A composite cement decorative board manufacturing apparatus and method of use

By using automated hot melt adhesive pouring technology in composite cement decorative board manufacturing equipment, the problem of poor adhesive bonding was solved, achieving high-strength bonding and environmental resistance of composite cement decorative boards.

CN118752884BActive Publication Date: 2026-03-27QINGDAO LINGJUN INTELLIGENT CONSTR NEW MATERIAL TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-08-13
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

In existing technologies, the adhesive bonding of composite cement decorative panels is poor, making them prone to falling off, and the materials are easily damaged by environmental factors.

Method used

A composite cement decorative panel manufacturing equipment is used to inject hot melt adhesive from the bottom of the decorative panel and fill the gaps using a hot melt conveying component. Combined with a positioning and adjustment structure, it ensures precise positioning and pouring. Sensors and hydraulic cylinders are used to control the flipping and insertion of the sealing seat, realizing automated pouring.

Benefits of technology

It improves the bonding strength of composite cement decorative boards, prevents them from falling off, reduces material waste, enhances environmental resistance, and makes them moisture-proof and less prone to delamination.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to the technical field of plate connecting, and discloses composite cement decorative plate manufacturing equipment and a use method thereof, which comprises a base and a workbench arranged at the front end of the base; a hinged turnover table is arranged on the workbench; a slidable fastening table is arranged on the turnover table; a linear module for driving the fastening table to move is arranged on the turnover table; a positioning structure for adsorbing the decorative plate and two groups of adjusting structures for adjusting the position of the decorative plate are arranged in the fastening table. The composite cement decorative plate manufacturing equipment and the use method thereof are characterized in that when the inductor on the fastening table detects the decorative plate, the decorative plate is adjusted, positioned and adsorbed; then the turnover table is turned over, the decorative plate is inserted into the plugging seat in a vertical state, the bottom of the composite plate is plugged, the decorative plate is inserted into the plugging seat to trigger the press type trigger, the top of the decorative plate is plugged, and the hot melt adhesive is poured into the decorative plate through the plugging seat.
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Description

TECHNICAL FIELD

[0001] The application relates to the technical field of plate connecting, in particular to a composite cement decorative plate manufacturing device and a use method. BACKGROUND

[0002] The production and processing of cement decorative plates need to go through a series of complex technological processes, including raw material collection, batching, mixing, forming, curing and processing. During the processing, the cement decorative plates need to be finely processed and treated to ensure their precision and quality. In order to make them have other functions, such as sound insulation and heat preservation effect, the bottom plate is combined with other materials to form a composite cement decorative plate.

[0003] The decorative plate formed by multi-layer combination is generally bonded by glue, but the glue cannot be well bonded with other materials, which is easy to cause the material to fall off. However, the plate is easy to be affected by the environment, which is easy to delaminate and fall off. In addition, the material inside the decorative plate is also easy to be affected by the environment and easy to be damp, which causes damage. Therefore, we provide a composite cement decorative plate manufacturing device and a use method. SUMMARY

[0004] In view of the above problems existing in the prior art, the application provides a composite cement decorative plate manufacturing device and a use method.

[0005] The application provides the following technical scheme: a composite cement decorative plate manufacturing device, comprising a base and a workbench mounted at the front end of the base, a hinged turnover table is arranged on the workbench, a slidable fastening table is arranged on the turnover table, a linear module for driving the fastening table to move is arranged on the turnover table, a positioning structure for adsorbing the decorative plate and two groups of adjusting structures for adjusting the position of the decorative plate are arranged in the fastening table, and universal ball bearings for reducing friction are arranged on the fastening table.

[0006] A rectangular groove is arranged at the top end of the workbench, an A hydraulic cylinder is arranged in the rectangular groove, and the fixed end of the A hydraulic cylinder is hinged in the rectangular groove, and the moving end of the A hydraulic cylinder is hinged at the bottom end of the turnover table.

[0007] A plugging seat for inserting the bottom of the decorative plate is mounted on the base, the plugging seat is a smooth metal block, a plurality of holes are formed in the plugging seat, a hot melt conveying assembly is arranged in the base, the hot melt conveying assembly guides the melted hot melt adhesive into the holes of the plugging seat and pours into the decorative plate, and the hot melt adhesive is injected from the bottom of the decorative plate and fills the gap inside.

[0008] The center of the fastening table is provided with an inductor, when the decorative plate is placed on the fastening table, the inductor is triggered, the adjusting structure adjusts the position of the decorative plate, the positioning structure adsorbs and positions the decorative plate, the A hydraulic cylinder drives the turnover table to turn over, and the linear module drives the bottom of the decorative plate on the fastening table to be inserted into the blocking seat.

