A glass-magnesium wood-plastic composite board pressing device
By using a combination of lifting electric cylinders, transfer frames, clamping components and positioning parts in the glass magnesium composite board pressing device, the problem of the inner layer material extending and deforming in all directions during pressing is solved, and the deformation control of the pressed product and the improvement of production efficiency are realized.
Patent Information
- Application Number
- CN202211318295.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-10-26
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2042-10-26
AI Technical Summary
Existing glass-magnesium composite board pressing equipment cannot effectively limit the expansion and deformation of the inner layer material during pressing, resulting in excessive deformation. In addition, the production line occupies a large area, and the equipment does not meet the technical requirements.
A lifting cylinder comprising a base and a rotating lifting cylinder is employed. A lifting plate is fixedly mounted on the telescopic rod of the lifting cylinder, a rotating drum is rotatably mounted on the lifting plate, and a transfer frame is slidably mounted on the rotating drum. The transfer frame is equipped with a pressing assembly and a clamping assembly. The pressing assembly is used to press the substrate and the interlayer material together, and the clamping assembly is used to clamp the substrate and the interlayer material. The clamping assembly includes a bogie rotatably mounted on the transfer frame, and two clamping seats are slidably mounted on the bogie. The substrate is clamped through the inner sides of the two clamping seats, and an adsorption plate is provided on the clamping seats. The system includes a accommodating chamber for accommodating an adsorption plate; a coating component for applying an adhesive to a substrate, the coating component including a coating roller and an adhesive preparation box communicating with the coating roller, the coating being applied to the substrate surface by moving the coating roller; and four positioning components for fixing the substrate and interlayer material, each positioning component including a telescopic screw movably mounted on a base, one end of the telescopic screw being detachably mounted with a positioning plate, and the other end of the telescopic screw being movably mounted with a snap-fit assembly, the positioning components engaging with a slot via the snap-fit assembly to fix the position of the substrate and interlayer material.
This method effectively blocks the material from all sides, limiting the inner layer material from extending and deforming outwards during lamination. This ensures that the inner layer material and the substrate remain consistent around the edges of the laminated product, improving production efficiency and product quality.
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Figure CN115782207B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of composite board pressing, in particular to a glass-magnesium wood-plastic composite board pressing device. BACKGROUND
[0002] Glass-magnesium composite board is a new type of high-tech composite board material, which is composed of two layers of high-strength inorganic materials and one layer of thermal insulation material. It has the characteristics of light weight, high strength, non-combustion, sound insulation, and can be used in humid environments. It is a new generation of energy-saving, environmentally friendly green products.
[0003] Glass-magnesium composite board is a multi-layer structure, of which the board on the two end faces serves as the base plate. According to actual needs, various materials such as fireproof, corrosion-resistant, water-resistant, and thermal insulation materials are placed between the two base plates, and the production is generally carried out by pressing. The inner layer material of some current glass-magnesium composite boards is a flexible material such as phenolic foam. When pressing, if the pressing force is too large, the inner layer material will be compressed and will also expand to the four sides. Although the inner layer material will recover due to its own elasticity after pressing, if the deformation is too large, it cannot completely recover to the initial state. Such products do not meet the production requirements, and the current pressing equipment does not solve this technical problem. In addition, the current production of composite boards generally adopts flow production, which occupies a large area.
[0004] A polyimide composite board pressing device is disclosed in Chinese Patent No. CN214927216U, which includes a pressing base, a pressing plate, a hydraulic cylinder, and a coating mechanism. The surface of the pressing base is provided with a pressing groove, and the inside of the pressing groove is provided with an inner plate. The bottom of the inner plate is fixedly connected with a guide column, and the surface of the guide column is sleeved with a compression spring. The edge of the pressing base is fixedly connected with a gantry, and the hydraulic cylinder is fixedly connected longitudinally in the middle of the gantry. The pressing plate is located directly above the pressing groove and is fixedly connected with the output end of the hydraulic cylinder. The edge of the pressing base is fixedly connected with the coating mechanism, which is composed of a sliding frame and a coating roller. This patent provides an inner plate with a compression spring inside the pressing base, which facilitates the support of the composite board to be pressed, the coating of glue and additives, and the automatic delivery of the pressing groove after pressing is completed, thereby improving the convenience of pressing board processing. However, it cannot solve the technical problem of the deformation of the inner layer material. SUMMARY
[0005] When pressing, the present application blocks the material around to limit the expansion of the inner layer material to the four sides during pressing, ensuring that the inner layer material and the base plate around the product after pressing remain consistent.
