A double-end tenoning machine convenient for cleaning waste
By designing feeding, processing, cutting and cleaning mechanisms in the tenoning machine, automated wood chip collection and cleaning are achieved, solving the problem of inconvenient manual feeding and waste disposal, and improving processing efficiency and equipment life.
Patent Information
- Application Number
- CN202311498697.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-11-10
- Publication Date
- 2025-08-12
- Estimated Expiration
- 2043-11-10
AI Technical Summary
The existing tenon machines have problems such as manual feeding and waste disposal during wood processing, and the dissipation of wood chips affects the life of the equipment and environmental sanitation.
A double-end tenon machine for easy cleaning of waste is designed, including feeding, processing, unloading and cleaning mechanisms. The width of the feeding mechanism and processing mechanism is adjusted through the moving mechanism, and wood chips are collected and cleaned using a cleaning mechanism. The waste suction box and waste suction head are used for automatic cleaning.
It improves the working efficiency and finished product quality of wood processing, extends the service life of the equipment, and improves the environmental sanitation of the factory.
Smart Images

Figure CN117260905B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of double-end tenoning machines, in particular to a double-end tenoning machine which is convenient for cleaning waste. Background Art
[0002] A mortising machine is a woodworking machine tool used to process the tenons of wooden products. There are two types: straight mortising machines and dovetail mortising machines. The former is further divided into single-head and double-head types. The double-head straight mortising machine is a combination of two single-head straight mortising machines located on both sides of the workpiece, used to mortise both ends simultaneously. Since the current mortising machines still use manual feeding for wood feeding and discharging during use, the following problems will arise during the wood processing process: first, wood processing requires manual single feeding and removal before the next feeding; second, the waste material that falls under the tenon knife of the mortising machine is difficult to handle without collection; most of these wood chips are small in size and light in weight, and are blown around by the wind and cannot be cleaned up. These wood chips adhere to the machinery and equipment, which will affect the service life of the machine, the environmental sanitation of the factory, and harm the health of the workers. Summary of the Invention
[0003] The purpose of the present invention is to provide a double-end tenoning machine that is easy to clean up waste. The width between the feeding mechanism and the processing mechanism can be adjusted according to the length of the wooden board to be processed. The wood chips generated during wood processing are collected and cleaned by the cleaning mechanism, thereby extending the service life of the equipment.
[0004] To achieve the above-mentioned objectives, the present invention provides a double-end tenoning machine that is convenient for cleaning waste materials, including a base, a feeding mechanism, a processing mechanism, a unloading mechanism and a cleaning mechanism. The feeding mechanism, the processing mechanism and the unloading mechanism are all connected to the movable mechanism on the base, and the second movable unit and the first movable unit of the movable mechanism are symmetrically arranged. The first feeding unit of the feeding mechanism is located on the right side wall of the first mounting seat of the first movable unit, the first processing unit of the processing mechanism is slidably connected to the front side wall of the first mounting seat, the first unloading unit of the unloading mechanism is located in front of the first processing unit, and the first cleaning unit of the cleaning mechanism is located on the rear side wall of the first mounting seat. The base is provided with a mounting platform between the first movable unit and the second movable unit.
[0005] Preferably, the feeding mechanism includes the first feeding unit, the second feeding unit and the clamping unit, the second feeding unit is located on the right side wall of the second mounting seat of the second movable unit, the second feeding unit has the same structure as the first feeding unit, the first discharge plate of the first feeding unit is located on the right side wall of the first mounting seat, the first mounting plate in front of the first discharge plate is connected with the first material blocking cylinder, the first material blocking cylinder passes through the first mounting plate and is connected with the first material blocking plate, a feeding plate slidingly connected to the first discharge plate is provided behind the first material blocking plate, a first material discharge trough is provided on the side of the first discharge plate close to the first mounting plate, and an L-shaped first guide plate is provided below the first material discharge trough.
