A multi-surface wood square processing device and method

By using the lifting, cutting, and rotating devices of the multi-faceted timber processing equipment, the safety hazards and low efficiency of timber cutting in existing technologies have been solved, achieving fast and safe multi-faceted cutting.

CN119567361BActive Publication Date: 2026-02-24SLEEMON HEALTHY SLEEP TECHNOLOGY CO LTD +1
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Patent Information

Application Number
CN202411980902.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2026-02-24
Estimated Expiration
2044-12-31

AI Technical Summary

Technical Problem

Existing wood cutting equipment poses safety hazards. Cutting bevels at different angles requires remaking clamps or adjusting the direction of the circular saw, resulting in low work efficiency and cumbersome procedures.

Method used

The multi-faceted timber processing equipment includes a lifting device, a cutting device, a rotating device, and a table. Through the clamping assembly, the rotating drive device, and the telescopic drive device, it can achieve fast and safe cutting of timber and can automatically adjust the cutting angle and position.

Benefits of technology

It improves the safety and efficiency of wood cutting, simplifies the process, reduces the safety hazards of manual operation, and enables rapid multi-faceted cutting.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a kind of multi-face wood square processing equipment and processing method, including lifting device, cutting device, rotating device, table plate, lifting device includes main frame, telescopic drive device, fixture assembly, rotary drive device, main frame includes riser, bottom plate and top plate, telescopic drive device is installed on bottom plate, fixture assembly is installed on telescopic drive device, telescopic drive device can drive fixture assembly to lift, fixture assembly can be clamped wood square, rotary drive device is installed on top plate, cutting device is installed on table plate, cutting device includes circular saw, circular saw is provided with saw blade, rotating device can rotate wood square, lifting device is rotatably connected with table plate, rotating device can control the angle of rotation of lifting device, the present application can be adjusted fixture assembly and cutting device, wood square can be quickly cut and processed, work environment is safe, and work efficiency is high.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of wood processing equipment, and more particularly to a multi-surface wood square processing device and a processing method. BACKGROUND

[0002] As shown in Figure 1 , Figure 2 , Figure 3 With the gradual improvement of consumer requirements and aesthetics, the appearance of furniture is no longer limited to flatness, and more tends to curved or multi-surface appearance. In the existing furniture production process, wood 101 needs to be cut so that the wood 101 can be cut and processed into wood 101 with a first inclined surface 102 or a second inclined surface 103. The existing processing method is to make a clamp, and the worker places the wood square to be cut on the clamp and pushes it flat by hand, so that the wood square is cut by a rotating circular saw. Pushing the wood square by hand to cut has safety hazards. The wood square needs to be turned over once for each cutting, and the cutting work is time-consuming and inefficient. In addition, different angle inclined surfaces need to be re-made clamps or adjust the direction of the circular saw, which is very troublesome. Therefore, a technical solution is needed to solve the above problems. SUMMARY

[0003] The present application aims to overcome the shortcomings of the prior art, provide a multi-surface wood square processing device and a processing method.

[0004] In order to achieve the above-mentioned purpose, the present application adopts the following technical scheme:

[0005] The present application discloses a multi-surface wood square processing device, which comprises a lifting device, a cutting device, a rotating device and a table plate. The lifting device comprises a main frame, a telescopic driving device, a clamp assembly and a rotating driving device. The main frame comprises a vertical plate, a bottom plate and a top plate. The telescopic driving device is installed on the bottom plate. The clamp assembly is installed on the telescopic driving device. The telescopic driving device can drive the clamp assembly to rise and fall. The clamp assembly can clamp a wood square. The rotating driving device is installed on the top plate. The cutting device is installed on the table plate. The cutting device comprises a circular saw provided with a saw blade. The clamp assembly comprises a first position and a second position. When the clamp assembly is in the first position, the clamp assembly is located below the saw blade. When the clamp assembly is in the second position, the clamp assembly abuts against the rotating driving device. The rotating driving device can rotate the wood square. The lifting device is rotationally connected with the table plate. The rotating device can control the angle of rotation of the lifting device.