[0006] The technical solution used in the present application is as follows:
[0007] The utility model provides a kind of glass magnesium wood plastic composite board pressing device, including pedestal, the two sides of pedestal are provided with the preliminary rack for placing substrate and interlayer material;The central region of pedestal is provided with support platform;Further include: for transferring substrate and interlayer material transfer component, transfer component includes lift electric cylinder rotatably installed on pedestal, fixedly arranged on the telescopic rod of lift electric cylinder there is lifting disc, rotatably installed on lifting disc there is rotary drum, rotary drum slidingly installed there is transfer frame, transfer frame is provided with pressing assembly and clamping assembly, pressing assembly is used to substrate and interlayer material are pressed, clamping assembly is used to clamp substrate and interlayer material;Clamping assembly includes steering bogie rotatably installed on transfer frame, slidingly installed there are two clamping seats on steering bogie, substrate is clamped by the inside of two clamping seats, clamping seat is provided with suction disc and can accommodate suction disc and hold chamber;For coating adhesive on substrate coating component, coating component includes coating roller, and with coating roller communication adhesive preliminary tank, substrate surface is coated by the movement of coating roller;Four for fixing substrate and interlayer material positioning component, positioning component includes the telescopic screw rod movably arranged on pedestal, one end of telescopic screw rod can be detachably provided with positioning plate, one end of telescopic screw rod movably provided with buckle assembly, positioning plate is provided with clamping groove, by buckle assembly with clamping groove cooperation, to fix positioning plate.
[0008] Further, the inside of the preliminary rack slidingly installs support plate, the bottom of pedestal is fixedly installed with support plate electric cylinder, and the support plate electric cylinder is used to drive support plate to slide.
[0009] Further, the support platform includes a column fixedly connected with the pedestal, a positioning table fixedly connected to the top end of the column, and a pedestal support plate fixedly installed on the pedestal.
[0010] Further, the transfer component includes a first motor fixedly arranged on the pedestal and a rotating seat rotatably installed on the pedestal, a first belt structure connected to the output shaft of the first motor to drive the rotating seat to rotate, a lift electric cylinder fixedly connected with the rotating seat, an adjustment electric cylinder fixedly installed on the lift electric cylinder, a connecting turntable fixedly connected to the telescopic rod of the adjustment electric cylinder, and the connecting turntable rotatably connected to one end of the transfer frame.
[0011] Further, the transfer frame includes a transfer frame, the pressing assembly and the clamping assembly are arranged on the transfer frame, one end of a connecting shaft fixedly connected with the transfer frame, one end of a connecting slide rod fixedly connected with the connecting shaft, the connecting slide rod slidingly connected with the rotary drum, the connecting turntable rotatably connected to one end of the connecting slide rod, and a second motor fixedly installed on the lifting disc, a second belt structure connected to the output shaft of the second motor to drive the rotary drum to rotate.
[0012] Further, the pressing assembly includes a pressing oil cylinder fixedly installed on the transfer frame, and a pressing plate fixedly installed on the telescopic rod of the pressing oil cylinder.
[0013] Further, the clamping assembly comprises a steering motor fixedly installed on the rotating frame, a steering frame rotatably installed on the rotating frame, and the steering motor is configured to drive the steering frame to rotate; one end of the steering frame is fixedly installed with a third motor, and a clamping screw is rotatably installed on the steering frame, and the third motor is configured to drive the clamping screw to rotate; the clamping seat and the clamping screw form a screw pair; the clamping seat is fixedly provided with a suction control cylinder, and the suction control cylinder is configured to drive the suction disc to slide.
