Material conveying device

By designing the support frame and support structure of the material transport device, the problem of coating damage caused by the protruding structure during the transportation of chassis components was solved, thus achieving safe and stable material transportation and automated production.

CN223644834UActive Publication Date: 2025-12-09CHANGSHA GREE HVAC EQUIP CO LTD +2
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422803437.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-15
Publication Date
2025-12-09
Estimated Expiration
2034-11-15

AI Technical Summary

Technical Problem

In the air conditioner outdoor unit production workshop, during the bulk transportation of chassis components, the protruding bolts can easily damage the coatings on other chassis components, resulting in product quality damage.

Method used

Design a material transport device, including a main frame, a support frame, and support components. The support frame is vertically mounted on a base frame, and the support components are parallel and spaced apart along the vertical direction. The pallet is designed to be inclined to avoid material contact. Adjusting rods and guide rods are used to adjust the distance between the support frames, and identification plates are used to identify material information.

Benefits of technology

It effectively avoids collisions and wear between materials, improves the safety and stability of bulk material transportation, adapts to the transportation needs of materials of different sizes, and supports robotic automated production.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223644834U_ABST
    Figure CN223644834U_ABST
Patent Text Reader

Abstract

The utility model discloses a material conveying device which comprises a main body frame, a supporting frame and a bearing piece. The main body frame comprises a bottom frame used for moving on the ground. The supporting frame is vertically arranged on the bottom frame. The multiple bearing pieces are arranged on the supporting frame in parallel at intervals in the vertical direction, the bearing pieces are used for bearing materials, and the materials borne by the bearing pieces are mutually spaced in the vertical direction. According to the material conveying device, when the materials are conveyed in batches, all the materials are separated in the vertical direction, mutual contact between the materials is avoided, and the safety of material batch conveying is improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of tooling technology in production workshops, and in particular to a material transport device. Background Technology

[0002] In the production workshop of air conditioner outdoor units, it is often necessary to transfer the chassis components of the outdoor units in batches from one production line to another. Currently, chassis components are usually transported in batches using flatbed trucks. Multiple chassis components are directly stacked on the flatbed trucks for transport. Because the chassis components have protruding bolts, these protruding bolts can easily damage the coatings on other chassis components during batch transport, thus affecting product quality. Utility Model Content

[0003] This utility model provides a material transport device that solves the problem of mutual collision damage to air conditioner outdoor unit chassis components during batch transport.

[0004] This utility model embodiment provides a material conveying device, which includes:

[0005] The main frame, including the base frame for moving on the ground;

[0006] A support frame is vertically mounted on the base frame;

[0007] Support members, a plurality of such support members are arranged parallel and spaced apart in a vertical direction on the support frame, the support members being used to support materials, wherein the materials supported by each of the support members are spaced apart from each other in the vertical direction.

[0008] In the material transport device provided in this embodiment of the utility model, multiple support frames are provided. The multiple support frames are arranged parallel and spaced apart on the upper side of the base frame along the first horizontal direction. The supporting members on two adjacent support frames are aligned in the vertical direction and spaced apart in the first horizontal direction to form a clearance space. The supporting members on two adjacent support frames are used to support the material on the two sides that are far apart from each other in the first horizontal direction.

[0009] In the material transport device provided in this embodiment of the utility model, the supporting member includes a side plate and a pallet. The side plate is fixed to the support frame, and the pallet is fixed to the side plate and extends toward the clearance space in the first horizontal direction. The material is supported on the pallet and stopped by the side plate on its two mutually distant sides in the first horizontal direction.

[0010] In the material transport device provided in this embodiment of the utility model, the pallet is inclined relative to the second horizontal direction so that one end of the pallet is on top and the other end is on the bottom. A baffle is provided on the upper side of the bottom end of the pallet. The baffle is used to block the material on one side of the second horizontal direction, which is perpendicular to the first horizontal direction.

[0011] In the material transport device provided in this embodiment of the utility model, the pallet is provided with a plurality of densely arranged weight-reducing through holes.