[0006] Further, the base plate is provided with a mounting groove, the lifting device is located in the mounting groove, the cutting device is two in number, the cutting device is installed on the upper end surface of the base plate, and the two cutting devices are located on the two sides of the lifting device.

[0007] Further, the cutting device comprises a first translation device, a second translation device and a rotating table, the first translation device is installed on the upper end surface of the base plate, the second translation device is movable along the first translation device, the second translation device is arranged perpendicularly to the first translation device in the horizontal direction, the rotating table is movable along the second translation device, the circular saw is installed on the rotating table, and the rotating table is capable of adjusting the angle of the saw blade.

[0008] Further, the base plate is provided with a connecting plate, the main frame is provided with a rotating shaft, the rotating shaft is rotationally connected with the connecting plate, the main frame is provided with a push plate, the base plate is provided with a mounting plate, the mounting plate is located on the two sides of the push plate, the rotating device comprises a threaded rod and a pressing assembly, one end of the threaded rod is abutted against the push plate, the pressing assembly is installed on the mounting plate on the other side, the pressing assembly comprises a guide pipe and a pressing rod, at least a part of the pressing rod is located in the guide pipe, the pressing rod is slidable along the guide pipe, the pressing rod is abutted against the push plate, and the rotating device is two in number, and the two rotating devices are respectively located above and below the base plate.

[0009] Further, the end portion of the threaded rod towards the push plate is hemispherical, the end portion of the pressing rod towards the push plate is hemispherical, the side surface of the connecting plate is provided with a scale, and the end surface of the rotating shaft is provided with a pointer.

[0010] Further, the clamp assembly comprises a fixed seat, a rotating seat and a pressing block, the fixed seat comprises a base, a pressing plate and a connecting column, the connecting column connects the base and the pressing plate, the rotating seat is rotationally installed on the base, the pressing block is rotationally installed on the pressing plate, the rotating seat and the pressing block are capable of clamping a wood square, the pressing block penetrates through the pressing plate, and the upper end of the pressing block is capable of being clamped with the rotating driving device.

[0011] Further, the connecting column comprises a guide column and a movable rod, the guide column is fixedly installed on the base, at least a part of the movable rod is located in the guide column, the upper end of the movable rod is fixedly connected with the pressing plate, and the movable rod is movable along the guide column.

[0012] Furthermore, the clamping assembly includes a limiting component, which includes a first guide rod, a locking rod, and a connecting piece. The base is provided with a guide groove, and the first guide rod can slide along the guide groove. The first guide rod passes through the base, and the locking rod passes through the base. The first guide rod and the locking rod are connected by the connecting piece. The lower end face of the rotating seat is provided with multiple grooves, and the locking rod can be inserted into the grooves. A top block is installed on the top plate, and the upper end of the first guide rod passes through the pressure plate. When the clamping assembly is in the second position, the top block abuts against the first guide rod, and the locking rod leaves the groove.

[0013] Furthermore, the rotating table includes a base, a stop block, and a clamping block. The stop block is installed on one side of the base, and the clamping block is installed on the base. The clamping block is located on the side opposite to the stop block. The clamping block can move closer to or further away from the stop block, and the clamping block and the stop block can clamp the wooden block.

[0014] A method for processing multi-faceted timber, based on the aforementioned multi-faceted timber processing equipment, includes the following steps:

[0015] S1. Adjustment: Depending on the angle to be cut from the timber, select whether to rotate the lifting device. If the bevel to be cut is perpendicular to the upper surface of the timber, there is no need to rotate the lifting device. If the angle between the bevel to be cut and the upper surface of the timber is offset, tilt the lifting device by rotating the bevel according to the required cutting angle, so that the upper surface of the timber is offset from the horizontal plane. Adjust the position of the circular saw by adjusting the first translation device and the second translation device of the cutting device, and adjust the angle of the circular saw blade in the vertical direction by rotating the rotating table of the cutting device.

