Door and window profile processing production line

The integrated system for door and window frame processing addresses the inefficiencies in manual tagging by automating the process, ensuring immediate and accurate material labeling, thereby enhancing production efficiency and precision.

CN223101252UActive Publication Date: 2025-07-15JINAN FENIDICK MECHANICAL EQUIP CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422344796.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-25
Publication Date
2025-07-15
Estimated Expiration
2034-09-25

AI Technical Summary

Technical Problem

The traditional door and window profile processing production lines lack the automatic labeling function, which leads to high cost and low efficiency in manual transfer and statistical operations, and is prone to labeling statistics errors.

Method used

A door and window profile processing production line is designed, including a feeding device, a door and window processing center and a feeding device, combined with a clamping and cutting robot, a roller frame, a lifting drive mechanism, a horizontal conveyor belt and a labeling machine, so as to realize automatic labeling of the profile after processing.

Benefits of technology

Improve processing efficiency and automation, reduce manual participation, ensure the accuracy of labeling, and reduce the risk of manual transfer and statistical errors.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223101252U_ABST
    Figure CN223101252U_ABST
Patent Text Reader

Abstract

The utility model provides a door and window profile processing production line, which belongs to the technical field of door and window processing and comprises a feeding device, a door and window processing center and a discharging device which are sequentially arranged, and a clamping and discharging manipulator is arranged at one end, close to the discharging device, of the door and window processing center; the discharging device comprises a discharging bottom frame, a horizontal conveying belt is arranged at the upper end of the discharging bottom frame, a carrier roller frame is arranged at the rear end of the horizontal conveying belt, the carrier roller frame is vertically installed on the discharging bottom frame in a sliding mode, and a lifting driving mechanism is arranged at the lower end of the carrier roller frame. A material stopping assembly is arranged at the front end of the horizontal conveying belt and vertically installed on the discharging bottom frame in a sliding mode, and a labeling machine is arranged above the material stopping assembly. The full-automatic labeling machine has the beneficial effects that the full-automatic labeling machine has a labeling function and has the advantages of high automation degree, high processing efficiency and the like.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model belongs to the technical field of door and window processing, and particularly relates to a production line for processing door and window profiles. Background Art

[0002] Aluminum alloy, with its excellent corrosion resistance, light weight and high strength, and good plasticity, has become an indispensable material in modern architecture and industrial design. Especially in the manufacture of doors and windows and the appearance structure of electronic products, its application is particularly extensive. Moreover, in the processing of aluminum alloy doors and windows, it is necessary to first cut the profiles into aluminum profiles with different lengths, different angles and end face shapes that match the size of the doors and windows, and then assemble the corresponding aluminum profiles together to form beautiful and practical door and window products.

[0003] At present, with the rapid development of the construction industry and the continuous improvement of people's requirements for the quality of doors and windows, the market demand for production lines for processing door and window profiles continues to grow, and many brands and product models have emerged on the market for consumers to choose from. At the same time, with the continuous progress and innovation of technology, the performance and functions of production lines for processing door and window profiles are also constantly improved and perfected.

[0004] However, the production lines for processing door and window profiles on the market still have certain limitations: in the factory's batch production operations, there will be orders for door and window products of different specifications and models. Therefore, after the angle cutting of the doors and windows, it is necessary to count the cut profiles, such as by pasting labels corresponding to the production specifications and models on the surface of the profiles; but the traditional production lines for processing door and window profiles lack the corresponding label pasting structure. After the profiles are cut and output, it is necessary to manually transfer the profiles to the label pasting machine station for classification and labeling operations, and it is impossible to immediately label and count the cut profiles. This not only increases the manual participation and transfer cost and has relatively low efficiency, but also is prone to label pasting and counting errors. Summary of the Utility Model

[0005] The technical problem solved by the utility model is to provide a production line for processing door and window profiles with a label pasting function, and make it have advantages such as high automation degree and high processing efficiency.