[0009] The bracket is installed on the base, the B hydraulic cylinder is installed on the bracket, the moving end of the B hydraulic cylinder is provided with a sealing seat for inserting the top end of the decorative plate, and the hot melt glue poured out of the decorative plate is stored and collected in the sealing seat.

[0010] The base is provided with a pressing trigger located at the blocking seat, when the bottom of the decorative plate is inserted into the blocking seat and contacts the pressing trigger to trigger it, the hot melt conveying assembly conveys hot melt glue to the blocking seat, the hot melt glue is poured upward from the bottom of the decorative plate, and the B hydraulic cylinder is started to insert the sealing seat into the top end of the decorative plate.

[0011] Preferably, the positioning structure comprises a plurality of positioning columns installed in the fastening table and a positioning plate sliding on the plurality of positioning columns, an A cylinder for pushing the positioning plate to slide on the positioning columns is installed in the fastening table, a plurality of vacuum suction cups for adsorbing the decorative plate are installed on the positioning plate, and a plurality of holes for guiding the vacuum suction cups are formed in the top end of the fastening table.

[0012] Preferably, the adjusting structure comprises a guide column installed on the inner wall of the fastening table, a sliding support plate is arranged on the guide column, a plurality of U-shaped rods are installed on the support plate, one end of each U-shaped rod extends from the side of the fastening table to the top end thereof and is provided with a push plate, a B cylinder is installed on the support plate, and the moving end of the B cylinder is connected with the inner wall of the fastening table.

[0013] Preferably, the hot melt conveying assembly comprises a hot melt guiding device and a channel structure communicating with the hot melt guiding device, the channel structure communicates with a plurality of holes in the blocking seat, and the hot melt guiding device guides the hot melt glue into the plurality of holes in the blocking seat through the channel structure.

[0014] Preferably, the hot melt guiding device comprises a barrel and a heater installed at the front end of the barrel, the heater melts the hot melt glue at the front end of the barrel, the outer side of the barrel is provided with a protective shell, the gap between the barrel and the protective shell is filled with heat insulation filler, the inside of the barrel is provided with a screw rod for conveying the hot melt glue, the screw rod is guided out from one end of the barrel and is driven by a motor, and the rear end of the barrel is provided with a hopper.

[0015] Preferably, the channel structure comprises a metal main pipe connected with the outlet of the hot melt discharging device, a plurality of metal sub-pipes are installed on the metal main pipe and communicated with the holes of the sealing seat, and heating wires are wound on the metal main pipe and the metal sub-pipes and are covered by a heat insulation layer.

[0016] Preferably, the sealing seat comprises a rectangular shell installed on the moving end of the B hydraulic cylinder, air holes for air flow are arranged on the rectangular shell, a sealing block for inserting the top end of the decorative plate is installed on the bottom of the rectangular shell, the sealing block is a smooth metal block, a heat conducting plate is laid on the bottom of the interior of the rectangular shell, a heating plate is arranged on the bottom of the heat conducting plate, the gap between the heat conducting plate and the rectangular shell below is filled with a heat preservation layer, a plurality of overflow pipes extending into the interior of the rectangular shell are inlaid on the sealing block, and the overflow pipes extend above the heat conducting plate.

[0017] Preferably, the two ends of the rectangular shell are designed as inward inclined angles, interfaces are arranged on the inclined angles of the two ends of the rectangular shell, and containers for storing hot melt adhesive are detachably installed on the interfaces, and the two ends of the heat conducting plate are downwardly inclined, so that the hot melt adhesive on the heat conducting plate flows into the containers through the interfaces.

[0018] Preferably, an infrared sensor is installed on the rectangular shell, and when the hot melt adhesive overflows from the top of the overflow pipes, the infrared sensor detects it, and then controls the hot melt discharging device to stop conveying the hot melt adhesive.

[0019] A method for using the composite cement decorative plate manufacturing equipment, and the specific method is as follows:

[0020] S1, the decorative plate is placed on the fastening table, the inductor is blocked and triggered, two sets of adjusting structures adjust the position of the decorative plate, then the positioning structure adsorbs and positions the decorative plate, under the pushing of the A hydraulic cylinder, the turnover table is turned over, the decorative plate is moved to the front of the sealing seat, finally the linear module drives the fastening table to move downward, the fastening table drives the decorative plate on it to insert into the sealing seat.

[0021] S2, the decorative plate is inserted into the sealing seat and contacts and presses the trigger to trigger it, at this time the linear module stops driving, the B hydraulic cylinder drives the sealing seat to insert into the top end of the decorative plate, then the hot melt conveying assembly conveys hot melt adhesive to the sealing seat, the hot melt adhesive is poured from the bottom of the decorative plate upward, and the hot melt adhesive fills the gaps between the upper end and the lower end of the decorative plate and the interior.