[0016] S2, Loading: The clamping assembly is controlled in the first position by the telescopic drive device in the lifting device. The wood to be processed is placed on the rotating seat of the clamping assembly and fixed by the stop block and clamping block of the rotating seat. The upper end of the wood is pressed down by the pressure block. The angle of the rotating seat is adjusted according to the part of the wood to be cut.

[0017] S3. Cutting: The clamping assembly is lifted upward by the telescopic drive device, so that the timber passes through the saw blade that is in operation and is cut once. When the clamping assembly reaches the second position, the pressure block abuts against the rotary drive device, and the top block presses against the limiting assembly to make the locking rod leave the groove at the bottom of the rotating seat. The rotary drive device can rotate the pressure block and rotate the clamping assembly to change the part of the timber that needs to be cut. The clamping assembly is moved downward by the telescopic drive device to cut again. This process is repeated several times.

[0018] S4. Removing Material: The clamp assembly is controlled in the first position by the telescopic drive device in the lifting device, and the clamping block of the rotating seat is pulled open to remove the cut wood.

[0019] The beneficial effects of this invention are:

[0020] This invention allows for adjusting the position of the circular saw by adjusting the first and second translation devices, adjusting the angle of the saw blade by adjusting the rotary table, and adjusting the angle of the lifting device by adjusting the rotation device. The lifting device and the cutting device can be adjusted according to the angle of the part of the timber that needs to be cut. The telescopic drive device in the lifting device can reciprocate the telescopic clamping assembly, enabling rapid cutting of timber. The working environment is safe and the work efficiency is high. Attached Figure Description

[0021] Figure 1 This is a schematic diagram of a type of timber in the background art.

[0022] Figure 2 This is a schematic diagram of timber processing in the background art.

[0023] Figure 3 This is another schematic diagram of the processed timber in the background art.

[0024] Figure 4 This is a schematic diagram of one embodiment.

[0025] Figure 5 This is a back view diagram of this embodiment.

[0026] Figure 6 This is a cross-sectional view of this embodiment.

[0027] Figure 7 This is a cross-sectional view of the clamp assembly in this embodiment.

[0028] Figure 8 This is a rear view of this embodiment.

[0029] Figure 9 This is a partial cross-sectional view of the rotating device in this embodiment.

[0030] Reference numerals: 1. Lifting device; 11. Main frame; 111. Vertical plate; 112. Base plate; 113. Top plate; 114. Rotating shaft; 1141. Pointer; 115. Push plate; 12. Telescopic drive device; 13. Clamp assembly; 131. Fixed seat; 1311. Base; 13111. Guide groove; 1312. Pressure plate; 1313. Connecting column; 13131. Guide column; 13132. Movable rod; 132. Rotating seat; 1321. Seat body; 1322. Stop block; 1323. Clamping block; 1324. Groove; 133. Pressure block; 134. Limiting assembly; 1341. First 1. Guide rod; 13411, retaining ring; 1342, locking rod; 1343, connecting piece; 14, second guide rod; 15, rotary drive device; 16, top block; 17, support frame; 2. Cutting device; 21, circular saw; 211, saw blade; 22, first translation device; 23, second translation device; 24, rotary table; 3. Rotation device; 31, threaded rod; 32, pressing assembly; 321, guide tube; 322, pressing rod; 4. Platform; 41, connecting plate; 411, scale; 42, mounting plate; 43, mounting groove; 101, timber; 102, first inclined plane; 103, second inclined plane. Detailed Implementation

[0031] The technical solutions in this embodiment will be clearly and completely described below with reference to the accompanying drawings. 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 scope of protection of the present invention.

