Wood processing technology for automatic wedging seamless finger joint
Through the wood processing technology of automatic wedge-fitting seamless finger joints, and the use of motor-driven transmission rollers and elastic telescopic rods and other technologies, the stability and accuracy of existing wood splicing devices when dealing with irregular wood is solved, and efficient and automatic wood processing and splicing effects are achieved.
Patent Information
- Application Number
- CN202510131176.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-06
- Publication Date
- 2025-05-23
AI Technical Summary
When dealing with irregular wood, existing wood splicing devices are subjected to uneven force when clamping and fixing, which can easily cause wood damage and affect the splicing effect. Moreover, the wood may have position deviation during movement, resulting in asymmetric cutting positions and the wedge joint cannot be completed.
The wood processing technology adopts automatic wedge-fitting seamless finger joints, including the body, guide device, feeding device, cutting device and finger joint device. The motor drives the transmission roller to drive the conveyor belt to rotate, and the elastic telescopic rod and finger joint knife are used to achieve automatic guidance, cutting and finger joint of wood, ensuring the stability and accuracy of the wood during processing.
The stable fixation and automatic wedge fit of irregular wood is achieved without manual cutting, reducing manpower use, improving cutting efficiency and splicing effect, and avoiding the problems of wood damage and position deviation.
Smart Images

Figure CN120023891A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of plate processing, in particular to a wood processing technology of automatic wedging and seamless finger-jointing. Background Art
[0002] As a traditional building and decorative material, wood has long played an important role in construction, furniture, flooring and other wooden products.
[0003] The patent with patent announcement number CN221212055U relates to a wood splicing device, which belongs to the technical field of wood splicing, and specifically is a device for splicing different woods, including a shell, a threaded hole is opened on one side of the shell, a threaded rod is screwed in the threaded hole, one end of the threaded rod passes through the threaded hole and is rotatably connected to a fixing plate; the patent can drive the fixing plate to move by rotating the threaded rod. When encountering irregular wood, the irregular place is squeezed and adjusted by the first squeezing block and the second squeezing block, and the hydraulic telescopic rod is started to drive the pressing plate to fix the wood again, thereby realizing the fixation of different woods when splicing, improving the splicing effect, and solving the problem of an existing device for splicing different woods. When splicing wood, most of them adopt the method of clamping the wood on both sides to fix it. However, when splicing irregular wood, due to uneven force during clamping, it is easy to cause damage to the wood, thereby affecting the splicing effect.
[0004] In the above patent, fixation of different woods during splicing is achieved, which improves the splicing effect. However, the position of the wood may shift during the movement. When the position of the wood shifts, it may cause asymmetric cutting positions. When the cutting positions are asymmetric, the finger-joined parts of the wood may not be aligned, resulting in the failure to complete wedging of the wood. Summary of the invention
[0005] In view of the deficiencies of the prior art, the present invention provides a wood processing technology for automatic wedging and seamless finger-jointing, which solves the problems raised in the above-mentioned background technology.
[0006] To achieve the above objectives, the present invention is implemented through the following technical solutions: a wood processing process with automatic wedging and seamless finger-jointing, comprising a machine body, and also comprising a guiding device, a feeding device, a cutting device and a finger-jointing device; wherein a motor is fixedly connected to the front side of the machine body, and a long board is fixedly connected to the inside of the machine body; wherein the guiding device comprises: a transmission roller, a support rod, a guide plate, a conveyor belt, a driving device, a telescopic rod 1, a frame, a vertical rod, and a rotating roller, wherein the transmission roller is fixedly connected to the output end of the motor, the conveyor belt is rotatably connected to the circumferential surface of the transmission roller, the support rod is fixedly connected to the rear side of the inside of the machine body, the guide plate is fixedly connected to the front side of the support rod, the driving device is fixedly connected to the top of the long board, the fixed end of the telescopic rod 1 is fixedly connected to the front side of the driving device, the frame is fixedly connected to the free end of the telescopic rod 1, the vertical rod is fixedly connected to the inside of the frame, and the rotating roller is rotatably connected to the circumferential surface of the vertical rod.