[0022] S3, when the decorative plate is poured with hot melt adhesive, the hot melt conveying assembly stops conveying, after the hot melt adhesive in the decorative plate cools, the B hydraulic cylinder drives the sealing seat to separate from the decorative plate, the linear module drives the fastening table to move upward, the sealing seat separates from the decorative plate, then the A hydraulic cylinder drives the turnover table to return to the original position, and the adjusting structure and the positioning structure loosen the decorative plate.

[0023] Compared with the prior art, the present application has the following beneficial effects:

[0024] The composite cement decorative plate manufacturing equipment and method can detect whether the decorative plate is on the fastening table through the inductor. When the decorative plate is detected on the fastening table, the decorative plate is adjusted and positioned and adsorbed. Then, the decorative plate is inserted into the sealing seat in a vertical state after being turned over, the bottom of the composite plate is sealed, the top of the decorative plate is sealed by triggering the press type trigger when the decorative plate is inserted into the sealing seat, and the automatic pouring of materials is completed.

[0025] The hot melt adhesive is introduced from the bottom of the decorative plate in the hot melt adhesive pouring process, and the hot melt adhesive with fluidity flows in the decorative plate to fill the gap, so that gaps and air between materials are avoided.

[0026] The sealing seat can detect the hot melt adhesive removed, which indicates that the decorative plate is full of hot melt adhesive, so that the injection of hot melt adhesive can be stopped in time to reduce the waste of materials. In addition, the hot melt adhesive overflowing in the sealing seat can be taken out for recycling.

[0027] The decorative plate manufactured by the composite cement decorative plate manufacturing equipment is not easily affected by the environment, is moisture-proof, and is not easy to delaminate. BRIEF DESCRIPTION OF DRAWINGS

[0028] Figure 1 The figure is a structural schematic diagram of the present application;

[0029] Figure 2 The figure is a structural schematic diagram of the present application Figure 1 The figure is a structural schematic diagram of the present application after running;

[0030] Figure 3 The figure is a structural schematic diagram of the fastening table of the present application;

[0031] Figure 4 The figure is a structural schematic diagram of the present application Figure 3 The figure is a structural schematic diagram of the present application;

[0032] Figure 5 The figure is a structural schematic diagram of the hot melt conveying assembly of the present application;

[0033] Figure 6 The figure is a structural schematic diagram of the hot melt outlet device of the present application;

[0034] Figure 7 The figure is a schematic diagram of the channel structure of the present application;

[0035] Figure 8 The figure is a structural schematic diagram of the sealing seat of the present application;

[0036] Figure 9 The figure is a structural schematic diagram of the decorative plate of the present application;

[0037] Figure 10 The filled structure sectional view of the decorative plate of the present application;

[0038] Figure 11 The split structure schematic diagram of the present application Figure 10 .

[0039] In the figure: 1, base; 2, workbench; 3, turnover table; 4, fastening table; 5, linear module; 6, decorative plate; 61, cement panel; 62, material plate; 63, bottom plate; 64, groove; 65, hot melt adhesive layer; 7, positioning structure; 71, positioning column; 72, positioning plate; 73, A air cylinder; 74, vacuum chuck; 8, adjusting structure; 81, guide column; 82, support plate; 83, U-shaped rod; 84, push plate; 85, B air cylinder; 9, universal ball; 10, plugging seat; 11, hot melt conveying assembly; 111, hot melt leading-out device; 1111, cartridge; 1112, heater; 1113, protective shell; 1114, heat insulation filler; 1115, screw rod; 1116, hopper; 112, channel structure; 1121, metal main pipe; 1122, metal auxiliary pipe; 1123, heating wire; 1124, heat insulation layer; 12, support; 13, B hydraulic cylinder; 14, sealing seat; 141, rectangular shell; 142, sealing block; 143, heat-conducting plate; 144, heating plate; 145, heat preservation layer; 146, overflow pipe; 15, inductor; 16, rectangular groove; 17, A hydraulic cylinder; 18, press-type trigger. DETAILED DESCRIPTION

[0040] In order to make the purpose, technical scheme and advantages of the embodiments of the present disclosure clearer, the technical scheme of the embodiments of the present disclosure will be described clearly and completely below in combination with the drawings of the embodiments of the present disclosure. In order to keep the following description of the embodiments of the present disclosure clear and brief, the present disclosure omits the detailed description of known functions and known components to avoid unnecessary confusion of the concept of the present application.

