Modularized assembly supporting leg and conveying equipment

The modular assembly leg design enables flexible adjustment of the height and angle of the conveying equipment, solves the uncertainty problem caused by on-site cutting and production, improves installation efficiency and equipment stability, and reduces costs.

CN223480068UActive Publication Date: 2025-10-28JIANGSU GUOLIANG STORAGE ENG CO LTD
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Patent Information

Application Number
CN202423095676.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-16
Publication Date
2025-10-28
Estimated Expiration
2034-12-16

AI Technical Summary

Technical Problem

The leg components of existing conveying equipment need to be cut and manufactured on-site, which is time-consuming and labor-intensive, and cannot meet the requirements of accurate layout, resulting in unstable equipment operation and impact on production capacity.

Method used

The modular assembly legs include fixed columns, height adjustment columns, lateral adjustment components and angle adjustment plates. Flexible height and angle adjustments can be achieved through screw connections to meet different installation requirements.

Benefits of technology

It improves installation efficiency and accuracy, reduces uncertainty in on-site production, reduces material costs, and ensures stable equipment operation and production capacity that meets process requirements.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of food machinery, in particular to a modularization assembly supporting leg and conveying equipment, the modularization assembly supporting leg comprises two fixing stand columns, two height adjusting columns, a transverse adjusting assembly and an angle adjusting plate, the influence brought by different angles, different heights and different models in the field installation process of the conveying equipment is solved, and the conveying efficiency is improved. The uncertainty caused by on-site manufacturing is reduced, the material cost is saved, the installation efficiency is improved, the accuracy and reliability of on-site installation are improved, and the technical problems that in the prior art, a supporting leg assembly needs to be cut and manufactured on site, time and labor are wasted, and the requirement for accurate layout of conveying equipment cannot be met are solved.
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Description

Technical Field

[0001] This utility model relates to the field of food machinery technology, specifically a modular assembly support leg and conveying device. Background Technology

[0002] With the increasing automation of ports, various grain processing enterprises, and grain logistics transfer centers, the use of conveying equipment is becoming more and more widespread. Current market trends show a growing demand for safe, reliable, environmentally friendly, and stable operation of conveying equipment. For raw grain or feed conveying, continuous and stable operation is particularly important. Often, inaccurate angles and heights of conveying equipment cause numerous problems. When the heights of the various outriggers are inconsistent, it can easily cause vibrations during operation, leading to abnormal noises. Over time, loose fasteners can cause leaks, requiring shutdowns for maintenance and impacting production. Similarly, inconsistent outrigger angles can also cause leaks. Furthermore, when the outrigger angles do not match process requirements, the conveying capacity is affected. A difference between the planned and actual capacity will impact the quality of products produced in subsequent processes and affect the percentage weight of various materials. Therefore, the development of modular outrigger assemblies for equipment has emerged.

[0003] The industry standard for outrigger fabrication involves on-site workers cutting channel steel or angle steel profiles based on the actual layout of the conveyor equipment. This supports the conveyor equipment to meet the different height, angle, and model requirements of the process layout. While these methods can support the conveyor equipment to a certain extent, they cannot meet the goal of accurately positioning the conveyor equipment. Utility Model Content

[0004] To address the technical problems of existing outrigger assemblies requiring on-site cutting and fabrication, which are time-consuming and labor-intensive, and cannot meet the requirements for accurate layout of conveying equipment, this application proposes a modular assembly method for outriggers and conveying equipment, thus solving the aforementioned technical problems.

[0005] The technical solution adopted by this utility model to solve its technical problem is:

[0006] This utility model provides a modular assembly support leg, comprising: two fixed columns, the bottom ends of which are fixedly connected to the ground, the fixed columns being vertically arranged and having multiple first connecting holes along the vertical direction; two height-adjustable columns, the height-adjustable columns being vertically arranged on corresponding fixed columns and having multiple first mating holes along the vertical direction, the first mating holes at the same position on the height-adjustable columns being screwed to the first connecting holes at different heights on the fixed columns to adjust the height of the height-adjustable columns relative to the fixed columns; and a lateral adjustment assembly, comprising a horizontally arranged lateral stiffener and two lateral adjustment plates, the first end of the lateral stiffener having a second connecting hole and being screwed to the corresponding first mating hole on the height-adjustable column through the second connecting hole, and the second end to the middle section of the lateral stiffener having multiple third connecting holes along the horizontal direction. A second docking hole is formed on the first end of the lateral adjustment plate near the height adjustment column, and the second docking hole is screwed to the corresponding first docking hole on the height adjustment column. A plurality of third docking holes are formed on the second end and the section body of the lateral adjustment plate along the horizontal direction. The lateral stiffener and the lateral adjustment plate are connected by screwing different numbers of the third connecting holes and the third docking holes to adjust the distance between the two height adjustment columns after connection. An angle adjustment plate is formed with a clamping plate for clamping the equipment. A plurality of fourth connecting holes are formed on the angle adjustment plate in a ring arrangement. Correspondingly, a plurality of fourth docking holes are formed on the end of the height adjustment column away from the ground. The angle adjustment plate is screwed to the fourth docking holes in the same position on the height adjustment column through the fourth connecting holes in different positions to adjust the tilt angle of the clamping plate on the angle adjustment plate.

