Wood door pocket production line and control method thereof
The wood door frame production line addresses inefficiencies by using QR code scanning for precise processing, enhancing automation and reducing labor costs while improving product quality and efficiency.
Patent Information
- Application Number
- CN202510520831.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-24
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2045-04-24
AI Technical Summary
The degree of automation in the production process of traditional wooden door frames is low, and manual identification and processing information are inaccurate, resulting in low efficiency, poor quality and high cost.
The scanning equipment is used to automatically identify the QR code on the door sleeve, obtain processing information, and accurately process the slotting, milling and wax coating equipment through the control system to achieve automatic production.
Improve production efficiency, reduce labor costs, improve product quality and material utilization, reduce rework and material waste, and ensure the accuracy of grooves and wax coating.
Smart Images

Figure CN120307410A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of wooden door production and processing, and particularly to a production line for a wooden door door pocket and a control method thereof. Background Art
[0002] A door pocket refers to the two door frames inside and outside the door, and is also directly called a door frame. Its main functions are to fix the door leaf, protect the corner of the wall and for decoration, etc. It is commonly used in the decoration process to protect the door from scratches, corrosion, damage and dirt, etc. Most door pockets need to be grooved during the production process.
[0003] In the door pocket production industry, traditional production processes mostly rely on a large amount of manual operations, and the degree of automation is low. At present, the identification and processing of processing information during the production of door pockets mainly rely on manual judgment. For example, in the process of milling hinge and lock holes, workers need to rely on experience and the naked eye to distinguish the left and right side sleeves of the door pocket. This method is not only inefficient, but also prone to judgment errors due to human negligence, which in turn causes product rework and increases production costs. In terms of moisture-proof treatment of door pockets, the existing technology usually adopts a relatively crude waxing method. On the one hand, the determination of the waxing position lacks precise positioning and mostly relies on the experience of workers, resulting in inaccurate waxing positions for some door pockets and unable to effectively play the moisture-proof role; on the other hand, it is difficult to precisely control the uniformity and thickness of the waxing. In the grooving process, the adjustment of the milling cutter also relies on manual operation. Workers need to manually adjust the position of the milling cutter from the edge according to experience. This adjustment method not only takes time, but also due to the limitations of manual operation, it is difficult to ensure the accuracy of each adjustment, thus affecting the quality of grooving and the overall assembly accuracy of the door pocket. In addition, due to the high dependence on manual labor in each production link, the entire production process requires a large amount of labor input, and the labor cost remains high. Manual operation is easily affected by factors such as workers' emotions and fatigue levels, resulting in unstable production efficiency and difficult to meet the growing market demand.
[0004] In summary, the existing production processes of door pockets have many deficiencies in terms of automation degree, production efficiency, product quality and cost control, etc., and urgent improvement is needed. Summary of the Invention
[0005] In view of the above defects existing in the prior art, the present invention provides a production line for a wooden door door pocket and a control method thereof to solve the defects of low efficiency, poor quality and high cost existing in the traditional door pocket production process.
[0006] The present invention is realized by adopting the following technical solutions:
[0007] A production line for a wooden door jamb, the jamb including a top jamb and left and right side jambs connected to both ends of the top jamb, comprising a scanning device, a grooving device, a nailing device, a profiling device, and a waxing device arranged in sequence along the transmission direction of the jamb. The scanning device is used to scan the QR code attached to the jamb to obtain the jamb processing information and send the corresponding jamb processing information of the jamb to the grooving device, the profiling device, and the waxing device. The grooving device performs grooving operations on the specified position of the jamb for the retaining strip groove according to the received jamb processing information. The nailing device includes a glue coating device for coating glue on the retaining strip groove and a nailing device for nailing the retaining strip after installing the retaining strip in the retaining strip groove. The profiling device identifies the left and right side jambs according to the received jamb processing information and performs profiling processing on the identified left and right side jambs for the hinge and lock hole respectively. The waxing device performs waxing on the specified positions of the left and right side jambs according to the received jamb processing information.
[0008] Further, the grooving device includes a grooving cutter and an adjustment device connected to the grooving cutter. The adjustment device drives the grooving cutter to move to the specified position of the jamb according to the received jamb processing information to perform grooving at the specified position of the jamb.
[0009] Further, the waxing device includes a waxing roller and a positioning device connected to the waxing roller. The positioning device is used to drive the waxing roller to move to the specified positions of the left and right side jambs according to the received jamb processing information to perform waxing at the specified positions of the left and right side jambs.