[0032] like Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 As shown, this embodiment discloses a multi-faceted timber processing equipment including a lifting device 1, a cutting device 2, a rotating device 3, and a table 4. The table 4 is provided with a mounting groove 43, and the lifting device 1 is located in the mounting groove 43. There are two cutting devices 2, which are installed on the upper surface of the table and located on both sides of the lifting device 1. When the timber 101 needs to be cut to form a timber 101 with a first inclined surface 102, two cutting devices 2 can be used simultaneously to cut two first inclined surfaces 102 at once. Four first inclined surfaces 102 can be obtained by two cuts. When the timber 101 needs to be cut to form a timber 101 with a second inclined surface 103, only one cutting device 2 is used, and the timber 101 needs to be cut four times.

[0033] like Figure 6 , Figure 7As shown, the lifting device 1 includes a main frame 11, a telescopic drive device 12, a clamp assembly 13, and a rotary drive device 15. The main frame 11 includes a vertical plate 111, a base plate 112, and a top plate 113. The telescopic drive device 12 is mounted on the base plate 112 and is an electric telescopic rod device. The clamp assembly 13 is mounted on the telescopic drive device 12 and includes a fixed base 131, a rotating base 132, and a pressure block 133. The fixed base 131 includes a base 1311, a pressure plate 1312, and a connecting column 1313. The base 1311 is fixedly connected to the telescopic end of the telescopic drive device 12. The telescopic drive device 12 can drive the clamp assembly 13 to move up and down towards or away from the top plate 113. The connecting column 1313 connects the base 1311 and the pressure plate 1312 and includes a guide column 13131 and a movable... The movable rod 13132 and the guide post 13131 are fixedly installed on the base 1311. The movable rod 13132 is at least partially located inside the guide post 13131. A spring is installed inside the guide post 13131. The spring can provide a force for the movable rod 13132 to move towards the base 1311. The upper end of the movable rod 13132 is fixedly connected to the pressure plate 1312. The movable rod 13132 can move along the guide post 13131. The pressure plate 1312 can move closer to or further away from the base 1311. The rotating seat 132 is rotatably installed on the base 1311. The wooden block 101 can be held between the pressure plate 1312 and the rotating seat 132. The clamping assembly 13 can clamp the wooden block 101. When the wooden block 101 is placed, the pressure plate 1312 can be pulled up. Similarly, when the pressure plate 1312 is pulled up, the cut wooden block 101 can be removed.

[0034] The lifting device 1 also includes a second guide rod 14 and a support frame 17. The support frame 17 is fixedly connected to the telescopic drive device 12 and the vertical plate 111, making the installation of the telescopic drive device 12 more stable. The upper end of the second guide rod 14 is fixedly connected to the base 1311. The second guide rod 14 passes through the support frame 17 and guides the clamp assembly 13 during movement.

[0035] The rotary table 24 and the rotating seat 132 include a seat body 1321, a stop block 1322, and a clamping block 1323. The stop block 1322 is installed on one side of the seat body 1321, and the clamping block 1323 is installed on the seat body 1321. The clamping block 1323 is located on the opposite side of the stop block 1322. The clamping block 1323 can move closer to or further away from the stop block 1322. A spring is installed inside the seat body 1321, which can provide a force for the clamping block 1323 to move towards the stop block 1322. The clamping block 1323 and the stop block 1322 can clamp the wood square 101. When loading the wood square 101, the clamping block 1323 can be pulled away from the stop block 1322. Similarly, when the clamping block 1323 is pulled away from the stop block 1322, the cut wood square 101 can also be removed.

[0036] A rotary drive device 15 is mounted on the top plate 113. The rotary drive device 15 can be an electric or pneumatic rotary device. The drive end of the rotary drive device 15 faces the clamp assembly 13. The rotating seat 132 is mounted on the base 1311 via bearings. The pressure block 133 is rotatably mounted on the pressure plate 1312 via bearings. The rotating seat 132 and the pressure block 133 can clamp the timber 101. The pressure block 133 penetrates the pressure plate 1312. The upper end of the pressure block 133 can engage with the rotary drive device 15. The rotary drive device 15 can drive the pressure block 133 and the rotating seat 132 to rotate, thereby changing the cut portion of the timber 101. The clamp assembly 13 includes a first... The clamping assembly 13 is in the first position, which is below the saw blade 211 of the cutting device 2. When the clamping assembly 13 is in the second position, it abuts against the rotary drive device 15. The upper end of the pressure block 133 can be inserted into the lower end of the rotary drive device 15 to form a limit on the rotation direction. The rotary drive device 15 can rotate the wood block 101. The lifting device 1 is rotatably connected to the table 4. The rotating device 3 can control the rotation angle of the lifting device 1, so that the wood block 101 can change the cutting direction and the wood block 101 can be cut at a different angle.