[0007] Furthermore, a fixed base plate is provided at the bottom end of the fixed column.

[0008] Furthermore, the first mating hole and the first mating hole are fitted together by a circular hole and an elongated hole.

[0009] Furthermore, the fixed column includes a first connecting surface located in the middle and a second connecting surface formed by folding the two sides of the first connecting surface. The first connecting hole on the first connecting surface is a circular hole, and the first connecting hole on the second connecting surface is a vertical elongated hole. Correspondingly, the height adjusting column includes a first mating surface located in the middle and a second mating surface formed by folding the two sides of the first mating surface. The first mating hole on the first mating surface is a vertical elongated hole, and the first mating hole on the second mating surface is a circular hole.

[0010] Furthermore, the second connecting hole of the transverse stiffener and the second mating hole of the transverse adjusting plate are both vertical elongated holes.

[0011] Furthermore, the third connecting hole of the transverse stiffener is a horizontal elongated hole, and the third mating hole of the transverse adjusting plate is a circular hole.

[0012] Furthermore, the fourth connecting hole of the angle adjustment plate is an arc-shaped hole, and the fourth docking hole of the height adjustment column is a circular hole.

[0013] Furthermore, the clamp on the angle adjustment plate is a horizontal clamp, and the angle adjustment plate includes a connecting part at the bottom and an abutting part formed by two folds at the top. The horizontal clamp is screwed to the connecting part of the angle adjustment plate.

[0014] Furthermore, the clamping plate on the angle adjustment plate is a vertical clamping plate, and the angle adjustment plate includes two symmetrically arranged vertical members. After being bent once, the vertical members form a connecting piece that is screwed to the height adjustment column and a clamping piece for holding the equipment.

[0015] This utility model also provides a conveying device, including the aforementioned modular assembly legs.

[0016] Based on the above technical solution, the technical effects that this utility model can achieve are as follows:

[0017] This utility model's modular assembly support leg features a first mating hole at the same position on the height adjustment column, which is screwed to a first connecting hole at different heights on the fixed column to adjust the height of the height adjustment column relative to the fixed column. The transverse stiffener and the transverse adjustment plate are connected by screwed third connecting holes and third mating holes of varying numbers to adjust the distance between the two connected height adjustment columns. The angle adjustment plate is screwed to a fourth connecting hole at different positions on the same position on the height adjustment column to adjust the tilt angle of the clamping plate on the angle adjustment plate. This allows for the fulfillment of all angle and height requirements for on-site installation of the conveying equipment. Specifically, when the conveying equipment requires horizontal installation, the angle adjustment plate of the required modular assembly support leg is adjusted to a horizontal angle, and the height adjustment column of the required modular assembly support leg is adjusted to match the process layout requirements, ensuring the conveying equipment is fully installed. To meet on-site requirements; when the conveyor equipment requires tilting installation, the angle adjustment plate of the required modular assembly legs is adjusted to the required tilt angle. According to the process layout requirements, the height of the adjustment column of the required modular assembly legs is adjusted to different heights according to the equipment sample drawing, so that the on-site requirements are met after the conveyor equipment is installed; when multiple conveyor equipment appear on the same project site, the lateral adjustment components of the modular assembly legs can be replaced or adjusted to meet the leg installation requirements of different conveyor equipment. This solves the problem of different angles, heights and models of conveyor equipment during on-site installation, reduces the uncertainty caused by on-site fabrication, saves material costs, improves installation efficiency, and enhances the accuracy and reliability of on-site installation. It also solves the technical problems of existing technologies where leg components need to be cut and fabricated on-site, which is time-consuming and labor-intensive, and cannot meet the accurate layout of the conveyor equipment. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of the overall structure of the modular assembly support leg of this utility model, including a horizontal clamping plate.