[0010] Further, the profiling device includes a milling cutter for profiling the hinge and lock hole and a driving device. The driving device adjusts the position and operating parameters of the milling cutter according to the received jamb processing information so that the milling cutter profiles the hinge and lock hole according to the preset specifications.
[0011] Further, the waxing device further includes a thickness adjusting device, and the thickness adjusting device is used to adjust the distance between the waxing roller and the left and right side jambs..
[0012] Further, the nailing device further includes a nail replenishing machine, and the nail replenishing machine is arranged at the end of the nailing device. The nail replenishing machine is used to perform nail replenishing processing on the tail of the jamb.
[0013] Further, it further includes a first conveyor for connecting the scanning device and the grooving device, a second conveyor for connecting the grooving device and the nailing device, a third conveyor for connecting the nailing device and the milling device, and a fourth conveyor for connecting the milling device and the waxing device. The third conveyor includes a vertically arranged first conveyor branch and a second conveyor branch. The first conveyor branch is horizontally arranged and is used to convey the nailed top sleeve to the output device. The second conveyor branch is vertically arranged and is used to convey the nailed left and right side sleeves to the milling device. The output device is perpendicularly arranged with respect to the first conveyor branch, and the output device is connected with three horizontally arranged packing conveyor lines.
[0014] Further, the adjusting device includes a motor, a lead screw connected to the motor, and a slider threadedly connected to the lead screw. The grooving tool is connected to the slider, and the lead screw extends along the y-axis direction.
[0015] Further, the scanning device is a scanning gun, and the scanning gun is located above the conveying direction of the door pocket. When the two-dimensional code of the door pocket passes through the scanning area of the scanning gun, it is read and recognized by the scanning gun.
[0016] A production line control method for a wooden door pocket includes a processing production line for the wooden door pocket. The production line control method includes: first, scanning the two-dimensional code on the door pocket through the scanning device to obtain the door pocket processing information, and transmitting the obtained door pocket processing information to the control system. The control system receives the door pocket processing information, analyzes and processes the door pocket processing information. According to the grooving distance from the edge position information, the control system sends a grooving position adjustment instruction to the grooving device. According to the left and right side sleeve information, the control system sends the corresponding milling parameter instructions for the left and right side sleeves to the milling device. According to the waxing position information and the milling reference edge positioning information, the control system sends a waxing position instruction and a thickness control instruction to the waxing device. The grooving device, the milling device, and the waxing device complete the corresponding processing procedures according to the received instructions.
[0017] Compared with the prior art, the beneficial effects of the present invention at least include:
[0018] With the aid of a scanning device, the present invention automatically identifies the processing information of door jambs and automatically controls various production devices based on the door jamb processing information, significantly reducing the dependence on manual labor and greatly cutting down the labor cost. On the other hand, the material waste caused by rework and unqualified products is significantly reduced, and the material utilization rate is significantly improved, thereby effectively reducing the comprehensive production cost; the profiling device automatically identifies the left and right side jams based on the received profiling processing information. This automatic identification and processing method greatly improves the production accuracy, effectively avoids the rework problem caused by misjudgment in manual identification, and improves the product qualification rate. The waxing device, based on the waxing position information and the profiling reference edge positioning information, makes the waxing position more accurate and the thickness more uniform, effectively enhancing the moisture-proof performance and appearance quality of the door jamb; the grooving device, based on the grooving distance from the edge position information, has a more accurate grooving position, improving the overall assembly accuracy of the door jamb and greatly reducing the product defects caused by processing errors. The product qualification rate is significantly improved compared with the traditional production method. The door jamb production line and its control method of the present invention solve the technical problems such as inaccurate manual identification of processing information, inaccurate waxing position, inaccurate grooving position, high labor cost and low production efficiency in the door jamb production process, realize the highly automatic connection of the door jamb production process, greatly improve the production efficiency, reduce the labor cost and improve the product quality. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 is a schematic diagram of a production line for a wooden door jamb according to Embodiment 1 of the present invention;
[0020] In the figure: 1, scanning area; 2, first conveyor device; 3, grooving device; 4, second conveyor device; 5, nailing device; 6, first transfer branch; 7, second transfer branch; 8, profiling device; 9, output device; 10, packing conveyor line. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0021] Example embodiments will now be described more fully with reference to the accompanying drawings. However, the example embodiments can be implemented in various forms and should not be construed as limited to the embodiments set forth herein; rather, these embodiments are provided so that this invention will be more complete and comprehensive, and will fully convey the concept of the example embodiments to those skilled in the art. Like reference numerals in the figures denote like or similar structures and thus their repetitive description will be omitted.