[0037] The clamp assembly 13 includes a limiting assembly 134, which includes a first guide rod 1341, a locking rod 1342, and a connecting piece 1343. The base 1311 has a guide groove 13111, along which the first guide rod 1341 can slide. A spring is installed within the guide groove 13111. The first guide rod 1341 has a retaining ring 13411, and the spring abuts against the lower end face of the retaining ring 13411, applying a restoring force to the first guide rod 1341. The first guide rod 1341 passes through the base 1311, and the locking rod 1342 also passes through the base 1311. The first guide rod 1341 and the locking rod 1342 are connected by the connecting piece 1343. The lower end face of the rotating seat 132... Multiple grooves 1324 are provided, and locking rods 1342 can be inserted into the grooves 1324. Top plate 113 is equipped with top block 16. The upper end of the first guide rod 1341 passes through the pressure plate 1312. When the clamp assembly 13 is in the second position, the top block 16 abuts against the first guide rod 1341, and the locking rod 1342 leaves the groove 1324. When the pressure block 133 is disengaged from the rotary drive device 15, the locking rod 1342 is inserted into the groove 1324 to fix the rotating seat 132 and the base 1311, preventing the wood block 101 from rotating during the cutting process, making the cutting of the wood block 101 more stable. When the pressure block 133 is inserted into the rotary drive device 15, the locking rod 1342 releases the lock on the rotating seat 132.

[0038] like Figure 3 , Figure 4As shown, the cutting device 2 is mounted on the table 4. The cutting device 2 includes a circular saw 21, a first translation device 22, a second translation device 23, and a rotary table 24. The circular saw 21 is equipped with a saw blade 211. The first translation device 22 is mounted on the upper surface of the table 4. The second translation device 23 can move along the first translation device 22. The second translation device 23 and the first translation device 22 are arranged perpendicularly in the horizontal direction. The rotary table 24 can move along the second translation device 23. The first translation device 22 and the second translation device 23 can control the position of the rotary table 24 on the table 4, thereby adjusting the position between the circular saw 21 and the lifting device 1. The circular saw 21 is mounted on the rotary table 24. 4. The rotary table 24 can adjust the angle of the saw blade 211 in the vertical direction. The saw blade 211 can be adjusted according to the angle that the timber 101 needs to be cut. When the clamping assembly 13 moves from the first position to the second position, the saw blade 211 can cut the timber 101 once. Then, when the clamping assembly 13 moves from the second position to the first position, it can cut the timber 101 again. The rotary drive device 15 controls the clamping assembly 13 to extend and retract once to complete the processing of the timber 101. The processing is fast and convenient. The present invention can also be equipped with a dust collection device to pick up wood chips. The dust collection device can be equipped with a dust cover to cover the saw blade 211 of the circular saw 21, making production safer.