[0019] Figure 2 This is a schematic diagram of the overall structure of the modular assembly support leg of this utility model, including a vertical clamping plate.

[0020] Figure 3 This is a schematic diagram of the overall structure of the conveying equipment of this utility model.

[0021] In this utility model: 1-fixed column, 11-first connecting hole, 12-fixed base plate, 13-first connecting surface, 14-second connecting surface;

[0022] 2-Height adjustment column, 21-First mating hole, 22-Fourth mating hole, 23-First mating surface, 24-Second mating surface;

[0023] 3- Lateral adjustment assembly, 31- Lateral stiffener, 311- Second connecting hole, 312- Third connecting hole, 32- Lateral adjustment plate, 321- Second mating hole, 322- Third mating hole;

[0024] 4-Angle adjustment plate, 41-Clamping plate, 42-Fourth connecting hole, 43-Connecting part, 44-Abutting part, 45-Vertical piece, 451-Connecting piece, 452-Clamping piece. Detailed Implementation

[0025] 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, and not all embodiments. The following description of at least one exemplary embodiment is merely illustrative and is in no way intended to limit the present utility model or its application or use. All other embodiments obtained by those skilled in the art based on the embodiments of the present utility model without creative effort are within the scope of protection of the present utility model.

[0026] like Figure 1-3As shown, this utility model provides a modular assembly support leg, including two fixed columns 1, two height-adjustable columns 2, a lateral adjustment assembly 3, and an angle adjustment plate 4. The bottom end of the fixed column 1 is fixedly connected to the ground. The fixed column 1 is vertically arranged and has multiple first connecting holes 11 along the vertical direction. The height-adjustable column 2 is vertically arranged on the corresponding fixed column 1 and has multiple first mating holes 21 along the vertical direction. The first mating holes 21 at the same position on the height-adjustable column 2 are screwed to the first connecting holes 11 at different heights on the fixed column 1 to adjust the height of the height-adjustable column 2 relative to the fixed column 1. The lateral adjustment assembly 3 includes a horizontally arranged lateral stiffener 31 and two lateral adjustment plates 32. The first end of the lateral stiffener 31 has a second connecting hole 311 and is screwed to the corresponding first mating hole 21 on the height-adjustable column 2. The second end to the middle section of the lateral stiffener 31 has multiple third... The horizontal adjustment plate 32 has a second docking hole 321 on its first end near the height adjustment column 2, and is screwed to the corresponding first docking hole 21 on the height adjustment column 2 through the second docking hole 321. The second end and the section of the horizontal adjustment plate 32 have multiple third docking holes 322 along the horizontal direction. The horizontal stiffener 31 and the horizontal adjustment plate 32 are screwed together with different numbers of third connecting holes 312 and third docking holes 322 to adjust the distance between the two height adjustment columns 2 after connection. The angle adjustment plate 4 has a clamping plate 41 for clamping the equipment. The angle adjustment plate 4 has multiple fourth connecting holes 42 arranged in a ring. Correspondingly, the end of the height adjustment column 2 away from the ground has multiple fourth docking holes 22 arranged in a ring. The angle adjustment plate 4 is screwed to the fourth docking holes 22 at the same position on the height adjustment column 2 through the fourth connecting holes 42 at different positions to adjust the tilt angle of the clamping plate 41 on the angle adjustment plate 4.

[0027] In one specific embodiment of this utility model, a fixing base plate 12 is provided at the bottom end of the fixing column 1.

[0028] In one specific embodiment of this utility model, the first mating hole 21 is fitted with a circular hole and an elongated hole to achieve fine adjustment of the distance between them.

[0029] In a specific embodiment of this utility model, the fixed column 1 includes a first connecting surface 13 located in the middle and a second connecting surface 14 formed by folding the two sides of the first connecting surface 13. The first connecting hole 11 on the first connecting surface 13 is a circular hole, and the first connecting hole 11 on the second connecting surface 14 is a vertical elongated hole. Correspondingly, the height adjusting column 2 includes a first mating surface 23 located in the middle and a second mating surface 24 formed by folding the two sides of the first mating surface 23. The first mating hole 21 on the first mating surface 23 is a vertical elongated hole, and the first mating hole 21 on the second mating surface 24 is a circular hole, so as to realize the fine adjustment of the fixed column 1 and the height adjusting column 2.

