Copper bar discharging frame assembly
By using a movable lifting rod and inclined support plate in the copper rod feeding rack, the existing loading rack has solved the problem of baffle damage caused by the large number of copper rods, and achieved extended service life and improved economicality.
Patent Information
- Application Number
- CN202421793655.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-26
- Publication Date
- 2025-07-18
- Estimated Expiration
- 2034-07-26
AI Technical Summary
When the existing copper rod loading racks have a large number of copper rods, the pressure on the baffle is too high, resulting in the connection part between the oil cylinder and the telescopic rod being easily damaged, affecting the service life.
A copper rod feeding rack assembly is designed, including a plurality of uniformly distributed frame bodies and pushing components. Each pushing assembly includes a lifting rod that can be moved up and down and a support plate arranged inclined. The support plate is provided with a first and second barrier portions. The support plate realizes the separate placement and removal of the copper rod through the movement of the lifting rod, reducing the force on the support plate.
It improves the service life of the copper rod material storage rack, has a simple structure, high economicality, is not easy to damage, is convenient to operate, and is easy to promote and use.
Smart Images

Figure CN223115179U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of copper bar transportation, and more specifically to a copper bar feeding rack assembly. Background Art
[0002] The previous feeding rack assembly of our company includes a stock rack 100, and the stock rack is composed of multiple rack bodies, and the multiple rack bodies are arranged at intervals and evenly distributed. In addition, the stock rack 100 is also located on one side of an external copper bar processing device, and the external copper bar processing device has multiple evenly distributed support platforms 600. It is worth mentioning that multiple external copper bars are placed on the top of the stock rack 100, and an oil cylinder and a telescopic rod are also installed on the side of the rack body close to the external copper bar processing device. The oil cylinder is fixed on the side wall of the corresponding rack body, and the telescopic rod is connected to the oil cylinder, and a baffle 500 is fixed on the top of multiple telescopic rods, so as to block the external copper bars placed on the stock rack 100 through the baffle. However, when the number of copper bars placed is large, since the stock rack 100 is inclined, the pressure on the baffle is relatively large, and then the part where the oil cylinder is connected to the telescopic rod will be damaged.
[0003] Therefore, there is a need to provide a copper bar feeding rack assembly that is convenient to use, not easily damaged, and highly practical. Summary of the Utility Model
[0004] The main purpose of this application is to provide a copper bar feeding rack assembly, wherein the copper bar feeding rack assembly can effectively utilize its own structural configuration to achieve the advantages of being convenient to use and not easily damaged.
[0005] Another object of this application is to provide a copper bar feeding rack assembly, wherein the copper bar feeding rack assembly includes multiple evenly distributed rack bodies, multiple pushing components and a support plate, and the multiple rack bodies together form a stock rack. Each of the pushing components includes a lifting rod, the lifting rod is movably arranged up and down on one side of one of the rack bodies, and the top of the lifting rod has a first notch. The support plate is inclined, and the middle section of the support plate is placed in the first notch, and the wall surface forming the first notch is welded to the support plate. The top of the support plate also has a first blocking portion and a second blocking portion. The first blocking portion and the second blocking portion are respectively located at both ends of the support plate, and both are located on the side of the support plate away from the lifting rod. Specifically, the structural setting of the first blocking portion can separate two adjacent copper bars, so that when the support plate moves upward, only one copper bar can be placed on the support plate, so that the support plate does not need to receive a large acting force, thereby improving the service life of this part of the structure.
[0006] Another object of the present application is to provide a copper bar feeding rack assembly, wherein the copper bar feeding rack assembly has a simple structure, convenient operation, does not involve complex manufacturing processes and expensive materials, has high economy, and is easy to promote and use.