[0007] According to the above technical solution, a slide groove is provided on the top of the long board, wood is slidably connected in the slide groove, and the roller is in contact with the wood.
[0008] According to the above technical scheme, the feeding device includes: a triangular frame, a support frame, a spring one, an elastic telescopic rod two, a baffle, a short plate, a slider one, a long frame, a spring two, an iron chain, an elastic telescopic rod three and a support frame, the triangular frame is fixedly connected to the top of the frame, the support frame is fixedly connected to the top of the long plate, the support frame is fixedly connected to the right side of the support frame, one end of the spring one is fixedly connected to the left side inside the support frame, the slider one is fixedly connected to the other end of the spring one, the short plate is fixedly connected to the left side of the slider one, the elastic telescopic rod two is rotatably connected to the bottom of the short plate, the long frame is fixedly connected to the inside of the support frame, one end of the spring two is fixedly connected to the right side inside the long frame, the fixed end of the elastic telescopic rod three is rotatably connected to the other end of the spring two, one end of the iron chain is fixedly connected to the right side of the fixed end of the elastic telescopic rod three, the other end of the iron chain is fixedly connected to the right side of the slider one, and the baffle is fixedly connected to the bottom of the short plate.
[0009] According to the above technical solution, the slider 1 is slidably connected inside the support frame, the free end of the elastic telescopic rod 2 is in contact with the wood, the free end of the elastic telescopic rod 3 is in contact with the wood, the iron chain slides through the right side of the long frame, and the baffle rod is in contact with the triangular frame.
[0010] According to the above technical solution, the cutting device includes a sliding column, a vertical plate, a finger joint knife, a third spring, a triangular inclined block and a top plate. The sliding column is slidably connected inside the support frame. The top plate is fixedly connected to the top of the sliding column. One end of the third spring is fixedly connected to the top of the support frame, and the other end of the third spring is fixedly connected to the bottom of the top plate. The vertical plate is fixedly connected to the right side of the top plate. The triangular inclined block is fixedly connected to the right side of the vertical plate. The finger joint knife is rotatably connected to the bottom of the sliding column.
[0011] According to the above technical solution, the triangular inclined block contacts the short board, and square holes are formed in the upper and lower surfaces of the chute.
[0012] According to the above technical solution, the finger joint device includes: a cover plate, a support block, a first connecting rod, a first long rod, a second connecting rod, a second slider, a dial plate, a second long rod, a third slider, and a third long rod. The cover plate is fixedly connected to the top of the top plate. The support block is fixedly connected to the bottom of the cover plate. The first connecting rod is fixedly connected to the front side of the support block. The first long rod is rotatably connected to the circumferential surface of the first connecting rod. The second connecting rod is rotatably connected to the bottom of the first long rod. The second slider is fixedly connected to the rear side of the second connecting rod. The dial plate is rotatably connected to the rear side of the second slider. One end of the second long rod is rotatably connected to the front side of the second connecting rod. The third slider is rotatably connected to the other end of the second long rod. The third long rod is fixedly connected to the rear side of the third slider.
[0013] According to the above technical solution, the rear end of the third long rod contacts the wood, and a stop block is arranged on the right side of the dial plate.
[0014] The present invention provides a wood processing technology for automatic wedging seamless finger joint. It has the following beneficial effects:
[0015] (1) In this invention, the motor drives the transmission roller to rotate. When the transmission roller rotates, it drives the conveyor belt to rotate. When the wood to be cut is placed on the top of the conveyor belt, the conveyor belt transports the wood to be cut to the left. The first telescopic rod drives the frame to extend. When the frame extends, it drives the rotating roller to extend. The rotating roller contacts the wood and plays a guiding role for the wood, preventing the direction of wood movement from changing. The rotating roller can also prevent the rotating roller from squeezing and damaging the wood.
