Composite profile production equipment
By pre-drilling injection holes on the profiles and combining them with an injection device and a propulsion device, the injection and embedding processes are integrated, solving the problem of excessive adhesive exposure time and improving the bonding strength and production efficiency of the profiles.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- GUANGDONG XIN MING GE ENERGY SAVING TECH CO LTD
- Filing Date
- 2025-05-07
- Publication Date
- 2026-05-19
AI Technical Summary
Existing composite profile production equipment requires the adhesive to be transferred to subsequent processes after gluing, resulting in the adhesive being exposed to air for too long, affecting adhesion performance and reducing the bonding strength of the profiles.
Pre-drill injection holes on the profile, set up an injection device and a propulsion device, use an injection gun to directly inject glue and use the propulsion device to embed the snap-fit part, so that the injection and embedding are integrated in the same station, shortening the adhesive exposure time.
It significantly shortens the adhesive exposure time, improves the density of the bonding interface, ensures the adhesive adhesion performance, enhances the bonding strength of profiles, and improves production efficiency through automated processes.
Smart Images

Figure CN224256116U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of composite profile manufacturing, and in particular to a composite profile production equipment. Background Technology
[0002] Composite profiles are a new type of structural material made by combining two or more different materials through physical or chemical methods, and combine the advantages of each component material.
[0003] In related technologies, the production equipment for composite profiles typically includes an adhesive injection device, a conveying device, and a pressing device. The adhesive injection device injects adhesive onto the first splicing surface of the first profile. Then, the conveying device transports the first profile from the adhesive injection device to the pressing device. During the conveying process, the second splicing surface of the second profile is installed onto the first splicing surface of the first profile. The pressing device presses and clamps the first profile and the second profile together, so that the adhesive bonds the first profile and the second profile.
[0004] Specifically, the first profile has a first snap-fit portion, the second profile has a second snap-fit portion, the adhesive is located between the first splicing surface and the second splicing surface, and the pressing device presses the first profile and the second profile together to make the first snap-fit portion and the second snap-fit portion snap together, so that the adhesive on the first splicing surface adheres to the second splicing surface.
[0005] However, existing composite profile production equipment requires the first profile to be transferred to a later process after the adhesive is applied to complete the bonding of the adhesive to the first and second profiles. This results in the adhesive being exposed to air for too long, affecting its adhesion performance and reducing the bond strength between the first and second profiles. Utility Model Content
[0006] This invention aims to solve at least one of the technical problems existing in the prior art. To this end, this invention proposes a composite profile production equipment that can quickly bond the adhesive to the first and second profiles after glue injection, reducing the time the adhesive is exposed to air, ensuring the adhesive performance, and improving the bonding strength between the first and second profiles.
[0007] A composite profile production equipment according to an embodiment of the present invention is used to produce composite profiles, the composite profiles including a first profile and a second profile, the first profile having an injection hole extending to a first splicing surface, the first profile having a first snap-fit portion, and the second profile having a second snap-fit portion, the composite profile production equipment comprising:
[0008] The glue injection device has a glue injection station, including a glue injection gun and a first power component that drives the glue injection gun to move closer to and away from the glue injection station. The glue injection gun is used to extend into the glue injection hole of the first profile located at the glue injection station to inject glue.
[0009] A pushing device is used to push the second profile closer to the first profile at the glue injection station along the length direction of the first profile so that the second snap-fit portion is inserted into the first snap-fit portion from the end of the first profile.