[0007] To achieve at least one of the above invention objects, the present application provides a copper bar feeding rack assembly, wherein the copper bar feeding rack assembly includes:
[0008] A plurality of uniformly arranged frames, and the plurality of frames together form a storage rack;
[0009] A plurality of pushing components, each of the pushing components includes a lifting rod, the lifting rod is movably arranged up and down on one side of one of the frames, and the top of the lifting rod has a first notch; and
[0010] A support plate, the support plate is inclined, and the middle section of the support plate is placed in the first notch, and the wall surface forming the first notch is welded to the support plate. The top of the support plate also has a first blocking portion and a second blocking portion. The first blocking portion and the second blocking portion are respectively at both ends of the support plate and are both located on the side of the support plate away from the lifting rod.
[0011] In one or more embodiments of the present application, two connecting pieces are also provided on one side of each of the frames. The two connecting pieces are arranged up and down and are spaced apart by a predetermined distance. Each of the connecting pieces also has a connecting hole, and the connecting hole also penetrates through the connecting piece.
[0012] In one or more embodiments of the present application, both ends of the lifting rod are respectively located on the opposite sides of the two connecting pieces. The cross-sectional dimension of the lifting rod is smaller than the aperture of the connecting hole, so that the lifting rod can move up and down by a predetermined distance.
[0013] In one or more embodiments of the present application, each of the pushing components includes a swinging member. One end of the swinging member is placed in a second notch. Side walls forming the second notch each have an insertion hole. The two insertion holes correspond to each other and are both communicated with the second notch. In addition, each of the pushing components also includes an insertion rod, and the insertion rod sequentially passes through one of the insertion holes, the second notch and the other insertion hole.
[0014] In one or more embodiments of the present application, the end of the swinging member placed in the second notch also has a waist-shaped groove, and the insertion rod also passes through the waist-shaped groove. The end of the swinging member placed in the second notch also contacts the bottom wall forming the second notch.
[0015] In one or more embodiments of the present application, the copper bar feeding rack assembly further includes a driving shaft, and one ends of the plurality of swinging members, which are away from the corresponding second notches, are also arranged on the driving shaft.
[0016] In one or more embodiments of the present application, the top of each rack body has a plurality of uniformly distributed V-shaped grooves, and the plurality of V-shaped grooves are all located on one side of the rack body close to the external copper bar processing device, and the top of each rack body also has a positioning hole, and the positioning hole is located in the middle of the plurality of V-shaped grooves.
[0017] In one or more embodiments of the present application, a blocking block is further installed on the top of each rack body, and the bottom wall of the blocking block has a plurality of uniformly distributed V-shaped protrusions, and the plurality of V-shaped protrusions cooperate with the plurality of V-shaped grooves.
[0018] In one or more embodiments of the present application, the top of the blocking block has a first groove, and the top of the formed groove has a second groove, and one end of an external bolt sequentially passes through the first groove and the second groove and is threadedly connected to the positioning hole, and the other end of the external bolt abuts against the bottom wall of the formed first groove. Description of the Drawings
[0019] From the following detailed description of the embodiments of the present application in conjunction with the drawings, these and / or other aspects and advantages of the present application will become clearer and easier to understand, where:
[0020] Figure 1 The structure diagram of a copper bar feeding rack assembly is illustrated.
[0021] Figure 2 The simplified diagram of the existing copper bar feeding rack assembly is illustrated. Detailed Embodiments
[0022] The terms and words used in the following description and claims are not limited to the literal meanings, but are only used by the inventors to enable a clear and consistent understanding of the present application. Therefore, it is obvious to those skilled in the art that the following description of the various embodiments of the present application is provided only for the purpose of illustration and not for the purpose of limiting the present application as defined by the appended claims and their equivalents.
[0023] It can be understood that the term "one" should be understood as "at least one" or "one or more". That is, in one embodiment, the number of an element can be one, and in other embodiments, the number of the element can be multiple. The term "one" cannot be understood as a limitation on the number.