[0022] In the present invention, the words expressing position and direction are described by taking the drawings as examples, but can be changed according to needs, and all the changes are included in the protection scope of the present invention.
[0023] Embodiment 1
[0024] As Figure 1As shown, a production line of a wooden door frame provided by the present invention is provided, wherein the door frame includes a top frame and left and right side frames connected to both ends of the top frame, and the production line includes a scanning device, a slotting device 3, a nailing device 5, a milling device 8 and a waxing device which are arranged in sequence along the transmission direction of the door frame, the scanning device is used to scan the QR code attached to the door frame to obtain the door frame processing information and send the corresponding door frame processing information of the door frame to the slotting device 3, the milling device 8 and the waxing device, the slotting device 3 performs slotting operation of the baffle groove at the specified position of the door frame according to the received door frame processing information, the nailing device 5 includes a gluing device for gluing the baffle groove and a nailing device for nailing the baffle after the baffle is installed in the baffle groove, the milling device 8 identifies the left and right side frames according to the received door frame processing information and respectively performs milling processing of hinges and lock holes on the identified left and right side frames, and the waxing device applies wax at the specified positions of the left and right side frames according to the received door frame processing information.
[0025] In this embodiment, the door pocket includes a top sleeve and left and right side sleeves. Among them, corresponding two-dimensional codes are attached to the top sleeve and the left and right side sleeves. The entire door pocket (including the top sleeve and the left and right side sleeves) is sent into a scanning device, and the scanning device scans the two-dimensional codes of the door pocket to obtain corresponding door pocket processing information, and then sends the corresponding door pocket processing information to the grooving device 3, the profiling device 8, and the waxing device, so that the grooving device 3, the profiling device 8, and the waxing device complete corresponding processing procedures according to the corresponding door pocket processing information. Specifically: when the entire set of door pockets enters the grooving device 3, the grooving device 3 performs grooving operations on the specified positions of the door pocket for the retaining strip grooves according to the received corresponding door pocket processing information, so that the grooving positions of the door pocket are more accurate. Since the grooving device 3 adjusts the grooving positions based on the door pocket processing information, compared with manual adjustment, it greatly improves the accuracy and efficiency of grooving position adjustment, thereby improving the overall assembly accuracy and quality of the door pocket, and further reducing the product unqualified rate caused by inaccurate grooving positions. When the entire set of door pockets exits the grooving device 3, it enters the nailing device 5. The gluing device is installed at the entrance of the nailing device 5. The gluing device applies glue to the retaining strip grooves of the entire set of door pockets. After gluing, the retaining strips are installed at the gluing positions, and then the nailing device nails the retaining strips on the door pocket. So far, the common operations such as grooving, installing retaining strips, gluing, and nailing of the entire set of door pockets (including the top sleeve and the left and right side sleeves) have been completed. After nailing, the left and right side sleeves still need to enter the profiling device 8 for processing. The profiling device 8 identifies the left and right side sleeves according to the received corresponding door pocket processing information, and then the profiling device 8 performs profiling processing on the left and right side sleeves for the hinge and lock hole respectively according to the processing information of the left and right side sleeves. The profiling device 8 automatically identifies the left and right side sleeves based on the received corresponding door pocket processing information. Compared with the traditional manual identification method, this automatic identification and processing method greatly improves the production accuracy, effectively avoids the rework problem caused by misjudgment of manual identification, improves the product qualification rate, and saves production time and costs. After profiling, the left and right side sleeves enter the waxing device. The waxing device can accurately determine the positions where the left and right side sleeves need to be waxed based on the corresponding door pocket processing information, ensuring the accuracy of the waxing positions, avoiding material waste caused by inaccurate waxing positions, and thus improving the moisture-proof effect of the door pocket and the appearance quality of the product.
[0026] Through the above production line, the present invention solves the technical problems such as inaccurate manual identification of processing information, inaccurate waxing positions, inaccurate grooving positions, high labor costs, and low production efficiency in the production process of door pockets, realizes the high automation of the connection of door pocket production processes, greatly improves the production efficiency, reduces the labor costs, and improves the product quality.
[0027] It should be noted that the nailing device of the present invention is a conventional structure, and its nailing principle can adopt the technology disclosed in the invention named "A Door Jamb Nailing Machine" (Patent No. CN222155920U). Of course, in other embodiments, the nailing device can also adopt other existing technologies, which will not be specifically limited here. As a preferred embodiment, the grooving device 3 includes a grooving knife and an adjustment device connected to the grooving knife. The adjustment device drives the grooving knife to move to a specified position of the door jamb according to the received door jamb processing information, so as to groove at the specified position of the door jamb.