[0014] Further, the coating assembly comprises a guide frame fixedly connected to the base, a slide cylinder fixedly installed on one side of the guide frame, a coating slide slidingly installed above the guide frame, a coating roller rotatably installed on the coating slide, the slide cylinder being configured to drive the coating slide to slide, a communication seat fixedly connected to the coating slide, the communication seat being in communication with one end of the coating roller, one end of the coating roller being fixedly connected with a coating gear, and a fixed gear rack being further fixedly provided above the guide frame, the fixed gear rack and the coating gear forming a gear pair; the top of the adhesive preparation box is provided with a delivery pump, and the delivery pump is connected with a delivery pipe, one end of the delivery pipe being in communication with the communication seat.
[0015] Further, the positioning assembly comprises a fourth motor fixedly installed on the base and a gear disc rotatably installed on the column, the gear disc being fixedly connected with a driving gear ring, and a motor gear being fixedly installed on the output shaft of the fourth motor, the motor gear and the driving gear ring forming a gear pair; the positioning assembly further comprises an engagement control cylinder rotatably installed on the base support plate, an engagement gear being fixedly installed on the extension rod of the engagement control cylinder, the engagement control cylinder being connected with the extension screw through the third belt structure, the extension screw being slidingly arranged on the base support plate, and the extension screw and the belt pulley of the third belt structure forming a screw pair, when the engagement gear is engaged with the gear disc, the gear disc drives the engagement control cylinder to rotate, and when the engagement control cylinder rotates, the extension screw is driven to move under the drive of the belt.
[0016] Further, the buckle assembly comprises a buckle connecting sleeve fixedly connected to one end of the extension screw, a buckle slidingly installed on the buckle connecting sleeve, and a buckle spring connected between the buckle and the extension screw for providing elastic force, and the buckle is matched with the clamping groove on the positioning plate to fix the positioning plate.
[0017] The beneficial effects of the present application compared with the prior art are: (1) for different sizes of the substrate and the interlayer material, different sizes of the positioning plate are needed, in order to facilitate replacement and improve efficiency, the positioning plate and the telescopic screw rod are detachably connected in the present application, the fixing of the positioning plate is realized through the cooperation of the buckle plate and the clamping groove on the positioning plate, when disassembling, the positioning plate can be quickly disassembled by pressing the buckle plate; (2) the four positioning plates surround the substrate and the interlayer material, when pressing, the interlayer material will be compressed under stress, but will not extend to the surrounding, and will not deform outward, so as to ensure that the composite board meets the requirements; (3) the adhesive preparation box is used for adhesive conveying in the present application, the adhesive is conveyed to the coating roller through the conveying pipe and the communication seat, and is sprayed through the spray hole on the coating roller to realize coating; when coating, the excess adhesive will flow into the adhesive preparation box again through the flow guide frame, which is convenient for recycling. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 It is a schematic diagram of the overall structure of the present application.
[0019] Figure 2 It is a partial enlarged view of mark A in the present application Figure 1 .
[0020] Figure 3 It is a schematic diagram of the transfer component of the present application.
[0021] Figure 4 It is a schematic diagram of the clamping assembly of the present application.
[0022] Figure 5 It is a schematic diagram of the clamping assembly.
[0023] Figure 6 It is a schematic diagram of the positioning component of the present application.
[0024] Figure 7 It is a schematic diagram of the connection relationship between the telescopic screw rod and the positioning plate of the present application.
