A processing method for inlaying metal components into wooden furniture

Through the continuous and precise inlay device, the problems of low assembly efficiency and poor safety of metal strips and door panels are solved, and efficient and safe processing of metal components inlayed into wooden furniture is achieved.

CN117464794BActive Publication Date: 2025-08-05安徽富煌木业有限公司
View PDF 2 Cites 0 Cited by

Patent Information

Application Number
CN202311531918.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-11-17
Publication Date
2025-08-05
Estimated Expiration
2043-11-17

AI Technical Summary

Technical Problem

In the prior art, the assembly efficiency of metal strips and door panels is low and there are safety risks, especially when manually assembled, it is easy to cause friction resistance and workers' injuries.

Method used

The continuous and precise inlay device is adopted, including door panel conveying device, butt guidance device, metal strip conveying device and pushing device. By accurately positioning and automated inlaying metal strips, the rapid inlay of metal components can be realized inlaid with metal components into wooden furniture.

Benefits of technology

Improves work efficiency, enhances safety, and reduces friction resistance of manual assembly and workers' injury risk.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN117464794B_ABST
    Figure CN117464794B_ABST
Patent Text Reader

Abstract

The present invention relates to the technical field of furniture production equipment, and specifically relates to a processing method for inlaying metal components into wooden furniture, including the following steps: The door panel conveying device sends the door panel to a designated position; the positioning and pressing device horizontally presses the door panel to keep the door panel in a horizontal state; the door panel correction and positioning device is inserted into the slot of the door panel through the docking and guiding device to accurately position the slot of the door panel; the staff sequentially places the metal strips to be inserted onto the metal strip conveying device, and the metal strip conveying device sequentially conveys the metal strips to the pushing end of the horizontal pushing device; the horizontal pushing device drives the metal strip to move horizontally, and when the metal strip moves horizontally, it will be inserted into the slot of the door panel through the docking and guiding device, so that the metal strip is inlaid in the slot of the door panel. After the installation is completed, the door panel conveying device conveys the door panel to the area to be processed. This application can effectively improve work efficiency and at the same time improve work safety.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the technical field of furniture production equipment, and specifically relates to a processing method for embedding metal components into wooden furniture. Background Art

[0002] At present, with the improvement of people's living standards, people's requirements for the living environment are gradually increasing. In order to make the home environment more beautiful, people begin to pursue furniture cabinets with various styles. As an important part of the cabinet, the door panel not only has the function of closing the opening of the cabinet, but also can play a role in decorating the cabinet. The cabinet door panel is often arranged on the front of the cabinet and occupies most of the visible front area of the cabinet, and it also becomes one of the most concerned visible areas for users. Therefore, having a beautiful cabinet door panel is particularly important for the perfect overall appearance of the cabinet.

[0003] Chinese Patent CN212958302U discloses a door panel with a metal embedded in a four-sided aluminum profile edge wrapping, including a door panel frame. The door panel frame includes a door panel body, an edge sealing plate and a metal strip. Edge sealing plates are respectively clamped on the four side surfaces of the door panel body. The edge sealing plate is an overall trapezoidal structure, and the two inclined sides of the edge sealing plate are connecting inclined surfaces of a certain degree. A wedge-shaped clamping block is fixedly arranged horizontally at the middle position of the bottom surface of the edge sealing plate. Multiple rhombic chamfers are horizontally opened on the front and rear side surfaces of the wedge-shaped clamping block, and C-shaped arc edges are opened at both ends of the wedge-shaped clamping block. Strip-shaped clamping grooves adapted to the wedge-shaped clamping block are opened on the four side surfaces of the door panel body. The edge sealing plate is clamped in the strip-shaped clamping groove of the door panel body through the wedge-shaped clamping block on the bottom surface, that is, clamped in the strip-shaped clamping groove through the rhombic chamfers on both sides of the wedge-shaped clamping block, abandoning the traditional connection of the edge sealing plate and the door panel body through adhesives, making the connection between the edge sealing plate and the door panel body more convenient and fast.