[0006] To solve the above technical problems, the technical solution provided by the present utility model is as follows: A processing production line for door and window profiles, which includes a loading device, a door and window processing center, and a blanking device arranged in sequence. A clamping and blanking manipulator is arranged at one end of the door and window processing center close to the blanking device; the blanking device includes a blanking chassis, on the upper end of the blanking chassis is provided a horizontal conveyor belt, at the rear end of the horizontal conveyor belt is provided a roller support, the roller support is vertically slidably installed on the blanking chassis, and a lifting drive mechanism is arranged at the lower end of the roller support; at the front end of the horizontal conveyor belt is provided a material stop assembly, the material stop assembly is vertically slidably installed on the blanking chassis, and a labeling machine is arranged above the material stop assembly. Thus, when using the present utility model to process door and window profiles, when performing the blanking operation, it can first move the door and window profiles above the roller support under the action of the clamping and blanking manipulator, and then drive the roller support to lift and move under the action of the lifting drive mechanism to place the door and window profiles on the horizontal conveyor belt, and move the door and window profiles to the material stop assembly along with the movement of the horizontal conveyor belt. At this time, the door and window profiles are in a stagnant state under the action of the material stop assembly, and the labeling machine can be controlled to perform the corresponding labeling operation to achieve the corresponding labeling function.

[0007] Further, the door and window processing center includes a door and window processing chassis, on the upper surface of the door and window processing chassis is fixedly provided a sawing frame, at the left and right ends of the sawing frame are symmetrically arranged two 45-degree sawing components, at the rear end of the sawing frame is provided a three-axis drilling component, at the front end of the sawing frame is horizontally slidably installed a chamfer sawing component, at the upper end of the sawing frame are provided a vertical clamping component and a positioning cross beam, and a clamping and blanking manipulator is horizontally slidably installed at the right end of the positioning cross beam. Thus, when using the present utility model to process door and window profiles, since there are multiple processing components for different processing parts arranged around the sawing frame, it can not only meet the positioning requirements of multiple processing operations through one clamping, thereby further improving the overall processing efficiency, but also reduce the size of the entire door and window processing center by reasonably arranging the positions of each component.

[0008] Further, the clamping and blanking manipulator includes a horizontal clamping and blanking slide frame, the upper part at the rear end of the horizontal clamping and blanking slide frame is horizontally slidably installed on the positioning cross beam along the transverse direction, and a horizontal positioning part is arranged at the lower part at the rear end of the horizontal clamping and blanking slide frame; at the front end of the horizontal clamping and blanking slide frame is provided an inclined power cylinder, the end of the piston rod of the inclined power cylinder is installed with a clamping and blanking block, the clamping and blanking block is arranged opposite to the horizontal positioning part, and it can not only longitudinally clamp the side wall of the door and window profiles under the action of the inclined power cylinder to achieve the corresponding horizontal clamping action and ensure the stability of the door and window profiles during sawing and drilling, but also realize the corresponding blanking action along with the horizontal sliding action of the horizontal clamping and blanking slide frame.

[0009] Further, the three-axis drilling assembly includes a transverse drilling carriage. One side of the transverse drilling carriage is horizontally slidably mounted on the rear side of the sawing frame along the transverse direction. A vertical drilling carriage is vertically slidably mounted on the other side of the transverse drilling carriage. A lower longitudinal drilling carriage is horizontally slidably mounted on the upper end of the vertical drilling carriage along the longitudinal direction. An upper longitudinal drilling carriage is horizontally slidably mounted on the upper end of the lower longitudinal drilling carriage along the longitudinal direction. Two drilling and milling motors are provided at the upper end of the upper longitudinal drilling carriage. The two drilling and milling motors can move up and down, left and right, and front and back under the action of each carriage to perform corresponding glue injection hole drilling operations. Moreover, since the drilling and milling motor 1 in the present utility model has two strokes in the front and back directions, it can not only shorten the size of the entire three-axis drilling assembly but also ensure that the drilling and milling motor has a sufficient long stroke.

[0010] Further, a horizontal positioning assembly, a vertical positioning assembly, and a horizontal clamping assembly are provided at the left end of the sawing frame. The horizontal positioning assembly is used to horizontally position the door and window profiles entering the sawing mechanism, the vertical positioning assembly is used to vertically position the door and window profiles entering the sawing mechanism, and the horizontal clamping assembly is used to horizontally clamp the door and window profiles undergoing drilling, milling, and sawing processing at the sawing mechanism.