[0012] In the material transport device provided in this embodiment of the utility model, the material transport device further includes an adjusting rod, the main frame further includes a first side frame and a second side frame, the first side frame and the second side frame are spaced apart on the upper side of the base frame along the first horizontal direction, the adjusting rod is transversely arranged between the first side frame and the second side frame along the first horizontal direction, and the support frame is arranged between the first side frame and the second side frame and is slidably connected to the adjusting rod.

[0013] In the material transport device provided in this embodiment of the utility model, at least one of the adjusting rods is disposed between the bottom end of the first side frame and the bottom end of the second side frame, and at least one of the adjusting rods is disposed between the top end of the first side frame and the top end of the second side frame. The bottom end of the support frame is slidably connected to the adjusting rod between the bottom end of the first side frame and the bottom end of the second side frame, and the top end of the support frame is slidably connected to the adjusting rod between the top end of the first side frame and the top end of the second side frame.

[0014] In the material transport device provided in this embodiment of the utility model, the bottom end of the support frame is connected to a first sleeve, and the top end of the support frame is connected to a second sleeve. The first sleeve is slidably sleeved on the adjusting rod between the bottom end of the first side frame and the bottom end of the second side frame, and the second sleeve is slidably sleeved on the adjusting rod between the top end of the first side frame and the top end of the second side frame.

[0015] In the material transport device provided in this embodiment of the utility model, the material transport device further includes a positioning pin, the adjusting rod is provided with a plurality of positioning holes spaced apart along its own axial direction, the first sleeve and the second sleeve are both provided with through holes, the through holes coincide with any one of the plurality of positioning holes in the radial direction of the adjusting rod, and the positioning pin passes through the through hole and is detachably inserted into the positioning hole.

[0016] In the material transport device provided in this embodiment of the utility model, the material transport device further includes a guide rod, which is laterally disposed between the first side frame and the second side frame along the first horizontal direction. At least one of the guide rods is disposed on the upper side of the base frame. The bottom end of the support frame is connected to a first guide groove, which is slidably connected to the guide rod disposed on the upper side of the base frame.

[0017] In the material transport device provided in this embodiment of the utility model, at least one of the guide rods is disposed above the base frame and spaced apart from the base frame. A second guide groove is connected between the bottom end of the support frame and the top end of the support frame. The second guide groove is slidably connected to the guide rod disposed above the base frame.

[0018] In the material transport device provided in this embodiment of the utility model, the material transport device further includes an identification plate, which is disposed on the main frame, and the identification plate is used to identify information about the material.

[0019] This utility model provides a material transport device, which includes a main frame, a support frame, and supporting members. The main frame includes a base frame for moving on the ground. The support frame is vertically arranged on the base frame. Multiple supporting members are arranged parallel and spaced apart vertically on the support frame, and each supporting member is used to support materials, wherein the materials supported by each supporting member are spaced apart vertically. This material transport device vertically arranges the support frame above the base frame for ground movement, and arranges multiple supporting members for supporting materials parallel and spaced apart vertically on the support frame, ensuring that the materials supported by each supporting member are spaced apart vertically, thus avoiding contact between materials and improving the safety of batch material transport. Attached Figure Description

[0020] To more clearly illustrate the technical solutions of the embodiments of this utility model, the drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0021] Figure 1 An application scenario diagram of the material transport device provided in this utility model embodiment;

[0022] Figure 2 A perspective view of the material transport device provided in the embodiment of this utility model;

[0023] Figure 3 A top view of the material transport device provided in an embodiment of this utility model;

[0024] Figure 4 A top view of the material transport device provided in an embodiment of this utility model in an application scenario;

[0025] Figure 5 A front view of the material transport device provided in an embodiment of this utility model in an application scenario;

[0026] Figure 6 An application scenario diagram of the material transport device provided in this utility model embodiment;

[0027] Figure 7 An application scenario diagram of the material transport device provided in this utility model embodiment;