[0010] A composite profile production equipment according to an embodiment of the present utility model has at least the following beneficial effects:
[0011] This invention integrates adhesive injection and installation in the same station by pre-drilling an injection hole in the first profile, then setting up an injection device and a pushing device. The injection gun is inserted into the injection hole of the first profile at the injection station to inject adhesive. Simultaneously, the pushing device pushes the second profile towards the first profile at the injection station, allowing the second snap-fit part to embed into the first snap-fit part from the end of the first profile. This achieves simultaneous injection and installation of the first and second snap-fit parts. On one hand, the injection gun directly injects adhesive through the injection hole of the first profile, avoiding exposure of the adhesive layer to the external environment. On the other hand, it can quickly bond the adhesive to the first and second profiles after injection. Compared to existing processes that require transfer to subsequent steps, this significantly shortens the adhesive exposure time, improves the density of the bonding interface, ensures the adhesive's adhesion performance, and enhances the bonding strength between the first and second profiles.
[0012] According to some embodiments of the present invention, a first conveyor line is also included, which is used to convey and feed the first profile.
[0013] The advantages of this invention are: by setting up a first conveyor line for feeding the first profile, the first conveyor line realizes automated and continuous feeding of the first profile, reduces positioning errors caused by manual handling, and improves production efficiency.
[0014] According to some embodiments of the present invention, it further includes a first clamping hand and a first driving component for driving the first clamping hand to move. The first clamping hand is used to clamp and transport the first profile of the first conveying line to the glue injection station and fix the first profile at the glue injection station.
[0015] The advantages of this invention are: by setting a first clamping hand and a first driving component to move the first clamping hand, the first clamping hand is used to clamp and transport the first profile of the first conveyor line to the glue injection station and fix the first profile at the glue injection station. Thus, the first clamping hand, together with the first driving component, achieves precise gripping and positioning. By clamping and fixing the first profile with the first clamping hand, the glue injection hole displacement or glue overflow caused by the profile shaking during the glue injection process is avoided. At the same time, automated clamping and conveying reduces manual intervention and improves the consistency of production cycle.
[0016] According to some embodiments of the present invention, a plurality of first positioning members are provided on the first conveying line, which are arranged along the conveying direction of the first conveying line. The first positioning members are used to position the first profile.
[0017] The advantages of this invention are: by setting a plurality of first positioning members arranged along the conveying direction of the first conveying line, the first positioning members are used to position the first profile. Thus, the first positioning members are arranged along the conveying direction to physically limit the first profile, preventing displacement deviation caused by inertia or vibration during the conveying process. At the same time, the positioning ensures that the posture of each first profile is completely consistent with the preset path when it reaches the material picking position of the first clamping hand, thereby improving the positioning accuracy of the subsequent glue injection process.
[0018] According to some embodiments of the present invention, a first positioning sensor is also included. The first positioning sensor is electrically connected to the first conveyor line. The first positioning sensor is used to detect whether the first profile has reached the gripping and picking position of the first clamping hand and control the first conveyor line to pause conveying.
[0019] The advantages of this invention are: by setting a first positioning sensor, which is electrically connected to the first conveyor line, the first positioning sensor is used to detect whether the first profile has reached the clamping and picking position of the first gripper and control the first conveyor line to pause conveying. Thus, the first positioning sensor and the first conveyor line are linked for control, and the first profile is detected in real time whether it has reached the predetermined clamping position. Through the "detection-pause" closed-loop control, clamping failure caused by over- or under-positioning is avoided, ensuring the accurate alignment of the first gripper and the first profile and reducing the equipment failure rate.
[0020] According to some embodiments of the present invention, the first conveying line conveys the first profile along the width direction of the first profile at the glue injection station.
[0021] The advantage of this invention is that by having the first conveyor line transport the first profile along the width direction of the first profile at the glue injection station, the layout optimizes the space utilization of the equipment and avoids interference between other components and the position of the first conveyor line.
[0022] According to some embodiments of the present invention, a second conveying line is also included. The second conveying line is located at the end of the first profile near the glue gun at the glue injection station, and the second conveying line is used to feed the second profile.