[0016] (2) In this invention, the elastic second telescopic rod moves to the left. The elastic second telescopic rod can drive the wood to move to the left. When the wood reaches the bottom of the finger joint knife, the finger joint knife moves downward and cuts the wood into the shape of a finger joint. This device does not require manual cutting, which can reduce the use of manpower. Moreover, manual cutting may cause harm to the human body. When the wood cutting is completed, the elastic third telescopic rod drives the wood to move to the left, and the elastic third telescopic rod can drive the wood to discharge materials, which can effectively improve the cutting efficiency.
[0017] (3) In the present invention, when the wood is cut, it will be pushed to the left by the elastic telescopic rod three. When the wood on the left side moves to the right and the wood on the right side moves to the left, the finger-jointed parts of the wood will come into contact. When the finger-jointed parts of the wood come into contact, the wood will be wedged. When the long rod two rotates, the long rod two will drive the slider three to move backward. When the slider three moves backward, the slider three will drive the long rod three to move backward. When the long rod three moves backward, the long rod three will come into contact with the wood. When the long rod three comes into contact with the wood, the long rod three will push the wood backward, thus completing the material withdrawal operation and preventing the wood from being blocked in the slide. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 It is a schematic diagram of the overall structure of the present invention; Figure 2 It is a schematic diagram of the position structure of the guide device and the feeding device of the present invention; Figure 3 It is a schematic diagram of the position structure of the guide device of the present invention; Figure 4 It is a schematic diagram of the position structure of the feeding device of the present invention; Figure 5 For the present invention Figure 4 A schematic diagram of the enlarged structure of the middle A part; Figure 6 It is a schematic diagram of the position structure of the elastic telescopic rod one and the elastic telescopic rod three of the present invention; Figure 7 It is a schematic diagram of the structure of the cutting device of the present invention; Figure 8 It is a schematic diagram of the position structure of the finger joint device of the present invention; Fig. 9 It is a schematic diagram of the long rod one and long rod three position structures of the present invention.
[0019] In the figure: 1, machine body; 2, motor; 3, long board; 101, driving roller; 102, support rod; 103, guide plate; 104, conveyor belt; 105, driving device; 106, telescopic rod 1; 107, frame; 108, vertical rod; 109, roller; 201, triangular frame; 202, support frame; 203, spring 1; 204, elastic telescopic rod 2; 205, stop rod; 206, short board; 207, slider 1; 208, long frame; 209 , spring two; 210, iron chain; 211, elastic telescopic rod three; 212, support frame; 213, sliding column; 214, vertical plate; 215, finger joint knife; 216, spring three; 217, triangular oblique block; 218, top plate; 301, cover plate; 302, support block; 303, connecting rod one; 304, long rod one; 305, connecting rod two; 306, slider two; 307, dial plate; 308, long rod two; 309, slider three; 310, long rod three. DETAILED DESCRIPTION
[0020] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0021] See also Figure 1-Figure 9 One embodiment of the present invention is: a wood processing process for automatic wedging seamless finger jointing, including a machine body 1, and also including a guide device; wherein the front side of the machine body 1 is fixedly connected with a motor 2, and the inside of the machine body 1 is fixedly connected with a long board 3; wherein the guide device includes: a transmission roller 101, a support rod 102, a guide plate 103, a conveyor belt 104, a driving device 105, a telescopic rod 106, a frame 107, a vertical rod 108, and a rotating roller 109, wherein the transmission roller 101 is fixedly connected to the output end of the motor 2, the conveyor belt 104 is rotatably connected to the circumferential surface of the transmission roller 101, the support rod 102 is fixedly connected to the rear side of the inside of the machine body 1, and the guide plate 103 is fixedly connected to the transmission roller 101. It is connected to the front side of the support rod 102, the driving device 105 is fixedly connected to the top of the long board 3, the fixed end of the telescopic rod 106 is fixedly connected to the front side of the driving device 105, the frame 107 is fixedly connected to the free end of the telescopic rod 106, the vertical rod 108 is fixedly connected to the inside of the frame 107, and the roller 109 is rotatably connected to the circumferential surface of the vertical rod 108. The motor 2 will drive the transmission roller 101 to rotate. When the transmission roller 101 rotates, the transmission roller 101 will drive the conveyor belt 104 to rotate. When the wood to be cut is placed on the top of the conveyor belt 104, the conveyor belt 104 will transport the wood to be cut to the left.