[0028] Figure 8 A side view of a material transport device provided in an embodiment of this utility model;

[0029] Figure 9 A perspective view of the support member provided in an embodiment of this utility model;

[0030] Figure 10 A top view of the support member provided in an embodiment of this utility model;

[0031] Figure 11 A perspective view of the baffle provided in an embodiment of this utility model;

[0032] Figure 12 A top view of the base frame provided in an embodiment of this utility model;

[0033] Figure 13 A front view of the main frame provided in an embodiment of this utility model;

[0034] Figure 14 A front view of the first side frame provided for an embodiment of this utility model;

[0035] Figure 15 A perspective view of the support frame provided in an embodiment of this utility model;

[0036] Figure 16 A side view of the support frame provided in an embodiment of this utility model;

[0037] Figure 17 for Figure 1 Enlarged view of part A;

[0038] Figure 18 for Figure 1 Enlarged view of part B;

[0039] Figure 19 for Figure 1 Enlarged view of part C;

[0040] Figure 20 for Figure 1 Enlarged view of part D;

[0041] The labels for the attached figures are as follows:

[0042] 100. Material conveying device; 10. Main frame; 11. Base frame; 12. First side frame; 13. Second side frame; 101. Clearance space; 20. Support frame; 21. First sleeve; 22. Second sleeve; 2101. Through hole; 23. First guide groove; 24. Second guide groove; 30. Support component; 31. Side plate; 32. Pallet; 321. Baffle; 320. Weight reduction through hole; 40. Adjusting rod; 401. Positioning hole; 50. Guide rod; 70. Sign; 80. Caster wheel; 90. Push-pull handle; 200. Material; 300. Robot. Detailed Implementation

[0043] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of the present utility model.

[0044] The directional terms used in this invention, such as "up," "down," "front," "back," "left," "right," "inner," "outer," and "side," are merely for reference to the accompanying drawings. Therefore, the directional terms used are for explanation and understanding of this invention, and not for limiting it. Furthermore, in the accompanying drawings, structures that are similar or identical are indicated by the same reference numerals.

[0045] Reference Figures 1 to 20 For details, please refer to Figures 1 to 5 This invention illustrates an embodiment of the material transport device 100 provided by this utility model. The structure and working principle of the material transport device 100 will be described in detail below with reference to the accompanying drawings. The material transport device 100 includes a main frame 10, a support frame 20, and supporting members 30. The main frame 10 includes a base frame 11 for moving on the ground. The support frame 20 is vertically mounted on the base frame 11. A plurality of supporting members 30 are arranged parallel and spaced apart in the vertical direction on the support frame 20. Each supporting member 30 supports material 200, wherein the material 200 supported by each supporting member 30 is spaced apart from each other in the vertical direction.

[0046] In specific implementation, the material transport device 100 is mainly used for the batch transport of materials 200 within the workshop, but it can also be used for the transport of materials 200 in other scenarios. In this embodiment, the material 200 is described using the chassis assembly of an air conditioner outdoor unit as an example. In this embodiment, the material transport device 100 mainly consists of a main frame 10, a support frame 20, and a support member 30. The main frame 10 includes a base frame 11, which is a horizontal frame structure. Other frame structures can be installed on the base frame 11. Universal wheels 80 are provided on the lower side of the base frame 11, allowing the base frame 11 to move horizontally in any direction on the ground via the universal wheels 80. A push-pull handle 90 is also provided on the base frame 11, which can be used to push or pull the base frame 11 to move it, facilitating transport. The support frame 20 is a vertical frame structure, and the support frame 20 is vertically arranged on the upper side of the base frame 11. The support member 30 is arranged on the support frame 20, and the support frame 20 provides stable support for the support member 30. The support component 30 is used to support the material 200. The material 200 can be stably placed on the support component 30 and will not naturally detach from the support component 30 without the influence of external forces. Multiple support components 30 are provided, and the specific number can be designed according to the actual transportation quantity requirements of the material 200. Multiple support components 30 are arranged parallel and spaced apart along the vertical direction on the support frame 20. In the vertical direction, adjacent support components 30 maintain a certain distance. When two adjacent support components 30 in the vertical direction each support a material 200, a certain distance is maintained between the materials 200 on the adjacent support components 30. This ensures that the materials 200 supported by all support components 30 are stably spaced in the vertical direction, preventing them from contacting each other and colliding. In practical applications, each material 200 is placed on each support 30 for support. Each support 30 supports one material 200. Multiple support 30s work together to support the materials 200 in batches. By moving the base frame 11 on the ground, the materials 200 can be transported in batches to the corresponding locations. During the entire transportation process, the materials 200 are supported on the support 30. The materials 200 will not come into contact or collide with each other in the vertical direction, ensuring the safety of the batch transportation of the materials 200.