[0041] Please refer to Figure 1 , Figure 2 and Figure 3The utility model provides a kind of composite cement decorative plate manufacturing equipment, including pedestal 1 and workbench 2 installed in the front end of pedestal 1, the workbench 2 is equipped with articulated turnover table 3, the top end of the workbench 2 is equipped with rectangular groove 16, and the inside of rectangular groove 16 is equipped with A hydraulic cylinder 17, and the fixed end of A hydraulic cylinder 17 is articulated in rectangular groove 16, the moving end of A hydraulic cylinder 17 is articulated in the bottom end of turnover table 3, and A hydraulic cylinder 17 is hidden in rectangular groove 16, the turnover table 3 is equipped with slidable fastening table 4, the turnover table 3 is equipped with linear module 5 for driving fastening table 4 to move, the fastening table 4 is equipped with positioning structure 7 for adsorbing decorative plate 6 and two groups of adjusting structure 8 for adjusting the position of decorative plate 6, the fastening table 4 is equipped with universal ball 9 for reducing friction, under the push of A hydraulic cylinder 17, the turnover table 3 can be turned over by 90 degrees, so as to drive decorative plate 6 on fastening table 4 to turn over, and positioning structure 7 and adjusting structure 8 are responsible for position calibration and positioning of decorative plate 6.

[0042] The pedestal 1 is installed with the plugging seat 10 for the bottom insertion of decorative plate 6, and a plurality of holes are formed in the plugging seat 10, the inside of the pedestal 1 is provided with a hot melt conveying assembly 11, and the hot melt conveying assembly 11 guides the melted hot melt glue into the holes of the plugging seat 10 and pours into the decorative plate 6, and the hot melt glue is injected from the bottom of the decorative plate 6 and fills the gap inside.

[0043] Referring to Figure 4 The fastening table 4 includes a rectangular box body 41 and a cover plate 42 installed at the open end of the top of the rectangular box body 41.

[0044] The positioning structure 7 includes a plurality of positioning columns 71 installed in the inside of the fastening table 4 and a positioning plate 72 sliding on the plurality of positioning columns 71, the inside of the fastening table 4 is provided with an A cylinder 73 for pushing the positioning plate 72 to slide on the positioning column 71, the positioning plate 72 is installed with a plurality of vacuum suction cups 74 for adsorbing decorative plate 6, the top end of the fastening table 4 is provided with a plurality of holes for the vacuum suction cups 74 to lead out, the inside of the pedestal 1 is provided with a controller, the A cylinder 73 can be driven to stretch and retract by using the controller, and the adsorption of the vacuum suction cups 74 is controlled, so that the A cylinder 73 drives the positioning plate 72 to move, and the vacuum suction cups 74 on it are led out of the fastening table 4 to adsorb decorative plate 6, so that decorative plate 6 is tightly fixed on the fastening table 4.

[0045] The adjusting structure 8 includes guide columns 81 mounted on the inner wall of the fastening table 4, slidable supporting plates 82 provided on the guide columns 81, a plurality of U-shaped rods 83 mounted on the supporting plates 82, and push plates 84 mounted on one end of the U-shaped rods 83 and extending from the side of the fastening table 4 to the top end, a B cylinder 85 mounted on the supporting plates 82 and connected with the inner wall of the fastening table 4 at the moving end, and a controller for driving the B cylinder 85 to move the supporting plates 82, so that the supporting plates 82 move the U-shaped rods 83, the push plates 84 on the U-shaped rods 83 push the decorative plate 6 on the fastening table 4 to move, until the two ends of the decorative plate 6 are clamped, the position adjustment and calibration of the decorative plate 6 are completed.

[0046] The center of the fastening table 4 is provided with an inductor 15, when the decorative plate 6 is placed on the fastening table 4, the inductor 15 is triggered, the adjusting structure 8 adjusts the position of the decorative plate 6, the positioning structure 7 adsorbs and positions the decorative plate 6, the A hydraulic cylinder 17 is driven to make the turnover table 3 turn 90 degrees, and the linear module 5 drives the decorative plate 6 on the fastening table 4 to be inserted into the sealing seat 10;

[0047] The controller controls the A hydraulic cylinder 17, the A cylinder 73, the vacuum chuck 74, and the B cylinder 85 respectively, to complete the position calibration, the fixed adsorption, and the 90-degree turning control of the decorative plate 6 of the adjusting structure 8, and finally controls the linear module 5 to drive the fastening table 4 to drive the decorative plate 6 to be inserted into the sealing seat 10.

[0048] Referring to Figure 1 and Figure 2 , the base 1 is provided with a support 12, the B hydraulic cylinder 13 is mounted on the support 12, the moving end of the B hydraulic cylinder 13 is provided with a sealing seat 14 for inserting the top end of the decorative plate 6, and the hot melt adhesive poured out in the decorative plate 6 is stored and collected in the sealing seat 14.

[0049] Referring to Figure 5 , the hot melt conveying assembly 11 includes hot melt leading-out devices 111 and channel structures 112 in communication with the hot melt leading-out devices 111, and the channel structures 112 are in communication with a plurality of holes on the sealing seat 10, so that the hot melt leading-out devices 111 guide the hot melt adhesive into the plurality of holes on the sealing seat 10 through the channel structures 112.