[0022] A slide groove is provided on the top of the long board 3, and wood is slidably connected in the slide groove. The roller 109 contacts the wood, and the roller 109 drives the wood to play a guiding role to prevent the direction of movement of the wood from changing. The roller 109 can also prevent the roller 109 from squeezing the wood and causing damage.
[0023] When the present embodiment is working, when the motor 2 is started, the motor 2 will drive the transmission roller 101 to rotate, and when the transmission roller 101 rotates, the transmission roller 101 will drive the conveyor belt 104 to rotate. When the wood to be cut is placed on the top of the conveyor belt 104, the conveyor belt 104 will transport the wood to be cut to the left, and the wood to be cut will enter the slide groove at the top of the long board 3 under the guidance of the guide plate 103. When the driving device 105 is started, the driving device 105 will drive the free end of the telescopic rod 106 to extend. When the free end of the telescopic rod 106 is extended, the free end of the telescopic rod 106 will drive the frame When the frame 107 is extended, the frame 107 will drive the vertical rod 108 to extend, and when the vertical rod 108 is extended, the vertical rod 108 will drive the roller 109 to extend, and when the roller 109 is extended, the roller 109 will contact with the wood, and when the roller 109 is in contact with the wood, the roller 109 will push the wood to the middle of the slide, and when the roller 109 pushes the wood to the middle of the slide, the roller 109 can guide the wood, and when the roller 109 is in contact with the wood and the wood is still moving, the wood will drive the roller 109 to rotate, and when the roller 109 rotates, the roller 109 will not damage the wood.
[0024] See also Figure 1-Figure 9On the basis of the above embodiment, another embodiment of the present invention further includes a feeding device, a cutting device and a finger joint device; the feeding device includes: a triangular frame 201, a support frame 202, a spring 1 203, an elastic telescopic rod 204, a blocking rod 205, a short plate 206, a slider 1 207, a long frame 208, a spring 209, an iron chain 210, an elastic telescopic rod 3 211 and a support frame 212, the triangular frame 201 is fixedly connected to the top of the frame 107, the support frame 212 is fixedly connected to the top of the long board 3, the support frame 202 is fixedly connected to the right side of the support frame 212, one end of the spring 1 203 is fixedly connected to the left side inside the support frame 212, the slider 1 207 is fixedly connected to the other end of the spring 1 203, the short plate 206 is fixedly connected to the left side of the slider 1 207, and the elastic telescopic rod 204 is rotatably connected to the At the bottom of the short board 206, the long frame 208 is fixedly connected to the inside of the support frame 202, one end of the spring 209 is fixedly connected to the right side inside the long frame 208, the fixed end of the elastic telescopic rod 3 211 is rotatably connected to the other end of the spring 209, one end of the iron chain 210 is fixedly connected to the right side of the fixed end of the elastic telescopic rod 3 211, and the other end of the iron chain 210 is fixedly connected to the right side of the slider 1 207, and the blocking rod 205 is fixedly connected to the bottom of the short board 206. By moving the elastic telescopic rod 204 to the left, the elastic telescopic rod 204 can drive the wood to move to the left. When the wood reaches the bottom of the finger-joined knife 215, the finger-joined knife 215 will move downward and cut the wood into a finger-joined shape. The device does not require manual cutting, which can reduce the use of manpower, and manual cutting may cause harm to the human body.