[0047] In this embodiment, the material transport device vertically sets the support frame on the upper side of the base frame used for ground movement, and arranges multiple support components for supporting materials parallel and spaced apart in the vertical direction on the support frame, so that the materials supported by each support component are spaced apart in the vertical direction, avoiding mutual contact between materials and improving the safety of batch material transport.

[0048] In one embodiment, reference is made to Figures 1 to 7Multiple support frames 20 are provided, and these support frames 20 are arranged parallel to each other and spaced apart on the upper side of the base frame 11 along a first horizontal direction. The support members 30 on adjacent support frames 20 are aligned vertically and form a clearance space 101 spaced apart in the first horizontal direction. The support members 30 on adjacent support frames 20 are used to support the material 200 on opposite sides in the first horizontal direction. In specific implementations, multiple support frames 20 are used, and the specific number of support frames 20 can be designed according to the actual transport quantity requirements of the material 200. All support frames 20 are arranged parallel to each other and spaced apart on the upper side of the base frame 11 along a first horizontal direction, where the first horizontal direction can be any horizontal direction, such as... Figures 3 to 5 As shown, the x-direction represents the first horizontal direction. All support frames 20 are arranged parallel and spaced apart along the x-direction. The distance between two adjacent support frames 20 can be designed according to the actual size of the material 200, and the distance between two adjacent support frames 20 is designed to be greater than the width of the material 200. Multiple support members 30 are arranged parallel and spaced apart along the vertical direction on each support frame 20. The number of support members 30 on two adjacent support frames 20 is equal. The support members 30 on two adjacent support frames 20 are aligned one-to-one in the vertical direction, and the support members 30 on two adjacent support frames 20 are spaced apart in the first horizontal direction to form a clearance space 101. That is, the clearance space 101 is the space area between two adjacent support members 30 in the first horizontal direction. The spacing between the support members 30 on two adjacent support frames 20 is designed according to the size of the material 200, and is actually designed to be less than the width of the material 200 on both sides in the first horizontal direction. The support members on two adjacent support frames 20 are used to support the two sides of the material 200 that are far apart from each other in the first horizontal direction. In practical applications, the two sides of the material 200 that are far apart in the first horizontal direction are supported by the support members 30 on two adjacent support frames 20, while the middle part of the material 200 is suspended in the clearance space 101. The clearance space 101 can provide clearance for the protruding structures on the material 200. Simultaneously, when cooperating with the robot 300 for production, such as... Figure 6 and Figure 7 As shown, the gripper of robot 300 can directly extend into the clearance space 101 to pick up the material 200. The gripper of robot 300 unloads the material 200 supported on the vertical support member 30 one by one from top to bottom, so as to realize the purpose of automated production by robot 300.