[0004] When assembling the door panel frame of the above technical solution: the edge sealing plate is clamped in the strip-shaped clamping groove of the door panel body through the wedge-shaped clamping block on the bottom surface, that is, clamped in the strip-shaped clamping groove through the rhombic chamfers on both sides of the wedge-shaped clamping block. The metal strip is slidably connected to the T-shaped groove of the door panel body through a T-shaped block, and both ends of the metal strip are abutted against the edge sealing plates at both ends of the door panel body to fix the metal strip on the door panel body, thereby completing the assembly of the door panel frame. However, when the metal strip of the above solution is assembled, it needs to be inserted into the T-shaped groove of the door panel body. However, there will be frictional resistance when the metal strip is inserted into the T-shaped groove of the door panel body, resulting in low assembly efficiency through traditional manual assembly, and at the same time, it is easy to cause injuries to the hands of assembly workers. Summary of the Invention

[0005] In view of the problems existing in the prior art, a processing method for embedding metal components into wooden furniture is provided. The automatic embedding of metal components through a continuous precision embedding device can effectively improve work efficiency and work safety at the same time.

[0006] To solve the problems of the prior art, the present invention provides a processing method for embedding metal components into wooden furniture, including a continuous precision embedding device for quickly embedding metal strips into a door panel. The continuous precision embedding device includes a door panel conveying device for conveying the door panel. A docking guiding device is installed on the door panel conveying device. One end of the docking guiding device is installed with a door panel correction and positioning device. A metal strip conveying device is provided on the side of the docking guiding device away from the door panel correction and positioning device. A pushing device is also installed on the metal strip conveying device. The output end of the pushing device extends towards the docking guiding device. A positioning pressing device is installed on the docking guiding device;

[0007] The method for quickly embedding metal components includes the following steps:

[0008] Step 1: The staff horizontally places the grooved door panel on the door panel conveying device, and the door panel conveying device sends the door panel to the designated position;

[0009] Step 2: The positioning pressing device horizontally presses the door panel to keep the door panel in a horizontal state;

[0010] Step 3: The door panel correction and positioning device is inserted into the slot of the door panel through the docking guiding device to accurately position the slot of the door panel;

[0011] Step 4: The staff sequentially places the metal strips to be inserted on the metal strip conveying device, and the metal strip conveying device sequentially conveys the metal strips to the pushing end of the horizontal pushing device;

[0012] Step 5: The horizontal pushing device drives the metal strip to move horizontally. When the metal strip moves horizontally, it will pass through the docking guiding device and be inserted into the slot of the door panel, so that the metal strip is embedded in the slot of the door panel. After the installation is completed, the door panel conveying device conveys the door panel to the area to be processed again.

[0013] Preferably, the door panel conveying device includes a first limit conveyor and a second limit conveyor symmetrically arranged on both sides of the docking guiding device. The conveying speed of the second limit conveyor is greater than that of the first limit conveyor. A limit interception device is also installed on the second limit conveyor. The limit interception device includes a first mounting bracket. A first linear driver is installed on the first mounting bracket. A limit baffle is installed on the output end of the first linear driver. A limit guide post is installed on the limit baffle and the first mounting bracket.

[0014] Preferably, the docking guide device includes a bidirectional ball screw slide installed between the first limiting conveyor and the second limiting conveyor, a horizontal placement table is installed on the bidirectional ball screw slide, a first limiting guide block is installed on the contraction end of the bidirectional ball screw slide, the first limiting guide block is provided with a positioning guide hole, and a second limiting guide block is also installed on the contraction end of the bidirectional ball screw slide, the second limiting guide block is provided with a limiting insertion hole.

[0015] Preferably, the door panel correction and positioning device includes a second mounting bracket mounted on the first limit guide block, a second linear drive is mounted on the second mounting bracket, and an induction docking joint is provided on the output end of the second linear drive.