[0006] Preferably, a clamping seat of the clamping unit is provided under the first material discharge chute, a movable plate is slidably connected in the movable groove of the clamping seat, the movable plate is connected to the clamping cylinder on the mounting table, and waste material blocking plates are symmetrically provided on both sides of the fixed plate connected to the clamping seat, and the fixed plate is connected to the positioning cylinder at the processing mechanism.
[0007] Preferably, the processing mechanism includes the first processing unit and the second processing unit, the second processing unit is slidingly connected to the front side wall of the second mounting seat of the second movable unit, the second processing unit has the same structure as the first processing unit, the first processing slide of the first processing unit is slidingly connected to the front side wall of the first mounting seat, the first processing motor connected to the first processing slide is provided with a first processing wheel, and the first movable cylinder at the top of the first mounting seat is connected to the first processing slide.
[0008] Preferably, the unloading mechanism includes the first unloading unit and the second unloading unit, the first rotating motor of the first unloading unit is located in front of the first processing motor, the top of the first rotating arm connected to the first rotating motor is connected to the first unloading motor, and the top of the first unloading arm connected to the first unloading motor is provided with a first unloading suction cup.
[0009] Preferably, the cleaning mechanism includes the first cleaning unit and the second cleaning unit, the second cleaning unit has the same structure as the first cleaning unit, the first waste suction box of the first cleaning unit is located behind the first mounting seat, the first waste suction box is connected to the first waste suction head through the first waste suction pipe, the first waste suction head is connected to the first mounting bracket on the left side wall of the movable plate, and the first collection tank of the first cleaning unit is located below the first mounting seat.
[0010] Preferably, the first collecting tank is located inside the first mounting tank of the base, a first waste outlet door is provided on the side wall of the first collecting tank, and the first mounting tank is provided with a waste outlet communicating with the outside.
[0011] Preferably, a first movable slide is connected under the first mounting seat, and a second movable slide is connected under the second mounting seat. The first movable slide is threadedly connected to the first threaded portion of the driving rod in the first collecting groove, and the second movable slide is threadedly connected to the second threaded portion of the driving rod in the second collecting groove of the second cleaning unit.
[0012] Preferably, the thread directions of the first threaded portion and the second threaded portion are opposite to each other, the driving rod is connected to the driving motor outside the base, and the driving rod is hinged to the mounting platform.
[0013] Therefore, the present invention adopts a double-end tenoning machine with the above structure that is convenient for cleaning waste materials, and its beneficial effects are as follows: 1. The double-end tenoning machine provided by the present invention can adjust the width between the feeding mechanism and the processing mechanism according to the length of the wood board to be processed, and feeds from the rear end during processing and unloads from the front end after processing, thereby improving the working efficiency of the processing process and the quality of the finished product;
[0014] 2. The wood chips generated by the double-end tenoning machine provided by the present invention during wood processing are collected and cleaned by a cleaning mechanism, thereby extending the service life of the equipment.
[0015] The technical solution of the present invention is further described in detail below through the accompanying drawings and embodiments. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 This is a schematic diagram of a double-end tenoning machine (the blanking mechanism and the driving motor are not shown) that is convenient for cleaning waste materials according to the present invention;
[0017] Figure 2 It is a side sectional view of a double-end tenoning machine of the present invention that is convenient for cleaning waste;
[0018] Figure 3 This is a top view of a double-end tenoning machine base (feeding mechanism, cleaning mechanism and processing mechanism are not shown) that facilitates waste cleaning according to the present invention;
[0019] Figure 4 This is a top view of a double-end tenoning machine clamping seat for facilitating waste cleaning according to the present invention;
[0020] Figure 5 It is an enlarged view of point A of a double-end tenoning machine for facilitating waste cleaning according to the present invention.
