Splice feeding trough

By designing a modular feeding trough with separate core plate and sealing plate, and the support frame connected by sleeves and rods, the problems of difficult transportation, large space occupation, and resource waste of traditional feeding troughs are solved, achieving convenient transportation and flexible use.

CN224583957UActive Publication Date: 2026-08-04ZHENGXIANGBAIQI XINSHENG ENERGY-SAVING BOILER AGRICULTURAL & ANIMAL HUSBANDRY MACHINERY MANUFACTURING CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHENGXIANGBAIQI XINSHENG ENERGY-SAVING BOILER AGRICULTURAL & ANIMAL HUSBANDRY MACHINERY MANUFACTURING CO LTD
Filing Date
2025-08-29
Publication Date
2026-08-04

AI Technical Summary

Technical Problem

Traditional integrated feeding troughs suffer from problems such as difficulty in transportation and handling, large space occupation, and the need to replace the entire unit when partially damaged, resulting in inefficient transportation, high costs, and waste of resources.

Method used

The design features a modular feeding trough with separate core and sealing plates. The support frame is connected by end sleeves and splicing rods to form a detachable assembly structure, reducing labor intensity during handling, saving transportation and storage space, and supporting partial replacement of parts.

Benefits of technology

It enables convenient transportation and storage, reduces manual labor intensity, reduces transportation costs, avoids resource waste, and improves the flexibility and efficiency of equipment use.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224583957U_ABST
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Abstract

The utility model discloses a spliced feeding trough, it includes groove core board, support, support, plugging board, the top of support is fixed with two parallelly arranged supports, two vertical plugging boards are fixedly connected between the inner side of two supports, and the plugging board is perpendicularly arranged with the support, is equipped with the support device between two plugging boards, and the both ends of support device are fixedly connected with two supports respectively, the top of support device is equipped with groove core board, and the top of groove core board is equipped with the slot, and the both sides of groove core board are open, and the side cross section of groove core board is concave arc surface, and the both side groove wall of groove core board is detachably connected with the support on both sides respectively, and the both ends of groove core board are detachably connected with two plugging boards respectively, and the groove core board and two plugging boards constitute the feeding area.
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Description

Technical Field

[0001] This utility model relates to the field of feeding trough technology, specifically to a modular feeding trough. Background Technology

[0002] In the livestock farming industry, feeding troughs are fundamental equipment for holding feed and ensuring that cattle, sheep, and other livestock can eat normally. Their design rationality directly affects farming efficiency and cost control. Traditional feeding troughs, which use integral casting or one-piece molding processes, can meet basic holding functions, but in practical applications, they have gradually revealed many problems that are out of touch with the needs of modern farming.

[0003] The existing technical problems are as follows: 1. Due to structural limitations, integral feeding troughs are often large and heavy, directly leading to difficulties in transportation: small agricultural trucks have limited loading space and cannot accommodate the entire trough; if large freight vehicles are used, the transport capacity per trip is greatly reduced due to the fixed volume of the trough, resulting in high unit transportation costs. 2. Because the trough lacks a reasonable stress point and its weight is concentrated, a single move requires at least 2-6 adult laborers to work together. Slight carelessness may cause sprains or even damage to the trough. 3. Idle integral feeding troughs occupy a lot of space, especially after slaughter in winter. When multiple troughs are stacked, they are not only prone to deformation due to compression, but also encroach on feed storage or livestock activity space. 4. Once an integral feeding trough is partially damaged, the entire trough needs to be replaced, resulting in resource waste and increased operating costs.

[0004] These problems caused by the monolithic structure, such as inefficient transportation, difficult handling, and inconvenient storage, have long been pain points that restrict the cost reduction and efficiency improvement of the breeding industry. Especially under the trend of large-scale breeding, the demand for flexible and convenient feeding equipment is becoming more and more urgent. Utility Model Content

[0005] The purpose of this invention is to provide a modular feeding trough.

[0006] This utility model is implemented by the following technical solution: a spliced ​​feeding trough, which includes a support, a bracket, a sealing plate, a support device, and a trough core plate; Two parallel brackets are fixed to the top of the support. Two vertically arranged sealing plates are fixedly connected between the inner sides of the two brackets, and the sealing plates are arranged perpendicular to the brackets; A support device is provided between the two sealing plates, and the two ends of the support device are respectively fixedly connected to the two brackets; The top of the support device is equipped with a groove core plate, the top of the groove core plate is provided with a groove, the two sides of the groove core plate are open, the side cross section of the groove core plate is a concave arc surface, the two side groove walls of the groove core plate are detachably connected to the two side brackets respectively, and the two ends of the groove core plate are detachably connected to the two sealing plates respectively. The core plate and the two sealing plates constitute the feeding area.

[0007] Furthermore, the bracket and the core plate are connected by bolts.

[0008] Furthermore, the sealing plate and the core plate are connected by structural adhesive.