[0023] The advantages of this invention are: by setting up a second conveyor line, which is located at the end of the first profile near the glue gun at the glue injection station, the second conveyor line is used to feed the second profile. Thus, by directly conveying the second profile to the side of the glue injection station, the docking distance between the second profile and the first profile at the glue injection station is shortened, the time interval for the adhesive to wait for pressing is reduced, and the activity of the adhesive is further guaranteed.
[0024] According to some embodiments of the present invention, the second conveyor line conveys the second profile along the width direction of the first profile at the glue injection station.
[0025] The advantages of this invention are: by having the second conveyor line transport the second profile along the width direction of the first profile at the glue injection station, the second conveyor line transports the second profile along the width direction of the first profile, so that when the second profile reaches the docking position, its length direction is parallel to the first profile. At the same time, this arrangement allows the propulsion device to apply force evenly along the length direction of the second profile, avoiding local stress concentration at the locking part caused by angular deviation, and improving the assembly reliability of the locking structure.
[0026] According to some embodiments of the present invention, a plurality of second positioning members are provided on the second conveying line, which are arranged along the conveying direction of the second conveying line. The second positioning members are used to position the second profile.
[0027] The advantage of this invention is that by setting a number of second positioning members arranged along the conveying direction of the second conveying line on the second conveying line, the second positioning members are used to position the second profile. Thus, the second positioning members physically limit the second profile, ensuring that when it is conveyed to the action area of the propulsion device, the second splicing surface is parallel to the first splicing surface of the first profile. In turn, it is beneficial for the second snap-fit part to be accurately embedded into the first snap-fit part.
[0028] According to some embodiments of the present invention, a second positioning sensor is also included. The second positioning sensor is electrically connected to the second conveyor line. The second positioning sensor is used to detect whether the second profile is aligned with the first profile at the glue injection station and to control the second conveyor line to pause conveying.
[0029] The advantages of this invention are: by setting a second positioning sensor, which is electrically connected to the second conveyor line, the second positioning sensor is used to detect whether the second profile is aligned with the first profile at the glue injection station and to control the second conveyor line to pause conveying. It can be understood that the second positioning sensor detects the spatial relative position of the second profile and the first profile in real time. When the two profiles are detected to have reached the preset alignment accuracy, the conveyor line is triggered to pause. Through dynamic calibration, the accumulated positioning error is eliminated, ensuring that the first and second locking parts are completely engaged when the pushing device is pushed forward, avoiding locking failure or uneven glue layer caused by misalignment.
[0030] Additional aspects and advantages of this invention will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of the invention. Attached Figure Description
[0031] To more clearly illustrate the technical solutions of the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0032] Figure 1 This is a schematic diagram of the structure of a composite profile production equipment according to an embodiment of the present invention, showing a glue injection gun inserted into a glue injection hole from the end of a first profile for glue injection.
[0033] Figure 2 This is a schematic diagram of the structure of a composite profile production equipment according to an embodiment of the present invention, showing a glue injection gun inserted into a glue injection hole from the top surface of a first profile for glue injection.
[0034] Figure 3 This is a schematic diagram of the structure of a composite profile production equipment according to an embodiment of the present invention, showing a glue injection gun inserted into a glue injection hole from the side of a first profile for glue injection.
[0035] Figure 4 This is a schematic diagram of the structure of a composite profile production equipment according to an embodiment of the present utility model.
[0036] Reference numerals: 100-First profile, 110-Second profile, 120-First splicing surface, 130-Injection hole, 140-First snap-fit part, 150-Second snap-fit part, 160-Injection device, 170-Injection gun, 180-First power component, 190-Propulsion device, 200-First conveyor line, 210-First gripper, 220-First drive assembly, 230-First positioning component, 240-First positioning sensor, 250-Second conveyor line, 260-Second positioning component, 270-Second positioning sensor. Detailed Implementation
[0037] The embodiments of this utility model are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain this utility model, and should not be construed as limiting this utility model.
[0038] In the description of this utility model, it should be understood that the directional descriptions, such as up, down, front, back, left, right, etc., indicate the directional or positional relationship based on the directional or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.