[0050] Referring to Figure 6The hot melt lead-out device 111 includes a barrel 1111 and a heater 1112 installed at the front end of the barrel 1111, the hot melt glue at the front end of the barrel 1111 is heated and melted by the heater 1112, the outer side of the barrel 1111 is provided with a protective shell 1113, and the gap between the barrel 1111 and the protective shell 1113 is filled with heat insulation filler 1114, the inside of the barrel 1111 is provided with a screw rod 1115 for conveying hot melt glue, and the screw rod 1115 is led out from one end of the barrel 1111 and driven by a motor, the rear end of the barrel 1111 is provided with a hopper 1116, the granular hot melt glue introduced into the hopper 1116 is conveyed to the front end of the barrel 1111 by rotating the screw rod 1115 driven by the motor, then the material is heated and melted by the heater 1112, and the melted hot melt glue is extruded and led out into the channel structure 112 along with the rotation of the screw rod 1115, and the heat insulation filler 1114 avoids heat loss.

[0051] Referring to Figure 7 The channel structure 112 includes a metal main pipe 1121 connected with the discharge port of the hot melt lead-out device 111, a plurality of metal auxiliary pipes 1122 are installed on the metal main pipe 1121 and communicate with the holes in the sealing seat 10, heating wires 1123 are wound on the metal main pipe 1121 and the metal auxiliary pipes 1122 and are covered by a heat insulation layer 1124, the melted hot melt glue is introduced into the metal main pipe 1121, and as the hot melt glue is continuously introduced, the hot melt glue is introduced from the plurality of metal auxiliary pipes 1122 into the holes in the sealing seat 10, the heating wires 1123 can heat the metal main pipe 1121 and the metal auxiliary pipes 1122 to avoid the hot melt glue from cooling and solidifying therein, and the heat insulation layer 1124 can effectively keep the hot melt glue.

[0052] The base 1 is provided with a pressing trigger 18 at the sealing seat 10, when the bottom of the decorative plate 6 is inserted into the sealing seat 10 and contacts the pressing trigger 18 to trigger it, the hot melt conveying assembly 11 conveys hot melt glue to the sealing seat 10, so that the hot melt glue is poured upward from the bottom of the decorative plate 6, and the B hydraulic cylinder 13 is started to make the sealing seat 14 inserted into the top end of the decorative plate 6.

[0053] When the controller detects that the pressing trigger 18 is triggered, the B hydraulic cylinder 13 is controlled to move, so that the B hydraulic cylinder 13 drives the sealing seat 14 to be inserted into the top end of the decorative plate 6, and the motor is controlled to drive, so that the hot melt lead-out device 111 continuously leads out hot melt glue into the channel structure 112.

[0054] Referring to Figure 8The sealing seat 14 includes a rectangular shell 141 installed at the moving end of the B hydraulic cylinder 13, and the rectangular shell 141 is provided with air holes for air flow, the bottom of the rectangular shell 141 is provided with a sealing block 142 for inserting the top end of the decorative plate 6, the bottom of the inside of the rectangular shell 141 is paved with a heat conducting plate 143, the bottom of the heat conducting plate 143 is provided with a heating plate 144, the gap between the heat conducting plate 143 and the rectangular shell 141 below is filled with a heat preservation layer 145, and the sealing block 142 is inlaid with a plurality of overflow pipes 146 extending into the inside of the rectangular shell 141, and the overflow pipes 146 extend above the heat conducting plate 143.

[0055] When the hot melt adhesive in the decorative plate 6 is filled, it will be discharged from the overflow pipe 146 and dropped on the heating plate 144, and the heating plate 144 is used to heat it to avoid solidification, and the hot melt adhesive in the overflow pipe 146 is cooled and adhered to the decorative plate 6, and when the sealing seat 14 is separated from the decorative plate 6, the cooled hot melt adhesive in the overflow pipe 146 is also separated from the sealing seat 14 and remains on the decorative plate 6.

[0056] The two ends of the rectangular shell 141 are designed as inward inclined angles, and the inclined angles of the two ends of the rectangular shell 141 are provided with interfaces 147, the interfaces 147 are detachably installed with containers 148 for storing hot melt adhesive, and the two ends of the heat conducting plate 143 are inclined downward, so that the hot melt adhesive on the heat conducting plate 143 flows into the container 148 through the interface 147, the melted hot melt adhesive has fluidity and flows into the container 148 through the inclined surfaces of the two ends of the heat conducting plate 143 for cooling to facilitate recycling.