[0011] Further, a drilling and milling frame is provided on the side of the sawing frame away from the blanking device. The lower end of the drilling and milling frame is horizontally slidably mounted on the upper surface of the door and window processing chassis along the material conveying direction. A drilling and milling positioning assembly is provided at the upper end of the drilling and milling frame, and a drilling and milling assembly is provided on the right side of the drilling and milling frame. When using the present utility model to process door and window profiles, since the drilling and milling frame and the sawing frame are integrated in the present utility model, it can improve the integration degree of the entire processing center and enable the entire door and window processing center to simultaneously meet the drilling and milling processing requirements and sawing processing requirements of door and window profiles, thereby improving the overall processing accuracy and processing efficiency.

[0012] As can be seen from the above technical solutions, the present utility model has the following advantages: When using the present utility model to process door and window profiles, when performing the blanking operation, it can first move the door and window profiles above the roller rack under the action of the clamping blanking manipulator, and then drive the roller rack to move up and down under the action of the lifting drive mechanism to place the door and window profiles on the horizontal conveyor belt, and move the door and window profiles to the material stop assembly along with the movement of the horizontal conveyor belt. At this time, the door and window profiles are in a stagnant state under the action of the material stop assembly, and the labeling machine can be controlled to perform the corresponding labeling action to realize the corresponding labeling function. Description of the Drawings

[0013] To more clearly illustrate the technical solution of the present utility model, the accompanying drawings required for description will be briefly introduced below. Obviously, the accompanying drawings in the following description are only some embodiments of the present utility model. For those of ordinary skill in the art, without creative efforts, other accompanying drawings can also be obtained based on these drawings.

[0014] Figure 1 It is a schematic structural diagram of the specific embodiment of the present utility model;

[0015] Figure 2 It is a schematic structure of the door and window processing center in the present utility model Figure 1 ;

[0016] Figure 3 It is a schematic structure of the door and window processing center in the present utility model Figure 2 。

[0017] In the figure: 1. Door and window processing center; 2. Loading device; 3. Unloading device; 101. Door and window processing chassis; 102. Drilling and milling machine frame; 103. Drilling and milling positioning component; 104. Drilling and milling component; 105. Horizontal positioning component; 106. Vertical positioning component; 107. Vertical clamping component; 108. Positioning cross beam; 109. Horizontal clamping and unloading sliding frame; 110. Inclined power cylinder; 111. Clamping and unloading block; 112. Chamfer sawing component; 113. 45-degree sawing component; 114. Horizontal clamping component; 115. Drilling and milling motor; 116. Upper longitudinal drilling sliding frame; 117. Lower longitudinal drilling sliding frame; 118. Vertical drilling sliding frame; 119. Horizontal drilling sliding frame; 301. Roller frame; 302. Horizontal conveyor belt; 303. Material stop component; 304. Labeling machine. Specific Embodiment

[0018] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, rather than all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts belong to the protection scope of the present utility model.

[0019] Such as Figures 1 to 3As shown in the figure, the utility model provides a processing production line for door and window profiles, which comprises a feeding device 2, a door and window processing center 1, and a discharging device 3 arranged in sequence. Among them, the discharging device 3 comprises a discharging chassis. At the upper end of the discharging chassis, a horizontal conveyor belt 302 is arranged. At the rear end of the horizontal conveyor belt 302, a roller support 301 is arranged. The roller support 301 is vertically and slidably installed on the discharging chassis, and a lifting driving mechanism is arranged at the lower end of the roller support 301. At the front end of the horizontal conveyor belt 302, a material stop assembly 303 is arranged. The material stop assembly 303 is vertically and slidably installed on the discharging chassis, and a labeling machine 304 is arranged above the material stop assembly 303.