[0039] In the description of this utility model, "several" means one or more, "multiple" means two or more, "greater than," "less than," and "exceeding" are understood to exclude the stated number, while "above," "below," and "within" are understood to include the stated number. If "first" and "second" are mentioned, it is only for the purpose of distinguishing technical features and should not be construed as indicating or implying relative importance or implicitly indicating the number of indicated technical features or the order of the indicated technical features.
[0040] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation, connection, and linkage" should be interpreted broadly. For example, they can refer to fixed connections, detachable connections, or integral connections; they can refer to mechanical connections or electrical connections; they can refer to direct connections or indirect connections through an intermediate medium; and they can refer to the internal communication between two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.
[0041] The following description, in conjunction with the accompanying drawings, describes a composite profile production equipment according to an embodiment of the present invention.
[0042] This utility model aims to provide an embodiment of a composite profile production equipment.
[0043] Reference Figure 1 , Figure 2 and Figure 3 In this embodiment, a composite profile production equipment is used to produce composite profiles. The composite profiles include a first profile 100 and a second profile 110. The first profile 100 has an injection hole 130 that extends through to a first splicing surface 120. The first profile 100 has a first snap-fit portion 140, and the second profile 110 has a second snap-fit portion 150.
[0044] In some specific embodiments, the first splicing surface 120 is located on the bottom surface of the first profile 100, the glue injection hole 130 penetrates the bottom wall of the first profile 100, the end of the first profile 100 is open, and the glue injection gun 170 extends from the end of the first profile 100 into the glue injection hole 130 on the bottom wall of the first profile 100.
[0045] Understandably, the glue injection hole 130 only penetrates the bottom wall of the first profile 100, which can reduce the depth of the glue injection hole 130 and help reduce the processing difficulty of the glue injection hole 130. In addition, the end of the first profile 100 is open, and the glue gun 170 can extend from the open end of the first profile 100 into the glue injection hole 130 on the bottom wall of the first profile 100, so that the adhesive can be smoothly injected into the glue injection hole 130.
[0046] In other embodiments, the first splicing surface 120 is located on the bottom surface of the first profile 100, and the glue injection hole 130 extends from the top surface of the first profile 100 to the first splicing surface 120.
[0047] Understandably, the glue gun 170 can extend into the glue injection hole 130 from above the first profile 100, thereby facilitating the arrangement of the glue gun 170.
[0048] Furthermore, the depth direction of the injection hole 130 is inclined along the moving direction of the second profile 110, so that the adhesive can be injected into the space between the first profile 100 and the second profile 110 along the moving direction of the second profile 110, thereby facilitating the filling of the space between the first profile 100 and the second profile 110 with the adhesive.
[0049] In other embodiments, the first splicing surface 120 is located on the bottom surface of the first profile 100, and the glue injection hole 130 extends obliquely from the side of the first profile 100 to the first splicing surface 120, thereby allowing the glue injection gun 170 to be arranged on the side of the first profile 100, thus facilitating the use of the space on the side of the first profile 100.
[0050] In some specific embodiments, the opening of the glue injection hole 130 near the end of the first splicing surface 120 is funnel-shaped.
[0051] Understandably, the funnel-shaped orifice forms a gradual flow channel, reducing the flow velocity of the adhesive at the outlet, avoiding the impact of high-speed jets that could cause discontinuity in the adhesive layer, while also increasing the adhesive coverage width to prevent the appearance of "adhesive lines".
[0052] Reference Figure 4 The composite profile production equipment of this embodiment includes an injection device 160 and a propulsion device 190.
[0053] For the glue injection device 160, the glue injection device 160 has a glue injection station, the glue injection device 160 includes a glue injection gun 170 and a first power member 180 that drives the glue injection gun 170 to move closer to and away from the glue injection station, the glue injection gun 170 is used to extend into the glue injection hole 130 of the first profile 100 located at the glue injection station to inject glue.