[0039] like Figure 8 , Figure 9 As shown, the platform 4 is provided with a connecting plate 41, the main frame 11 is provided with a rotating shaft 114, the rotating shaft 114 is rotatably connected to the connecting plate 41, the main frame 11 is provided with a push plate 115, the platform 4 is provided with a mounting plate 42, the mounting plate 42 is located on both sides of the push plate 115, the rotating device 3 includes a threaded rod 31 and a pressing assembly 32, the threaded rod 31 is threadedly connected to the mounting plate 42 on one side, one end of the threaded rod 31 abuts against the push plate 115, the pressing assembly 32 is installed on the mounting plate 42 on the other side, the pressing assembly 32 includes a guide tube 321 and a pressing rod 322, at least a portion of the pressing rod 322 is located inside the guide tube 321. A spring installed inside the guide tube 321 applies a force close to the push plate 115 to the pressing rod 322. The pressing rod 322 can slide along the guide tube 321 and press against the push plate 115. There are two rotating devices 3, which are located above and below the platform 4, respectively. By rotating the threaded rods 31 of the two rotating devices 3, one threaded rod extends towards the push plate 115 and the other extends away from the push plate 115, which can adjust the angle of the lifting device 1. The pressing assembly 32 can support the other side of the push plate 115, making the lifting device 1 more stable.

[0040] The end of the threaded rod 31 facing the push plate 115 is hemispherical, and the end of the pressing rod 322 facing the push plate 115 is also hemispherical. The ends of the threaded rod 31 and the pressing rod 322 that abut against the push plate 115 are both hemispherical, which can reduce the friction on the push plate 115 when pushing it and can better support and abut against the push plate 115. The side of the connecting plate 41 is provided with a scale 411, and the end face of the rotating shaft 114 is provided with a pointer 1141. The rotation angle of the lifting device 1 can be displayed by the pointer 1141 and the scale 411, so that the angle can be displayed more accurately.

[0041] like Figures 1 to 9 As shown, a method for processing multi-faceted timber, based on the aforementioned multi-faceted timber processing equipment, includes the following steps:

[0042] Step 1 Adjustment: Based on the angle to be cut from the timber 101, select whether to rotate the lifting device 1. If the bevel to be cut is perpendicular to the upper surface of the timber 101, then there is no need to rotate the lifting device 1. If the angle between the bevel to be cut and the upper surface of the timber 101 is offset, then the lifting device 1 is tilted by the rotating device 3 according to the bevel to be cut, so that the upper surface of the timber 101 is offset from the horizontal plane. The position of the circular saw 21 is adjusted by adjusting the first translation device 22 and the second translation device 23 of the cutting device 2. The angle of the saw blade 211 in the vertical direction is adjusted by rotating the rotating table 24 of the cutting device 2.

[0043] The second step is feeding: The clamp assembly 13 is controlled in the first position by the telescopic drive device 12 in the lifting device 1. The wood block 101 to be processed is placed on the rotating seat 132 of the clamp assembly 13 and fixed by the stop block 1322 and clamp block 1323 of the rotating seat 132. The upper end surface of the wood block 101 is pressed by the pressure block 133. The angle of the rotating seat 132 is adjusted according to the part of the wood block 101 to be cut.

[0044] The third step is cutting: The clamping assembly 13 is lifted upward by the telescopic drive device 12, so that the timber 101 passes through the saw blade 211 that is in operation and is cut once. When the clamping assembly 13 reaches the second position, the pressure block 133 abuts against the rotary drive device 15, and the top block 16 presses against the limiting assembly 134, so that the locking rod 1342 leaves the groove 1324 at the bottom of the rotating seat 132. The rotary drive device 15 can rotate the pressure block 133 and rotate the clamping assembly 13 to change the part of the timber 101 that needs to be cut. The clamping assembly 13 is moved downward by the telescopic drive device 12 to cut again. This process is repeated several times.

[0045] Step 4: Using the telescopic drive device 12 in the lifting device 1, the clamp assembly 13 is controlled in the first position, and the clamping block 1323 of the rotating seat 132 is pulled open to remove the cut wood square 101.

[0046] The above description is merely a preferred embodiment of the present invention. The scope of protection of the present invention is not limited to the above embodiments. All technical solutions falling within the scope of the present invention's concept are within the scope of protection of the present invention. It should be noted that for those skilled in the art, any improvements and modifications made without departing from the principles of the present invention should also be considered within the scope of protection of the present invention.