[0030] In a specific embodiment of this utility model, the second connecting hole 311 of the transverse stiffener 31 and the second mating hole 321 of the transverse adjusting plate 32 are both vertical elongated holes to achieve fine-tuning between the transverse stiffener 31 and the height adjusting column 2, and between the transverse adjusting plate 32 and the height adjusting column 2. Furthermore, when the transverse adjusting plate 32, the height adjusting column 2 and the fixed column 1 are screwed together, there is only one round hole, which facilitates on-site operation and distance fine-tuning. When the transverse stiffener 31, the height adjusting column 2 and the fixed column 1 are screwed together, there is also only one round hole, which facilitates on-site operation and distance fine-tuning.

[0031] Furthermore, the third connecting hole 312 of the transverse stiffener 31 is a horizontal elongated hole, and the third mating hole 322 of the transverse adjusting plate 32 is a circular hole, which facilitates on-site operation and fine-tuning of distance.

[0032] Furthermore, the fourth connecting hole 42 of the angle adjustment plate 4 is an arc-shaped hole, and the fourth docking hole 22 of the height adjustment column 2 is a circular hole, which facilitates on-site operation and angle fine adjustment.

[0033] In a specific embodiment of this utility model, the clamping plate 41 on the angle adjustment plate 4 is a horizontal clamping plate 41. The angle adjustment plate 4 includes a connecting part 43 at the bottom and an abutting part 44 formed after being folded twice at the top. The horizontal clamping plate 41 is screwed to the connecting part 43 of the angle adjustment plate 4.

[0034] In a specific embodiment of this utility model, the clamping plate 41 on the angle adjustment plate 4 is a vertical clamping plate 41. The angle adjustment plate 4 includes two symmetrically arranged vertical members 45. After being bent once, the vertical members 45 form a connecting piece 451 that is screwed to the height adjustment column 2 and a clamping piece 452 for clamping the equipment.

[0035] The present invention also provides a conveying device, including the above-mentioned modular assembly support legs, with horizontal clamping plates 41 clamping on the bottom plate of the conveying device, and abutting parts 44 abutting against the outer wall of the conveying device, so as to improve the overall stability, and vertical clamping plates 41 clamping on the flange edge of the conveying device.

[0036] This utility model relates to a modular assembly support leg for use with a conveying device, which features low cost, simple structure, convenient manufacturing and installation, good performance, and long service life.

[0037] Compared to the traditional method of cutting channel steel or angle steel profiles on-site, the modular assembly outrigger of this utility model achieves the goal of meeting process requirements during the installation of the conveying equipment and maintaining equipment stability during material transport by adding modular assembly outriggers to the conveying equipment. The structural components of this modular assembly outrigger are assembled from different folded plate parts. Folding the flat plate can increase the functionality and strength of the outrigger. The different functional folded plates are connected by fasteners to form a modular assembly outrigger. The structure is simple, the performance is good, and it has great promotion and application value and market prospects.

[0038] Specifically:

[0039] I. The modular assembly outrigger of this utility model changes the traditional outrigger manufacturing method. The traditional method is to cut profiles such as channel steel or angle steel on site. The modular assembly outrigger of this utility model can avoid the inconsistency in the height of the manufactured outriggers, which will lead to errors in the layout of the conveying equipment and affect normal production activities.

[0040] Second, the components of this utility model adopt a folded plate structure, which can be prefabricated to ensure the strength of the outriggers after assembly. In addition, the outrigger components can be made from scrap materials, which can improve the utilization rate of the plates and reduce costs.

[0041] 3. When the conveying equipment needs to be installed horizontally, adjust the required angle adjustment plate 4 to a horizontal angle, and adjust the height of the required support legs to be consistent with the process layout requirements, so as to meet the site requirements after the conveying equipment is installed.

[0042] 4. When the conveying equipment requires an inclined angle installation, adjust the required angle adjustment plate 4 to the required inclined angle, and adjust the required support leg height according to the equipment sample drawing according to the process layout requirements, so that the installation of the conveying equipment meets the site requirements.

[0043] V. When multiple conveying equipment are present at the same project site, the support leg installation requirements of different conveying equipment can be met by replacing or adjusting the transverse stiffener 31.

[0044] VI. Modular assembly outriggers are easy to install and use, protect human and machine safety, and have the characteristics of low cost, simple structure, good performance and long service life;

[0045] 7. Unlike the one-time installation of on-site fabricated outriggers, modular assembly outriggers can be adjusted, installed, and reused multiple times, helping users reduce procurement costs and increase product value.

[0046] It should be understood that the specific embodiments described above are only for explaining the present invention and are not intended to limit the present invention. Obvious variations or modifications derived from the spirit of the present invention are still within the protection scope of the present invention.