[0025] The slider 1 207 is slidably connected inside the support frame 202, the free end of the elastic telescopic rod 204 contacts the wood, the free end of the elastic telescopic rod 3 211 contacts the wood, the iron chain 210 slides through the right side of the long frame 208, the blocking rod 205 contacts the triangular frame 201, and the elastic telescopic rod 3 211 can drive the wood to be withdrawn, which can effectively improve the cutting efficiency.
[0026] The cutting device includes a sliding column 213, a vertical plate 214, a finger-jointed knife 215, a spring three 216, a triangular oblique block 217 and a top plate 218. The sliding column 213 is slidably connected to the inside of the support frame 212, the top plate 218 is fixedly connected to the top of the sliding column 213, one end of the spring three 216 is fixedly connected to the top of the support frame 212, the other end of the spring three 216 is fixedly connected to the bottom of the top plate 218, the vertical plate 214 is fixedly connected to the right side of the top plate 218, the triangular oblique block 217 is fixedly connected to the right side of the vertical plate 214, and the finger-jointed knife 215 is rotatably connected to the bottom of the sliding column 213. When the wood reaches the specified position, the cutting device will only start cutting, which can ensure that the length of the wood after cutting remains consistent.
[0027] The triangular inclined block 217 contacts the short plate 206, and square holes are provided on the upper and lower sides of the chute, and the debris cut by the cutting device will fall out through the square holes to prevent the chute from being blocked.
[0028] The finger joint device includes: a cover plate 301, a support block 302, a connecting rod 1 303, a long rod 1 304, a connecting rod 2 305, a slider 2 306, a dial plate 307, a long rod 2 308, a slider 309, and a long rod 310. The cover plate 301 is fixedly connected to the top of the top plate 218, the support block 302 is fixedly connected to the bottom of the cover plate 301, the connecting rod 1 303 is fixedly connected to the front side of the support block 302, the long rod 1 304 is rotatably connected to the circumferential surface of the connecting rod 1 303, the connecting rod 2 305 is rotatably connected to the bottom of the long rod 1 304, and the slider 2 306 is fixed. Connected to the rear side of the connecting rod 2 305, the paddle plate 307 is rotatably connected to the rear side of the slider 2 306, one end of the long rod 2 308 is rotatably connected to the front side of the connecting rod 2 305, the slider 309 is rotatably connected to the other end of the long rod 2 308, and the long rod 310 is fixedly connected to the rear side of the slider 309. When the wood is cut, the wood will be pushed to the left by the elastic telescopic rod 3 211. When the wood on the left side moves to the right and the wood on the right side moves to the left, the finger-jointed parts of the wood will come into contact. When the finger-jointed parts of the wood come into contact, the wood will be wedged.
[0029] The rear end of the long rod 310 contacts the wood, and a stopper is provided on the right side of the paddle 307 to prevent the paddle 307 from sliding sideways after contacting the wood, thereby preventing the wood from being moved.