[0025] Fig. 1 is a base; Fig. 2 is an adhesive preparation box; Fig. 3 is a preparation rack; Fig. 4 is a support plate; Fig. 5 is a coating roller; Fig. 6 is a coating slide; Fig. 7 is a fixed rack; Fig. 8 is a slide cylinder; Fig. 9 is a motor 1; Fig. 10 is a belt structure 1; Fig. 11 is a rotating seat; Fig. 12 is a lifting cylinder; Fig. 13 is a lifting disc; Fig. 14 is an adjusting cylinder; Fig. 15 is a connecting rotating disc; Fig. 16 is a connecting slide rod; Fig. 17 is a motor 2; Fig. 18 is a belt structure 2; Fig. 19 is a rotating drum; Fig. 20 is a connecting shaft; Fig. 21 is a rotating frame; Fig. 22 is a pressing plate; Fig. 23 is a pressing cylinder; Fig. 24 is a steering motor; Fig. 25 is a steering frame; Fig. 26 is a motor 3; Fig. 27 is a clamping seat; Fig. 28 is a suction control cylinder; Fig. 29 is a suction disc; Fig. 30 is a motor 4; Fig. 31 is a gear disc; Fig. 32 is an engaging gear; Fig. 33 is an engaging control cylinder; Fig. 34 is a belt structure 3; Fig. 35 is a telescopic screw rod; Fig. 36 is a positioning plate; Fig. 37 is a buckle plate; Fig. 38 is a buckle plate spring; Fig. 101 is a base support plate; Fig. 102 is a flow guide frame; Fig. 201 is a conveying pump; Fig. 202 is a conveying pipe; Fig. 401 is a support plate cylinder; Fig. 501 is a coating gear; Fig. 601 is a communication seat; Fig. 2601 is a clamping screw rod; Fig. 2701 is a containing chamber; Fig. 103 is a positioning table; Fig. 104 is a column; Fig. 3201 is a driving gear ring; Fig. 3601 is a buckle plate connecting sleeve. DETAILED DESCRIPTION
[0026] The present application will be further described below in conjunction with specific embodiments. The illustrative embodiments of the present application and the description used to explain the present application are not intended to be limiting to the present application.
[0027] As shown in Figs. Figure 1 and Figure 6 , the base 1 is provided with a preparation rack 3 for placing the base plate and the interlayer material on both sides; the central area of the base 1 is provided with a support platform; the support platform comprises a column 104 fixedly connected with the base 1, the top end of the column 104 is fixedly connected with a positioning table 103, and the base 1 is also fixedly installed with a base support plate 101; the inner side of the preparation rack 3 is slidingly installed with a support plate 4, and the bottom of the base 1 is fixedly installed with a support plate cylinder 401 for driving the support plate 4 to slide.
[0028] As shown in Figs. Figure 3 , Figure 4 , and Figure 5As shown, the base 1 is provided with a transfer component for transferring the substrate and the interlayer material, the transfer component comprising a lifting electric cylinder 12 rotatably installed on the base 1, a lifting disc 13 fixedly arranged on the lifting electric cylinder 12, a rotating drum 19 rotatably installed on the lifting disc 13, a transfer frame slidably installed on the rotating drum 19, a pressing assembly and a clamping assembly arranged on the transfer frame, the pressing assembly being used for pressing the substrate and the interlayer material, and the clamping assembly being used for clamping the substrate and the interlayer material; the clamping assembly comprises a steering frame 25 rotatably installed on the transfer frame 19, two clamping seats 27 slidably installed on the steering frame 25, the substrate being clamped through the inner sides of the two clamping seats 27, the clamping seat 27 being provided with a suction disc 29 and a containing cavity 2701 capable of containing the suction disc 29; the transfer component further comprises a motor one 9 fixedly arranged on the base 1, and a rotating seat 11 rotatably installed on the base 1, the output shaft of the motor one 9 being connected with a belt structure one 10, the rotating seat 11 being driven to rotate through the belt structure one 10, the lifting electric cylinder 12 being fixedly connected with the rotating seat 11, an adjusting electric cylinder 14 being fixedly installed on the lifting electric cylinder 12, a connecting turntable 15 being fixedly connected with the adjusting electric cylinder 14, and one end of the connecting turntable 15 being rotatably connected with the transfer frame; the transfer frame comprises a transfer frame 21, the pressing assembly and the clamping assembly being arranged on the transfer frame 21; one end of the transfer frame 21 is fixedly connected with a connecting shaft 20, one end of the connecting shaft 20 is fixedly connected with a connecting sliding rod 16, the connecting sliding rod 16 is slidably connected with the rotating drum 19, and one end of the connecting turntable 15 is rotatably connected with the connecting sliding rod 16; a motor two 17 is fixedly installed on the lifting disc 13, a belt structure two 18 is connected with the output shaft of the motor two 17, and the rotating drum 19 is driven to rotate through the belt structure two 18; the pressing assembly comprises a pressing oil cylinder 23 fixedly installed on the transfer frame 21, and a pressing plate 22 fixedly installed on the telescopic rod of the pressing oil cylinder 23; the clamping assembly comprises a steering motor 24 fixedly installed on the transfer frame 21, and the steering frame 25 rotatably installed on the transfer frame 25, the steering motor 24 being used for driving the steering frame 25 to rotate; one end of the steering frame 25 is fixedly installed with a motor three 26, a clamping lead screw 2601 is rotatably installed on the steering frame 25, and the motor three 26 is used for driving the clamping lead screw 2601 to rotate; the clamping seat 27 and the clamping lead screw 2601 constitute a screw pair; the clamping seat 27 is fixedly provided with a suction control electric cylinder 28, and the suction control electric cylinder 28 is used for driving the suction disc 29 to slide.
