An integrated process for a wood-polymer composite structure
By using an integrated molding process, the thickness and angle of the wood boards can be adjusted using molding equipment and assembly mechanisms, and combined with tile assembly, the problems of height difference and transportation damage in traditional ceramic-wood composite structures are solved, achieving simple operation and improved product quality.
Patent Information
- Application Number
- CN202411609895.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-12
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2044-11-12
AI Technical Summary
Traditional porcelain-wood composite structures suffer from problems during the manufacturing process, such as height differences, large errors in mortise and tenon joints, poor visual effects, and damage during transportation.
The process employs an integrated molding process, using molding equipment to transfer wood boards and combine them with molds. The thickness and angle of the wood boards are adjusted by an assembly mechanism, and they are then combined with ceramic tiles for assembly. Stepper motors and servo motors control the transfer and assembly process, and PUR equipment is used to apply adhesive. Finally, the boards are pressed and processed.
The process has been simplified, preventing tiles from falling off and improving the product's visual appeal and lifespan.
Smart Images

Figure CN119260912B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of porcelain-wood composite structure, in particular to an integrated forming process for porcelain-wood composite structure. BACKGROUND
[0002] The porcelain-wood composite structure first shows excellent performance in environmental protection. It adopts ceramic material and wood grain glaze process, does not contain harmful chemical substances, has no odor, is safe and environmentally friendly. This structure not only reduces the release of harmful substances such as formaldehyde, but also has the characteristics of fireproofing and high temperature resistance, and is suitable for use in geothermal environments. In terms of durability, the porcelain-wood composite structure has the characteristics of high wear resistance and abrasion resistance, is not easy to deform and absorb water, can effectively prevent stain penetration and mildew, has real surface texture, has a three-dimensional feel and a simple and unadorned wood touch, is easy to install, has a long service life, and has good physical properties. It combines the natural beauty of wood and the durability of ceramic, not only has the natural feeling of solid wood floor, but also has the characteristics of mildew resistance, moisture resistance, and arch resistance of ceramic tile. This structure is prepared by a sol-gel method, which enhances the physical properties of wood, improves its compressive strength and dimensional stability. In summary, the porcelain-wood composite structure has become a popular floor material due to its environmental safety, durability, easy cleaning, beauty, and good physical properties.
[0003] However, the traditional porcelain-wood composite structure preparation process has the following disadvantages:
[0004] The traditional porcelain-wood composite structure has the following disadvantages: the finished product cannot solve the height difference, the processing error of the mortise and tenon structure of the ceramic tile is large, the visual effect after paving is poor, the ceramic tile becomes thin and brittle after processing the mortise and tenon structure on the edge, and is more prone to breakage during transportation and handling. SUMMARY
[0005] The present application aims to provide an integrated forming process for porcelain-wood composite structure to solve the problems of the traditional porcelain-wood composite structure, such as the finished product cannot solve the height difference, the processing error of the mortise and tenon structure of the ceramic tile is large, the visual effect after paving is poor, the ceramic tile becomes thin and brittle after processing the mortise and tenon structure on the edge, and is more prone to breakage during transportation and handling.
[0006] To achieve the above object, the present application provides the following technical scheme: An integrated forming process for a porcelain-wood composite structure, comprising a forming device, wherein the forming device comprises a first transmission housing and a second transmission housing, one side of the first transmission housing is fixedly connected with one side of the second transmission housing, a plurality of conveying rollers are rotatably connected inside the second transmission housing, a plurality of assembling mechanisms are installed on both sides of the second transmission housing, the first transmission housing comprises a first length housing, a second length housing and a top plate, the top end of the first length housing and the top end of the second length housing are fixedly connected with both sides of the bottom end of the top plate respectively, a transmission assembly is installed at the middle part between the first length housing and the second length housing, a first height groove is formed at the top end of the side of the first length housing close to the second length housing, a lead screw is rotatably connected inside the first height groove, a first height block that is in sliding connection with the first height groove is threadedly connected with the middle part of the lead screw, and a compression roller is rotatably connected with one side of the first height block.