[0016] Preferably, the induction docking head includes a mounting sleeve mounted on the second linear drive, a telescopic rod is mounted on the mounting sleeve, a docking plate is mounted on the end of the telescopic rod away from the mounting sleeve, the docking plate is arranged in the positioning guide hole, guide angles are provided on both sides of the docking end of the docking plate, a spring is installed between the docking plate and the mounting sleeve, and a pressure sensor is also installed on the mounting sleeve.

[0017] Preferably, the metal bar conveying device is provided with a continuous conveyor, the continuous conveyor is covered with mounting seats, the mounting seats are all equipped with limited placement devices, and the continuous conveyor is also equipped with an infrared sensor.

[0018] Preferably, the limiting placement device includes a connecting seat installed on the mounting seat, an elastic layer is installed on the connecting seat, a limiting rail is installed on the elastic layer, and a limiting mounting groove is provided on the limiting rail.

[0019] Preferably, the horizontal pushing device includes a guide mounting frame installed on the continuous conveyor, the side of the guide mounting frame is provided with a guide edge, the side of the guide mounting frame is installed with a third linear drive, and the contact end of the third linear drive is installed with a rubber contact head.

[0020] Preferably, the positioning and pressing device includes a third mounting bracket installed above the docking guide device, a fourth linear drive is installed on the third mounting bracket, a lifting mounting plate is installed on the output end of the fourth linear drive, and a sliding pushing device is installed on the lifting mounting plate.

[0021] Preferably, the sliding push includes a pressing bracket installed on the lifting mounting plate, and pressing rollers are symmetrically installed on both sides of the contact end of the pressing bracket.

[0022] Compared with the prior art, the present invention has the following beneficial effects:

[0023] The staff places the grooved door panel horizontally on the door panel conveying device. The door panel conveying device sends the door panel to the designated position. The positioning pressing device presses the door panel horizontally to keep the door panel in a horizontal state. Then, the door panel correction and positioning device is inserted into the slot of the door panel through the docking guiding device to accurately position the slot of the door panel. The staff places the metal strips to be inserted on the metal strip conveying device in sequence. The metal strip conveying device conveys the metal strips to the pushing end of the horizontal pushing device in sequence. The horizontal pushing device drives the metal strips to move horizontally. When the metal strips move horizontally, they will pass through the docking guiding device and be inserted into the slots of the door panel, so that the metal strips are embedded in the slots of the door panel. After the installation is completed, the door panel conveying device conveys the door panel to the area to be processed. The automatic embedding of metal components through the continuous precise embedding device can effectively improve the work efficiency and at the same time improve the work safety. Description of the Drawings

[0024] Figure 1 It is a three-dimensional schematic diagram of the installation state of the door panel and the metal strip.

[0025] Figure 2 It is a three-dimensional schematic diagram of a continuous precise embedding device.

[0026] Figure 3 It is a top view of a continuous precise embedding device.

[0027] Figure 4 It is a three-dimensional schematic diagram of the door panel conveying device in a continuous precise embedding device.

[0028] Figure 5 It is a three-dimensional schematic diagram of the docking guiding device in a continuous precise embedding device.

[0029] Figure 6 It is a three-dimensional schematic diagram of the door panel correction and positioning device in a continuous precise embedding device.

[0030] Figure 7 It is a three-dimensional schematic diagram of the sensing adapter in a continuous precise embedding device.

[0031] Figure 8 It is a three-dimensional schematic diagram of the metal strip conveying device and the horizontal pushing device in a continuous precise embedding device.

[0032] Figure 9 It is a three-dimensional schematic diagram of the limit placement tool in a continuous precise embedding device.

[0033] Figure 10 It is a three-dimensional schematic diagram of the horizontal pushing device in a continuous precise embedding device.

[0034] Figure 11 It is a front view of the positioning pressing device in a continuous precise embedding device.

[0035] Figure 12 It is a three-dimensional schematic diagram of a sliding pusher in a continuous and precise embedding device.