[0049] Furthermore, referring to Figure 3 , Figure 4 as well as Figure 9The support member 30 includes a side plate 31 and a support plate 32. The side plate 31 is fixed to the support frame 20, and the support plate 32 is fixed to the side plate 31 and extends toward the clearance space 101 in the first horizontal direction. The material 200 is supported on the support plate 32 and stopped by the side plate 31 on its two mutually distant sides in the first horizontal direction. In specific implementation, the support component 30 includes a side plate 31 and a pallet 32. Both the side plate 31 and the pallet 32 ​​are designed as plate structures. The side plate 31 is fixed to the support frame 20 and mainly serves to connect and block and limit movement. The side of the pallet 32 ​​fixed to the side plate 31 is perpendicular to the side plate 31. The entire pallet 32 ​​extends along the first horizontal direction toward the clearance space 101. The pallet 32 ​​serves as a support for the material 200. In practical applications, the two sides of the material 200 that are far apart in the first horizontal direction are supported by the pallet 32. The pallet 32 ​​can evenly distribute the weight of the material 200. The side plate 31 forms a block on the two sides of the material 200 that are far apart in the first horizontal direction, which can prevent the material 200 from shifting significantly in the first horizontal direction during transportation and ensure that the material 200 remains stable during transportation.

[0050] Furthermore, referring to Figures 8 to 11 The pallet 32 ​​is inclined relative to the second horizontal direction so that one end of the pallet 32 ​​is above and the other end is below. A baffle 321 protrudes from the upper side of the lower end of the pallet 32. The baffle 321 is used to block the material 200 on one side of the second horizontal direction, which is perpendicular to the first horizontal direction. In a specific implementation, the pallet 32 ​​is designed to be inclined relative to the second horizontal direction, such that one end of the pallet 32 ​​is above and the other end is below. Here, the second horizontal direction is a horizontal direction perpendicular to the first horizontal direction, such as... Figure 1 As shown, the second horizontal direction is represented by the y-direction, and the pallet 32 ​​is designed to be inclined relative to the y-direction. The angle of inclination of the pallet 32 ​​relative to the second horizontal direction can be set within the range of 1 to 5°, and the specific angle is not limited. A baffle 321 protrudes from the upper side of the lower end of the pallet 32. The baffle 321 is designed as a plate structure and serves as a limit and stop. The baffle 321 can also be designed as a block structure or other structures with a stopping function. In practical applications, the material 200 is supported on the pallet 32. Because the pallet 32 ​​is designed to be inclined, the center of gravity of the material 200 will be biased towards the lower end of the pallet 32. The horizontal end of the material 200 abuts against the baffle 321. The baffle 321 blocks the material 200, so that the material 200 is supported on the pallet 32 ​​at a certain angle relative to the horizontal plane, which can prevent the material 200 from falling due to inertia during transportation.

[0051] In one embodiment, reference is made to Figures 1 to 5 as well as Figure 13 and Figure 14 The material conveying device 100 further includes an adjusting rod 40, and the main frame 10 further includes a first side frame 12 and a second side frame 13. The first side frame 12 and the second side frame 13 are spaced apart on the upper side of the base frame 11 along the first horizontal direction. The adjusting rod 40 is transversely arranged between the first side frame 12 and the second side frame 13 along the first horizontal direction. The support frame 20 is disposed between the first side frame 12 and the second side frame 13 and is slidably connected to the adjusting rod 40. In specific implementation, the main frame 10 also includes a first side frame 12 and a second side frame 13. The first side frame 12 and the second side frame 13 have the same frame structure. The first side frame 12 and the second side frame 13 are spaced apart on the upper side of the base frame 11 along the first horizontal direction. The first side frame 12 and the second side frame 13 are parallel and spaced apart by a certain distance. The material conveying device 100 also includes an adjusting rod 40. The adjusting rod 40 is a straight long rod structure. The adjusting rod 40 is horizontally arranged between the first side frame 12 and the second side frame 13 along the first horizontal direction and is parallel to the base frame 11. All support frames 20 are positioned between the first side frame 12 and the second side frame 13, and all support frames 20 are slidably connected to the adjusting rod 40. The support frames 20 can slide along the axial direction of the adjusting rod 40. When two adjacent support frames 20 slide towards each other along the axial direction of the adjusting rod 40, or when one slides towards the other, the distance between the support frames 20 is shortened in the first horizontal direction. Conversely, when two adjacent support frames 20 slide away from each other along the axial direction of the adjusting rod 40, or when one slides away from the other, the distance between the support frames 20 is increased in the first horizontal direction. Thus, by sliding the support frames 20 relative to the adjusting rod 40, the distance between multiple support frames 20 can be adjusted, enabling the support member 30 to support materials 200 of various sizes, and facilitating the batch transportation of materials 200 of various sizes.