[0020] The door and window processing center 1 comprises a door and window processing chassis 101. On the upper surface of the door and window processing chassis 101, a sawing frame is fixedly arranged. At the left end and the right end of the sawing frame, two 45-degree sawing assemblies 113 are symmetrically arranged. At the rear end of the sawing frame, a three-axis drilling assembly is arranged. At the front end of the sawing frame, a chamfer sawing assembly 112 is horizontally and slidably installed. At the upper end of the sawing frame, a vertical clamping assembly 107 and a positioning cross beam 108 are arranged. At the right end of the positioning cross beam 108, a clamping and discharging manipulator is horizontally and slidably installed, and the clamping and discharging manipulator can be located above the roller support 301.

[0021] Specifically, the clamping and discharging manipulator comprises a horizontal clamping and discharging sliding frame 109. The upper part at the rear end of the horizontal clamping and discharging sliding frame 109 is horizontally and slidably installed on the positioning cross beam 108 in the transverse direction. A horizontal positioning part is arranged at the lower part at the rear end of the horizontal clamping and discharging sliding frame 109. At the front end of the horizontal clamping and discharging sliding frame 109, an inclined power cylinder 110 is arranged. At the end of the piston rod of the inclined power cylinder 110, a clamping and discharging block 111 is installed. The clamping and discharging block 111 is arranged opposite to the horizontal positioning part. It can not only longitudinally clamp the side wall of the door and window profile under the action of the inclined power cylinder 110 to realize the corresponding horizontal clamping action and ensure the stability of the door and window profile during the sawing process, but also realize the corresponding discharging action along with the horizontal sliding action of the horizontal clamping and discharging sliding frame 109.

[0022] The three-axis drilling assembly includes a lateral drilling carriage 119, one side of the lateral drilling carriage 119 is horizontally slidably mounted on the rear side of the sawing frame along the lateral direction, and a vertical drilling carriage 118 is vertically slidably mounted on the other side of the lateral drilling carriage 119. The upper end of the vertical drilling carriage 118 is horizontally slidably mounted with a lower longitudinal drilling carriage 117 along the longitudinal direction, and the upper end of the lower longitudinal drilling carriage 117 is horizontally slidably mounted with an upper longitudinal drilling carriage 116 along the longitudinal direction. Two drilling and milling motors 115 are provided at the upper end of the upper longitudinal drilling carriage 116. The two drilling and milling motors 115 can move up and down, left and right, and front and back under the action of each carriage to realize the corresponding drilling operation of the glue injection holes. Moreover, since the drilling and milling motor 115 in the present utility model has two strokes in the front and back directions, it can not only shorten the size of the entire three-axis drilling assembly, but also ensure that the drilling and milling motor 115 has a sufficient long stroke.

[0023] And a horizontal positioning assembly 105, a vertical positioning assembly 106, and a horizontal clamping assembly 114 are provided at the left end of the sawing frame. The horizontal positioning assembly 105 is used to horizontally position the door and window profiles entering the sawing mechanism, the vertical positioning assembly 106 is used to vertically position the door and window profiles entering the sawing mechanism, and the horizontal clamping assembly 114 is used to horizontally clamp the door and window profiles undergoing drilling, milling, and sawing processing at the sawing mechanism.

[0024] In addition, as a preference, a drilling and milling frame 102 is further provided on the side of the sawing frame away from the blanking device 3. The lower end of the drilling and milling frame 102 is horizontally slidably mounted on the upper surface of the door and window processing chassis 101 along the material conveying direction. A drilling and milling positioning assembly 103 is provided at the upper end of the drilling and milling frame 102, and a drilling and milling assembly 104 is provided on the right side of the drilling and milling frame 102.

[0025] When using the present utility model to process door and window profiles, on the one hand, when it performs the blanking action, it can first move the door and window profiles above the roller table 301 under the action of the clamping blanking manipulator, and then drive the roller table 301 to move up and down under the action of the lifting drive mechanism to place the door and window profiles on the horizontal conveyor belt 302, and move the door and window profiles to the material stop assembly 303 along with the movement of the horizontal conveyor belt 302. At this time, the door and window profiles are in a stagnant state under the action of the material stop assembly 303, and then the labeling machine 304 can be controlled to perform the corresponding labeling action to realize the corresponding labeling function. On the other hand, since the present utility model integrates the drilling and milling frame 102 and the sawing frame, it can improve the integration degree of the entire processing center and enable the entire door and window processing center 1 to simultaneously meet the drilling and milling processing requirements and sawing processing requirements of the door and window profiles, thereby improving the overall processing accuracy and processing efficiency.