[0028] In this embodiment, the adjustment device drives the grooving knife to move to a specified position of the door jamb based on the door jamb processing information, which can ensure the accuracy of the position adjustment of the grooving knife. Tests show that during the adjustment process, the positioning accuracy of the grooving knife can reach ±0.05 mm, effectively ensuring the accuracy of the grooving position.
[0029] Specifically, the adjustment device includes a motor, a lead screw connected to the motor, and a slider threadedly connected to the lead screw. The grooving knife is connected to the slider, and the lead screw extends along the y-axis direction.
[0030] In this embodiment, the motor drives the lead screw to rotate based on the door jamb processing information, and then drives the grooving knife on the slider to move to a specified position of the door jamb, so that the grooving knife grooves at the specified position of the door jamb. The adjustment device adopts a high-precision lead screw and slider, has good rigidity and motion accuracy, and can ensure the accuracy of the position adjustment of the grooving knife.
[0031] As a preferred embodiment, the waxing device includes a waxing roller and a positioning device connected to the waxing roller. The positioning device is used to drive the waxing roller to move to specified positions of the left and right side sleeves according to the received door jamb processing information, so as to wax at the specified positions of the left and right side sleeves.
[0032] In this embodiment, the positioning device drives the waxing roller to move to specified positions of the left and right side sleeves based on the door jamb processing information, ensuring that the waxing roller can wax at the specified positions of the left and right side sleeves, greatly improving the accuracy of the waxing position. It can be understood that the positioning device can be a linear drive mechanism.
[0033] Specifically, the waxing device further includes a thickness adjusting device, and the thickness adjusting device is used to adjust the distance between the waxing roller and the left and right side sleeves.
[0034] In this embodiment, by controlling the distance between the waxing roller and the left and right sleeves through the thickness adjustment device, the waxing thickness of the left and right sleeves can be ensured to be uniform and maintained at the effect of 1-2 mm. At the same time, during the waxing process, the waxing thickness and uniformity can be monitored in real time through the monitoring device to ensure the waxing quality, effectively enhancing the moisture-proof performance and appearance quality of the door sleeve.
[0035] It should be noted that the thickness adjustment device can use a screw rod slider mechanism to adjust the distance between the waxing roller and the left and right sleeves.
[0036] As a preferred embodiment, the profiling device 8 includes a milling cutter for profiling hinges and lock holes and a driving device. The driving device adjusts the position and operating parameters of the milling cutter according to the received door sleeve processing information so that the milling cutter profiles the hinges and lock holes according to a preset specification.
[0037] In this embodiment, based on the corresponding door sleeve processing information, the driving device automatically adjusts the position and operating parameters of the milling cutter, so that the milling cutter profiles the hinges and lock holes according to a preset specification, which can ensure the profiling accuracy and efficiency. During the profiling process, the positioning accuracy of the milling cutter can reach ±0.1 mm, effectively ensuring the processing quality of the hinges and lock holes.
[0038] It should be noted that the driving device in this embodiment can be a motor, and the motor drives the milling cutter to profile the hinges and lock holes.
[0039] As a preferred embodiment, the nailing device 5 further includes a patching machine. The patching machine is arranged at the end of the nailing device, and the patching machine is used for patching the tail of the door sleeve.
[0040] In this embodiment, since the sizes of the left and right sleeves are not fixed, when facing the production of scattered orders, it is impossible to ensure that the nailing positions of the nailing device 5 perfectly fit the tails of the left and right sleeves, and there may be a state where there are no nails at the tails of the left and right sleeves. Therefore, a pause is required at the end of the nailing device 5, and the tails of the left and right sleeves are nailed by the patching machine to meet the nailing requirements of left and right sleeves of different sizes.
[0041] It should be noted that the patching machine is a commonly used patching machine for door sleeves on the market, and the specific structure will not be elaborated here.