[0009] Furthermore, the bracket includes two end sleeves and a splicing rod, with the splicing rod connected between the two end sleeves, and the end of the splicing rod being fixedly connected to the end sleeve by a first positioning bolt; The splicing rod includes multiple connecting rods, with an intermediate sleeve connecting two adjacent connecting rods. The intermediate sleeve is fixedly connected to the connecting rod by a second positioning bolt.

[0010] Furthermore, the sealing plate is fixed between the inner sides of the end sleeves of the two brackets that are disposed opposite each other. Furthermore, the support includes a plurality of the support frames; Support frames are fixed between the bottom ends of the two end sleeves that are arranged opposite each other and between the bottom ends of the two middle sleeves that are arranged opposite each other.

[0011] Furthermore, the support device includes several parallel support belts, and the support belts are respectively fixed between the bottom ends of the end sleeves of the two brackets, between the bottom ends of the intermediate sleeves, and between the bottom ends of the connecting rods.

[0012] Furthermore, one of the sealing plates has a water inlet on its surface.

[0013] The advantages of this utility model are as follows: the core plate and the sealing plate are set separately, the bracket is composed of end sleeves and splicing rods, the end sleeves between two brackets are connected to the support frame, support belt and sealing plate to form the first component, the middle sleeves between two brackets are connected to the support frame and support belt to form the second component, the connecting rods between two brackets are connected to the support belt to form the third component, and the core plate is the fourth component. Through the splicing of the second component, the two first components, the third component and the fourth component, the integral structure is changed to the assembled structure, which reduces the labor intensity of manual handling, facilitates disassembly and transportation, does not occupy the loading space of the vehicle, does not occupy the storage space, and allows for partial replacement of parts. Attached Figure Description

[0014] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0015] Figure 1 This is a schematic diagram of the structure of Example 1; Figure 2 This is a schematic diagram of the combined structure of the support, support frame, bracket, sealing plate and support device in Example 1; Figure 3 This is a schematic diagram of the structure of the first component in Example 2; Figure 4 This is a schematic diagram of the structure of the second component in Example 2; Figure 5 This is a schematic diagram of the structure of the third component in Example 2; Figure 6 This is a schematic diagram of the structure of the fourth component in Example 2; Detailed Implementation 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. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0016] Example 1: like Figure 1 The aforementioned modular feeding trough includes a support 1, a bracket 2, a sealing plate 3, a supporting device 4, and a core plate 5. Two parallel brackets 2 are fixed at the top of the support 1. The function of the support 1 is to ensure the stability of the device and to meet the feeding height requirements for cattle / sheep.

[0017] Two vertically arranged sealing plates 3 are fixedly connected between the inner sides of the two brackets 2, and the sealing plates 3 are arranged perpendicular to the brackets 2.

[0018] A support device 4 is provided between the two sealing plates 3. The two ends of the support device 4 are fixedly connected to the two brackets 2 respectively. The function of the support device 4 is to ensure the stability of the core plate 5 during use.

[0019] The top of the support device 4 is equipped with a grooved core plate 5. The top of the grooved core plate 5 has a groove 5.1, and the two sides of the grooved core plate 5 are open 5.2. The side cross-section of the grooved core plate 5 is a concave arc surface. The two side walls of the grooved core plate 5 are detachably connected to the two side supports 2 respectively. The supports 2 are connected to the grooved core plate 5 by bolts 6. The function of the supports 2 is to shape the grooved core plate 5. The grooved core plate 5 is made of belt or bent steel plate. The two ends of the grooved core plate 5 are detachably connected to two sealing plates 3 respectively. The sealing plates 3 are connected to the grooved core plate 5 by structural adhesive. The structural adhesive has a waterproof function. It can be easily disassembled by cutting it with a knife.

[0020] The core plate 5 and the two sealing plates 3 constitute the feeding area 7.

[0021] The bracket 2 includes two end sleeves 2.1 and a splicing rod 2.2. The splicing rod 2.2 is connected between the two end sleeves 2.1. The end of the splicing rod 2.2 is fixedly connected to the end sleeve 2.1 by a first positioning bolt 8. The splicing rod 2.2 and the end sleeve 2.1 are provided with positioning holes, and the first positioning bolt 8 is connected between the two positioning holes.

[0022] The splicing rod 2.2 includes multiple connecting rods 2.2.1. An intermediate sleeve 2.2.2 is connected between two adjacent connecting rods 2.2.1. The intermediate sleeve 2.2.2 and the connecting rod 2.2.1 are fixedly connected by a second positioning bolt 9. Specifically, the intermediate sleeve 2.2.2 and the connecting rod 2.2.1 are respectively provided with positioning holes, and are connected between two positioning holes by the second positioning bolt 9.