[0021] Reference numerals
[0022] 1. Base; 11. Mounting table; 12. First mounting slot; 13. Waste outlet; 2. Feeding mechanism; 21. First feeding unit; 211. First discharge plate; 212. First mounting plate; 213. First material blocking cylinder; 214. First material blocking plate; 215. First material discharge chute; 216. First guide plate; 22. Second feeding unit; 23. Clamping unit; 231. Clamping seat; 232. Moving slot; 233. Moving plate; 234. Fixed plate; 235. Waste material blocking plate; 236. Positioning cylinder; 237. Clamping cylinder; 238. First mounting bracket; 24. Feeding cylinder; 25. Feeding plate; 3. Processing mechanism; 31. First processing unit; 311. First processing slide; 312. First processing Wheel; 313, first moving cylinder; 32, second processing unit; 4, unloading mechanism; 41, first unloading unit; 411, first rotating motor; 412, first rotating arm; 413, first unloading motor; 414, first unloading arm; 415, first unloading suction cup; 42, second unloading unit; 5, cleaning mechanism; 51, first cleaning unit; 511, first waste suction box; 512, first waste suction head; 513, first collecting trough; 514, first waste outlet door; 515, first waste suction pipe; 52, second cleaning unit; 6, moving mechanism; 61, first moving unit; 611, first moving slide; 612, first mounting seat; 62, second moving unit; 63, driving motor; 64, driving rod. DETAILED DESCRIPTION
[0023] The technical solution of the present invention is further described below with reference to the accompanying drawings and embodiments.
[0024] Unless otherwise defined, the technical or scientific terms used in the present invention shall have the usual meanings understood by persons of ordinary skill in the field to which the present invention belongs. The words "first", "second" and similar terms used in the present invention do not indicate any order, quantity or importance, but are only used to distinguish different components. Words such as "include" or "comprise" mean that the elements or objects preceding the word include the elements or objects listed after the word and their equivalents, without excluding other elements or objects. Words such as "connect" or "connected" are not limited to physical or mechanical connections, but may include electrical connections, whether direct or indirect. "Up", "down", "left", "right" and the like are only used to indicate relative positional relationships. When the absolute position of the object being described changes, the relative positional relationship may also change accordingly.
[0025] Figure 1 This is a schematic diagram of a double-end tenoning machine (the blanking mechanism and the driving motor are not shown) that is convenient for cleaning waste materials according to the present invention; Figure 2 It is a side sectional view of a double-end tenoning machine of the present invention that is convenient for cleaning waste; Figure 3 This is a top view of a double-end tenoning machine base (feeding mechanism, cleaning mechanism and processing mechanism are not shown) that facilitates waste cleaning according to the present invention; Figure 4 This is a top view of a double-end tenoning machine clamping seat for facilitating waste cleaning according to the present invention; Figure 5 This is an enlarged view of point A of a double-end tenoning machine that is convenient for cleaning waste materials according to the present invention. As shown in the figure, a double-end tenoning machine that is convenient for cleaning waste materials includes a base 1, a feeding mechanism 2, a processing mechanism 3, a blanking mechanism 4 and a cleaning mechanism 5. The feeding mechanism 2, the processing mechanism 3 and the blanking mechanism 4 are all connected to the mobile mechanism 6 on the base 1, and the second mobile unit 62 and the first mobile unit 61 of the mobile mechanism 6 are symmetrically arranged. The first feeding unit 21 of the feeding mechanism 2 is located on the right side wall of the first mounting seat 612 of the first mobile unit 61, the first processing unit 31 of the processing mechanism 3 is slidably connected to the front side wall of the first mounting seat 612, and the first blanking unit 41 of the blanking mechanism 4 is located in front of the first processing unit 31. The first cleaning unit 51 of the cleaning mechanism 5 is located on the rear side wall of the first mounting seat 612, and the base 1 is provided with a mounting table 11 between the first mobile unit 61 and the second mobile unit 62.