[0057] The rectangular shell 141 is provided with an infrared sensor, and when the hot melt adhesive overflows from the top of the overflow pipe 146, the infrared sensor detects it, and then the hot melt discharging device 111 stops the delivery of hot melt adhesive, and after the controller detects the detection information of the infrared sensor, the motor in the hot melt discharging device 111 stops running, so that the hot melt adhesive stops discharging, after the hot melt adhesive is cooled, the B hydraulic cylinder 13 is controlled to move, so that the B hydraulic cylinder 13 drives the sealing seat 14 to separate from the top end of the decorative plate 6, and drives the linear module 5 to move upward, so that the bottom end of the decorative plate 6 is separated from the sealing seat 10, and then the controller controls the A hydraulic cylinder 17 to restore the original position of the fastening table 4, and drives the A air cylinder 73 and the vacuum suction cup 74 and the B air cylinder 85 to cancel the position calibration and fixation adsorption of the decorative plate 6 by the adjusting structure 8, so as to facilitate the removal of the decorative plate 6.

[0058] The sealing seat 10 is a smooth metal block, and the sealing block 142 is also a smooth metal block. Hot melt adhesive is difficult to adhere to smooth metal blocks, so the cooled hot melt adhesive on the sealing seat 10 will not adhere. In addition, the hot melt adhesive in the holes of the sealing seat 10 adheres to the decorative plate 6 after cooling, and will be discharged as the decorative plate 6 is removed. Therefore, the holes of the sealing seat 10 will not be blocked. The cooled hot melt adhesive in the overflow pipe 146 adheres to the decorative plate 6 and will detach as the sealing seat 14 moves, thereby preventing the overflow pipe 146 from being blocked. In addition, if the overflow pipe 146 is blocked, the power of the heat-conducting plate 143 is adjusted to increase the temperature inside the sealing seat 14, causing the hot melt adhesive in the overflow pipe 146 to melt and complete the conduction of the overflow pipe 146.

[0059] The hot melt adhesive should be of a type that cures in about 20-30 seconds at room temperature. In addition, the hot melt adhesive should be poured into the decorative panel 6 at a speed that fills it completely within its curing time. Otherwise, the hot melt adhesive will not flow after curing and the curing time is short, which makes it convenient to pour the decorative panel 6 continuously.

[0060] See Figure 9 The decorative panel 6 includes a cement panel 61, a material plate 62, and a base plate 63. The base plate 63 is U-shaped and has two zig-shaped grooves 64 on its inner sides. The material plate 62 is inserted between the two grooves 64. The two ends of the base plate 63 have slots, and the cement panel 61 has two locking blocks. The cement panel 61 is inserted into the slots of the base plate 63 through the locking blocks, so that the cement panel 61 and the base plate 63 overlap. The front and rear sides of the material plate 62 are spaced from the cement panel 61 and the base plate 63. The cement panel 61 and the base plate 63 are not easily separated in the decorative panel 6, and the material plate 62 is not easily detached when inserted into them. However, the interior of the decorative panel 6 needs to be filled with hot melt adhesive. Therefore, the decorative panel 6 is only a semi-finished product.

[0061] See Figure 10 and Figure 11 A hot melt adhesive layer 65 is filled into the decorative panel 6 using a composite cement decorative panel manufacturing equipment. The hot melt adhesive layer 65 fills the front and back sides and top and bottom ends of the panel 62, making the panel 62 almost completely wrapped in the hot melt adhesive layer 65. This reduces the possibility of the panel 62 coming into contact with the external environment and prevents the panel 62 from getting damp. In addition, the hot melt adhesive layer 65 uses an environmentally friendly material, so it will not release harmful substances. The hot melt adhesive layer 65 is used to bond the panel 62, connecting the panel 62 to the cement panel 61 and the base plate 63. Furthermore, the hot melt adhesive has good sealing performance and can seal the two ends inside the decorative panel 6, so that the presence of air bubbles in the decorative panel will not affect its quality.

[0062] A method for using a composite cement decorative board manufacturing equipment is as follows:

[0063] S1, the decorative plate 6 is placed on the fastening table 4, the inductor 15 is blocked and triggered, two sets of adjusting structures 8 adjust the position of the decorative plate 6, then the positioning structure 7 adsorbs and positions the decorative plate 6, then the overturning table 3 is overturned by 90 degrees under the push of the A hydraulic cylinder 17, so that the decorative plate 6 moves to the upper side of the sealing seat 10, finally the linear module 5 drives the fastening table 4 to move downward, so that the fastening table 4 drives the decorative plate 6 on it to insert into the sealing seat 10;

[0064] S2, the decorative plate 6 is inserted into the sealing seat 10, and the contact pressing trigger 18 is triggered, at this time the linear module 5 stops driving, and the B hydraulic cylinder 13 drives the sealing seat 14 to insert into the top end of the decorative plate 6, then the hot melt conveying assembly 11 conveys hot melt glue to the sealing seat 10, so that the hot melt glue is poured from the bottom of the decorative plate 6 to the top, so that the hot melt glue fills the gap between the upper and lower ends and the inside of the decorative plate 6;

[0065] S3, when the decorative plate 6 is poured with hot melt glue, the hot melt conveying assembly 11 stops conveying, after the hot melt glue in the decorative plate 6 cools, the B hydraulic cylinder 13 drives the sealing seat 14 to separate from the decorative plate 6, the linear module 5 drives the fastening table 4 to move upward, so that the sealing seat 10 separates from the decorative plate 6, then the A hydraulic cylinder 17 drives the overturning table 3 to return to the original position, and the adjusting structure 8 and the positioning structure 7 release the decorative plate 6.