[0007] As a preferred technical scheme of the present application, a second height groove is formed at the top end of the side of the second length housing close to the first length housing, a sliding rod is fixedly installed inside the second height groove, a second height block is in sliding connection with the middle part of the sliding rod, one side of the second height block is rotatably connected with the side opposite to the compression roller, a stepping motor that drives the lead screw to rotate is fixedly installed on one side of the top end of the top plate, the stepping motor is started after being powered on, the stepping motor drives the lead screw to rotate, the threads on the surface of the lead screw and the threads on the inner wall of the first height block are matched with each other, the first height block is limited by the first height groove that is matched with the shape of the first height block, so the first height block slides along the lead screw, the first height block drives the second height block to move synchronously through the compression roller, the second height block slides relative to the sliding rod, the compression roller contacts the top of the wood plate, and it is ensured that the wood plates with different thicknesses can be stably transmitted along the transmission assembly.
[0008] As a preferred technical scheme of the present application, the transmission assembly comprises two mounting seats and two transmission frames, the opposite sides of the two mounting seats are respectively rotationally connected with the ends of the two transmission frames away from each other, a plurality of transmission rollers are rotationally connected between the two transmission frames, the surfaces of the plurality of transmission rollers are all fixedly installed with pulleys, the two adjacent pulleys are all transmissionally connected with a belt, the bottom ends of the two mounting seats are all provided with fixed bases, the top ends of the two fixed bases are all installed with angle cylinders, the movable ends of the two angle cylinders are respectively connected with the ends of the two transmission frames facing each other, and the one end of the two fixed bases and the one end of the two mounting seats are respectively fixedly connected with the opposite sides of the first length shell and the second length shell.
[0009] As a preferred technical scheme of the present application, the assembly mechanism comprises an assembly table and an assembly assembly, one side of the top end of the assembly table is rotationally connected with the bottom end of the assembly assembly, the top end of the assembly table is provided with a movable groove, the bottom end of the inner wall of the movable groove is fixedly installed with a linear track, the middle part of the linear track is slidably connected with a movable block, the two sides of the movable block are all fixedly installed with connecting shafts, the middle parts of the two connecting shafts are all rotationally connected with push plates, the top ends of the two push plates are all connected with the side of the assembly assembly facing each other, and one side of the assembly table is fixedly connected with the second transmission shell.
[0010] As a preferred technical scheme of the present application, the assembly assembly comprises a fixed table and a plurality of threaded columns, the top end of the fixed table is provided with a plurality of threaded holes, the plurality of threaded holes are respectively threadedly connected with the plurality of threaded columns, the top ends of the plurality of threaded columns are all rotationally connected with stop rods, and the bottom end of the fixed table is rotationally connected with the end of the assembly table facing each other.
[0011] As a preferred technical scheme of the present application, the middle part of the top end of the top plate is fixedly installed with a lifting ring, the surface of the first length shell is fixedly installed with an operation frame, the top end of the operation frame is fixedly installed with an operation panel, the bottom end between the first length shell and the second length shell is fixedly installed with an electrical box, and the front surface of the electrical box is hingedly connected with a sealing door, and the user uses the hand to press the operation panel to control the wood board transmission speed.
[0012] As a preferred technical scheme of the present application, the bottom end of the second transmission machine shell is fixedly installed with a plurality of height rods, and the height rods support from the bottom of the second transmission machine shell.
[0013] An integrated forming process for a porcelain-wood composite structure, comprising the following steps:
[0014] Step one, tile cutting: according to requirements and porcelain-wood composite structure drawings, place the tiles on the cutting equipment, and cut the tiles according to requirements and drawings;
[0015] Step two, tile cleaning: place the cut tiles on the transmission machine, and the transmission machine transmits the tiles to the brush cleaning equipment to clean the debris generated after cutting, and then the tiles are transported by the transmission machine to the cleaning equipment for impurity cleaning;
[0016] Step three, drying the tiles: place the cleaned tiles in the drying equipment, and remove the water from the cleaned tiles through the drying lamp or heating plate in the drying equipment;
[0017] Step four, mold installation: prepare the required mold according to the requirements of the porcelain-wood composite structure, and install the mold required for preparing the porcelain-wood composite structure on one side of the forming equipment;
[0018] Step five, wood board gluing: place the wood board on the forming equipment, and complete the gluing of the wood board surface by the PUR equipment during the transmission of the wood board by the forming equipment;
[0019] Step six, first assembly: assemble the glued wood board and the prepared mold together by the roll pressing compound machine to obtain the assembled product;
[0020] Step seven, mold demolding: according to actual requirements, the assembled product is demolded;
[0021] Step eight, second assembly: place the tiles on the assembled product to prepare a semi-finished product;
[0022] Step nine, product reinforcement: place the semi-finished product in the flat pressing machine for static pressing, and the pressing time is 20-40 min;
[0023] Step ten, product processing: polish, slot and paint spray processing are sequentially performed on the reinforced product;
[0024] Step eleven, packing and delivery: the processed product is detected by a visual detector, and the product is packed and delivered after passing the detection.