[0026] The moving mechanism 6 adjusts the distance between the first moving unit 61 and the second moving unit 62 according to the length of the wood to be processed. The feeding mechanism 2 is used to transport the wood to be processed to the processing mechanism 3, which performs the tenoning operation on the wood. The waste generated by the processing mechanism 3 during the processing enters the cleaning mechanism 5. The unloading mechanism 4 removes the processed wood from the feeding mechanism 2. During the unloading process of the unloading mechanism 4, the feeding mechanism 2 repeats the feeding operation. Once the unloading is completed, the next processing can be carried out, thereby improving processing efficiency.
[0027] The feeding mechanism 2 includes a first feeding unit 21, a second feeding unit 22, and a clamping unit 23. The second feeding unit 22 is located on the right side wall of the second mounting seat of the second movable unit 62 and has the same structure as the first feeding unit 21. The first discharge plate 211 of the first feeding unit 21 is located on the right side wall of the first mounting seat 612. The first mounting plate 212 in front of the first discharge plate 211 is connected to a first material blocking cylinder 213, which passes through the first mounting plate 212 and is connected to the first material blocking plate 214. A feeding plate 25 is provided behind the first material blocking plate 214, which is slidably connected to the first discharge plate 211. A first material discharge chute 215 is provided on the side of the first discharge plate 211 near the first mounting plate 212.
[0028] The first unloading plate 211 of the first feed unit 21 and the second unloading plate of the second feed unit 22 are used to place the wood to be processed on both sides. A feed plate 25 is installed between the first unloading plate 211 and the second unloading plate. The lower portion of the feed plate 25 is connected to the feed cylinder 24 below the first and second unloading plates. The feed cylinder 24 is connected to the feed cylinder seat connected between the side walls of the first mounting seat 612 and the second mounting seat. The upper portion of the feed plate 25 slides over the first and second unloading plates to push the wood to be processed. The width of the upper portion of the feed plate 25 is greater than the width of the lower portion of the feed plate 25, ensuring that the feed cylinder 24 can smoothly drive the feed plate 25 to move.
[0029] The feed plate 25 pushes the wood to be processed between the first and second discharge plates 211 toward the first chute 215, where it falls to the clamping unit 23. A first material blocking plate 214 moves near the first chute 215 to control whether the wood to be processed enters the chute 215. An L-shaped first guide plate 216 is positioned below the first chute 215, along which the wood to be processed falls to the clamping unit 23. The first guide plate 216 defines the path and angle of the wood to be processed, preventing it from tipping over or shifting left or right when it falls.
[0030] Below the first material discharge chute 215 is a clamping seat 231 of the clamping unit 23, which is slidably connected to the mounting platform 11. A movable plate 233 is slidably connected within the movable groove 232 of the clamping seat 231. The movable plate 233 is connected to a clamping cylinder 237 on the mounting platform 11. Waste blocking plates 235 are symmetrically positioned on either side of the fixed plate 234 to which the clamping seat 231 is attached. The ends of the waste blocking plates 235 are located above the first or second collection chute 513. The provision of the waste blocking plates 235 intercepts waste chips generated during wood processing, causing them to fall into the first or second collection chute 513, thereby preventing waste chips from accumulating on the mounting platform 11.
[0031] The lumber to be processed falls between the movable plate 233 and fixed plate 234 of the clamping seat 231. The clamping cylinder 237 is activated, driving the fixed plate 234 toward the movable plate 233, thereby securing the center of the lumber to be processed between the movable and fixed plates 233 and 234. The clamping cylinder 237 then extends forward, driving the clamping seat 231 to slide forward until the fixed plate 234 contacts the positioning cylinder 236. The positioning cylinder 236, located on the mounting platform 11 at the processing mechanism 3, adjusts the relative position of the lumber to be processed and the processing mechanism 3 to facilitate processing and prevent relative displacement between the fixed plate 234 and the movable plate 233 during processing, which could affect the quality of the lumber. Corrugated sleeves are placed between the positioning cylinder 236 and the fixed plate 234, and between the clamping cylinder 237 and the movable plate 233, to prevent waste from affecting the service life of the positioning cylinder 236 and the clamping cylinder 237.
