and the cross beam 7 are not contacted with each other, and the supporting plate 6 is ensured to have enough space to drive the moving column 10 to move upwards. The supporting plate 6 is hung below the mounting plate 8 through a guide bolt 9, and specifically, the guide bolt 9 comprises a screw cap and a screw rod arranged below the screw cap, and the lower end of the screw rod is fixed with the supporting plate 6; the surface of the mounting plate 8 is provided with a jack 22, the upper end of the screw rod penetrates through the jack 22 to be connected with a nut, and the diameter of the nut is larger than the caliber of the jack 22. It should be noted that the connection between the supporting plate 6 and the mounting plate 8 is not limited to the above connection, and it is only necessary to ensure that the supporting plate 6 can move up and down and not fall down, for example, the guide bolt 9 may be inverted, the end of the screw rod is connected to the bottom of the mounting plate 8, the supporting plate 6 is slidably sleeved on the screw rod, and the nut is located at the lower end of the supporting plate 6 to support the supporting plate. In this embodiment, the supporting plate 6 can drive the screw rod to move upwards when being pressed upwards, but the screw rod and the supporting plate 6 cannot move transversely under the limit of the insertion hole 22, so that the guiding function is realized. As shown in fig. 5, a contact portion is disposed on the upper end surface of the moving post 10, and the contact portion abuts against the bottom of the limiting plate 4. Specifically, the contact portion include the mounting groove 11 that sets up at the removal post 10 up end, be provided with the mounting post 12 in the mounting groove 11, the surface of mounting post 12 is equipped with recess 19, the inner wall of recess 19 is connected with pivot 15 through the bearing rotation, the outside of pivot 15 is provided with gyro wheel 20, the upper portion of gyro wheel 20 stretches out recess 19 and offsets with homonymy limiting plate 4 bottom.
Further, in the initial state, the supporting plate 6 is located at the lowest part of the moving track, at this time, the roller 20 is propped against the bottom of the limiting plate 4, and the limiting plate 4 has a small inclination angle, so that a worker can conveniently place a coiled material on the placing table, and the coiled material automatically rolls to the middle part of the placing table along the surface of the limiting plate 4, namely rolls to the fixed plate 3, thereby playing a role in pre-positioning, and reducing the situation that the placing position of the coiled material is more deviated and falls.
When coiled materials need to be transported, the fork of the forklift is extended to the lower side of the supporting plate 6, then lifted upwards, and contacted with the supporting plate 6 to drive the supporting plate 6 to move upwards together. The supporting plate 6 drives the moving column 10 to move upwards, and further drives the mounting column 12 and the roller 20 to move upwards. Because gyro wheel 20 offsets with the bottom of limiting plate 4, so gyro wheel 20 can drive limiting plate 4 and upwards rotate certain angle in the in-process that moves up, and the limiting plate 4 of both sides can wrap up the downside parcel of coiled material to reduce coiled material rocking in the transportation, reduced the probability that drops of coiled material. When the pallet 6 moves upwards and contacts the cross beam 7, the pallet fork continues to move upwards, so that the placing table and the coiled material can be lifted together, and then the transferring operation can be performed.
It should be noted that the rotation of the limiting plate 4 should ensure that the limiting plate 4 can contact with the coil with the smallest diameter, that is, when the coil with the smallest diameter is placed on the fixed plate 3, the bottom of the coil can still be wrapped by the limiting plate 4 rotating upwards.
Further, as shown in fig. 6, the bottom of the mounting post 12 is elastically connected with the bottom in the mounting groove 11 through a spring 18, the bottom of the mounting post 12 is provided with a round rod 17, and the spring 18 is sleeved outside the round rod 17; the lateral part of erection column 12 is provided with keyway 16, and the lateral part of removal column 10 is provided with the through-hole 13 that is linked together with mounting groove 11, is provided with spacer pin 14 in the through-hole 13, and the tip of spacer pin 14 extends to in the keyway 16, sets up spacer pin 14 and keyway 16 and can play the guide effect to the removal of erection column 12 for erection column 12 and gyro wheel 20 only can reciprocate, prevents erection column 12 and gyro wheel 20 lateral rotation, makes the rolling direction of gyro wheel 20 and the rotation direction of limiting plate 4 at the coplanar, reduces the loss of gyro wheel 20.
Since the amplitude of the upward movement of the pallet 6 and the moving column 10 is fixed, i.e. the distance between the pallet 6 and the cross beam 7. However, in the case where the diameter of the coil is large, the limit plate 4 is limited in the extent to which it can be rotated upward, and if the limit plate 4 is rotated upward to the maximum extent, a large recombination is caused to the roller 20 under the pressure of the coil. Therefore, by providing the spring at the bottom of the mounting post 12, the roller 20 and the mounting post 12 can be allowed to move downward by a small distance under the pressure of the coiled material, that is, the mounting post 12 can move into the mounting groove 11, and the limiting plate 4 does not need to rotate to the maximum limit angle, so that the limiting effect on the coiled material can be achieved. Through the design, the load born by the roller 20 can be effectively reduced, and the loss of the roller 20 is reduced.
The above description is only of the preferred embodiments of the present utility model and is not intended to limit the present utility model, but various modifications and variations can be made to the present utility model by those skilled in the art. Any modification, equivalent replacement, improvement, etc. made within the scope of the claims of the present utility model should be included in the scope of the present utility model.