[0042] As a preferred embodiment, it further includes a first conveyor device 2 for connecting the scanning device and the grooving device 3, a second conveyor device 4 for connecting the grooving device 3 and the nailing device 5, a third conveyor device for connecting the nailing device 5 and the profiling device 8, and a fourth conveyor device for connecting the profiling device 8 and the waxing device. The third conveyor device includes a vertically arranged conveyor branch 6 and a conveyor branch 7. The conveyor branch 6 is horizontally arranged and is used to convey the capped sleeve after nailing to the output device 9. The conveyor branch 7 is vertically arranged and is used to convey the left and right side sleeves after nailing to the profiling device 8. The output device 9 is vertically arranged with respect to the conveyor branch 6, and the output device 9 is connected with three horizontally arranged packing conveyor lines 10.
[0043] In this embodiment, through the above layout method, the processing of the door pocket is fully automatic and the rhythm is smooth. Moreover, the layout is compact, reducing the processing floor area and being beneficial to reducing the production cost.
[0044] It should be noted that the first conveyor device 2, the second conveyor device 4, the third conveyor device, and the fourth conveyor device can adopt conveyor belts or conveyor rollers.
[0045] As a preferred embodiment, the scanning device is a scanning gun. The scanning gun is located above the conveying direction of the door pocket, and the two-dimensional code of the door pocket is read and recognized by the scanning gun when passing through the scanning area 1 of the scanning gun.
[0046] In this embodiment, the two-dimensional code on the door pocket can be quickly read and recognized by the scanning gun, improving the recognition efficiency. The two-dimensional code of the door pocket is read and recognized by the scanning gun when passing through the scanning area 1 of the scanning gun. Compared with the method of scanning with a hand-held scanning gun, the labor intensity is reduced and the scanning speed is increased.
[0047] Embodiment 2
[0048] The present invention also provides a production line control method for a wooden door pocket, including the above-mentioned processing production line of the wooden door pocket. This production line control method includes: first, scanning the two-dimensional code on the door pocket through the scanning device to obtain the door pocket processing information, and transmitting the obtained door pocket processing information to the control system. The control system receives the door pocket processing information and analyzes and processes the door pocket processing information. According to the grooving distance from the edge position information, the control system sends a grooving position adjustment instruction to the grooving device 3. According to the left and right side sleeve information, the control system sends the corresponding profiling parameter instructions for the left and right side sleeves to the profiling device 8. According to the waxing position information and the profiling reference edge positioning information, the control system sends a waxing position instruction and a thickness control instruction to the waxing device. The grooving device 3, the profiling device 8, and the waxing device complete the corresponding processing procedures according to the received instructions.
[0049] In this embodiment, the two-dimensional code contains all the processing information of the entire door pocket, such as the information of the left and right side door pockets, the processing specifications of the milled hinges and keyholes, the requirements for the waxing positions, the information on the distance from the grooving to the edge positions, etc. The control system analyzes and processes the door pocket processing information so as to send corresponding control instructions to the corresponding devices according to different door pocket processing information, realizing the intelligent and automated production line connection of the door pocket production process.
[0050] Regarding the control method of the door pocket production line of the present invention, from the perspective of production efficiency, by means of automatically identifying the door pocket processing information and automatically controlling each production device, the time-consuming of manual operation is greatly reduced. For example, in the process of distinguishing the left and right side door pockets and milling the hinges and keyholes, compared with the traditional manual identification and operation, the time required by the automated system of the present invention is significantly shortened, and the production efficiency is increased by several times. At the same time, since the rework situation caused by manual identification misoperation is avoided, the production time is further saved, thereby significantly improving the overall production efficiency and being able to better meet the growing market demand for door pocket products.
[0051] In terms of product quality, based on the waxing position information and the milling reference edge positioning information, the waxing equipment makes the waxing position more accurate and the thickness more uniform, effectively enhancing the moisture-proof performance and appearance quality of the door pocket; based on the information on the distance from the grooving to the edge positions, the grooving equipment 3 makes the grooving position more accurate, improves the overall assembly accuracy of the door pocket, greatly reduces the product defects caused by processing errors, and the product qualification rate is significantly improved compared with the traditional production method.
[0052] From the perspective of cost control, on the one hand, highly automated production significantly reduces the dependence on labor, and the labor cost is greatly reduced. On the other hand, the material waste caused by rework and unqualified products is significantly reduced, and the material utilization rate is significantly improved, thereby effectively reducing the comprehensive production cost.
[0053] Although the embodiments of the present invention have been shown and described above, it can be understood that the above embodiments are exemplary and should not be construed as limiting the present invention. Without departing from the principles and purposes of the present invention, those of ordinary skill in the art can make changes, modifications, substitutions, and variations to the above embodiments within the scope of the invention, and all these changes should fall within the protection scope of the claims of the present invention.