[0030] When this embodiment is working: when the frame 107 is extended, the frame 107 will drive the triangular frame 201 to move. When the triangular frame 201 moves, the triangular frame 201 will contact the blocking rod 205. When the triangular frame 201 contacts the blocking rod 205, the blocking rod 205 will be pushed by the hypotenuse of the triangular frame 201. When the hypotenuse of the triangular frame 201 pushes the blocking rod 205, the blocking rod 205 will move to the left. When the blocking rod 205 moves to the left, the blocking rod 205 will drive the short plate 206 to move to the right. When the short plate 206 moves to the left, the short plate 206 will drive the slider 1 207 to move to the left. When the slider 1 207 moves to the left, the slider 1 207 will drive the elastic telescopic rod 2 204 to move to the left. When the elastic telescopic rod 204 moves to the left When the free end of the elastic telescopic rod 204 is in contact with the wood, the elastic telescopic rod 204 will drive the wood to move to the left. When the slider 1 207 moves to the left, the slider 1 207 will drive one end of the chain 210 to move to the left. When one end of the chain 210 moves to the left, the other end of the chain 210 moves to the right. When the other end of the chain 210 moves to the right, the other end of the chain 210 will drive the elastic telescopic rod 3 211 to move to the right. When the elastic telescopic rod 3 211 moves to the right, the free end of the elastic telescopic rod 3 211 will contact with the wood. Since the elastic telescopic rod 3 211 itself has an angle, the elastic telescopic rod 3 The free end of 211 will not drive the wood to move. When the short board 206 moves to the left, the short board 206 will contact the triangular oblique block 217. When the short board 206 contacts the triangular oblique block 217, the triangular oblique block 217 will be pushed by the short board 206. When the short board 206 pushes the triangular oblique block 217, the triangular oblique block 217 will move downward. When the triangular oblique block 217 moves downward, the triangular oblique block 217 will drive the vertical board 214 to move downward. When the vertical board 214 moves downward, the vertical board 214 will drive the top board 218 to move downward. When the top board 218 moves downward, the top board 218 will drive the sliding column 213 to move downward. When the sliding column 213 moves downward, the sliding column 213 will drive the finger joint knife 215 to move downward. When the finger joint knife 2 When the finger-jointed knife 215 moves downward, the finger-jointed knife 215 will contact the wood. When the finger-jointed knife 215 contacts the wood, the wood will be cut by the finger-jointed knife 215. When the free end of the telescopic rod 106 retracts, the free end of the telescopic rod 106 will drive the frame 107 to move. When the frame 107 moves, the frame 107 will drive the triangular frame 201 to move. When the triangular frame 201 moves, the triangular frame 201 will be separated from the contact with the blocking rod 205. When the triangular frame 201 is separated from the contact with the blocking rod 205, the blocking rod 205 will move to the right under the elastic force of the spring 1 203. When the blocking rod 205 moves to the right, the blocking rod 205 will drive the short plate 206 to move to the right. When the short plate 206 moves to the right, the short plate 206 will drive the slider 1 207 to move to the right.When the slider 1 207 moves to the right, the slider 1 207 will drive one end of the chain 210 to move to the right. When one end of the chain 210 moves to the right, the spring 209 will extend to the left under the action of the elastic force. When the spring 209 extends to the left under the action of the elastic force, the other end of the chain 210 will move to the left under the elastic force of the spring 209. When the other end of the chain 210 moves to the left, the other end of the chain 210 will drive the elastic telescopic rod 3 211 to move to the left. When the elastic telescopic rod 3 211 moves to the left, the elastic telescopic rod 3 211 will contact with the wood. When the elastic telescopic rod 211 contacts the wood, the wood will be held by the elastic telescopic rod 3 211 and driven to move to the left. When the short plate 206 moves to the right, the short plate 206 will be out of contact with the triangular inclined block 217. When the short plate 206 is out of contact with the triangular inclined block 217, the triangular inclined block 217 will move forward under the elastic force of the spring 3 216. When the triangular inclined block 217 moves, the triangular inclined block 217 will drive the sliding column 213 to move upward. When the sliding column 213 moves upward, the sliding column 213 will drive the finger joint knife 215 to move upward. When the finger joint knife 215 moves upward, it can prevent the finger joint knife 215 from blocking the wood from moving to the left.