[0032] The processing mechanism 3 includes a first processing unit 31 and a second processing unit 32. The second processing unit 32 is slidably connected to the front side wall of the second mounting seat of the second movable unit 62 and has the same structure as the first processing unit 31. The first processing slide 311 of the first processing unit 31 is slidably connected to the front side wall of the first mounting seat 612. The first processing slide 311 is connected to a first processing motor equipped with a first processing wheel 312. The first processing slide 311 and the second processing slide can move up and down driven by a first movable cylinder 313 and a second movable cylinder, respectively, allowing the first processing wheel 312 and the second processing wheel to process different parts of the wood.
[0033] The unloading mechanism 4 includes a first unloading unit 41 and a second unloading unit 42. The second unloading unit 42 has the same structure as the first unloading unit 41. The first rotating motor 411 of the first unloading unit 41 is located in front of the first processing motor. The top end of the first rotating arm 412 connected to the first rotating motor 411 is connected to the first unloading motor 413. The top end of the first unloading arm 414 connected to the first unloading motor 413 is equipped with a first unloading suction cup 415.
[0034] The first rotating motor 411 drives the first rotating arm 412, the first unloading motor 413, and the first unloading arm 414 to rotate. The first unloading motor 413 drives the first unloading arm 414 to rotate, thereby bringing the first unloading suction cup 415 close to the wood. The first unloading suction cup 415 and the second unloading suction cup respectively suck the wood at both ends, removing the wood from the clamping seat 231 and completing the unloading.
[0035] The cleaning mechanism 5 includes a first cleaning unit 51 and a second cleaning unit 52. The second cleaning unit 52 has the same structure as the first cleaning unit 51. The first waste suction box 511 of the first cleaning unit 51 is located behind the first mounting base 612. The first waste suction box 511 is connected to the first waste suction head 512 via a first waste suction pipe 515. The first waste suction head 512 is connected to the first mounting bracket 238 on the left side wall of the movable plate 233. The first collection tank 513 of the first cleaning unit 51 is located below the first mounting base 612.
[0036] The first waste suction head 512 removes the waste chips from the left side of the movable plate 233 during wood processing. The waste chips enter the first waste suction box 511 through the first waste suction pipe 515. The second waste suction head removes the waste chips from the right side of the movable plate 233 during wood processing, completing the waste collection. The remaining bulky waste accumulates between the wood processing area and the waste blocking plate 235. The accumulated bulky waste falls directly or falls into the first collection trough 513 and the second collection trough when the waste blocking plate 235 moves backward.
[0037] The first collection trough 513 is located within the first mounting slot 12 of the base 1. A first waste discharge door 514 is provided on the sidewall of the first collection trough 513. The first mounting slot 12 is provided with a waste discharge port 13 that communicates with the outside world. The first collection trough 513 can be opened through the first waste discharge door 514. Once opened, the first waste discharge door 514 rotates until it contacts the bottom of the waste discharge port 13, allowing waste to be cleared from the first collection trough 513 through the first waste discharge door 514.
[0038] A first movable slide 611 is connected below the first mounting seat 612, and a second movable slide is connected below the second mounting seat. The first movable slide 611 is threadedly connected to the first threaded portion of the drive rod 64 in the first collecting groove 513, and the second movable slide is threadedly connected to the second threaded portion of the drive rod 64 in the second collecting groove of the second cleaning unit 52.
[0039] The first and second threaded portions have opposite thread directions. A drive rod 64 is connected to a drive motor 63 outside the base 1, and the drive rod 64 is hinged to the mounting platform 11. When the drive motor 63 is activated, the drive rod 64 rotates, causing the first movable slide 611 and the second movable slide to move closer to or further away from each other, thereby adjusting the distance between the various mechanisms to suit the length of the wood to be processed. The drive rod 64 is provided with a corrugated sleeve between the side wall of the first collection trough 513 and the first movable slide 611, and between the side wall of the second collection trough and the second movable slide, respectively, to prevent waste from falling onto the first and second threaded portions, which would affect the adjustment of the distance between the first movable slide 611 and the second movable slide.