[0024] Although ordinal numbers such as "first", "second", etc. will be used to describe various components, those components are not limited herein. The terms are used only to distinguish one component from another. For example, a first component may be termed a second component, and similarly, a second component may also be termed a first component, without departing from the teachings of the utility model concept. The term "and / or" used herein includes any and all combinations of one or more of the associated listed items.
[0025] The terms used herein are for the purpose of describing various embodiments only and are not intended to be limiting. As used herein, the singular forms are also intended to include the plural forms unless the context clearly dictates otherwise. It will be further understood that the terms "comprises" and / or "has" when used in this specification specify the presence of the stated features, numbers, steps, operations, components, elements, or combinations thereof, without precluding the presence or addition of one or more other features, numbers, steps, operations, components, elements, or groups thereof.
[0026] Reference Figure 1 , according to a preferred embodiment of the present utility model, a copper bar feeding rack assembly, it should be noted that the structure of the copper bar feeding rack assembly is as Figure 1 shown, that is, the copper bar feeding rack assembly includes a plurality of uniformly arranged rack bodies 11, and the plurality of rack bodies 11 together form a stock rack 10. Specifically, the structure of the above-mentioned stock rack 10 is formed by welding a plurality of pipe bodies, and its partial structure diagram (the structure of the rack body 11) is as Figure 1 shown. Additionally, it should be noted that the top of the above-mentioned rack body 11 is inclined, that is, a plurality of copper bars are placed horizontally on the top of the rack body 11, and due to the inclined top of the rack body 11, when a user takes out one of the copper bars placed on the stock rack 10, another copper bar will move to a predetermined position accordingly, facilitating the user to take the material.
[0027] Specifically, on one side of each of the above-mentioned rack bodies 11, two connecting pieces 111 are further provided. The two connecting pieces 111 are arranged vertically and are spaced a predetermined distance apart, and each of the connecting pieces 111 further has a connecting hole 11101, and the connecting hole 11101 also penetrates through the connecting piece 111.
[0028] Specifically, the copper bar feeding rack assembly further includes a plurality of pushing components 20. Each pushing component 20 includes a lifting rod 21. The lifting rod 21 is movably arranged up and down on one side of one of the racks 11, and the two connecting holes 11101 are also matched with the lifting rod 21. In addition, both ends of the lifting rod 21 are respectively located on the sides of the two connecting pieces 111 away from each other. Specifically, the cross-sectional dimension of the lifting rod 21 is smaller than the aperture of the connecting hole 11101, so that the lifting rod 21 can move up and down a predetermined distance. In addition, the top of the lifting rod 21 has a first notch 2101 with both sides communicating, and the bottom of the lifting rod 21 has a second notch 2102 with both sides communicating.
[0029] Specifically, each pushing component 20 further includes a support plate 22. The support plate 22 is inclined, and the middle section of the support plate 22 is placed in the first notch 2101, and the wall surface forming the first notch 2101 is welded to the support plate 22 to limit the position of the support plate 22. In addition, the inclined direction of the support plate 22 is the same as the inclined placement of the top of the above-mentioned rack 11.
[0030] Specifically, the top of the support plate 22 further has a first blocking portion 221 and a second blocking portion 222. The first blocking portion 221 and the second blocking portion 222 are respectively at both ends of the support plate 22 and are both located on the side of the support plate 22 away from the lifting rod 21. Specifically, the above-mentioned lifting rod 21 is set to be able to move up a predetermined distance. That is, when the lifting rod 21 is in the initial position, the position of the support plate 22 is below the external copper bar. Then, when the lifting rod 21 moves up a predetermined distance, the support plate 22 synchronously moves up a predetermined distance. At this time, the tops of the plurality of support plates 22 will lift the external copper bars placed on the storage rack 10 by a predetermined height, so that the external copper bars are separated from the storage rack 10. In addition, since the height of the second blocking portion 222 is lower than the height of the first blocking portion 221, the external copper bars will roll towards the second blocking portion 222 and are blocked by the plurality of second blocking portions 222.