[0031] When the top plate 218 moves downward, the top plate 218 will drive the cover plate 301 to move downward. When the cover plate 301 moves downward, the cover plate 301 will drive the support block 302 to move downward. When the support block 302 moves downward, the support block 302 will drive the connecting rod 1 303 to move downward. When the connecting rod 1 303 moves downward, the connecting rod 1 303 will drive the long rod 1 304 to rotate. When the long rod 1 304 rotates, the long rod 1 304 will drive the connecting rod 2 305 to move. When the connecting rod 2 305 moves, the connecting rod 2 305 will drive the slider 2 306 to move rightward. When the slider 2 306 moves rightward, the slider 2 306 will drive the dial plate 303 to move downward. 07 moves to the right. When the wood is cut, the wood will be pushed to the left by the elastic telescopic rod three 211. When the wood is pushed to the left by the elastic telescopic rod three 211, the wood will contact the paddle plate 307. When the wood contacts the paddle plate 307, the paddle plate 307 will rotate. When the top plate 218 moves upward, the top plate 218 will drive the cover plate 301 to move upward. When the cover plate 301 moves upward, the cover plate 301 will drive the support block 302 to move upward. When the support block 302 moves upward, the support block 302 will drive the connecting rod one 303 to move upward. When the connecting rod one 303 moves upward, the connecting rod one 303 will drive the long rod one 304 to rotate. When the long rod 1 304 rotates, the long rod 1 304 will drive the connecting rod 2 305 to move. When the connecting rod 2 305 moves, the connecting rod 2 305 will drive the slider 2 306 to move to the left. When the slider 2 306 moves to the left, the slider 2 306 will drive the paddle 307 to move to the left. When the paddle 307 moves to the left, the block on the right side of the paddle 307 will prevent the paddle 307 from rotating. When the block prevents the paddle 307 from rotating, the paddle 307 will drive the wood to move to the left. The guiding devices, feeding devices and cutting devices on both sides of the machine body 1 have the same structure. When the wood on the left side moves to the right and the wood on the right side moves to the left, the wood The finger-jointed parts will come into contact. When the finger-jointed parts of the wood come into contact, the wood will be wedged. When the slider 2 306 moves to the right, the slider 2 306 will drive the connecting rod 2 305 to move to the right. When the connecting rod 2 305 moves to the right, the connecting rod 2 305 will drive the long rod 2 308 to rotate. When the long rod 2 308 rotates, the long rod 2 308 will drive the slider 3 309 to move backward. When the slider 3 309 moves backward, the slider 3 309 will drive the long rod 3 310 to move backward. When the long rod 3 310 moves backward, the long rod 3 310 will come into contact with the wood. When the long rod 3 310 comes into contact with the wood, the long rod 3 310 will push the wood backward.
[0032] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A wood processing process for automatic wedging seamless finger jointing, comprising a machine body (1), characterized in that: It also includes a guiding device, a feeding device, a cutting device and a finger-joining device; Wherein, a motor (2) is fixedly connected to the front side of the machine body (1), and a long board (3) is fixedly connected inside the machine body (1); The guide device comprises: a transmission roller (101), a support rod (102), a guide plate (103), a conveyor belt (104), a driving device (105), a telescopic rod (106), a frame (107), a vertical rod (108), and a rotating roller (109); the transmission roller (101) is fixedly connected to the output end of the motor (2); the conveyor belt (104) is rotatably connected to the circumferential surface of the transmission roller (101); and the support rod (102) is fixedly connected to the inside of the machine body (1). On the rear side, the guide plate (103) is fixedly connected to the front side of the support rod (102), the driving device (105) is fixedly connected to the top of the long board (3), the fixed end of the telescopic rod (106) is fixedly connected to the front side of the driving device (105), the frame (107) is fixedly connected to the free end of the telescopic rod (106), the vertical rod (108) is fixedly connected to the inside of the frame (107), and the roller (109) is rotatably connected to the circumferential surface of the vertical rod (108).
2. The wood processing process of automatic wedging seamless finger jointing according to claim 1, characterized in that: A slide groove is provided on the top of the long board (3), a piece of wood is slidably connected in the slide groove, and the rotating roller (109) is in contact with the wood.