[0066] The above examples are only exemplary embodiments of the present application, and are not used to limit the present application, the protection scope of the present application is defined by the claims. Those skilled in the art can make various modifications or equivalent replacements to the present application within the spirit and protection scope of the present application, and such modifications or equivalent replacements are also regarded as falling within the protection scope of the present application.

Claims

1. A composite cement decorative board manufacturing equipment, characterized in that: Includes a base (1) and a worktable (2) installed at the front end of the base (1). The worktable (2) is provided with a hinged flip table (3). The flip table (3) is provided with a slidable fastening table (4). The flip table (3) is provided with a linear module (5) for driving the fastening table (4) to move. The fastening table (4) is provided with a positioning structure (7) for adsorbing the decorative panel (6) and two sets of adjustment structures (8) for adjusting the position of the decorative panel (6). The fastening table (4) is provided with universal ball bearings (9) to reduce friction. The top of the workbench (2) is provided with a rectangular groove (16), and the inside of the rectangular groove (16) is provided with a hydraulic cylinder A (17). The fixed end of the hydraulic cylinder A (17) is hinged in the rectangular groove (16), and the moving end of the hydraulic cylinder A (17) is hinged to the bottom of the tilting table (3). The base (1) is equipped with a sealing seat (10) for inserting the bottom of the decorative panel (6). The sealing seat (10) is a smooth metal block with multiple holes. The base (1) is equipped with a hot melt conveying assembly (11). The hot melt conveying assembly (11) introduces the molten hot melt adhesive into the holes of the sealing seat (10) and pours it into the decorative panel (6). The hot melt adhesive is injected from the bottom of the decorative panel (6) and fills the gaps therein. A sensor (15) is provided at the center of the fastening platform (4). When the decorative panel (6) is placed on the fastening platform (4), the sensor (15) is triggered, causing the adjustment structure (8) to adjust the position of the decorative panel (6), and the positioning structure (7) to adsorb and position the decorative panel (6). The hydraulic cylinder A (17) is driven to rotate the flipping platform (3) by 90 degrees. Under the drive of the linear module (5), the bottom of the decorative panel (6) on the fastening platform (4) is inserted into the sealing seat (10). A bracket (12) is installed on the base (1), and a hydraulic cylinder B (13) is installed on the bracket (12). The moving end of the hydraulic cylinder B (13) is equipped with a sealing seat (14) for inserting into the top of the decorative panel (6). When hot melt adhesive is poured into the decorative panel (6) and overflows into the sealing seat (14), it is stored and collected. The base (1) is provided with a push-type trigger (18) located at the sealing seat (10). When the bottom of the decorative panel (6) is inserted into the sealing seat (10) and contacts the push-type trigger (18) to trigger it, the hot melt delivery assembly (11) delivers hot melt adhesive to the sealing seat (10) so that the hot melt adhesive is poured from the bottom of the decorative panel (6) upwards, and the hydraulic cylinder B (13) is activated so that the sealing seat (14) is inserted into the top of the decorative panel (6).

2. The composite cement decorative board manufacturing equipment according to claim 1, characterized in that: The positioning structure (7) includes multiple positioning posts (71) installed inside the fastening platform (4) and a positioning plate (72) that slides on the multiple positioning posts (71). The fastening platform (4) is equipped with an A cylinder (73) for pushing the positioning plate (72) to slide on the positioning posts (71). Multiple vacuum suction cups (74) for adsorbing the decorative panel (6) are installed on the positioning plate (72). Multiple holes for the vacuum suction cups (74) to be drawn out are opened at the top of the fastening platform (4).

3. The composite cement decorative board manufacturing equipment according to claim 1, characterized in that: The adjustment structure (8) includes a guide post (81) installed on the inner wall of the fastening platform (4), a sliding support plate (82) is provided on the guide post (81), a plurality of U-shaped rods (83) are installed on the support plate (82), and one end of the U-shaped rod (83) extends from the side of the fastening platform (4) to its top and is equipped with a push plate (84). A B cylinder (85) is installed on the support plate (82), and the moving end of the B cylinder (85) is connected to the inner wall of the fastening platform (4).