[0040] During operation, the drive motor 63 is activated and the distance between the first movable unit 61 and the second movable unit 62 is adjusted to suit the length of the wood to be processed. The first and second blocking cylinders 213 and 214 are activated to move the first and second blocking plates 214 to the front of the first and second feeding chutes 215. The wood to be processed is placed on the first and second feeding plates 211 and 215. The feeding cylinder 24 pushes the placed wood forward through the feeding plate 25 until a layer of wood to be processed is formed between the first and second blocking plates 214 and 25.
[0041] The clamping cylinder 237 is activated, and the front and rear positions of the clamping seat 231 are adjusted by driving the movable plate 233 to contact the side wall of the movable groove 232, so that the fixed plate 234 is located below the first guide plate 216 and the second guide plate. The first blocking cylinder 213 and the second blocking cylinder are activated, and the first blocking plate 214 and the second blocking plate are moved backward to the rear of the first feeding trough 215 and the second feeding trough. At the same time, the feeding cylinder 24 is activated to drive the feeding plate 25 to move the wood to be processed to the first feeding trough 215 and the second feeding trough. By moving the first blocking plate 214 and the second blocking plate to the front and rear sides of the first feeding trough 215 and the second feeding trough, and cooperating with the feeding plate 25, the wood boards to be processed are discharged one by one. After unloading, the wood boards to be processed fall along the first guide plate 216 and the second guide plate onto the clamping seat 231. The clamping cylinder 237 and the positioning cylinder 236 are activated, and the wood to be processed is clamped and moved between the first processing wheel 312 and the second processing wheel.
[0042] The first and second moving cylinders 313 and 236 adjust the height of the first and second processing wheels 312, respectively. The clamping cylinder 237 and positioning cylinder 236 adjust the fore-aft position of the wood to be processed and the first and second processing wheels 312 and 236, respectively, to facilitate the tenoning operation of the first and second processing wheels 312 and 236 at the ends of the wood to be processed. While the processing mechanism 3 is operating, the first and second waste suction heads 512 and 513 remove the generated waste. Any remaining bulky waste accumulates between the wood and the waste blocking plate 235 and falls into the first collection trough 513 or the second collection trough.
[0043] After the wood is processed, the first rotating motor 411, the second rotating motor, the first unloading motor 413, and the second unloading motor are activated to move the first unloading suction cup 415 and the second unloading suction cup above the wood. The clamping cylinder 237 is moved backward, and the first unloading suction cup 415 and the second unloading suction cup are activated. The wood is then unloaded by the first rotating motor 411 and the first unloading motor 413.
[0044] Therefore, the present invention adopts a double-end tenoning machine with the above structure that is convenient for cleaning waste. The width between the feeding mechanism and the processing mechanism can be adjusted according to the length of the wooden board to be processed. The wood chips generated during wood processing are collected and cleaned by the cleaning mechanism, thereby extending the service life of the equipment.
[0045] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention rather than to limit the same. Although the present invention has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that they can still modify or replace the technical solutions of the present invention with equivalents, and these modifications or equivalent replacements cannot cause the modified technical solutions to deviate from the spirit and scope of the technical solutions of the present invention.
