Feeding mechanism for furniture assembly assembling production
By combining the conveyor production line, the robotic arm adsorption mechanism, and the lifting components, the problems of low efficiency and lack of flexibility in traditional feeding methods are solved, realizing automated feeding and stable gripping of furniture components, and improving feeding efficiency and versatility.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- HEFEI GUSINO INTELLIGENT TECHNOLOGY CO LTD
- Filing Date
- 2025-05-14
- Publication Date
- 2026-05-01
AI Technical Summary
In traditional furniture component assembly production, the feeding method relies on manual operation, which is inefficient, costly, and the feeding position is inaccurate. Traditional feeding mechanisms lack flexibility, making it difficult to grab boards in different positions and postures, resulting in poor versatility.
The system employs a combination design of a conveyor production line, a robotic arm adsorption mechanism, a storage box, and a lifting component. The robotic arm adsorption mechanism picks up furniture components from the shelf in the storage box, and the lifting component precisely controls the height of the components. Combined with elastic support components, it provides stable support and shock absorption, thus achieving automated feeding.
It has achieved automated feeding of furniture components, improved feeding efficiency and accuracy, reduced labor costs, enhanced the flexibility and stability of the feeding mechanism, and adapted to the gripping of boards in different positions and postures.
Smart Images

Figure CN224185337U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of furniture assembly and feeding technology, specifically a feeding mechanism for furniture component assembly production. Background Technology
[0002] In the furniture component assembly production process, the loading stage is crucial. Traditional loading methods rely heavily on manual operation, where furniture components are manually moved and placed onto the conveyor line. This method is not only inefficient and costly in terms of labor, but also prone to inaccurate loading positions. Furthermore, traditional loading mechanisms may lack flexibility, struggling to handle furniture boards in different positions and orientations, resulting in poor versatility. To address these issues, this invention provides a loading mechanism for furniture component assembly production. Utility Model Content
[0003] The purpose of this utility model is to provide a feeding mechanism for furniture component assembly production, so as to solve the problems mentioned in the background art.
[0004] The technical solution of this utility model is: a feeding mechanism for furniture component assembly production, including a conveyor production line, a mechanical arm adsorption mechanism is provided at the top of the conveyor end of the conveyor production line, a storage frame is installed on one side below the conveyor end of the conveyor production line, a lifting component is provided on one side of the storage frame, and a storage plate located inside the storage frame is fixed at the lifting end of the lifting component.
[0005] The effect achieved by the above components is as follows: through the working cooperation between the conveyor production line, the robotic arm adsorption mechanism, the storage frame, the lifting component and the shelf, when the furniture component is placed on the shelf in the storage frame, the lifting component drives the shelf to rise, transporting the furniture component to a suitable height. The robotic arm adsorption mechanism adsorbs and grabs the component on the shelf from above the conveyor production line and places it on the conveyor production line for transportation, thus achieving the purpose of automated feeding, increasing feeding efficiency and reducing manual operation costs.
[0006] Preferably, the lifting assembly includes a side slot frame installed on one side of the storage frame, a drive motor is fixed to the top of the side slot frame, and a screw extending into the side slot frame is fixed to the output shaft of the drive motor. A lifting block connected to the shelf is threaded onto the screw.
[0007] The effect achieved by the above components is as follows: the lifting assembly, consisting of a side slot frame, a drive motor, a screw, and a lifting block, drives the screw to rotate when the drive motor starts. The screw and the lifting block are threaded together, causing the lifting block to move up and down along the screw, thereby driving the connected storage board to rise and fall. The height of the storage board is precisely controlled, which realizes the purpose of accurately transporting the furniture components in the storage frame to the operable height of the robotic arm adsorption mechanism, thus improving the accuracy and stability of loading.
[0008] Preferably, elastic support members connected to the shelf are installed on both sides of the storage frame.
[0009] The effect achieved by the above components is as follows: through the cooperation of the storage frame and the elastic support, when the shelf carries the furniture components, the elastic support can buffer and support the shelf. During the lifting process of the lifting component driving the shelf to rise and fall, the impact of vibration or gravity changes on the furniture components is reduced, thus achieving the purpose of stable support and protection for the furniture components and improving the safety of the furniture components during storage and loading.
[0010] Preferably, the elastic support includes a side slot formed on the side wall of the storage frame, a guide post fixed in the side slot, a side support connected to the shelf sleeved on the guide post, and a spring abutting against the side support sleeved at the bottom end of the guide post.