[0031] In addition, it should be noted that there is also a copper bar processing device on one side of the above-mentioned storage rack 10, that is, the plurality of second blocking portions 222 are facing the external copper bar processing device. Specifically, the external copper bar processing device also has a plurality of uniformly distributed support platforms. That is, when the external copper bar contacts the plurality of second blocking portions 222, the position of the external copper bar will be above the plurality of support platforms at this time. If the lifting rod 21 moves down a predetermined distance at this time, the external copper bars placed on the plurality of support plates 22 will be placed on the plurality of support platforms, and then the copper bar has been placed on the copper bar processing device through the copper bar feeding rack assembly.
[0032] Specifically, each of the pushing components 20 includes a swinging member 23. One end of the swinging member 23 is placed in the second notch 2102. Specifically, the side walls forming the second notch 2102 each have an insertion hole. The two insertion holes correspond to each other and are both communicated with the second notch 2102. In addition, each of the pushing components 20 further includes an insertion rod 24. The insertion rod 24 sequentially passes through one of the insertion holes, the second notch 2102, and the other insertion hole. It is worth mentioning that the user can cooperate with the end of the insertion rod 24 through an external thread to define the position of the insertion rod 24, where the above insertion rod 24 can be implemented as a bolt.
[0033] In addition, it should be noted that the end of the swinging member 23 placed in the second notch 2102 further has a kidney-shaped groove. The insertion rod 24 also passes through the kidney-shaped groove. It is worth mentioning that the end of the swinging member 23 placed in the second notch 2102 also contacts the bottom wall forming the second notch 2102. At the same time, the swinging member 23 is set to be rotatable by a predetermined angle, preferably counterclockwise by a predetermined angle. At this time, the top of the swinging member 23 will squeeze the bottom wall forming the second notch 2102, thereby causing the moving rod to move upward by a predetermined distance.
[0034] Specifically, the copper bar feeding rack assembly further includes a driving shaft 25. One ends of the plurality of swinging members 23 facing away from the corresponding second notches 2102 are also arranged on the driving shaft 25. That is, when the driving shaft 25 rotates, the plurality of swinging members 23 swing synchronously. And those skilled in the art should understand that the implementation manners of driving the driving shaft 25 to rotate include but are not limited to motor driving. That is, a motor is arranged at the end of the driving shaft 25, so as to drive the rotation of the driving shaft 25 through the operation of the motor. In addition, a bearing seat 100 is arranged at the bottom of each of the frames 11. The driving shaft 25 also cooperates with the plurality of bearing seats 100 to facilitate the rotation of the driving shaft 25.
[0035] It should be noted that the top of each frame body 11 has a plurality of uniformly distributed V-shaped grooves, and the plurality of V-shaped grooves are all located on the side of the frame body 11 close to the external copper bar processing device. In addition, the top of each frame body 11 also has a positioning hole, and the positioning hole is located in the middle of the plurality of V-shaped grooves. In addition, a blocking block 200 is installed on the top of each frame body 11. The bottom wall of the blocking block 200 has a plurality of uniformly distributed V-shaped protrusions, and the plurality of V-shaped protrusions cooperate with the plurality of V-shaped grooves to limit the position of the blocking block 200. The top of the blocking block 200 has a first groove 2001, and the top of the formed groove has a second groove. One end of an external bolt 300 sequentially passes through the first groove 2001 and the second groove and is threadedly connected to the positioning hole, and the other end of the external bolt 300 abuts against the bottom wall of the formed first groove 2001. In addition, the width of the groove is greater than the size of the external bolt 300, so as to facilitate the user to adjust the position of the blocking block 200. It is worth mentioning that the plurality of blocking blocks 200 are arranged to be able to limit the position of the external copper bar.
[0036] In summary, based on the copper bar feeding rack assembly of the embodiment of the present application, it is clarified that it provides advantages such as convenient use, not easily damaged, and high practicality for the copper bar feeding rack assembly.