Claims

1. A multi-faceted timber processing equipment, characterized in that, The system includes a lifting device (1), a cutting device (2), a rotating device (3), and a platform (4). The lifting device (1) includes a main frame (11), a telescopic drive device (12), a clamp assembly (13), and a rotating drive device (15). The main frame (11) includes a vertical plate (111), a bottom plate (112), and a top plate (113). The telescopic drive device (12) is mounted on the bottom plate (112), and the clamp assembly (13) is mounted on the telescopic drive device (12). The telescopic drive device (12) can drive the clamp assembly (13) to rise and fall. The clamp assembly (13) can clamp the timber (101). The rotating drive device (15) is mounted on the top plate (113). The cutting device (2) is mounted on the table (4). The cutting device (2) includes a circular saw (21) with a saw blade (211). The clamping assembly (13) includes a first position and a second position. When the clamping assembly (13) is in the first position, it is located below the saw blade (211). When the clamping assembly (13) is in the second position, it abuts against the rotary drive device (15). The rotary drive device (15) can rotate the timber (101). The lifting device (1) is rotatably connected to the table (4). The rotating device (3) can control the rotation angle of the lifting device (1). The platform (4) is provided with a connecting plate (41), the main frame (11) is provided with a rotating shaft (114), the rotating shaft (114) is rotatably connected to the connecting plate (41), the main frame (11) is provided with a push plate (115), the platform (4) is provided with a mounting plate (42), the mounting plate (42) is located on both sides of the push plate (115), the rotating device (3) includes a threaded rod (31) and a pressing component (32), the threaded rod (31) is threadedly connected to the mounting plate (42) on one side, and one end of the threaded rod (31) abuts against... The push plate (115) and the pressing component (32) are mounted on the mounting plate (42) on the other side. The pressing component (32) includes a guide tube (321) and a pressing rod (322). At least a portion of the pressing rod (322) is located inside the guide tube (321). The pressing rod (322) can slide along the guide tube (321). The pressing rod (322) abuts against the push plate (115). There are two rotating devices (3). The two rotating devices (3) are located above and below the platform (4), respectively.

2. The multi-faceted timber processing equipment according to claim 1, characterized in that, The platform (4) is provided with a mounting groove (43), the lifting device (1) is located in the mounting groove (43), and there are two cutting devices (2). The cutting devices (2) are installed on the upper surface of the platform (4), and the two cutting devices (2) are located on both sides of the lifting device (1).

3. The multi-faceted timber processing equipment according to claim 1, characterized in that, The cutting device (2) includes a first translation device (22), a second translation device (23), and a rotating table (24). The first translation device (22) is installed on the upper surface of the table (4). The second translation device (23) can move along the first translation device (22). The second translation device (23) and the first translation device (22) are arranged perpendicularly in the horizontal direction. The rotating table (24) can move along the second translation device (23). The circular saw (21) is installed on the rotating table (24). The rotating table (24) can adjust the angle of the saw blade (211).

4. The multi-faceted timber processing equipment according to claim 3, characterized in that, The end of the threaded rod (31) facing the push plate (115) is hemispherical, the end of the pressing rod (322) facing the push plate (115) is hemispherical, the side of the connecting plate (41) is provided with a scale (411), and the end face of the rotating shaft (114) is provided with a pointer (1141).

5. The multi-faceted timber processing equipment according to claim 4, characterized in that, The clamp assembly (13) includes a fixed seat (131), a rotating seat (132), and a pressure block (133). The fixed seat (131) includes a base (1311), a pressure plate (1312), and a connecting column (1313). The connecting column (1313) connects the base (1311) and the pressure plate (1312). The rotating seat (132) is rotatably mounted on the base (1311), and the pressure block (133) is rotatably mounted on the pressure plate (1312). The rotating seat (132) and the pressure block (133) can clamp the wooden block (101). The pressure block (133) passes through the pressure plate (1312), and the upper end of the pressure block (133) can engage with the rotary drive device (15).