[0029] As Figure 1 and Figure 2As shown, the base 1 is provided with a coating member for coating the adhesive on the substrate, which includes a coating roller 5, and an adhesive preparation box 2 communicated with the coating roller 5, the surface of the substrate is coated by the movement of the coating roller 5; the coating member further includes a flow guide frame 102 fixedly connected to the base 1, one side of the flow guide frame 102 is fixedly installed with a sliding seat electric cylinder 8, the upper portion of the flow guide frame 102 is slidingly installed with a coating sliding seat 6, the coating roller 5 is rotatably installed on the coating sliding seat 6, the sliding seat electric cylinder 8 is used to drive the coating sliding seat 6 to slide, the coating sliding seat 6 is fixedly connected with a communication seat 601, the communication seat 601 is communicated with one end of the coating roller 5, one end of the coating roller 5 is fixedly connected with a coating gear 501, a fixed rack 7 is further fixedly arranged above the flow guide frame 102, and the fixed rack 7 and the coating gear 501 constitute a gear pair; the top of the adhesive preparation box 2 is provided with a conveying pump 201, the conveying pump 201 is connected with a conveying pipe 202, and one end of the conveying pipe 202 is communicated with the communication seat 601.
[0030] As Figure 6 and Figure 7As shown, the base 1 is provided with four positioning components for fixing the base plate and the interlayer material, the positioning components include a telescopic screw rod 36 movably arranged on the base 1, one end of the telescopic screw rod 36 is detachably provided with a positioning plate 37, one end of the telescopic screw rod 36 is movably provided with a buckle assembly, the positioning plate 37 is provided with a clamping groove, and the buckle assembly is matched with the clamping groove to fix the positioning plate 37; the positioning component further includes a motor four 30 fixedly installed on the base 1, and a gear disc 32 rotatably installed on the column body 104, the gear disc 32 is fixedly connected with a driving gear ring 3201, a motor gear 31 is fixedly installed on the output shaft of the motor four 30, and the motor gear 31 and the driving gear ring 3201 constitute a gear pair; the positioning component further includes an engagement control cylinder 34 rotatably installed on the base support plate 101, an engagement gear 33 is fixedly installed on the telescopic rod of the engagement control cylinder 34, the engagement control cylinder 34 is connected with the telescopic screw rod 36 through a belt structure three 35, the telescopic screw rod 36 is slidably arranged on the base support plate 101, and the telescopic screw rod 36 and the belt pulley of the belt structure three 35 constitute a screw pair, when the engagement gear 33 is engaged with the gear disc 32, the gear disc 32 drives the engagement control cylinder 34 to rotate, and when the engagement control cylinder 34 rotates, the telescopic screw rod 36 is driven to move under the drive of the belt; the buckle assembly includes a buckle plate connecting sleeve 3601 fixedly connected with one end of the telescopic screw rod 36, a buckle plate 38 is slidably installed on the buckle plate connecting sleeve 3601, a buckle plate spring 39 for providing elastic force is connected between the buckle plate 38 and the telescopic screw rod 36, and the buckle plate 38 is matched with the clamping groove on the positioning plate 37 to fix the positioning plate 37; the above-mentioned belt structure one 10 and belt structure two 18 are both composed of one belt and two belt pulleys and are both used for driving; the belt structure three 35 is composed of one belt and three belt pulleys, two belt pulleys connected with the telescopic screw rod 36 and the telescopic screw rod 36 constitute a screw pair, and the telescopic screw rod 36 moves under the drive of the belt.