Claims
1. A production line for a wooden door jamb, the jamb including a top jamb and left and right side jambs connected to both ends of the top jamb, characterized in that, It includes a scanning device, a grooving device (3), a nailing device (5), a profiling device (8) and a waxing device arranged in sequence along the transmission direction of the door pocket. The scanning device is used to scan the two-dimensional code attached to the door pocket to obtain the door pocket processing information and send the corresponding door pocket processing information of the door pocket to the grooving device (3), the profiling device (8) and the waxing device. The grooving device (3) performs the grooving operation of the retaining strip groove at the designated position of the door pocket according to the received door pocket processing information. The nailing device (5) includes a glue coating device for coating glue on the retaining strip groove and a nailing device for nailing the retaining strip after installing the retaining strip in the retaining strip groove. The profiling device (8) identifies the left and right side sleeves according to the received door pocket processing information and performs profiling processing of the hinge and lock hole on the identified left and right side sleeves respectively. The waxing device performs waxing at the designated positions of the left and right side sleeves according to the received door pocket processing information.
2. The production line of the wooden door jamb according to claim 1, characterized in that, The grooving device (3) includes a grooving knife and an adjusting device connected to the grooving knife. The adjusting device drives the grooving knife to move to the designated position of the door pocket according to the received door pocket processing information to perform grooving at the designated position of the door pocket.
3. The production line of the wooden door jamb according to claim 1, wherein, The waxing device includes a waxing roller and a positioning device connected to the waxing roller. The positioning device is used to drive the waxing roller to move to the designated positions of the left and right side sleeves according to the received door pocket processing information to perform waxing at the designated positions of the left and right side sleeves.
4. The production line of the wooden door jamb according to claim 1, characterized in that, The profiling device (8) includes a milling cutter for profiling the hinge and lock hole and a driving device. The driving device adjusts the position and operating parameters of the milling cutter according to the received door pocket processing information so that the milling cutter profiles the hinge and lock hole according to the preset specifications.
5. The production line of the wooden door jamb according to claim 3, characterized in that, The waxing device further includes a thickness adjusting device, and the thickness adjusting device is used to adjust the distance between the waxing roller and the left and right side sleeves.
6. The production line of the wooden door jamb according to claim 1, characterized in that, The nailing device (5) further includes a nail replenishing machine, and the nail replenishing machine is arranged at the end of the nailing device. The nail replenishing machine is used to perform nail replenishing processing on the tail of the door pocket.
7. The production line of the wooden door jamb according to claim 1, characterized in that, It also includes a first conveying device (2) for connecting the scanning device and the grooving device (3), a second conveying device (4) for connecting the grooving device (3) and the nailing device (5), a third conveying device for connecting the nailing device (5) and the profiling device (8), and a fourth conveying device for connecting the profiling device (8) and the waxing device. The third conveying device includes a vertically arranged conveying branch one (6) and a conveying branch two (7). The conveying branch one (6) is horizontally arranged and used to convey the nailed top sleeve to the output device (9). The conveying branch two (7) is vertically arranged and used to convey the nailed left and right side sleeves to the profiling device (8). The output device (9) is vertically arranged with the conveying branch one (6), and the output device (9) is connected with three horizontally arranged packing conveying lines (10).
8. The production line of the wooden door jamb according to claim 2, characterized in that, The adjusting device includes a motor, a lead screw connected to the motor, and a slider threadedly connected to the lead screw. The grooving knife is connected to the slider, and the lead screw extends along the y-axis direction.
9. The production line of the wooden door jamb according to claim 1, characterized in that, The scanning device is a barcode scanner, which is located above the door pocket in the conveying direction. When the QR code on the door pocket passes through the scanning area (1) of the barcode scanner, it is read and recognized by the barcode scanner.
10. A production line control method for a wooden door jamb, including the production line for the wooden door jamb according to any one of claims 1-9, characterized in that, The production line control method includes: first, scanning the QR code on the door pocket through the scanning device to obtain the door pocket processing information, and transmitting the obtained door pocket processing information to the control system. The control system receives the door pocket processing information, analyzes and processes it. According to the slotting distance from the edge position information, the control system sends a slotting position adjustment instruction to the slotting device (3). According to the left and right side pocket information, the control system sends the corresponding milling parameters instructions for the left and right side pockets to the milling device (8). According to the waxing position information and the milling reference edge positioning information, the control system sends a waxing position instruction and a thickness control instruction to the waxing device. The slotting device (3), the milling device (8) and the waxing device complete the corresponding processing procedures according to the received instructions.
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