4. The composite cement decorative board manufacturing equipment according to claim 1, characterized in that: The hot melt delivery assembly (11) includes a hot melt outlet device (111) and a channel structure (112) connected to the hot melt outlet device (111). The channel structure (112) is connected to multiple holes on the sealing seat (10), so that the hot melt outlet device (111) can introduce hot melt adhesive into multiple holes on the sealing seat (10) through the channel structure (112).

5. The composite cement decorative board manufacturing equipment according to claim 4, characterized in that: The hot melt discharge device (111) includes a barrel (1111) and a heater (1112) installed at the front end of the barrel (1111). The heater (1112) heats and melts the hot melt adhesive at the front end of the barrel (1111). The barrel (1111) is provided with a protective shell (1113) on the outside, and the gap between the barrel (1111) and the protective shell (1113) is filled with heat insulation filler (1114). The barrel (1111) is provided with a screw (1115) for conveying the hot melt adhesive inside, and the screw (1115) is discharged from one end of the barrel (1111) and driven by a motor. The barrel (1111) is provided with a hopper (1116) at the rear end.

6. The composite cement decorative board manufacturing equipment according to claim 4, characterized in that: The channel structure (112) includes a main metal tube (1121) connected to the outlet of the hot melt discharge device (111). The main metal tube (1121) is equipped with a plurality of secondary metal tubes (1122) that communicate with holes on the sealing seat (10). Heating wires (1123) are wound on the main metal tube (1121) and the secondary metal tubes (1122) and are covered by a heat insulation layer (1124).

7. The composite cement decorative board manufacturing equipment according to claim 1, characterized in that: The sealing seat (14) includes a rectangular shell (141) installed on the moving end of hydraulic cylinder B (13), and the rectangular shell (141) is provided with air holes for air circulation. A sealing block (142) for inserting the top of the decorative panel (6) is installed at the bottom of the rectangular shell (141), and the sealing block (142) is a smooth metal block. A heat-conducting plate (143) is laid at the bottom inside the rectangular shell (141), and a heating plate (144) is provided at the bottom of the heat-conducting plate (143). The gap between the heat-conducting plate (143) and the rectangular shell (141) is filled by a heat insulation layer (145). Multiple overflow pipes (146) extending into the interior of the rectangular shell (141) are embedded on the sealing block (142), and the overflow pipes (146) extend to the top of the heat-conducting plate (143).

8. The composite cement decorative board manufacturing equipment according to claim 7, characterized in that: The rectangular shell (141) has inwardly angled ends, and an interface (147) is provided on the angled ends of the rectangular shell (141). A container (148) for storing hot melt adhesive is detachably installed on the interface (147). The two ends of the heat-conducting plate (143) are inclined downward so that the hot melt adhesive on the heat-conducting plate (143) flows into the container (148) through the interface (147).

9. The composite cement decorative board manufacturing equipment according to claim 7, characterized in that: An infrared sensor is installed on the rectangular shell (141), and when hot melt adhesive overflows from the top of the overflow pipe (146), the infrared sensor will detect it and then control the hot melt discharge device (111) to stop the hot melt adhesive delivery.

10. A method of using a composite cement decorative board manufacturing equipment, characterized in that, The specific method of using the composite cement decorative board manufacturing equipment according to any one of claims 1-9 is as follows: S1. Place the decorative panel (6) on the fastening platform (4). The sensor (15) is blocked and triggered, causing the two sets of adjustment structures (8) to adjust the position of the decorative panel (6). Then, the positioning structure (7) adsorbs and positions the decorative panel (6). Under the push of hydraulic cylinder A (17), the flipping platform (3) is flipped 90 degrees, so that the decorative panel (6) moves directly above the sealing seat (10). Finally, the linear module (5) drives the fastening platform (4) to move down, so that the fastening platform (4) drives the decorative panel (6) on it to be inserted into the sealing seat (10). S2. When the decorative panel (6) is inserted into the sealing seat (10), it will contact the push-type trigger (18) to trigger it. At this time, the linear module (5) stops driving, while the hydraulic cylinder B (13) drives, so that the sealing seat (14) is inserted into the top of the decorative panel (6). Then the hot melt delivery assembly (11) delivers hot melt adhesive to the sealing seat (10), so that the hot melt adhesive is poured from the bottom of the decorative panel (6) upwards, and the hot melt adhesive fills the upper and lower ends and the internal gap of the decorative panel (6). S3. After the hot melt adhesive is poured into the decorative panel (6), the hot melt conveying assembly (11) stops conveying. After the hot melt adhesive in the decorative panel (6) cools down, the hydraulic cylinder B (13) drives the sealing seat (14) to detach from the decorative panel (6). The linear module (5) drives the fastening table (4) to move upward, so that the sealing seat (10) detaches from the decorative panel (6). Then, the hydraulic cylinder A (17) extends and retracts, driving the flipping table (3) to return to its original position, and the adjusting structure (8) and the positioning structure (7) loosen the decorative panel (6).

Citation Information

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