[0052] Furthermore, referring to Figures 1 to 5 as well as Figure 13 and Figure 14At least one of the adjusting rods 40 is disposed between the bottom end of the first side frame 12 and the bottom end of the second side frame 13, and at least one of the adjusting rods 40 is disposed between the top end of the first side frame 12 and the top end of the second side frame 13. The bottom end of the support frame 20 is slidably connected to the adjusting rod 40 between the bottom end of the first side frame 12 and the bottom end of the second side frame 13, and the top end of the support frame 20 is slidably connected to the adjusting rod 40 between the top end of the first side frame 12 and the top end of the second side frame 13. In specific implementation, multiple adjusting rods 40 are set. At least one adjusting rod 40 is set between the bottom end of the first side frame 12 and the bottom end of the second side frame 13, and at least one adjusting rod 40 is also set between the top end of the first side frame 12 and the top end of the second side frame 13. All support frames 20 are located between the first side frame 12 and the second side frame 13. The bottom end of the support frame 20 is slidably connected to the adjusting rod 40 set between the bottom end of the first side frame 12 and the bottom end of the second side frame 13, while the top end of the support frame 20 is slidably connected to the adjusting rod 40 set between the top end of the first side frame 12 and the top end of the second side frame 13. This allows the bottom and top ends of the support frame 20 to be slidably connected to the support rods of corresponding heights. The support frame 20 has corresponding sliding support points at both low and high positions, making the support frame 20 more stable as a whole.

[0053] Furthermore, referring to Figures 15 to 18 The support frame 20 has a first sleeve 21 connected to its bottom end and a second sleeve 22 connected to its bottom end. The first sleeve 21 is slidably fitted onto the adjusting rod 40 between the bottom end of the first side frame 12 and the bottom end of the second side frame 13. The second sleeve 22 is slidably fitted onto the adjusting rod 40 between the top end of the first side frame 12 and the top end of the second side frame 13. In a specific implementation, the first sleeve 21 is connected to the bottom end of the support frame 20, and the second sleeve 22 is connected to the top end of the support frame 20. The first sleeve 21 and the second sleeve 22 have the same sleeve structure. The inner diameter of both the first sleeve 21 and the second sleeve 22 is slightly larger than the diameter of the adjusting rod 40. The first sleeve 21 is slidably fitted onto the adjusting rod 40 between the bottom end of the first side frame 12 and the bottom end of the second side frame 13, while the second sleeve 22 is slidably fitted onto the adjusting rod 40 between the top end of the first side frame 12 and the top end of the second side frame 13. The first sleeve 21 and the second sleeve 22 can slide along the axial direction of the adjusting rod 40, so that the entire support frame 20 can slide along the axial direction of the adjusting rod 40, thereby realizing the distance adjustment between the support frames 20.

