Multi-channel static pressure maintaining equipment
By designing multi-channel static pressure holding equipment, using the coordinated work of components such as frames, curing components, lifting modules and dispatching components, the problem of low processing efficiency of the pressure holding process in the existing technology is solved, and an efficient screen buckle and pressure holding process is achieved.
Patent Information
- Application Number
- CN202510188864.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-20
- Publication Date
- 2025-05-16
AI Technical Summary
In the processing process of the pressure-keeping process, the fixture needs to be continuously installed and flowed, resulting in too low processing efficiency.
A multi-channel static pressure holding device is designed, including a frame, multi-layer curing assembly, two sets of lifting module mechanisms, dispatching assembly, discharge conveying mechanism and return assembly. Through the coordinated work of these components, multi-channel static pressure holding processing of the product is realized.
The screen is kept stationary by multi-channel, which improves the processing efficiency of the screen clamping and pressure holding process and improves the degree of automation.
Smart Images

Figure CN120003884A_ABST
Abstract
Description
Technical Field
[0001] The invention belongs to the technical field of automobile parts production equipment, and in particular relates to a multi-channel static pressure-maintaining equipment. Background Art
[0002] With the development of the automobile industry, the demand for various types of vehicle-mounted equipment has shown a rapid growth trend. As an important human-computer interaction interface in vehicle-mounted equipment, the market demand for touch display products is becoming increasingly strong. At the same time, consumers and manufacturers' requirements for their quality and performance are also constantly rising. Among them, LCD screens are the core components of touch display products, and their industrial production demand has also increased significantly.
[0003] In the existing bonding process, the screen needs to be pressed and pressure-maintained, and the process needs to be transferred back and forth between various devices, resulting in low processing efficiency.
[0004] The patent with announcement number: CN217639844U discloses a vehicle-mounted liquid crystal display screen bonding and assembly device, including a conveying channel and a fixed bracket arranged on one side of the conveying channel, the conveying channel conveys a contour carrier for placing the back frame of the display screen; the fixed bracket is equipped with a first X-axis module and a second X-axis module; the first X-axis module is installed with a first Z-axis module, and the second X-axis module is installed with a second Z-axis module; the first Z-axis module and the second Z-axis module are both equipped with a first detection camera that moves along the Z-axis direction; a material picking robot is also provided directly below the fixed bracket, and the material picking robot is equipped with a bonding contour jig for the display screen.
[0005] The existing technology has at least the following technical problems in the production and processing process:
[0006] During the pressure-holding process, the jig needs to be installed and circulated continuously, resulting in low processing efficiency. Summary of the invention
[0007] The present invention provides a multi-channel static pressure-maintaining device, which is used to solve the technical problem in the prior art that during the pressure-maintaining process, the jig needs to be continuously installed and circulated, resulting in low processing efficiency.
[0008] In order to achieve the above object, the present invention is implemented by the following technical solutions:
[0009] A multi-channel static pressure-maintaining device, comprising: a frame, a multi-layer curing assembly, two sets of lifting module mechanisms, a scheduling assembly, a material unloading and conveying mechanism, and a reflux assembly. The frame is provided with a plurality of visual windows, and a control assembly is integrated on the frame; a multi-layer support frame is provided on the frame, and a plurality of curing assemblies are correspondingly arranged on the support frame; two sets of the lifting module mechanisms are respectively distributed on both sides of the frame, and a working window is provided on the lifting module mechanism for inputting and outputting parts to be processed; a scheduling assembly is installed between the two sets of the lifting module mechanisms, and is used to transfer parts between the multi-layer curing assemblies and the two sets of lifting module mechanisms; a material unloading and conveying mechanism is installed on the lifting module mechanism for outputting processed parts; a reflux assembly is installed at the bottom of the multi-layer support frame, and is used to reflux and replenish the jig.
[0010] Furthermore, the curing assembly includes: a curing track, a pressure-maintaining cover plate, a visual positioning device, and a first driving device. The curing track is installed on the frame; the pressure-maintaining cover plate is used to fix and maintain the pressure of parts that need to be statically maintained, and the pressure-maintaining cover plate slides relative to the curing track; the visual positioning device is installed on the frame and is used to locate the placement position of the pressure-maintaining cover plate; the first driving device is installed on the curing track and is used to drive the curing track to transport the pressure-maintaining cover plate.