[0036] The reference numerals in the figure are as follows:

[0037] A1 - Door panel; A2 - Metal strip; 1 - Door panel conveying device; 11 - First limit conveyor; 12 - Second limit conveyor; 13 - First mounting bracket; 14 - First linear driver; 15 - Limit baffle; 2 - Docking guiding device; 21 - Bi-directional ball screw slide; 22 - Horizontal placement table; 23 - First limit guiding block; 231 - Positioning guiding hole; 24 - Second limit guiding block; 241 - Limit insertion hole; 3 - Door panel correction and positioning device; 31 - Second mounting bracket; 32 - Second linear driver; 33 - Inductive connection head; 331 - Mounting sleeve; 332 - Telescopic insertion rod; 333 - Docking insertion plate; 334 - Guiding angle; 335 - Spring; 4 - Metal strip conveying device; 41 - Continuous conveyor; 42 - Infrared sensor; 43 - Mounting seat; 44 - Limit placement tool; 441 - Connection seat; 442 - Elastic layer; 443 - Limit rail; 444 - Limit mounting groove; 5 - Horizontal pressing device; 51 - Guiding mounting frame; 511 - Guiding edge; 53 - Third linear driver; 54 - Rubber contact head; 6 - Positioning pressing device; 61 - Third mounting bracket; 62 - Fourth linear driver; 63 - Lifting mounting plate; 64 - Sliding pusher; 641 - Pressing bracket; 642 - Pressing roller. Detailed implementation manners

[0038] In order to further understand the features, technical means, specific purposes and functions achieved by the present invention, the present invention will be further described in detail below with reference to the drawings and specific implementation manners.

[0039] As Figures 1 to 12 shown:

[0040] A processing method for embedding metal components into wooden furniture, including a continuous and precise embedding device for quickly embedding metal strips into door panels. The continuous and precise embedding device includes a door panel conveying device 1 for conveying door panels. A docking guiding device 2 is installed on the door panel conveying device 1. A door panel correction and positioning device 3 is installed at one end of the docking guiding device 2. A metal strip conveying device 4 is provided on the side of the docking guiding device 2 away from the door panel correction and positioning device 3. A pressing device is also installed on the metal strip conveying device 4. The output end of the pressing device extends towards the docking guiding device 2. A positioning pressing device 6 is installed on the docking guiding device 2;

[0041] The method for quickly embedding metal components includes the following steps:

[0042] Step 1: The staff horizontally places the grooved door panel on the door panel conveying device 1, and the door panel conveying device 1 sends the door panel to the designated position;

[0043] Step 2: The positioning and pressing device 6 horizontally presses the door panel to keep the door panel in a horizontal state;

[0044] Step 3: The door panel correction and positioning device 3 is inserted into the slot of the door panel through the docking guiding device 2 to accurately position the slot of the door panel;

[0045] Step 4: The staff sequentially places the metal strips to be inserted on the metal strip conveying device 4, and the metal strip conveying device 4 sequentially conveys the metal strips to the pushing end of the horizontal pushing device 5;

[0046] Step 5: The horizontal pushing device 5 drives the metal strip to move horizontally. When the metal strip moves horizontally, it will pass through the docking guiding device 2 and be inserted into the slot of the door panel, so that the metal strip is embedded in the slot of the door panel. After installation, the door panel conveying device 1 conveys the door panel to the area to be processed again.

[0047] As Figure 2 and Figure 4 shown:

[0048] The door panel conveying device 1 includes a first limit conveyor 11 and a second limit conveyor 12 symmetrically arranged on both sides of the docking guiding device 2. The conveying speed of the second limit conveyor 12 is greater than that of the first limit conveyor 11. A limit interception device is also installed on the second limit conveyor 12. The limit interception device includes a first mounting bracket 13. A first linear driver 14 is installed on the first mounting bracket 13. A limit baffle 15 is installed on the output end of the first linear driver 14. A limit guide post is installed on the limit baffle 15 and the first mounting bracket 13.