3. The wood processing technology of automatic wedging seamless finger jointing according to claim 2 is characterized by: The feeding device comprises: a triangular frame (201), a support frame (202), a spring 1 (203), an elastic telescopic rod 2 (204), a blocking rod (205), a short plate (206), a slider 1 (207), a long frame (208), a spring 2 (209), an iron chain (210), an elastic telescopic rod 3 (211) and a support frame (212), wherein the triangular frame (201) is fixedly connected to the top of the frame (107), the support frame (212) is fixedly connected to the top of the long plate (3), the support frame (202) is fixedly connected to the right side of the support frame (212), one end of the spring 1 (203) is fixedly connected to the left side of the support frame (212), and the slider 1 (207) is fixedly connected to the spring 1 ( The other end of the short plate (206) is fixedly connected to the left side of the slider one (207), the elastic telescopic rod two (204) is rotatably connected to the bottom of the short plate (206), the long frame (208) is fixedly connected to the inside of the support frame (202), one end of the spring two (209) is fixedly connected to the right side inside the long frame (208), the fixed end of the elastic telescopic rod three (211) is rotatably connected to the other end of the spring two (209), one end of the iron chain (210) is fixedly connected to the right side of the fixed end of the elastic telescopic rod three (211), the other end of the iron chain (210) is fixedly connected to the right side of the slider one (207), and the blocking rod (205) is fixedly connected to the bottom of the short plate (206).
4. The wood processing process of automatic wedging seamless finger jointing according to claim 3 is characterized by: The slider 1 (207) is slidably connected inside the support frame (202), the free end of the elastic telescopic rod 2 (204) is in contact with the wood, the free end of the elastic telescopic rod 3 (211) is in contact with the wood, the iron chain (210) slides through the right side of the long frame (208), and the blocking rod (205) is in contact with the triangular frame (201).
5. The wood processing process of automatic wedging seamless finger jointing according to claim 4 is characterized by: The cutting device comprises a sliding column (213), a vertical plate (214), a finger-jointed knife (215), a spring three (216), a triangular inclined block (217) and a top plate (218); the sliding column (213) is slidably connected to the inside of the support frame (212); the top plate (218) is fixedly connected to the top of the sliding column (213); one end of the spring three (216) is fixedly connected to the top of the support frame (212); the other end of the spring three (216) is fixedly connected to the bottom of the top plate (218); the vertical plate (214) is fixedly connected to the right side of the top plate (218); the triangular inclined block (217) is fixedly connected to the right side of the vertical plate (214); and the finger-jointed knife (215) is rotatably connected to the bottom of the sliding column (213).
6. The wood processing process of automatic wedging seamless finger jointing according to claim 5, characterized in that: The triangular inclined block (217) contacts the short plate (206), and square holes are provided on the upper and lower sides of the slide groove.
7. The wood processing technology of automatic wedging seamless finger jointing according to claim 6 is characterized by: The finger joint device comprises: a cover plate (301), a support block (302), a connecting rod 1 (303), a long rod 1 (304), a connecting rod 2 (305), a sliding block 2 (306), a dial plate (307), a long rod 2 (308), a sliding block 3 (309), and a long rod 3 (310), wherein the cover plate (301) is fixedly connected to the top of the top plate (218), the support block (302) is fixedly connected to the bottom of the cover plate (301), the connecting rod 1 (303) is fixedly connected to the front side of the support block (302), and the long rod 1 (304) is fixedly connected to the front side of the support block (302). The connecting rod 1 (303) is rotatably connected to the circumferential surface of the connecting rod 1 (303), the connecting rod 2 (305) is rotatably connected to the bottom of the long rod 1 (304), the sliding block 2 (306) is fixedly connected to the rear side of the connecting rod 2 (305), the shift plate (307) is rotatably connected to the rear side of the sliding block 2 (306), one end of the long rod 2 (308) is rotatably connected to the front side of the connecting rod 2 (305), the sliding block 3 (309) is rotatably connected to the other end of the long rod 2 (308), and the long rod 3 (310) is fixedly connected to the rear side of the sliding block 3 (309).
8. The wood processing technology of automatic wedging seamless finger jointing according to claim 7 is characterized by: The rear end of the long rod (310) is in contact with the wood, and a stopper is provided on the right side of the paddle (307).
Citation Information
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