Claims
1. A double-end tenoning machine that is convenient for cleaning waste, comprising a base, a feeding mechanism, a processing mechanism, a blanking mechanism, and a cleaning mechanism, characterized in that: The feeding mechanism, the processing mechanism and the unloading mechanism are all connected to the mobile mechanism on the base, the second mobile unit and the first mobile unit of the mobile mechanism are symmetrically arranged, the first feeding unit of the feeding mechanism is located on the right side wall of the first mounting seat of the first mobile unit, the first processing unit of the processing mechanism is slidably connected to the front side wall of the first mounting seat, the first unloading unit of the unloading mechanism is located in front of the first processing unit, the first cleaning unit of the cleaning mechanism is located on the rear side wall of the first mounting seat, and the base is provided with a mounting platform between the first mobile unit and the second mobile unit; the feeding mechanism includes the first feeding unit unit, a second feeding unit and a clamping unit, the second feeding unit is located on the right side wall of the second mounting seat of the second movable unit, the second feeding unit has the same structure as the first feeding unit, the first discharge plate of the first feeding unit is located on the right side wall of the first mounting seat, the first mounting plate in front of the first discharge plate is connected with a first material blocking cylinder, the first material blocking cylinder passes through the first mounting plate and is connected with the first material blocking plate, a feeding plate slidably connected to the first discharge plate is provided behind the first material blocking plate, a first material discharge trough is provided on the side of the first discharge plate close to the first mounting plate, and an L-shaped first guide plate is provided below the first material discharge trough; A clamping seat of the clamping unit is provided below the first material discharge chute, a movable plate is slidably connected in the movable groove of the clamping seat, the movable plate is connected to the clamping cylinder on the mounting table, waste material blocking plates are symmetrically provided on both sides of the fixed plate connected to the clamping seat, and the fixed plate is connected to the positioning cylinder at the processing mechanism; The cleaning mechanism includes the first cleaning unit and the second cleaning unit. The second cleaning unit has the same structure as the first cleaning unit. The first waste suction box of the first cleaning unit is located behind the first mounting seat. The first waste suction box is connected to the first waste suction head through the first waste suction pipe. The first waste suction head is connected to the first mounting bracket on the left side wall of the movable plate. The first collection tank of the first cleaning unit is located below the first mounting seat.
2. A double-end tenoning machine that is convenient for cleaning waste according to claim 1, characterized in that: The processing mechanism includes the first processing unit and the second processing unit, the second processing unit is slidingly connected to the front side wall of the second mounting seat of the second movable unit, the second processing unit has the same structure as the first processing unit, the first processing slide of the first processing unit is slidingly connected to the front side wall of the first mounting seat, the first processing motor connected to the first processing slide is provided with a first processing wheel, and the first movable cylinder at the top of the first mounting seat is connected to the first processing slide.
3. A double-end tenoning machine that is convenient for cleaning waste materials according to claim 2, characterized in that: The unloading mechanism includes the first unloading unit and the second unloading unit. The first rotating motor of the first unloading unit is located in front of the first processing motor. The top of the first rotating arm connected to the first rotating motor is connected to the first unloading motor. The top of the first unloading arm connected to the first unloading motor is provided with a first unloading suction cup.
4. The double-end tenoning machine for facilitating waste cleaning according to claim 1, characterized in that: The first collecting tank is located inside the first mounting tank of the base, a first waste outlet door is provided on a side wall of the first collecting tank, and the first mounting tank is provided with a waste outlet communicated with the outside.
5. The double-end tenoning machine for facilitating waste cleaning according to claim 2, characterized in that: A first movable slide is connected under the first mounting seat, and a second movable slide is connected under the second mounting seat. The first movable slide is threadedly connected to the first threaded portion of the driving rod in the first collecting groove, and the second movable slide is threadedly connected to the second threaded portion of the driving rod in the second collecting groove of the second cleaning unit.
6. A double-end tenoning machine that is convenient for cleaning waste materials according to claim 5, characterized in that: The first threaded portion and the second threaded portion have opposite thread directions. The driving rod is connected to a driving motor outside the base, and the driving rod is hinged to the mounting platform.
Citation Information
Patent Citations
Numerical control automatic double-ended tenoning machine
CN102950628A
CNC (computer numerical control) automatic double-end tenoner
CN204076424U
Milling machine for machining accessories of generator set
CN217571973U