Claims

1. A modular assembly support leg, characterized in that, include: Two fixed columns (1) are fixedly connected to the ground at their bottom ends. The fixed columns (1) are vertically arranged and have multiple first connection holes (11) along the vertical direction. Two height adjustment columns (2) are vertically arranged on the corresponding fixed column (1) and have a plurality of first docking holes (21) along the vertical direction. The first docking holes (21) at the same position on the height adjustment column (2) are screwed to the first connecting holes (11) at different heights on the fixed column (1) to adjust the height of the height adjustment column (2) relative to the fixed column (1). The lateral adjustment assembly (3) includes a horizontally arranged lateral stiffener (31) and two lateral adjustment plates (32). The first end of the lateral stiffener (31) has a second connecting hole (311) and is screwed to the corresponding first mating hole (21) on the height adjustment column (2) through the second connecting hole (311). The second end to the middle section of the lateral stiffener (31) has a plurality of third connecting holes (312) along the horizontal direction. The lateral adjustment plates (32) are located near the first end of the height adjustment column (2). A second docking hole (321) is opened and screwed to the corresponding first docking hole (21) on the height adjustment column (2) through the second docking hole (321). A plurality of third docking holes (322) are opened along the horizontal direction on the second end and the section body of the transverse adjustment plate (32). The transverse stiffener (31) and the transverse adjustment plate (32) are connected by screwing different numbers of the third connecting holes (312) and the third docking holes (322) to adjust the distance between the two height adjustment columns (2) after connection. An angle adjustment plate (4) is provided, on which a clamping plate (41) for holding the equipment is formed. The angle adjustment plate (4) is provided with a plurality of fourth connecting holes (42) arranged in a ring. Correspondingly, the end of the height adjustment column (2) away from the ground is provided with a plurality of fourth docking holes (22) arranged in a ring. The angle adjustment plate (4) is screwed to the fourth docking holes (22) at the same position on the height adjustment column (2) through the fourth connecting holes (42) at different positions, so as to adjust the tilt angle of the clamping plate (41) on the angle adjustment plate (4).

2. The modular assembly leg according to claim 1, characterized in that, The bottom end of the fixed column (1) is provided with a fixed base plate (12).

3. The modular assembly leg according to claim 1, characterized in that, The first mating hole (21) is fitted with a circular hole and an elongated hole.

4. The modular assembly leg according to claim 1, characterized in that, The fixed column (1) includes a first connecting surface (13) located in the middle and a second connecting surface (14) formed by folding the two sides of the first connecting surface (13). The first connecting hole (11) on the first connecting surface (13) is a circular hole, and the first connecting hole (11) on the second connecting surface (14) is a vertical elongated hole. Correspondingly, the height adjusting column (2) includes a first mating surface (23) located in the middle and a second mating surface (24) formed by folding the two sides of the first mating surface (23). The first mating hole (21) on the first mating surface (23) is a vertical elongated hole, and the first mating hole (21) on the second mating surface (24) is a circular hole.

5. The modular assembly leg according to claim 4, characterized in that, The second connecting hole (311) of the transverse stiffener (31) and the second docking hole (321) of the transverse adjusting plate (32) are both vertical elongated holes.

6. The modular assembly leg according to claim 1, characterized in that, The third connecting hole (312) of the transverse stiffener (31) is a horizontal elongated hole, and the third docking hole (322) of the transverse adjusting plate (32) is a circular hole.

7. The modular assembly leg according to claim 1, characterized in that, The fourth connecting hole (42) of the angle adjustment plate (4) is an arc-shaped hole, and the fourth docking hole (22) of the height adjustment column (2) is a circular hole.

8. The modular assembly leg according to claim 1, characterized in that, The clamp (41) on the angle adjustment plate (4) is a horizontal clamp (41). The angle adjustment plate (4) includes a connecting part (43) at the bottom and an abutting part (44) formed after two folds at the top. The horizontal clamp (41) is screwed to the connecting part (43) of the angle adjustment plate (4).

9. The modular assembly leg according to claim 1, characterized in that, The clamping plate (41) on the angle adjustment plate (4) is a vertical clamping plate (41). The angle adjustment plate (4) includes two symmetrically arranged vertical members (45). After being bent once, the vertical members (45) form a connecting piece (451) that is screwed to the height adjustment column (2) and a clamping piece (452) for clamping the equipment.

10. A conveying device, characterized in that, Includes the modular assembly legs as described in any one of claims 1-9.