[0011] The effect achieved by the above components is as follows: the elastic support component consisting of side slots, guide columns, side supports and springs, with the side supports sleeved on the guide columns and able to slide along them, and the springs abutting against the side supports. When the shelf is subjected to force, the side supports slide on the guide columns and compress the springs, and the springs provide elastic buffering force, which plays a role in stabilizing support and shock absorption for the shelf, thus achieving the purpose of elastic support and guidance for the shelf and improving the stability and reliability of the feeding mechanism during operation.
[0012] Preferably, the robotic arm adsorption mechanism includes a rotating base, a robotic arm joint is fixed on the rotating end of the rotating base, and an adsorption execution end for adsorbing furniture boards is connected to the end of the robotic arm joint away from the rotating base.
[0013] The effect achieved by the above components is as follows: the robotic arm adsorption mechanism, which consists of a rotating base, a robotic arm joint, and an adsorption actuator, allows the rotating base to drive the robotic arm joint to rotate, the robotic arm joint to flexibly adjust its angle, and the adsorption actuator to adsorb furniture boards. The three components work together to achieve adsorption and gripping actions from multiple angles and directions, thus realizing the purpose of flexibly gripping and placing furniture boards in different positions and postures, and improving the versatility and work efficiency of the feeding mechanism.
[0014] This utility model provides an improved feeding mechanism for furniture component assembly production, which has the following improvements and advantages compared with the prior art:
[0015] Firstly, this utility model achieves automated feeding by coordinating the working of the conveyor production line, the robotic arm adsorption mechanism, the storage frame, the lifting component, and the shelf. When the furniture component is placed on the shelf in the storage frame, the lifting component drives the shelf to rise, transporting the furniture component to a suitable height. The robotic arm adsorption mechanism adsorbs and grabs the component on the shelf from above the conveyor production line and places it on the conveyor production line for transport. This achieves automated feeding, increases feeding efficiency, and reduces manual operation costs.
[0016] Secondly, this utility model uses an elastic support component composed of a side slot, a guide post, a side support, and a spring. The side support is sleeved on the guide post and can slide along it. The spring abuts against the side support. When the shelf is subjected to force, the side support slides on the guide post and compresses the spring. The spring provides elastic buffering force, which plays a role in stabilizing support and shock absorption for the shelf, thus achieving the purpose of elastic support and guidance for the shelf and improving the stability and reliability of the feeding mechanism during operation. Attached Figure Description
[0017] The present invention will be further explained below with reference to the accompanying drawings and embodiments:
[0018] Figure 1 This is a three-dimensional structural schematic diagram of the present invention;
[0019] Figure 2 This is a three-dimensional structural diagram of the raised shelf in this utility model.
[0020] Explanation of reference numerals in the attached figures:
[0021] 1. Conveyor production line; 2. Robotic arm adsorption mechanism; 21. Rotating base; 22. Robotic arm joint; 23. Adsorption actuator; 3. Storage frame; 4. Lifting assembly; 41. Side slot frame; 42. Drive motor; 43. Screw; 44. Lifting block; 5. Shelf; 6. Elastic support; 61. Side slot opening; 62. Guide column; 63. Side support; 64. Spring. Detailed Implementation
[0022] The present invention will now be described in detail, and the technical solutions in the embodiments of the present invention will be clearly and completely described. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of the present invention.
[0023] This utility model provides an improved feeding mechanism for furniture component assembly production. The technical solution of this utility model is as follows:
[0024] In embodiments of this utility model, such as Figures 1-2 As shown, a feeding mechanism for furniture component assembly production includes a conveyor production line 1. A robotic arm adsorption mechanism 2 is installed at the top of the conveying end of the conveyor production line 1. The robotic arm adsorption mechanism 2 includes a rotating base 21, with a robotic arm joint 22 fixed to the rotating end of the rotating base 21. The end of the robotic arm joint 22 away from the rotating base 21 is connected to an adsorption execution end 23 for adsorbing furniture boards. Through the robotic arm adsorption mechanism 2 composed of the rotating base 21, the robotic arm joint 22, and the adsorption execution end 23, the rotating base 21 can drive the robotic arm joint 22 to rotate, the robotic arm joint 22 can flexibly adjust its angle, and the adsorption execution end 23 can adsorb furniture boards. The three work together to achieve… The multi-angle and multi-directional adsorption and gripping action realizes the purpose of flexibly gripping and placing furniture boards in different positions and postures. A storage frame 3 is installed on one side below the conveyor end of the conveyor line 1. A lifting component 4 is set on one side of the storage frame 3. The drive motor 42 starts and drives the screw 43 to rotate. The screw 43 is threadedly engaged with the lifting block 44, causing the lifting block 44 to move up and down along the screw 43, thereby driving the connected storage board 5 to rise and fall. The height of the storage board 5 is precisely controlled, realizing the purpose of accurately conveying the furniture components in the storage frame 3 to the operable height of the robotic arm adsorption mechanism 2. The lifting end of the lifting component 4 is fixed with the storage board 5 located in the storage frame 3.