[0054] In one embodiment, reference is made to Figure 17 and Figure 18The material conveying device 100 further includes a positioning pin (not shown in the figure). The adjusting rod 40 has a plurality of positioning holes 401 spaced apart along its own axial direction. The first sleeve 21 and the second sleeve 22 are both provided with through holes 2101. The through holes 2101 coincide with any one of the positioning holes 401 in the radial direction of the adjusting rod 40. The positioning pin passes through the through hole 2101 and is detachably inserted into the positioning hole 401. In a specific implementation, the material conveying device 100 further includes a positioning pin, which is a pin structure with a certain length. The adjusting rod 40 has a plurality of positioning holes 401 spaced apart along its own axial direction. The positioning holes 401 are specifically hole structures on the adjusting rod 40. The positioning pin and the positioning holes 401 on the adjusting rod 40 are designed to be detachably inserted. Both the first sleeve 21 and the second sleeve 22 are provided with through holes 2101. When the first sleeve 21 and the second sleeve 22 are adjusted to a suitable position along the axial direction of the adjusting rod 40, the through holes 2101 on the first sleeve 21 and the second sleeve 22 coincide with the through holes 2101 on the adjusting rod 40. Then, the positioning pin is inserted through the through holes 2101 into the positioning holes 401, so that the positions of the first sleeve 21 and the second sleeve 22 are fixed. After the positions of the first sleeve 21 and the second sleeve 22 are fixed, the support frame 20 cannot move, thus achieving the fixation of the position of the support frame 20. In practical applications, the number of positioning holes 401 on the adjusting rod 40 and the spacing between the positioning holes 401 are designed according to the different sizes of the material 200. The more positioning holes 401 are set, the more adjustment positions of the support frame 20 are available. By reasonably designing the number of adjustment holes and the spacing between the positioning holes 401, the batch transportation of materials 200 of various sizes can be met.

[0055] In one embodiment, reference is made to Figures 1 to 4 as well as Figure 12 , Figure 15 , Figure 16 , Figure 19The material conveying device 100 further includes guide rods 50, which are laterally disposed between the first side frame 12 and the second side frame 13 along the first horizontal direction. At least one guide rod 50 is disposed on the upper side of the base frame 11. The bottom end of the support frame 20 is connected to a first guide groove 23, which is slidably connected to the guide rod 50 disposed on the upper side of the base frame 11. In a specific implementation, the material conveying device 100 further includes guide rods 50, which are straight long rod-shaped structures. The guide rods 50 are laterally disposed between the first side frame 12 and the second side frame 13 along the first horizontal direction. Multiple guide rods 50 can be provided, with at least one guide rod disposed on the upper side of the base frame 11. A first guide groove 23 is connected to the bottom end of the support frame 20. The first guide groove is a "U"-shaped structural component. The first guide groove is slidably connected to the guide rod 50 set on the upper side of the base frame 11. The guide rod 50 and the first guide groove 23 cooperate to provide vertical support and guidance for the support frame 20, so that the movement of the support frame 20 is more stable when the distance is adjusted by the adjusting rod 40.

[0056] Furthermore, referring to Figures 1 to 4 as well as Figure 12 , Figure 15 , Figure 16 , Figure 20 At least one guide rod 50 is positioned above the base frame 11 and spaced apart from it. A second guide groove 24 connects the bottom end and top end of the support frame 20, and the second guide groove 24 is slidably connected to the guide rod 50 positioned above the base frame 11. In a specific implementation, multiple guide rods 50 are provided, with at least one guide rod positioned above the base frame 11 at a certain distance from it, i.e., at least one guide rod 50 is provided at a corresponding height above the base frame 11. A corresponding number of second guide grooves 24 are connected between the bottom end and top end of the support frame 20. The second guide grooves are also U-shaped structures, and they are slidably connected to the guide rods 50 positioned above the base frame 11. The guide rods 50 and the second guide grooves 24 cooperate to provide support and guidance for the support frame 20 in the first horizontal direction, allowing the support frame 20 to move more smoothly when the distance is adjusted by the adjusting rod 40.

[0057] In one embodiment, reference is made to Figure 8The material transport device 100 also includes an identification plate 70, which is mounted on the main frame 10. The identification plate 70 is used to identify information about the material 200. Specifically, the identification plate 70 is mounted on the main frame 10, and various information about the material 200 can be designed on it, such as the quantity, specifications, production number, etc. Through the identification plate 70, various information about the material 200 on the material transport device 100 can be intuitively understood, facilitating production.

[0058] The above description is merely a specific embodiment of this utility model, but the protection scope of this utility model is not limited thereto. Any person skilled in the art can easily conceive of various equivalent modifications or substitutions within the technical scope disclosed in this utility model, and these modifications or substitutions should all be covered within the protection scope of this utility model. Therefore, the protection scope of this utility model should be determined by the scope of the claims.