[0049] The first linear drive 14 is preferably an electric push rod. When the door panel needs to be limited and conveyed to the specified position of the docking guide device 2, the staff places the door panel on the first limiting conveyor 11. The first limiting conveyor 11 conveys the door panel horizontally so that the door panel passes horizontally through the docking guide device 2 to the second limiting conveyor 12. The second limiting conveyor 12 drives the docking guide device 2 to conflict with the limiting baffle 15 of the limiting intercepting device. The limiting baffle 15 will perform a preliminary positioning of the door panel. After the door panel stops, the positioning and pressing device 6 presses the door panel horizontally to keep the door panel in a horizontal state. The door panel correction and positioning device 3 then passes through the docking guide device 2 and is inserted into the slot of the door panel to accurately position the slot of the door panel. After accurate positioning, the staff will place the metal bars that need to be inserted onto the metal bar conveying device 4 in turn, and the metal bar conveying device 4 will convey the metal bars to the pushing end of the horizontal pushing device 5 in turn; the horizontal pushing device 5 drives the metal bars to move horizontally, and when the metal bars move horizontally, they will pass through the docking guide device 2 and be inserted into the slots of the door panels, so that the metal bars are embedded in the slots of the door panels. After the installation is completed, when the door panels need to be switched, the electric push rod will extend and retract to drive the limit baffle 15 to rise and stop blocking the door panels. The conveying speed of the second limit conveyor 12 is greater than that of the first limit conveyor 11. The second limit conveyor 12 quickly drives the installed door panels to move to the specified position, and effectively and continuously conveys the door surface to ensure work efficiency.

[0050] like Figure 2 and Figure 5 As shown:

[0051] The docking guide device 2 includes a bidirectional ball screw slide 21 installed between the first limiting conveyor 11 and the second limiting conveyor 12. A horizontal placement platform 22 is installed on the bidirectional ball screw slide 21. A first limiting guide block 23 is installed on the contraction end of the bidirectional ball screw slide 21. The first limiting guide block 23 is provided with a positioning guide hole 231. A second limiting guide block 24 is also installed on the contraction end of the bidirectional ball screw slide 21. The second limiting guide block 24 is provided with a limiting insertion hole 241.

[0052] The bidirectional ball screw slide 21 is used to retract and adjust the position of the first limit guide block 23 and the second limit guide block 24. The horizontal placement platform 22 of the bidirectional ball screw slide 21 is used to horizontally place the door panel to facilitate the horizontal pushing device to press the door panel, ensuring the stability of the door panel pressing. The positioning guide hole 231 of the first limit guide block 23 is used to guide the extension of the positioning end of the door panel correction positioning device 3, and the limiting insertion hole 241 on the second limit guide block 24 is used to guide the metal bar to be accurately inserted into the slot of the door panel.

[0053] like Figure 3 and Figure 6 As shown:

[0054] The door panel correction and positioning device 3 includes a second mounting bracket 31 mounted on the first limit guiding block 23. A second linear driver 32 is mounted on the second mounting bracket 31, and a sensing connector 33 is provided at the output end of the second linear driver 32.

[0055] The second linear driver 32 is preferably an electric push rod. The staff places the grooved door panel horizontally on the door panel conveying device 1. The door panel conveying device 1 sends the door panel to the designated position. The positioning and pressing device 6 presses the door panel horizontally to keep the door panel in a horizontal state. When it is necessary to accurately position the slot of the door panel, the electric push rod is used to push the sensing connector 33 through the positioning guiding hole 231 of the first limit guiding block 23 to dock with the slot of the door panel, so as to position the door panel to the designated position.