[0031] The working principle of the present application is that: the two sides of the base 1 are provided with the standby racks 3, one of which is used for stacking the base plate, and the other is used for stacking the interlayer material; after the base plate and the interlayer material are clamped and transferred each time, the support plate cylinder 401 controls the support plate 4 to move, so as to push the base plate and the interlayer material on the standby rack 3 upwards, so as to facilitate the subsequent clamping; the composite board is composed of two base plates and one interlayer material, the interlayer material is located between the two base plates, the adhesive is coated first, and then the pressing is carried out.
[0032] When transferring the substrate and the interlayer material, the motor 9 works, and the rotating seat 11 carries the lifting cylinder 12 to rotate under the belt drive, and then the transfer frame makes a circular motion, and the transfer frame is deflected to the top of the standby frame 3 for placing the substrate. The adjusting cylinder 14 works to control the extension distance of the transfer frame, so as to adjust the position of the transfer frame. At the same time, the steering motor 24 drives the steering frame 25 to rotate, so as to adjust the orientation of the steering frame 25, so that the two clamping seats 27 can be accurately located on the two opposite sides of the substrate. Then the height of the transfer frame is adjusted by the lifting cylinder 12, so that the substrate is located between the two clamping seats 27. The motor 26 drives the clamping lead screw 2601 to rotate, so that the two clamping seats 27 slide relative to each other, and then the substrate is clamped. It should be noted that at this time, the substrate is clamped and transferred, and the adsorption disc 29 is used to adsorb the interlayer material. The interlayer material is generally flexible and is not suitable for clamping and transferring. When the substrate is clamped and transferred, the adsorption control cylinder 28 controls the adsorption disc 29 to shrink into the containing chamber 2701, so as to place the substrate on the positioning table 103.
[0033] When the first substrate is transferred to the top of the positioning table 103, the upper surface of the substrate needs to be coated with an adhesive. At this time, the extension distance of the transfer frame is controlled by the adjusting cylinder 14, and the height of the transfer frame is controlled by the lifting cylinder 12, so that the coating roller 5 is located on the upper surface of the substrate. The coating slide 6 is driven by the slide cylinder 8 to slide back and forth, and the coating roller 5 rotates under the gear drive. The adhesive preparation box 2 performs adhesive delivery, and the adhesive is delivered to the coating roller 5 through the delivery pipe 202 and the communication seat 601, and is sprayed through the spray hole on the coating roller 5 to realize coating. When coating, the excess adhesive flows into the adhesive preparation box 2 again through the flow guide frame 102, which is convenient for recycling.
[0034] After the first substrate is placed on the positioning table 103, the transfer frame moves to the top of the standby frame 3 for placing the interlayer material. By the above steps, the interlayer material is adsorbed by the adsorption disc 29. It should be noted that at this time, the adsorption control cylinder 28 controls the adsorption disc 29 to extend out of the containing chamber 2701. The interlayer material is transferred to the first substrate, and then the second substrate is transferred to the interlayer material in the same process. Before being transferred to the interlayer material, the lower surface of the second substrate needs to be coated. However, according to actual needs, when a multi-layer structure is set, the substrate and the interlayer material are stacked on each other according to the above process. Only the upper and lower surfaces of the substrate located in the middle need to be coated.
[0035] After the interlayer material stack of the substrate is completed, the motor four 30 works, the gear plate 32 rotates under the gear transmission, when the engagement control cylinder 34 controls the engagement gear 33 to engage with the gear plate 32, the engagement control cylinder 34 will rotate, and the telescopic screw rod 36 moves under the belt transmission, so that the positioning plate 37 moves towards the substrate and the interlayer material, the movement distance of the positioning plate 37 will be different for different sizes, therefore the engagement control cylinder 34 controls the engagement gear 33 to move, so that the engagement gear 33 and the gear plate 32 have a meshing and non-meshing positional relationship, when the positioning plate 37 moves to contact the side surface of the interlayer material and the substrate, the engagement gear 33 and the gear plate 32 are disengaged, that is, the positioning plate 37 no longer moves; four positioning plates 37 move, so that the substrate and the interlayer material are surrounded, when pressing, the motor two 17 works, the rotating drum 19 rotates and carries the transfer frame to overturn one hundred and eighty degrees under the belt transmission, so that the pressing plate 22 faces the substrate, and then the pressing cylinder 23 works, so that the pressing plate 22 presses the substrate and the interlayer material; because the four positioning plates 37 surround the substrate and the interlayer material, that is, when pressing, the interlayer material is compressed under stress, but will not extend to the surrounding, and will not deform outward, so as to ensure that the composite board meets the requirements.