[0023] Specifically, a sealing plate 3 is fixed between the inner sides of the end sleeves 2.1 of the two opposing brackets 2. The sealing plate 3 and the end sleeves 2.1 on both sides are an integral structure, which is convenient for storage and prevents the sealing plate 3 from being lost. The core plate 5 and the sealing plate 3 are set separately. The bracket 2 is formed by the end sleeve 2.1 and the splicing rod 2.2. The integral structure is changed to the assembly structure, which reduces the labor intensity of manual handling, facilitates disassembly and transportation, does not occupy the vehicle's loading space, does not occupy storage space, and allows for partial replacement of parts.

[0024] Specific implementation process: Assemble the support 1, bracket 2, and support device 4. Place the core plate 5 on the support device 4. Then fix the two sides of the core plate 5 to the bracket 2 with bolts 6. Fix the two ends of the core plate 5 to the sealing plate 3 so that a feeding area 7 is formed between the core plate 5 and the two sealing plates 3. When disassembling and transporting, the core plate 5 is removed, and then the bracket 2 is removed for handling and transportation.

[0025] Example 2: like Figure 2-6As shown, Embodiment 2 adds the following technical content based on Embodiment 1: The support 1 includes multiple support frames 1.1. Support frames 1.1 are fixed between the bottom ends of the end sleeves 2.1 of the two supports 2 and between the bottom ends of the middle sleeves 2.2.2 of the two supports 2 respectively. The purpose of setting multiple support frames 1.1 is to make the two end sleeves 2.1 and the two middle sleeves 2.2.2 form independent components, which facilitates splicing and assembly.

[0026] The support device 4 includes several parallel support belts 4.1. Support belts 4.1 are fixed between the bottom ends of the end sleeves 2.1 of the two supports 2, between the bottom ends of the middle sleeves 2.2.2, and between the bottom ends of the connecting rods 2.2.1. The purpose of using support belts 4.1 is to reduce the weight of the support device 4. The support belts 4.1 support the core plate 5, thus ensuring the stability of the core plate 5.

[0027] One of the sealing plates 3 has a water inlet 10 on its surface, and the water inlet 10 is connected to a water inlet pipe. This device can be used in a water tank.

[0028] The specific operation process of this embodiment is as follows: During assembly, the first component 11 is formed by connecting the support frame 1.1, the support belt 4.1, and the sealing plate 3 between the end sleeves 2.1 that are opposite each other between the two supports 2; the second component 12 is formed by connecting the support frame 1.1 and the support belt 4.1 between the middle sleeves 2.2.2 that are opposite each other between the two supports 2; the third component 13 is formed by connecting the support belt 4.1 between the connecting rods 2.2.1 that are opposite each other between the two supports 2; and the core plate 5 is the fourth component 14. Water or fodder is added to the feeding area 7 for cattle / sheep to eat through the interlocking of the first component 11, the second component 12, the third component 13, and the fourth component 14. During disassembly, the second component 12, the two first components 11, the third component 13, and the fourth component 14 are disassembled into independent components, which can then be transported or stored.

[0029] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A modular feeding trough, characterised in that, It includes supports, brackets, sealing plates, support devices, and channel core plates; Two parallel brackets are fixed to the top of the support; Two vertically arranged sealing plates are fixedly connected between the inner sides of the two brackets, and the sealing plates are arranged perpendicularly to the brackets; The support device is provided between the two sealing plates, and the two ends of the support device are respectively fixedly connected to the two brackets; The top of the support device is equipped with the groove core plate, the top of the groove core plate is provided with a groove, the two sides of the groove core plate are open, the side cross section of the groove core plate is a concave arc surface, the two side groove walls of the groove core plate are detachably connected to the two side brackets respectively, and the two ends of the groove core plate are detachably connected to the two sealing plates respectively. The core plate and the two sealing plates constitute the feeding area.

2. The modular feeding trough of claim 1, wherein, The bracket and the core plate are connected by bolts.

3. The split feeding trough of claim 2, wherein, The sealing plate and the core plate are connected by structural adhesive.

4. The split feeding trough of claim 3, wherein, The bracket includes two end sleeves and a splicing rod. The splicing rod is connected between the two end sleeves, and the end of the splicing rod is fixedly connected to the end sleeve by a first positioning bolt. The splicing rod includes multiple connecting rods, with an intermediate sleeve connecting two adjacent connecting rods. The intermediate sleeve is fixedly connected to the connecting rod by a second positioning bolt.

5. The modular feeding trough of claim 4, wherein, The sealing plate is fixed between the inner sides of the end sleeves of the two brackets that are arranged opposite each other.

6. The modular feeding trough of claim 5, wherein, The support includes multiple support frames; Support frames are fixed between the bottom ends of the two end sleeves that are arranged opposite each other and between the bottom ends of the two middle sleeves that are arranged opposite each other.

7. The modular feeding trough of claim 6, wherein, The support device includes several parallel support belts, and the support belts are respectively fixed between the bottom ends of the end sleeves of the two brackets, between the bottom ends of the intermediate sleeves, and between the bottom ends of the connecting rods.

8. The modular feeding trough according to claim 7, characterized in that, One of the sealing plates has a water inlet on its surface.