[0054] For the pushing device 190, the pushing device 190 is used to push the second profile 110 closer to the first profile 100 at the glue injection station along the length direction of the first profile 100 so that the second snap-fit portion 150 is inserted into the first snap-fit portion 140 from the end of the first profile 100.
[0055] In this embodiment, a glue injection hole 130 is pre-drilled in the first profile 100, and then a glue injection device 160 and a pushing device 190 are installed. A glue injection gun 170 is inserted into the glue injection hole 130 of the first profile 100 located at the glue injection station to inject glue. Simultaneously, the pushing device 190 pushes the second profile 110 towards the first profile 100 at the glue injection station so that the second snap-fit portion 150 is inserted from the end of the first profile 100 into the first snap-fit portion 140. Thus, glue injection and insertion are integrated in the same station, achieving simultaneous glue injection and insertion of the first snap-fit portion 140. The first profile 100 and the second snap-fit part 150 are installed together. On the one hand, the glue gun 170 directly injects the adhesive through the glue injection hole 130 of the first profile 100, avoiding the adhesive layer from being exposed to the external environment. On the other hand, after the glue is injected, the adhesive can quickly bond the first profile 100 and the second profile 110 together. Compared with the process in the prior art that requires transfer to the next process, the adhesive exposure time is significantly shortened, the density of the bonding interface is improved, the adhesion performance of the adhesive is guaranteed, and the bonding strength between the first profile 100 and the second profile 110 is improved.
[0056] In addition, this embodiment integrates gluing and mounting at the same station, allowing gluing and mounting to be performed simultaneously, which can improve production efficiency and save manpower.
[0057] In some specific embodiments, a first conveyor line 200 is also included. The first conveyor line 200 is used to feed the first profile 100, thereby realizing automated continuous feeding of the first profile 100, reducing positioning errors caused by manual handling, and improving production efficiency.
[0058] In some specific embodiments, the device also includes a first gripper 210 and a first drive assembly 220 for moving the first gripper 210. The first gripper 210 is used to grip and transport the first profile 100 of the first conveyor line 200 to the glue injection station and fix the first profile 100 at the glue injection station. Thus, the first gripper 210, together with the first drive assembly 220, achieves precise gripping and positioning. By gripping and fixing the first profile 100 with the first gripper 210, the displacement of the glue injection hole 130 or the overflow of glue caused by the shaking of the profile during the glue injection process is avoided. At the same time, automated gripping and conveying reduces manual intervention and improves the consistency of production cycle.
[0059] In some specific embodiments, a plurality of first positioning members 230 are provided on the first conveying line 200 along the conveying direction of the first conveying line 200. The first positioning members 230 are used to position the first profile 100. Thus, the first positioning members 230 are arranged along the conveying direction to physically limit the first profile 100, preventing displacement deviation caused by inertia or vibration during the conveying process. At the same time, the positioning ensures that the posture of each first profile 100 is completely consistent with the preset path when it reaches the material picking position of the first gripper 210, thereby improving the positioning accuracy of the subsequent glue injection process.
[0060] In some specific embodiments, a first positioning sensor 240 is also included. The first positioning sensor 240 is electrically connected to the first conveyor line 200. The first positioning sensor 240 is used to detect whether the first profile 100 has reached the clamping and picking position of the first gripper 210 and control the first conveyor line 200 to pause conveying. Thus, the first positioning sensor 240 and the first conveyor line 200 are linked for control, and the first profile 100 is detected in real time to see if it has reached the predetermined clamping position. Through the "detection-pause" closed-loop control, clamping failure caused by over- or under-conveying is avoided, ensuring the accurate alignment of the first gripper 210 and the first profile 100 and reducing the equipment failure rate.