[0056] As Figure 6 and Figure 7 shown:

[0057] The sensing connector 33 includes a mounting sleeve 331 mounted on the second linear driver 32. A telescopic plug rod 332 is mounted on the mounting sleeve 331. A docking plug board 333 is mounted at one end of the telescopic plug rod 332 away from the mounting sleeve 331. The docking plug board 333 is arranged in the positioning guiding hole 231. Guide angles 334 are provided on both sides of the docking end of the docking plug board 333. A spring 335 is mounted between the docking plug board 333 and the mounting sleeve 331. A pressure sensor is also mounted on the mounting sleeve 331.

[0058] When it is necessary to correct and position the slot of the door panel, the electric push rod will push the mounting sleeve 331 to move. When the mounting sleeve 331 moves, the docking plug board 333 is pushed to move along the positioning guiding hole 231 through the spring 335. The guide angles 334 on both sides of the docking plug board 333 are used to guide the insertion into the slot of the door panel. The docking plug board 333 can effectively position the slot of the door panel. After the slot of the door panel is positioned, the metal strip is inserted into the slot of the door panel through the horizontal pushing device 5. After the metal strip is inserted into the slot of the door panel, the docking plug board 333 will be extruded from the slot of the door panel. When the docking plug board 333 is extruded, the spring 335 will be compressed. The pressure sensor is used to detect the pressure of the spring 335. When the pressure sensor detects that the spring 335 is under pressure, it means that the metal strip has been inserted completely, and the electric push rod can stop pressing and reset.

[0059] As Figure 2 and Figure 8 shown:

[0060] The metal strip conveying device 4 is provided with a continuous conveyor 41. The continuous conveyor 41 is covered with mounting seats 43. Limiting placement tools 44 are mounted on each mounting seat 43. An infrared sensor 42 is also mounted on the continuous conveyor 41.

[0061] The continuous conveyor 41 is used to drive the limit placement tool 44 to rotate in a cycle. The limit placement tool 44 is used to place metal bars. The infrared sensor 42 on the continuous conveyor 41 is used to detect the position of the limit placement to ensure the stability of the conveying.

[0062] As Figure 8 and Figure 9 shown:

[0063] The limit placement tool 44 includes a connecting seat 441 installed on the mounting seat 43. An elastic layer 442 is installed on the connecting seat 441. A limit rail 443 is installed on the elastic layer 442. A limit installation groove 444 is provided on the limit rail 443.

[0064] The limit installation groove 444 of the limit rail 443 is used to limit and place metal bars. The connecting seat 441 on the limit placement tool 44 is used to connect the mounting seat 43 of the continuous conveyor 41. When the continuous conveyor 41 drives the limit placement tool 44 to move to a specified position, the horizontal pushing device 5 will push the placed metal bar horizontally to move the metal bar towards the limit insertion hole 241 of the second limit guiding block 24. When the metal bar deviates during movement, the corners of the limit insertion hole 241 can effectively guide the metal bar to be inserted into the door panel. When the metal bar is guided by the limit insertion hole 241, the elastic layer 442 can slightly adjust the position of the limit rail 443. The elastic layer 442 between the connecting seat 441 and the limit rail 443 can effectively improve the adaptability of the insertion.

[0065] As Figure 8 and Figure 10 shown:

[0066] The horizontal pushing device 5 includes a guiding mounting frame 51 installed on the continuous conveyor 41. A guiding edge 511 is provided on the side of the guiding mounting frame 51. A third linear driver 53 is installed on the side of the guiding mounting frame 51. A rubber contact head 54 is installed on the contact end of the third linear driver 53.

[0067] The third linear driver 53 is preferably an electric push rod. The continuous conveyor 41 drives the limit placement tool 44 to move. When the limit placement tool 44 moves, the guiding edge 511 of the guiding installation can guide and contact the top of the metal bar to press the metal bar downwards, which can effectively block the top of the limit placement tool 44 while restricting the position of the metal bar. When it is necessary to limit and push the metal bar to move towards the limit insertion hole 241, the electric push rod contacts the metal bar through the rubber contact head 54 and pushes the metal bar towards the limit insertion hole 241.