[0011] Furthermore, the lifting module mechanism comprises: a support frame, a lifting rail, and a sliding platform. The support frame is installed on both sides of the frame; the lifting rail is installed on the support frame; and the sliding platform is slidably installed on the lifting rail.
[0012] Furthermore, the scheduling component includes: an up and down transfer mechanism, a transfer fixing plate, a sliding arm, a cylinder clamp, a conveying transverse frame, a second driving mechanism, and a first lifting and positioning mechanism. The up and down transfer mechanism is installed on the support frame, and has a sliding portion that slides up and down; the transfer fixing plate is installed on the sliding portion; the sliding arm is installed on the transfer fixing plate; the cylinder clamp is installed on the sliding arm, and the sliding arm is used to drive the cylinder clamp to slide along a first preset direction and a second preset direction; the conveying transverse frame is installed in the support frame, and is used to cooperate with the cylinder clamp for transportation; the second driving mechanism is used to drive the conveying transverse frame to slide along the first preset direction and the second preset direction; the first lifting and positioning mechanism is installed on the conveying transverse frame, and is used to lift the transported parts.
[0013] Furthermore, the material unloading and conveying mechanism comprises: a material unloading and conveying frame, a second lifting and positioning mechanism, and a third driving mechanism. The material unloading and conveying frame is used to receive the structure of the cylinder clamp for transportation; the second lifting and positioning mechanism is installed on the material unloading and conveying frame, and is used to lift the transported parts; the third driving mechanism is used to drive the material unloading and conveying frame to move along the first preset direction.
[0014] Furthermore, the return assembly includes: a return track, a cover plate lifting and positioning mechanism, and a driving mechanism. The return track is installed on the support frame; the cover plate lifting and positioning mechanism is slidably installed on the return track for positioning and lifting the transported cover plate; the driving mechanism is installed on the support frame for driving the return track to transport the cover plate lifting and positioning mechanism.
[0015] The present invention provides a multi-channel static pressure-maintaining device, which has the following beneficial effects:
[0016] The screen is statically pressed through multiple channels, which improves the processing efficiency of the screen fastening and pressure holding process and improves the degree of automation. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings required for use in the embodiments or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative work.
[0018] Figure 1 A schematic structural diagram of a multi-channel static pressure-maintaining device provided in an embodiment of the present invention;
[0019] Figure 2 An exploded view of a multi-channel static pressure-maintaining device provided by an embodiment of the present invention, excluding the bracket;
[0020] Figure 3 A schematic diagram of the structure of a noise reduction assembly provided by an embodiment of the present invention;
[0021] Figure 4 A schematic diagram of the structure of an axial flow fan body provided in an embodiment of the present invention.
[0022] In the figure: 10-frame; 1010-multi-layer curing assembly; 20-two sets of lifting module mechanisms; 30-scheduling assembly; 2010-unloading conveying mechanism; 2020-reflow assembly; 1011-curing track; 1012-pressure-maintaining cover; 1013-visual positioning device; 1014-first driving device; 201-support frame; 202-lifting track; 203-sliding platform; 301-up and down transplanting mechanism; 302-transplanting fixed plate; 303-sliding arm; 304-cylinder clamp; 305-transporting transverse frame; 306-second driving mechanism; 307-first lifting and positioning mechanism; 2011-unloading transport frame; 2012-second lifting and positioning mechanism; 2013-third driving mechanism; 2021-reflow track; 2022-cover lifting and positioning mechanism; 2023-driving mechanism. DETAILED DESCRIPTION
[0023] The embodiments of the present application are described in detail below with reference to the accompanying drawings.
[0024] In the description of the present application, it should be understood that the terms "center", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", etc., indicating orientations or positional relationships, are based on the orientations or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be understood as a limitation on the present application.
[0025] The terms "first" and "second" are used for descriptive purposes only and should not be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of the features. In the description of this application, unless otherwise specified, "plurality" means two or more.
[0026] In the description of this application, it should be noted that, unless otherwise clearly specified and limited, the terms "installation", "connection" and "connection" should be understood in a broad sense, for example, it can be welding, bolt connection, or riveting; it can be fixed connection, detachable connection, or integral connection; it can be mechanical connection or electrical connection; it can be directly connected or indirectly connected through an intermediate medium, or it can be internal communication between two components. For ordinary technicians in this field, the specific meanings of the above terms in this application can be understood according to specific circumstances.