[0026] In the description and claims of the present utility model and the above-mentioned drawings, the terms "first", "second", "third", "fourth", etc. (if any) are used to distinguish similar objects and do not necessarily have to be used to describe a specific order or sequence. It should be understood that the data used in this way can be interchanged under appropriate circumstances so that the embodiments of the present utility model described herein can be implemented in an order different from those illustrated or described herein. In addition, the terms "comprising" and "having" and any variations thereof are intended to cover non-exclusive inclusion.

[0027] The above description of the disclosed embodiments enables those skilled in the art to implement or use the present utility model. Various modifications to these embodiments will be obvious to those skilled in the art, and the general principles defined herein can be implemented in other embodiments without departing from the spirit or scope of the present utility model. Therefore, the present utility model will not be limited to the embodiments shown herein, but rather to the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. A processing production line for door and window profiles, comprising a feeding device, a door and window processing center, and a discharging device arranged in sequence; characterized in that, One end of the door and window processing center near the blanking device is provided with a clamping blanking manipulator; the blanking device includes a blanking chassis, the upper end of the blanking chassis is provided with a horizontal conveyor belt, the rear end of the horizontal conveyor belt is provided with a roller support, the roller support is vertically slidably installed on the blanking chassis, and a lifting drive mechanism is arranged at the lower end of the roller support; a material stop assembly is arranged at the front end of the horizontal conveyor belt, the material stop assembly is vertically slidably installed on the blanking chassis, and a labeling machine is arranged above the material stop assembly.

2. The processing production line for door and window profiles according to claim 1, characterized in that The door and window processing center includes a door and window processing chassis, a sawing frame is fixedly arranged on the upper surface of the door and window processing chassis, two 45-degree sawing components are symmetrically arranged at the left end and the right end of the sawing frame, a three-axis drilling component is arranged at the rear end of the sawing frame, a chamfer sawing component is horizontally slidably installed at the front end of the sawing frame, a vertical clamping component and a positioning cross beam are arranged at the upper end of the sawing frame, and a clamping blanking manipulator is horizontally slidably installed at the right end of the positioning cross beam.

3. The processing production line for door and window profiles according to claim 2, wherein The clamping blanking manipulator includes a horizontal clamping blanking carriage, the upper part of the rear end of the horizontal clamping blanking carriage is horizontally slidably installed on the positioning cross beam along the transverse direction, and a horizontal positioning part is arranged at the lower part of the rear end of the horizontal clamping blanking carriage; an inclined power cylinder is arranged at the front end of the horizontal clamping blanking carriage, a clamping blanking block is installed at the end of the piston rod of the inclined power cylinder, and the clamping blanking block is arranged opposite to the horizontal positioning part.

4. The processing production line for door and window profiles according to claim 2, wherein The three-axis drilling component includes a transverse drilling carriage, one side of the transverse drilling carriage is horizontally slidably installed at the rear side of the sawing frame along the transverse direction, a vertical drilling carriage is vertically slidably installed on the other side of the transverse drilling carriage, a lower longitudinal drilling carriage is horizontally slidably installed at the upper end of the vertical drilling carriage along the longitudinal direction, an upper longitudinal drilling carriage is horizontally slidably installed at the upper end of the lower longitudinal drilling carriage along the longitudinal direction, and two drill and mill motors are arranged at the upper end of the upper longitudinal drilling carriage.

5. The processing production line for door and window profiles according to claim 2, wherein A horizontal positioning component, a vertical positioning component and a horizontal clamping component are arranged at the left end of the sawing frame.

6. The processing production line for door and window profiles according to claim 2, wherein A drill and mill frame is arranged on one side of the sawing frame away from the blanking device, the lower end of the drill and mill frame is horizontally slidably installed on the upper surface of the door and window processing chassis along the material conveying direction, a drill and mill positioning component is arranged at the upper end of the drill and mill frame, and a drill and mill component is arranged on the right side of the drill and mill frame.