[0068] As Figure 2 and Figure 11 shown:

[0069] The positioning and pressing device 6 includes a third mounting bracket 61 installed above the docking guiding device 2. A fourth linear driver 62 is installed on the third mounting bracket 61. A lifting mounting plate 63 is installed on the output end of the fourth linear driver 62. A sliding pusher 64 is installed on the lifting mounting plate 63.

[0070] The fourth linear driver 62 is preferably an electric push rod. After the staff horizontally places the grooved door panel on the door panel conveying device 1 and the door panel conveying device 1 sends the door panel to the designated position, when it is necessary to keep the door panel horizontal, when the electric push rod pushes the lifting mounting plate 63 to move downward, the lifting mounting plate 63 drives the sliding pusher 64 to contact the top of the door panel when pressing downward, so that the door panel fits and contacts with the horizontal placement table 22 of the docking guiding device 2, keeping the door panel horizontal.

[0071] As Figure 11 and Figure 12 shown:

[0072] The sliding pusher includes a pressing bracket 641 installed on the lifting mounting plate 63. Pressure rollers 642 are symmetrically installed on both sides of the contact end of the pressing bracket 641.

[0073] When the electric push rod pushes the lifting mounting plate 63 to move downward, the lifting mounting plate 63 drives the pressing bracket 641 to descend when pressing downward. The pressing bracket 641 drives the pressure rollers 642 on the left and right sides to descend and press the door panel, so that the door panel fits and contacts with the horizontal placement table 22 of the docking guiding device 2, keeping the door panel horizontal. The pressure rollers 642 are preferably made of rubber material, which can effectively reduce the downward pressure and avoid damage to the board. At the same time, the door panel can slide during pressing, which is convenient for cooperating with the door panel correction and positioning device 3 for correction and positioning, and at the same time ensures that the board is in a horizontal state.

[0074] The above embodiments only represent one or several implementation manners of the present invention. The description is relatively specific and detailed, but it should not be construed as a limitation on the scope of the present invention. It should be noted that for those of ordinary skill in the art, without departing from the concept of the present invention, several deformations and improvements can still be made, and these all belong to the protection scope of the present invention. Therefore, the protection scope of the present invention should be subject to the appended claims.

Claims

1. A continuous inlaying device for inlaying metal components into wooden furniture, comprising a door panel conveying device (1) for conveying door panels, a docking guide device (2) being installed on the door panel conveying device (1), a door panel correction and positioning device (3) being installed at one end of the docking guide device (2), a metal strip conveying device (4) being provided on a side of the docking guide device (2) away from the door panel correction and positioning device (3), a horizontal pushing device (5) being further installed on the metal strip conveying device (4), an output end of the horizontal pushing device (5) extending toward the docking guide device (2), and a positioning pressing device (6) being installed on the docking guide device (2); The door panel conveying device (1) includes a first limiting conveyor (11) and a second limiting conveyor (12) symmetrically arranged on both sides of the docking guide device (2); the docking guide device (2) includes a bidirectional ball screw slide (21) installed between the first limiting conveyor (11) and the second limiting conveyor (12); a horizontal placement table (22) is installed on the bidirectional ball screw slide (21); a first limiting guide block (23) is installed on the contraction end of the bidirectional ball screw slide (21); the first limiting guide block (23) is provided with a positioning guide hole (231); a second limiting guide block (24) is also installed on the contraction end of the bidirectional ball screw slide (21); the second limiting guide block (24) is provided with a limiting insertion hole (241); The door panel correction and positioning device (3) comprises a second mounting bracket (31) mounted on the first limiting guide block (23), a second linear drive (32) being mounted on the second mounting bracket (31), and an induction docking connector (33) being provided at the output end of the second linear drive (32); The induction docking joint (33) includes a mounting sleeve (331) mounted on the second linear drive (32), a telescopic plug rod (332) mounted on the mounting sleeve (331), a docking plug plate (333) mounted on one end of the telescopic plug rod (332) away from the mounting sleeve (331), the docking plug plate (333) is arranged in the positioning guide hole (231), guide angles (334) are provided on both sides of the docking end of the docking plug plate (333), a spring (335) is mounted between the docking plug plate (333) and the mounting sleeve (331), and a pressure sensor is also mounted on the mounting sleeve (331).