[0027] Example:
[0028] like Figures 1 to 4As shown, this embodiment provides a multi-channel static pressure-maintaining device, including: a frame 10, a multi-layer curing component 1010, two sets of lifting module mechanisms 20, a scheduling component 30, a material unloading and conveying mechanism 2010, and a reflux component 2020. The frame 10 is provided with multiple visual windows, and a control component is integrated on the frame 10; a multi-layer support frame is provided on the frame 10, and multiple curing components are correspondingly arranged on the support frame; two sets of lifting module mechanisms 20 are respectively distributed on both sides of the frame 10, and working windows are provided on the lifting module mechanisms for inputting and outputting parts to be processed; the scheduling component 30 is installed between the two sets of lifting module mechanisms 20, and is used to transfer parts between the multi-layer curing component 1010 and the two sets of lifting module mechanisms 20; the material unloading and conveying mechanism 2010 is installed on the lifting module mechanism for outputting processed parts; the reflux component 2020 is installed at the bottom of the multi-layer support frame, and is used to reflux and replenish the fixture.
[0029] In this embodiment, when the equipment is started, the power is turned on, and the integrated control component on the frame 10 is turned on. The operator performs initial settings through it, such as setting parameters such as curing time and holding pressure, and observes the initial state of the equipment with the help of multiple visual windows on the frame 10. The parts to be processed are sent in by external conveying equipment through the working window on the lifting module mechanism. The lifting module mechanism on the right side of both sides of the frame 10 can be selected as the input channel according to production needs. The sliding platform 203 of the lifting module mechanism carries the parts, and the height is adjusted through the lifting track 202 according to the control component instruction, which is convenient for the dispatching component 30 to transport; and the parts to be held and the jigs used for processing are circulated between various stations through the dispatching component 30.
[0030] Further, in some implementations of this embodiment, Figures 1 to 4 As shown, the curing assembly includes: a curing track 1011, a pressure-maintaining cover plate 1012, a visual positioning device 1013, and a first driving device 1014. The curing track 1011 is installed on the frame 10; the pressure-maintaining cover plate 1012 is used to fix and maintain the pressure of the parts that need to be statically maintained, and the pressure-maintaining cover plate 1012 slides relative to the curing track 1011; the visual positioning device 1013 is installed on the frame 10, and is used to locate the placement position of the pressure-maintaining cover plate 1012; the first driving device 1014 is installed on the curing track 1011, and is used to drive the curing track 1011 to transport the pressure-maintaining cover plate 1012.
[0031] In this embodiment, the curing tracks 1011 are respectively installed on the multi-layer support frames, the pressure maintaining cover plate 1012 is used to cooperate with the jig to continuously apply pressure to the parts, and the jig that needs static pressure maintenance is positioned and monitored by the visual positioning device 1013. A driving track is provided on the curing track 1011, and the first driving device 1014 is specifically a servo driving motor, which is used to drive the driving track on the curing track 1011 for transportation.
[0032] Further, in some implementations of this embodiment, Figures 1 to 4 As shown, the lifting module mechanism includes: a support frame 201, a lifting rail 202, and a sliding platform 203. The support frame 201 is installed on both sides of the frame 10; the lifting rail 202 is installed on the support frame 201; and the sliding platform 203 is slidably installed on the lifting rail 202.
[0033] In this embodiment, a plurality of working platforms are arranged on the support frame 201, and the lifting track 202 is specifically a chain plate transport device, which is used to move along the vertical direction, that is, the second preset direction, and is used to drive the sliding platform 203 to move between multi-layer channels relative to the lifting track.