[0061] In some specific embodiments, the first conveyor line 200 conveys the first profile 100 along the width direction of the first profile 100 at the glue injection station. Thus, this layout optimizes the space utilization of the equipment and avoids interference between other components and the position of the first conveyor line 200.
[0062] In some specific embodiments, a second conveyor line 250 is also included. The second conveyor line 250 is located at the end of the first profile 100 at the glue injection station near the glue injection gun 170. The second conveyor line 250 is used to feed the second profile 110.
[0063] Understandably, by directly conveying the second profile 110 to the side of the glue injection station, the docking distance between the second profile 110 and the first profile 100 on the glue injection station is shortened, the time interval for the adhesive to wait for pressing is reduced, and the activity of the adhesive is further guaranteed.
[0064] In some specific embodiments, the second conveyor line 250 conveys the second profile 110 along the width direction of the first profile 100 at the glue injection station.
[0065] It is understandable that the second conveyor line 250 conveys the second profile 110 along the width direction of the first profile 100, so that when the second profile 110 reaches the docking position, its length direction is parallel to the first profile 100. At the same time, this arrangement allows the propulsion device 190 to apply force evenly along the length direction of the second profile 110, avoiding local stress concentration at the locking part caused by angular deviation, and improving the assembly reliability of the locking structure.
[0066] In some specific embodiments, a plurality of second positioning members 260 are provided on the second conveying line 250, which are arranged along the conveying direction of the second conveying line 250. The second positioning members 260 are used to position the second profile 110.
[0067] Understandably, the second positioning member 260 physically limits the second profile 110 to ensure that when it is transported to the working area of the propulsion device 190, the second splicing surface remains parallel to the first splicing surface 120 of the first profile 100, thereby facilitating the accurate insertion of the second snap-fit part 150 into the first snap-fit part 140.
[0068] In some specific embodiments, a second positioning sensor 270 is also included. The second positioning sensor 270 is electrically connected to the second conveyor line 250. The second positioning sensor 270 is used to detect whether the second profile 110 is aligned with the first profile 100 at the glue injection station and to control the second conveyor line 250 to stop conveying.
[0069] Understandably, the second positioning sensor 270 detects the spatial relative position of the second profile 110 and the first profile 100 in real time. When it detects that the two profiles have reached the preset alignment accuracy, it triggers the conveyor line to pause. Through dynamic calibration, it eliminates the cumulative positioning error and ensures that the first locking part 140 and the second locking part 150 are fully engaged when the pusher 190 is pushed forward, thus avoiding locking failure or uneven adhesive layer caused by misalignment.
[0070] In some specific embodiments, the second conveyor line 250 may include two parallel and synchronous conveyor belts, which respectively support the bottom ends of the second profile 110. A lifting assembly is provided between the two conveyor belts. The lifting assembly is located on the side of the propulsion device 190 near the glue injection device 160. The lifting assembly includes a lifting seat and a second power component that drives the lifting seat to rise and fall. The lifting seat is used to lift the second profile 110 so that the second snap-fit portion 150 of the second profile 110 is vertically aligned with the first snap-fit portion 140 of the first profile 100 on the glue injection station.
[0071] In some specific embodiments, the pushing device 190 includes a second clamping hand and a third power member. The second clamping hand is used to clamp the end of the second profile 110, and the third power member is used to drive the second clamping hand to move closer to and away from the glue injection station. Thus, when the pushing device 190 pushes the second profile 110, it can use the second clamping hand to clamp and fix the second profile 110, preventing the second profile 110 from shifting. Furthermore, the second snap-fit portion 150 of the second profile 110 can be accurately embedded into the first snap-fit portion 140 of the first profile 100.
[0072] In the description of this specification, references to terms such as "an embodiment," "some embodiments," "illustrative embodiments," "example," "specific example," or "some examples," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of the present invention. In this specification, illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.