[0036] Further, for different sizes of the substrate and the interlayer material, different sizes of the positioning plate 37 are required, in order to facilitate replacement and improve efficiency, the positioning plate 37 and the telescopic screw rod 36 are detachably connected, the buckle plate 38 is matched with the clamping groove on the positioning plate 37 to fix the positioning plate 37, when disassembling, pressing the buckle plate 38 can quickly disassemble the positioning plate 37.
[0037] The present application is not limited to the above specific embodiments, and those skilled in the art can make various changes without creative labor, which are all within the protection scope of the present application.
Claims
1. A glass-magnesium wood-plastic composite board pressing device, comprising a base (1), both sides of the base (1) are provided with a preparation rack (3) for placing a base plate and a sandwich material; a supporting platform is arranged in the central region of the base (1); characterized in that, Also include; The transfer component for transferring the substrate and the interlayer material, the transfer component comprising a lifting cylinder (12) rotatably installed on the base (1), a lifting disc (13) fixedly arranged on the telescopic rod of the lifting cylinder (12), a rotating drum (19) rotatably installed on the lifting disc (13), a transfer frame slidably installed on the rotating drum (19), a pressing assembly and a clamping assembly arranged on the transfer frame, the pressing assembly being used for pressing the substrate and the interlayer material, and the clamping assembly being used for clamping the transferred substrate and the interlayer material; the clamping assembly comprises a rotating bogie (25) rotatably installed on the transfer frame, and two clamping seats (27) slidably installed on the rotating bogie (25), the substrate being clamped by the inner sides of the two clamping seats (27), the clamping seat (27) being provided with a suction disc (29) and a containing cavity (2701) capable of containing the suction disc (29); The coating component for coating the adhesive on the substrate, the coating component comprising a coating roller (5) and an adhesive preparation box (2) in communication with the coating roller (5), the surface of the substrate being coated by the movement of the coating roller (5); Four positioning components for fixing the substrate and the interlayer material, the positioning component comprising a telescopic lead screw (36) movably arranged on the base (1), a positioning plate (37) detachably arranged at one end of the telescopic lead screw (36), and a buckle assembly movably arranged at one end of the telescopic lead screw (36), the positioning plate (37) being provided with a clamping groove, and the buckle assembly being matched with the clamping groove to fix the positioning plate (37).
2. The magnesium-wood plastic composite board pressing device according to claim 1, characterized in that: The inner side of the preparation frame (3) is slidably installed with a supporting plate (4), and the bottom of the base (1) is fixedly installed with a supporting plate cylinder (401), the supporting plate cylinder (401) being used for driving the supporting plate (4) to slide.
3. The device according to claim 1, wherein the device is characterized in that: The supporting platform comprises a column (104) fixedly connected with the base (1), and a positioning table (103) fixedly connected with the top end of the column (104), and the base (1) is further fixedly installed with a base supporting plate (101), and the positioning component is arranged on the base supporting plate (101).
4. The device according to claim 1, wherein the device is characterized in that: The transfer component comprises a motor one (9) fixedly arranged on the base (1), and a rotating seat (11) rotatably installed on the base (1), the output shaft of the motor one (9) being connected with a belt structure one (10), the rotating seat (11) being driven to rotate through the belt structure one (10), the lifting cylinder (12) being fixedly connected with the rotating seat (11), an adjusting cylinder (14) being fixedly installed on the lifting cylinder (12), a connecting turntable (15) being fixedly connected with the telescopic rod of the adjusting cylinder (14), and one end of the connecting turntable (15) being rotatably connected with the transfer frame.