Claims (10)

1. The utility model provides a coiled material places platform convenient to transfer, includes supporting legs (1), and the upper end of supporting legs (1) is provided with mounting bracket (2), its characterized in that: a fixed plate (3) is arranged on the mounting frame (2), and limiting plates (4) are hinged to two sides of the fixed plate (3); the mounting frame is characterized in that a mounting plate (8) is fixedly arranged in the mounting frame (2), a moving column (10) is arranged on the mounting plate (8) in a penetrating mode, and the mounting plate (8) and the moving column (10) are in clearance fit; a supporting plate (6) is further arranged in the mounting frame (2), and the lower end of the moving column (10) is connected with the supporting plate (6); the supporting plate (6) is hung below the mounting plate (8) through a guide bolt (9); the upper end face of the movable column (10) is provided with a contact part, and the contact part is propped against the bottom of the limiting plate (4).
2. The transfer-facilitating web-holding station of claim 1, wherein: the contact part comprises a mounting groove (11) arranged on the upper end face of the movable column (10), a mounting column (12) is arranged in the mounting groove (11), a groove (19) is formed in the surface of the mounting column (12), a rotating shaft (15) is connected to the inner wall of the groove (19) through bearing rotation, a roller (20) is arranged outside the rotating shaft (15), and the upper part of the roller (20) extends out of the groove (19) and props against the bottom of the limiting plate (4) on the same side.
3. The transfer-facilitating web-holding station of claim 1, wherein: the inner wall fixedly connected with crossbeam (7) of mounting bracket (2), mounting panel (8) are fixed to be erect on crossbeam (7).
4. The transfer-facilitating web-holding station of claim 1, wherein: the surface of mounting panel (8) is provided with round hole (21), and movable column (10) sliding sleeve is in round hole (21) inside.
5. The transfer-facilitating web-holding station of claim 2, wherein: the bottom of the mounting column (12) is elastically connected with the inner bottom of the mounting groove (11) through a spring (18), a round rod (17) is arranged at the bottom of the mounting column (12), and the spring (18) is sleeved outside the round rod (17); the side of the mounting column (12) is provided with a key groove (16), the side of the moving column (10) is provided with a through hole (13) communicated with the mounting groove (11), the through hole (13) is internally provided with a limiting pin (14), and the end part of the limiting pin (14) extends into the key groove (16).
6. The transfer-facilitating web-holding station of claim 1, wherein: the guide bolt (9) comprises a screw cap and a screw rod arranged under the screw cap, and the lower end of the screw rod is fixed with the supporting plate (6); the surface of the mounting plate (8) is provided with a jack (22), the upper end of the screw rod penetrates through the jack (22) to be connected with the nut, and the diameter of the nut is larger than the caliber of the jack (22).
7. The transfer-facilitating web-holding station of claim 1, wherein: the number of the mounting plates (8) is two, and the mounting plates (8) are respectively positioned at two ends of the supporting plate (6).
8. The transfer-facilitating web placement stage of claim 7, wherein: two moving columns (10) are arranged on each mounting plate (8), and the moving columns (10) are located at two side ends of the mounting plates (8).
9. A transfer-facilitating web-holding station as defined in claim 3, wherein: the supporting plates (6) are not contacted with the cross beam (7).
10. The transfer-facilitating web-holding station of claim 1, wherein: the limiting plates (4) are hinged to the two sides of the fixed plate (3) through hinge plates (5).
CN202321433561.1U 2023-06-07 2023-06-07 Coiled material placing table convenient to transfer Active CN220221881U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321433561.1U CN220221881U (en) 2023-06-07 2023-06-07 Coiled material placing table convenient to transfer

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321433561.1U CN220221881U (en) 2023-06-07 2023-06-07 Coiled material placing table convenient to transfer

Publications (1)

Publication Number Publication Date
CN220221881U true CN220221881U (en) 2023-12-22

Family

ID=89175503

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321433561.1U Active CN220221881U (en) 2023-06-07 2023-06-07 Coiled material placing table convenient to transfer

Country Status (1)

Country Link
CN (1) CN220221881U (en)

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