6. The multi-faceted timber processing equipment according to claim 5, characterized in that, The connecting column (1313) includes a guide column (13131) and a movable rod (13132). The guide column (13131) is fixedly installed on the base (1311). The movable rod (13132) is at least partially located inside the guide column (13131). The upper end of the movable rod (13132) is fixedly connected to the pressure plate (1312). The movable rod (13132) can move along the guide column (13131).

7. The multi-faceted timber processing equipment according to claim 5, characterized in that, The clamp assembly (13) includes a limiting assembly (134), which includes a first guide rod (1341), a locking rod (1342), and a connecting piece (1343). The base (1311) is provided with a guide groove (13111). The first guide rod (1341) can slide along the guide groove (13111). The first guide rod (1341) passes through the base (1311), and the locking rod (1342) passes through the base (1311). The first guide rod (1341) and the locking rod (1342) are connected. The rod (1342) is connected by the connecting piece (1343). The lower end face of the rotating seat (132) is provided with a plurality of grooves (1324). The locking rod (1342) can be inserted into the groove (1324). The top plate (113) is equipped with a top block (16). The upper end of the first guide rod (1341) passes through the pressure plate (1312). When the clamp assembly (13) is in the second position, the top block (16) abuts against the first guide rod (1341), and the locking rod (1342) leaves the groove (1324).

8. The multi-faceted timber processing equipment according to claim 7, characterized in that, The rotating seat (132) includes a seat body (1321), a stop block (1322), and a clamping block (1323). The stop block (1322) is installed on one side of the seat body (1321), and the clamping block (1323) is installed on the seat body (1321). The clamping block (1323) is located on the opposite side of the stop block (1322). The clamping block (1323) can move closer to or further away from the stop block (1322), and the clamping block (1323) and the stop block (1322) can clamp the wooden block (101).

9. A method for processing multi-faceted timber, based on the multi-faceted timber processing equipment described in claim 8, characterized in that, Includes the following steps: S1. Adjustment: Depending on the angle to be cut of the timber (101), select whether to rotate the lifting device (1). If the inclined surface to be cut is perpendicular to the upper surface of the timber (101), then there is no need to rotate the lifting device (1). If the angle between the inclined surface to be cut and the upper surface of the timber (101) is offset, then the lifting device (1) is tilted by the rotating device (3) according to the required cutting angle, so that the upper surface of the timber (101) is offset from the horizontal plane. The position of the circular saw (21) is adjusted by adjusting the first translation device (22) and the second translation device (23) of the cutting device (2). The angle of the saw blade (211) of the circular saw (21) in the vertical direction is adjusted by rotating the rotating table (24) of the cutting device (2). S2, Loading: The clamp assembly (13) is controlled in the first position by the telescopic drive device (12) in the lifting device (1), and the wood block (101) to be processed is placed on the rotating seat (132) of the clamp assembly (13). It is fixed by the stop block (1322) and clamp block (1323) of the rotating seat (132), and the upper end face of the wood block (101) is pressed by the pressure block (133). The angle of the rotating seat (132) is adjusted according to the part of the wood block (101) to be cut. S3, Cutting: The clamp assembly (13) is lifted upward by the telescopic drive device (12), so that the timber (101) passes through the saw blade (211) that is in operation and is cut once. When the clamp assembly (13) reaches the second position, the pressure block (133) abuts against the rotary drive device (15), and the top block (16) presses against the limiting assembly (134) so ​​that the locking rod (1342) leaves the groove (1324) at the bottom of the rotating seat (132). The rotary drive device (15) can rotate the pressure block (133) and can rotate the clamp assembly (13) to change the part of the timber (101) that needs to be cut. The clamp assembly (13) is moved downward by the telescopic drive device (12) to cut again. This process is repeated several times. S4. Material Removal: The clamp assembly (13) is controlled in the first position by the telescopic drive device (12) in the lifting device (1), and the clamping block (1323) of the rotating seat (132) is pulled open to remove the cut wood (101).

Citation Information

Patent Citations

  • Profile bevel angle cutting device

    CN115121864A

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    CN220240185U