[0073] The terms "first," "second," "third," "fourth," etc. (if applicable) in the specification, claims, and accompanying drawings of this application are used to distinguish similar objects and are not necessarily used to describe a specific order or sequence. It should be understood that such data can be interchanged where appropriate so that the embodiments described herein can be implemented in a sequence other than that illustrated or described herein.
[0074] It should also be noted that, in the description of this specification, relational terms such as first and second are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between these entities or operations.
[0075] Furthermore, the terms “comprising” and “having”, and any variations thereof, are intended to cover non-exclusive inclusion, such that a process, method, system, product, or apparatus that includes a series of steps or units is not necessarily limited to those steps or units that are explicitly listed, but may also include other steps or units that are not explicitly listed or that are inherent to such processes, methods, products, or apparatus.
[0076] Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further limitation, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes said element.
[0077] The embodiments of the present utility model have been described in detail above with reference to the accompanying drawings. However, the present utility model is not limited to the above embodiments. Within the scope of knowledge possessed by those skilled in the art, various changes can be made without departing from the spirit of the present utility model.
Claims
1. A composite profile production equipment, characterized in that, For producing composite profiles, the composite profiles include a first profile (100) and a second profile (110), the first profile (100) having an injection hole (130) extending to a first splicing surface (120), the first profile (100) having a first snap-fit portion (140), and the second profile (110) having a second snap-fit portion (150), the composite profile production equipment includes: The glue injection device (160) has a glue injection station, including a glue injection gun (170) and a first power member (180) that drives the glue injection gun (170) to move closer to and away from the glue injection station. The glue injection gun (170) is used to extend into the glue injection hole (130) of the first profile (100) located at the glue injection station to inject glue. A pushing device (190) is used to push the second profile (110) along the length direction of the first profile (100) closer to the first profile (100) at the glue injection station so that the second snap-fit portion (150) is inserted into the first snap-fit portion (140) from the end of the first profile (100).
2. The composite profile production equipment according to claim 1, characterized in that, It also includes a first conveyor line (200) for feeding the first profile (100).
3. The composite profile production equipment according to claim 2, characterized in that, It also includes a first clamping hand (210) and a first driving assembly (220) for moving the first clamping hand (210). The first clamping hand (210) is used to clamp and transport the first profile (100) of the first conveying line (200) to the glue injection station and fix the first profile (100) at the glue injection station.
4. The composite profile production equipment according to claim 3, characterized in that, The first conveyor line (200) is provided with a plurality of first positioning members (230) arranged along the conveying direction of the first conveyor line (200), and the first positioning members (230) are used to position the first profile (100).
5. The composite profile production equipment according to claim 4, characterized in that, It also includes a first positioning sensor (240), which is electrically connected to the first conveyor line (200). The first positioning sensor (240) is used to detect whether the first profile (100) has reached the clamping and picking position of the first gripper (210) and control the first conveyor line (200) to stop conveying.
6. The composite profile production equipment according to claim 2, characterized in that, The first conveyor line (200) conveys the first profile (100) along the width direction of the first profile (100) at the glue injection station.
7. The composite profile production equipment according to claim 1, characterized in that, It also includes a second conveyor line (250), which is located at one end of the first profile (100) at the glue injection station near the glue injection gun (170), and the second conveyor line (250) is used to feed the second profile (110).
8. The composite profile production equipment according to claim 7, characterized in that, The second conveyor line (250) conveys the second profile (110) along the width direction of the first profile (100) at the glue injection station.
9. The composite profile production equipment according to claim 7, characterized in that, The second conveyor line (250) is provided with a plurality of second positioning members (260) arranged along the conveying direction of the second conveyor line (250), and the second positioning members (260) are used to position the second profile (110).
10. A composite profile production equipment according to claim 9, characterized in that, It also includes a second positioning sensor (270), which is electrically connected to the second conveyor line (250). The second positioning sensor (270) is used to detect whether the second profile (110) is aligned with the first profile (100) at the glue injection station and to control the second conveyor line (250) to stop conveying.