Claims

1. A material conveying device, characterized in that, include: The main frame, including the base frame for moving on the ground; A support frame is vertically mounted on the base frame; Support members, a plurality of such support members are arranged parallel and spaced apart in a vertical direction on the support frame, the support members being used to support materials, wherein the materials supported by each of the support members are spaced apart from each other in the vertical direction; The support frame is provided in multiple ways. The multiple support frames are arranged parallel to each other and spaced apart on the upper side of the base frame along the first horizontal direction. The supporting members on two adjacent support frames are aligned in the vertical direction and spaced apart in the first horizontal direction to form a clearance space. The supporting members on two adjacent support frames are used to support the material on the two sides that are far apart from each other in the first horizontal direction.

2. The material conveying device according to claim 1, characterized in that, The support includes a side plate and a tray. The side plate is fixed to the support frame, and the tray is fixed to the side plate and extends toward the clearance space in the first horizontal direction. The material is supported on the tray and stopped by the side plate on its two mutually spaced sides in the first horizontal direction.

3. The material conveying device according to claim 2, characterized in that, The pallet is tilted relative to the second horizontal direction so that one end of the pallet is on top and the other end is on the bottom. A baffle is provided on the upper side of the bottom end of the pallet. The baffle is used to block the material on one side of the second horizontal direction, which is perpendicular to the first horizontal direction.

4. The material conveying device according to claim 2, characterized in that, The tray is provided with multiple densely arranged weight-reducing through holes.

5. The material conveying device according to any one of claims 1-4, characterized in that, The material transport device further includes an adjusting rod, and the main frame further includes a first side frame and a second side frame. The first side frame and the second side frame are spaced apart on the upper side of the base frame along the first horizontal direction. The adjusting rod is transversely arranged between the first side frame and the second side frame along the first horizontal direction. The support frame is arranged between the first side frame and the second side frame and is slidably connected to the adjusting rod.

6. The material conveying device according to claim 5, characterized in that, At least one of the adjusting rods is disposed between the bottom end of the first side frame and the bottom end of the second side frame, and at least one of the adjusting rods is disposed between the top end of the first side frame and the top end of the second side frame. The bottom end of the support frame is slidably connected to the adjusting rod between the bottom end of the first side frame and the bottom end of the second side frame, and the top end of the support frame is slidably connected to the adjusting rod between the top end of the first side frame and the top end of the second side frame.

7. The material conveying device according to claim 6, characterized in that, The bottom end of the support frame is connected to a first sleeve, and the top end of the support frame is connected to a second sleeve. The first sleeve is slidably sleeved on the adjusting rod between the bottom end of the first side frame and the bottom end of the second side frame, and the second sleeve is slidably sleeved on the adjusting rod between the top end of the first side frame and the top end of the second side frame.

8. The material conveying device according to claim 7, characterized in that, The material transport device further includes a positioning pin. The adjusting rod is provided with a plurality of positioning holes spaced apart along its own axial direction. The first sleeve and the second sleeve are both provided with through holes. The through holes coincide with any one of the positioning holes in the radial direction of the adjusting rod. The positioning pin passes through the through holes and is detachably inserted into the positioning holes.

9. The material conveying device according to claim 6, characterized in that, The material transport device further includes a guide rod, which is laterally disposed between the first side frame and the second side frame along the first horizontal direction. At least one of the guide rods is disposed on the upper side of the base frame. The bottom end of the support frame is connected to a first guide groove, which is slidably connected to the guide rod disposed on the upper side of the base frame.

10. The material conveying device according to claim 9, characterized in that, At least one of the guide rods is disposed above the base frame and spaced apart from the base frame. A second guide groove is connected between the bottom end and the top end of the support frame. The second guide groove is slidably connected to the guide rod disposed above the base frame.

11. The material conveying device according to any one of claims 1-4, characterized in that, The material transport device also includes an identification plate, which is mounted on the main frame and is used to identify information about the material.