5. The device according to claim 4, wherein the device further comprises a pressing device. The transfer frame comprises a rotating frame (21), a pressing assembly and a clamping assembly arranged on the rotating frame (21); one end of the rotating frame (21) is fixedly connected with a connecting shaft (20), one end of the connecting shaft (20) is fixedly connected with a connecting slide rod (16), the connecting slide rod (16) is slidably connected with a rotating drum (19), a connecting turntable (15) is rotatably connected with one end of the connecting slide rod (16); a second motor (17) is fixedly installed on the lifting disc (13), a belt structure two (18) is connected with the output shaft of the second motor (17), and the rotating drum (19) is driven to rotate through the belt structure two (18).
6. The magnesium-wood plastic composite board pressing device according to claim 5, characterized in that: The pressing assembly comprises a pressing oil cylinder (23) fixedly installed on the rotating frame (21), and a pressing plate (22) fixedly installed on the telescopic rod of the pressing oil cylinder (23).
7. The device according to claim 5, wherein the device further comprises a pressing device. The clamping assembly comprises a steering motor (24) fixedly installed on the rotating frame (21), a steering frame (25) rotatably installed on the rotating frame (21), and the steering motor (24) is used for driving the steering frame (25) to rotate; one end of the steering frame (25) is fixedly installed with a third motor (26), a clamping lead screw (2601) is rotatably installed on the steering frame (25), and the third motor (26) is used for driving the clamping lead screw (2601) to rotate; a clamping seat (27) and the clamping lead screw (2601) constitute a screw pair; an adsorption control electric cylinder (28) is fixedly arranged on the clamping seat (27), and the adsorption control electric cylinder (28) is used for driving an adsorption disc (29) to slide.
8. The device according to claim 1, wherein the device is characterized in that: The coating component comprises a guide frame (102) fixedly connected to the base (1), a sliding seat electric cylinder (8) fixedly installed on one side of the guide frame (102), a coating sliding seat (6) slidably installed above the guide frame (102), a coating roller (5) rotatably installed on the coating sliding seat (6), the sliding seat electric cylinder (8) is used for driving the coating sliding seat (6) to slide, a communication seat (601) is fixedly connected to the coating sliding seat (6), one end of the coating roller (5) is communicated with the communication seat (601), one end of the coating roller (5) is fixedly connected with a coating gear (501), a fixed rack (7) is also fixedly arranged above the guide frame (102), and the fixed rack (7) and the coating gear (501) constitute a gear pair; the top of the adhesive preparation box (2) is provided with a conveying pump (201), the conveying pump (201) is connected with a conveying pipe (202), and one end of the conveying pipe (202) is communicated with the communication seat (601).
9. The magnesium-wood plastic composite board pressing device according to claim 3, characterized in that: The positioning component includes motor four (30) fixedly installed on the base (1), and gear plate (32) rotatably installed on the column (104), the gear plate (32) is fixedly connected with driving gear ring (3201), the output shaft of motor four (30) is fixedly installed with motor gear (31), and the motor gear (31) and the driving gear ring (3201) form a gear pair;The positioning component further includes meshing control electric cylinder (34) rotatably installed on the base support plate (101), the telescopic rod of meshing control electric cylinder (34) is fixedly installed with meshing gear (33), meshing control electric cylinder (34) and telescopic screw rod (36) are connected through belt structure three (35), telescopic screw rod (36) is slidably arranged on the base support plate (101), and the telescopic screw rod (36) and the belt pulley of belt structure three (35) form a screw pair, when the meshing gear (33) and the gear plate (32) are engaged, the gear plate (32) drives the meshing control electric cylinder (34) to rotate, when the meshing control electric cylinder (34) rotates, the telescopic screw rod (36) is driven to move under the drive of the belt.
10. The device according to claim 1, wherein the device is characterized in that: The buckle assembly includes buckle plate connecting sleeve (3601) fixedly connected with one end of the telescopic screw rod (36), the buckle plate connecting sleeve (3601) is slidably installed with buckle plate (38), the buckle plate (38) and the telescopic screw rod (36) are connected with buckle plate spring (39) for providing elastic force, the buckle plate (38) is matched with the clamping groove on the positioning plate (37) to fix the positioning plate (37).
Citation Information
Patent Citations
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