[0034] Further, in some implementations of this embodiment, Figures 1 to 4 As shown, the scheduling component 30 includes: an up-down transfer mechanism 301, a transfer fixing plate 302, a sliding arm 303, a cylinder clamp 304, a conveying transverse frame 305, a second driving mechanism 306, and a first lifting and positioning mechanism 307. The up-down transfer mechanism 301 is installed on the support frame 201, and has a sliding portion that slides up and down; the transfer fixing plate 302 is installed on the sliding portion; the sliding arm 303 is installed on the transfer fixing plate 302; the cylinder clamp 304 is installed on the sliding arm 303, and the sliding arm 303 is used to drive the cylinder clamp 304 to slide along the first preset direction and the second preset direction; the conveying transverse frame 305 is installed in the support frame 201, and is used to cooperate with the cylinder clamp 304 for transportation; the second driving mechanism 306 is used to drive the conveying transverse frame 305 to slide along the first preset direction and the second preset direction; the first lifting and positioning mechanism 307 is installed on the conveying transverse frame 305, and is used to lift the transported parts.
[0035] In this embodiment, the sliding part of the upper and lower transfer mechanism 301 of the scheduling component 30 descends, driving the transfer fixing plate 302, the sliding arm 303 and the cylinder clamp 304 to the working window of the lifting module mechanism to grab the parts, and then rises and the sliding arm 303 drives the cylinder clamp 304 to slide in a preset direction to transport the parts to a certain layer of the curing track 1011 of the multi-layer curing component 1010. During this process, the transport transverse frame 305 cooperates with the cylinder clamp 304 under the action of the second driving mechanism 306 to ensure the accurate placement of the parts. The parts are transported to the designated position on the curing track 1011 by the first driving device 1014, and the pressure-maintaining cover plate 1012 slides to cover the parts with the assistance of the visual positioning device 1013 to fix and maintain the pressure. The operator can observe through the visual window, and the control component monitors the pressure-maintaining pressure and curing time in real time.
[0036] Further, in some implementations of this embodiment, Figures 1 to 4 As shown, the material unloading and conveying mechanism 2010 includes: a material unloading and conveying frame 2011, a second lifting and positioning mechanism 2012, and a third driving mechanism 2013. The material unloading and conveying frame 2011 is used to receive the structure of the cylinder clamp 304 for transportation; the second lifting and positioning mechanism 2012 is installed on the material unloading and conveying frame 2011, and is used to lift the transported parts; the third driving mechanism 2013 is used to drive the material unloading and conveying frame 2011 to move along the first preset direction.
[0037] In this embodiment, after the parts are cured and pressure maintained, they are transported by the curing track 1011 to the vicinity of the output lifting module mechanism, and the scheduling component 30 is activated again, and the cylinder clamp 304 grabs the parts and puts them on the sliding platform 203 of the output lifting module mechanism. After the platform descends, the parts are output to the unloading conveying mechanism 2010 through the working window. The unloading transport frame 2011 of the unloading conveying mechanism 2010 receives the parts, the second lifting and positioning mechanism 2012 lifts the parts, and the third driving mechanism 2013 drives the unloading transport frame 2011 to move along the preset direction to deliver the parts to the unloading location.
[0038] Further, in some implementations of this embodiment, Figures 1 to 4 As shown, the return assembly 2020 includes: a return track 2021, a cover lifting and positioning mechanism 2022, and a driving mechanism 2023. The return track 2021 is installed on the support frame; the cover lifting and positioning mechanism 2022 is slidably installed on the return track 2021, and is used to position and lift the transported cover; the driving mechanism 2023 is installed on the support frame, and is used to drive the return track 2021 to transport the cover lifting and positioning mechanism 2022.
[0039] In this embodiment, when processing parts, the jig flows with the parts in the multi-layer curing assembly 1010. After reaching the tail, the sensor sends a signal to the reflux assembly 2020, and the driving mechanism 2023 of the reflux assembly 2020 makes the reflux track 2021 run. The cover plate lifting and positioning mechanism 2022 slides to position and lift the jig, and then the reflux track 2021 transports the jig to the bottom of the multi-layer support frame to complete the reflux replenishment. In addition, during the operation of the equipment, the control component monitors the status of each component in real time, and alarms in case of faults. The operator performs maintenance and repairs accordingly. At the same time, the equipment can be regularly cleaned and inspected through the visual window to ensure its normal operation and processing quality.