2. A continuous inlaying device for inlaying metal components into wooden furniture according to claim 1, characterized in that: The conveying speed of the second limiting conveyor (12) is greater than that of the first limiting conveyor (11). The second limiting conveyor (12) is also equipped with a limiting intercepting device, which includes a first mounting bracket (13), a first linear drive (14) mounted on the first mounting bracket (13), a limiting baffle (15) mounted on the output end of the first linear drive (14), and a limiting guide column mounted on the limiting baffle (15) and the first mounting bracket (13).

3. A continuous inlaying device for inlaying metal components into wooden furniture according to claim 1, characterized in that: The metal strip conveying device (4) is provided with a continuous conveyor (41), the continuous conveyor (41) is covered with mounting seats (43), the mounting seats (43) are all installed with limited placement devices (44), and the continuous conveyor (41) is also installed with an infrared sensor (42).

4. A continuous inlaying device for inlaying metal components into wooden furniture according to claim 3, characterized in that: The position limiting placement device (44) comprises a connecting seat (441) mounted on the mounting seat (43), an elastic layer (442) mounted on the connecting seat (441), a position limiting rail (443) mounted on the elastic layer (442), and a position limiting mounting groove (444) provided on the position limiting rail (443).

5. A continuous inlaying device for inlaying metal components into wooden furniture according to claim 4, characterized in that: The horizontal pushing device (5) includes a guide mounting frame (51) mounted on the continuous conveyor (41), a guide edge (511) is provided on the side of the guide mounting frame (51), a third linear drive (53) is mounted on the side of the guide mounting frame (51), and a rubber contact head (54) is mounted on the contact end of the third linear drive (53).

6. A continuous inlaying device for inlaying metal components into wooden furniture according to claim 5, characterized in that: The positioning and pressing device (6) comprises a third mounting bracket (61) mounted above the docking guide device (2); a fourth linear drive (62) is mounted on the third mounting bracket (61); a lifting mounting plate (63) is mounted on the output end of the fourth linear drive (62); and a sliding pusher (64) is mounted on the lifting mounting plate (63).

7. A continuous inlaying device for inlaying metal components into wooden furniture according to claim 6, characterized in that: The sliding pusher (64) comprises a pressing bracket (641) mounted on the lifting mounting plate (63), and pressing rollers (642) are symmetrically mounted on both sides of the contact end of the pressing bracket (641).

8. A method for inlaying metal components into wooden furniture, using the continuous inlaying device for inlaying metal components into wooden furniture according to any one of claims 1 to 7, characterized in that: The following steps are involved: Step 1: The staff places the door panel with the grooves cut horizontally on the door panel conveying device (1), and the door panel conveying device (1) delivers the door panel to the designated position; Step 2: The positioning and pressing device (6) presses the door panel horizontally to keep the door panel in a horizontal state; Step 3: The door panel correction and positioning device (3) is then inserted into the slot of the door panel through the docking guide device (2) to accurately position the slot of the door panel; Step 4: The staff places the metal bars to be inserted onto the metal bar conveying device (4) in sequence, and the metal bar conveying device (4) conveys the metal bars to the pushing end of the horizontal pushing device (5) in sequence; Step 5: The horizontal pushing device (5) drives the metal strip to move horizontally. When the metal strip moves horizontally, it passes through the docking guide device (2) and is inserted into the slot of the door panel, so that the metal strip is embedded in the slot of the door panel. After the installation is completed, the door panel conveying device (1) conveys the door panel to the area to be processed.

Citation Information

Patent Citations

  • Wooden carpet inlaid with metal strips and process thereof

    CN110847552A

  • Door plate with four-side aluminum profile covered edges inlaid with metal

    CN212958302U