[0025] In an embodiment of this utility model, elastic support members 6 connected to the shelf 5 are installed on both sides of the storage frame 3. The elastic support member 6 includes a side groove 61 opened on the side wall of the storage frame 3. A guide post 62 is fixed in the side groove 61. A side support 63 connected to the shelf 5 is sleeved on the guide post 62. A spring 64 that abuts against the side support 63 is sleeved at the bottom end of the guide post 62. The side support 63 is sleeved on the guide post 62 and can slide along it. The spring 64 abuts against the side support 63. When the shelf 5 is subjected to force, the side support 63 slides on the guide post 62 and compresses the spring 64. The spring 64 provides elastic buffering force, which plays a role in stabilizing support and shock absorption for the shelf 5, and achieves the purpose of elastic support and guidance for the shelf 5.
[0026] The working principle of the feeding mechanism for furniture component assembly production provided by this utility model is as follows: Through the working cooperation between the conveyor production line 1, the robotic arm adsorption mechanism 2, the storage frame 3, the lifting component 4, and the shelf 5, when the furniture component is placed on the shelf 5 in the storage frame 3, the drive motor 42 starts and drives the screw 43 to rotate. The screw 43 is threadedly engaged with the lifting block 44, causing the lifting block 44 to move up and down along the screw 43, thereby driving the shelf 5 connected to it to rise and fall, accurately controlling the height of the shelf 5, and conveying the furniture component to the appropriate height. The spring 64 provides elastic buffering force, which plays a stable supporting and shock-absorbing role for the shelf 5. The rotating base 21 can drive the robotic arm joint 22 to rotate, and the robotic arm joint 22 can flexibly adjust the angle. The adsorption execution end 23 can adsorb the furniture board. The three work together to achieve multi-angle and multi-directional adsorption and gripping action, realizing the purpose of flexibly gripping and placing furniture boards in different positions and postures, and placing them on the conveyor production line 1 for conveying, thus realizing the purpose of automated feeding.
[0027] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A feeding mechanism for the assembly production of furniture components, comprising a conveying production line (1), characterized in that: The conveying production line (1) is provided with a mechanical arm adsorption mechanism (2) at the top of the conveying end, and a storage frame (3) is installed on one side below the conveying end of the conveying production line (1). A lifting component (4) is provided on one side of the storage frame (3), and a storage plate (5) located inside the storage frame (3) is fixed at the lifting end of the lifting component (4).
2. The feeding mechanism for furniture component assembly production according to claim 1, characterized in that: The lifting assembly (4) includes a side slot frame (41) installed on one side of the storage frame (3). A drive motor (42) is fixed at the top of the side slot frame (41). A screw (43) extending into the side slot frame (41) is fixed to the output shaft of the drive motor (42). A lifting block (44) connected to the shelf (5) is threaded onto the screw (43).
3. The feeding mechanism for assembling and producing furniture components according to claim 1, characterized in that: The storage frame (3) is equipped with elastic support members (6) on both sides that are connected to the shelf (5).
4. The feeding mechanism for assembling and producing furniture components according to claim 3, characterized in that: The elastic support (6) includes a side slot (61) opened on the side wall of the storage frame (3), a guide post (62) is fixed in the side slot (61), a side support (63) connected to the shelf (5) is sleeved on the guide post (62), and a spring (64) that abuts against the side support (63) is sleeved at the bottom end of the guide post (62).
5. The feeding mechanism for furniture component assembly production according to claim 1, characterized in that: The robotic arm adsorption mechanism (2) includes a rotating base (21), a robotic arm joint (22) is fixed on the rotating end of the rotating base (21), and an adsorption execution end (23) for adsorbing furniture boards is connected to the end of the robotic arm joint (22) away from the rotating base (21).