[0040] In summary, when using a multi-channel static pressure holding equipment, multi-channel static pressure holding processing of the product is achieved through the coordinated work of various parts such as the frame 10, the multi-layer curing component 1010, the two sets of lifting module mechanisms 20, the scheduling component 30, the unloading and conveying mechanism 2010, and the reflux component 2020; the components have clear division of labor and close cooperation, and a complete automated processing flow is formed from product input, pressure holding processing, unloading to reflux replenishment of the fixture; it not only improves the efficiency and accuracy of product processing, but also reduces manual operation and labor intensity, and has good practicality and promotion value; at the same time, the adjustability of each component in the equipment and the setting of the positioning device enable the equipment to adapt to the processing needs of products of different specifications, further enhancing the versatility and flexibility of the equipment.
[0041] The above is only a specific embodiment of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art can easily think of changes or substitutions within the technical scope of the present invention, which should be included in the protection scope of the present invention. Therefore, the protection scope of the present invention should be based on the protection scope of the claims.
Claims
1. A multi-channel static pressure-maintaining device, characterized in that: include: A frame (10) is provided with a plurality of visual windows, and a control component is integrated on the frame (10); A multi-layer curing assembly (1010), wherein a multi-layer support frame is provided on the frame (10), and a plurality of curing assemblies are correspondingly arranged on the support frame; Two groups of lifting module mechanisms (20), the two groups of lifting module mechanisms being respectively distributed on both sides of the frame (10), and the lifting module mechanisms being provided with working windows for inputting and outputting parts to be processed; A dispatching assembly (30) installed between the two sets of lifting module mechanisms and used for transferring parts between the multiple layers of the curing assembly and the two sets of lifting module mechanisms (20); A material unloading conveying mechanism (2010) is installed on the lifting module mechanism for outputting processed parts; The reflux component (2020) is installed at the bottom of the multi-layer support frame and is used to reflux and replenish the fixture.
2. A multi-channel static pressure-maintaining device according to claim 1, characterized in that: The curing assembly comprises: A curing track (1011) mounted on the frame (10); A pressure-maintaining cover plate (1012) is used to perform fixed pressure maintenance on parts that require static pressure maintenance, and the pressure-maintaining cover plate (1012) slides relative to the curing track (1011); A visual positioning device (1013) is installed on the frame (10) and is used to locate the placement position of the pressure-maintaining cover plate (1012); A first driving device (1014) is installed on the curing track (1011) and is used to drive the curing track (1011) to transport the pressure-maintaining cover plate (1012).
3. A multi-channel static pressure-maintaining device according to claim 2, characterized in that: The lifting module mechanism comprises: A supporting frame (201) installed on both sides of the frame (10); A lifting rail (202) is installed on the supporting frame (201); A sliding platform (203) is slidably mounted on the lifting track (202).
4. The multi-channel static pressure-maintaining device according to claim 3, characterized in that: The scheduling component (30) comprises: An up and down transplanting mechanism (301) is installed on the supporting frame (201) and has a sliding part that slides up and down; A transplanting fixing plate (302) mounted on the sliding portion; A sliding arm (303) is mounted on the transplanting fixing plate (302); A cylinder clamp (304) mounted on the sliding arm (303), the sliding arm (303) being used to drive the cylinder clamp (304) to slide along a first preset direction and a second preset direction; A transporting and traversing frame (305) is installed in the supporting frame (201) and is used to cooperate with the cylinder clamp (304) for transport; A second driving mechanism (306) is used to drive the transport transverse shifting frame (305) to slide along the first preset direction and the second preset direction; The first lifting and positioning mechanism (307) is installed on the conveying and transverse shifting frame (305) and is used to lift the transported parts.
5. The multi-channel static pressure-maintaining device according to claim 4, characterized in that: The material unloading and conveying mechanism (2010) comprises: A material unloading transport frame (2011), a structure for receiving the cylinder clamp (304) for transport; A second lifting and positioning mechanism (2012) is installed on the unloading and transporting frame (2011) and is used to lift the transported parts; The third driving mechanism (2013) is used to drive the unloading transport frame (2011) to move along the first preset direction.
6. The multi-channel static pressure-maintaining device according to claim 5, characterized in that: The reflux component (2020) comprises: A return track (2021) is installed on the support frame; A cover plate lifting and positioning mechanism (222) is slidably mounted on the return track (221) and is used to position and lift the transported cover plate; A driving mechanism (2023) is installed on the support frame and is used to drive the return track (2021) to transport the cover plate lifting and positioning mechanism (222).
Citation Information
Patent Citations
Vehicle-mounted liquid crystal display screen fitting and assembling device
CN217639844U