[0037] It is worth mentioning that in the embodiment of the present application, the structure of the copper bar feeding rack assembly is simple, does not involve complex manufacturing processes and expensive materials, and has high economy. At the same time, for manufacturers, the copper bar feeding rack assembly provided by the present application is easy to produce and has a low cost, which is more conducive to controlling production costs and further conducive to the promotion and use of products.
[0038] Those skilled in the art should understand that the embodiments of the present invention described above and shown in the drawings are only examples and do not limit the present invention. The object of the present invention has been completely and effectively achieved. The functions and structural principles of the present invention have been shown and described in the embodiments. Without departing from this principle, the embodiments of the present invention can have any deformation or modification.
Claims
1. A copper bar feeding rack assembly, characterized in that, The copper bar feeding rack assembly includes: A plurality of uniformly arranged racks, and the plurality of racks together form a storage rack; A plurality of pushing components, each of the pushing components includes a lifting rod, the lifting rod is movably arranged up and down on one side of one of the racks, and the top of the lifting rod has a first notch, and the bottom of the lifting rod also has a second notch with both sides communicating; and A support plate, the support plate is inclined, the middle section of the support plate is placed in the first notch, and the wall surface forming the first notch is welded to the support plate. The top of the support plate also has a first blocking portion and a second blocking portion, the first blocking portion and the second blocking portion are respectively connected to both ends of the support plate, and are both located on the side of the support plate away from the lifting rod.
2. The copper bar feeding rack assembly according to claim 1, wherein two connecting pieces are further arranged on one side of each of the racks, the two connecting pieces are arranged up and down and are spaced apart by a predetermined distance, and each of the connecting pieces also has a connecting hole, and the connecting hole also penetrates through the connecting piece.
3. The copper bar feeding rack assembly according to claim 2, wherein both ends of the lifting rod are respectively located on the sides of the two connecting pieces facing away from each other, and the cross-sectional dimension of the lifting rod is smaller than the aperture of the connecting hole, so that the lifting rod can move up and down by a predetermined distance.
4. The copper bar feeding rack assembly according to claim 3, wherein each of the pushing components includes a swinging member, one end of the swinging member is placed in the second notch, and the side walls forming the second notch each have an insertion hole, the two insertion holes correspond to each other and are both communicated with the second notch. In addition, each of the pushing components also includes an insertion rod, and the insertion rod sequentially passes through one of the insertion holes, the second notch and the other insertion hole.
5. The copper bar feeding rack assembly according to claim 4, wherein the end of the swinging member placed in the second notch has a waist-shaped groove, the insertion rod also passes through the waist-shaped groove, and the end of the swinging member placed in the second notch also contacts the bottom wall forming the second notch.
6. The copper bar feeding rack assembly according to claim 5, wherein the copper bar feeding rack assembly further includes a driving shaft, and the ends of the plurality of swinging members facing away from the corresponding second notches are also arranged on the driving shaft.
7. The copper bar feeding rack assembly according to claim 6, wherein the top of each of the racks has a plurality of uniformly arranged V-shaped grooves, and the plurality of V-shaped grooves are all located on the side of the rack close to the external copper bar processing device, and the top of each of the racks also has a positioning hole, and the positioning hole is located in the middle of the plurality of V-shaped grooves.
8. The copper bar feeding rack assembly according to claim 7, wherein a blocking block is further installed on the top of each of the racks, and the bottom wall of the blocking block has a plurality of uniformly arranged V-shaped protrusions, and the plurality of V-shaped protrusions cooperate with the plurality of V-shaped grooves.
9. The copper bar feeding rack assembly according to claim 8, wherein a first groove is formed at the top of the blocking block, a second groove is formed at the top of the groove forming the first groove, one end of an external bolt sequentially passes through the first groove and the second groove, and is threadedly connected to the positioning hole, and the other end of the external bolt abuts against the bottom wall of the first groove.