[0025] As a preferred technical solution of the present application, the preparation of the required mold in step four is specifically selecting CNC equipment as the mold processing equipment, selecting a wooden strip or easily processed raw material as the mold raw material, and preparing the required mold.
[0026] Compared with the prior art, the present application has the following advantages: the ceramic-wood composite structure prepared by the process is transmitted by the forming equipment, then the wood board is combined with the mold on the assembly mechanism, and finally the ceramic tile is placed in the assembly, which is prepared, replacing the traditional preparation method, simple and convenient to operate, and avoiding the phenomenon of ceramic layer falling off, prolonging the service life of the ceramic-wood composite structure. BRIEF DESCRIPTION OF DRAWINGS
[0027] Figure 1 is the flow chart of the present application;
[0028] Figure 2 is the side view of the forming equipment of the present application;
[0029] Figure 3 is the front view of the first transmission machine shell of the present application;
[0030] Figure 4 is the side view of the transmission assembly of the present application;
[0031] Figure 5 is the sectional view of the assembly mechanism of the present application;
[0032] Figure 6 is the side view of the assembly assembly of the present application;
[0033] Figure 7 is the perspective view of the transmission assembly of the present application;
[0034] Figure 8 is the local schematic view of the first transmission machine shell of the present application.
[0035] In the figure: 1, forming equipment; 2, first transmission machine shell; 201, first length shell; 202, second length shell; 203, top plate; 204, lifting ring; 3, second transmission machine shell; 4, conveying roller; 5, assembly mechanism; 51, assembly table; 52, straight rail; 53, movable groove; 54, movable block; 55, connecting shaft; 56, push plate; 57, assembly component; 571, fixed table; 572, threaded hole; 573, threaded column; 574, stop lever; 6, height rod; 7, stepping motor; 8, operation panel; 9, operation frame; 10, transmission component; 101, fixed base; 102, angle cylinder; 103, mounting seat; 104, transmission frame; 105, transmission roller; 106, belt pulley; 11, electrical box; 12, sealing door; 13, servo motor; 14, second height groove; 15, second height block; 16, sliding rod; 17, compression roller; 18, first height block; 19, lead screw; 20, first height groove. DETAILED DESCRIPTION
[0036] The technical solutions in the embodiments of the present application will be clearly and completely described below in conjunction with the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the scope of protection of the present application.
[0037] Please refer to Figures 1-8 The present application provides an integrated forming process for a wood-porcelain composite structure, which comprises forming equipment 1, the forming equipment 1 comprising a first transmission machine shell 2 and a second transmission machine shell 3, one side of the first transmission machine shell 2 being fixedly connected with one side of the second transmission machine shell 3, a plurality of conveying rollers 4 being rotatably connected inside the second transmission machine shell 3, a plurality of assembly mechanisms 5 being installed on both sides of the second transmission machine shell 3, the first transmission machine shell 2 comprising a first length shell 201, a second length shell 202 and a top plate 203, the top end of the first length shell 201 and the top end of the second length shell 202 being fixedly connected with both sides of the bottom end of the top plate 203, a transmission component 10 being installed at the middle part between the first length shell 201 and the second length shell 202, a first height groove 20 being formed at the top end of the side of the first length shell 201 close to the second length shell 202, a lead screw 19 being rotatably connected inside the first height groove 20, a first height block 18 being threadedly connected with the lead screw 19 at the middle part of the lead screw 19 and being slidably connected with the first height groove 20, and a compression roller 17 being rotatably connected at one side of the first height block 18.
[0038] The second length shell 202 is provided with a second height groove 14 at the top end close to the first length shell 201, the inside of the second height groove 14 is fixedly provided with a sliding rod 16, the middle part of the sliding rod 16 is slidingly connected with a second height block 15, one side of the second height block 15 is rotationally connected with the side of the press roller 17, the top end of the top plate 203 is fixedly provided with a step motor 7 driving the rotation of a lead screw 19, the step motor 7 is started after being powered, the step motor 7 drives the rotation of the lead screw 19, the threads on the surface of the lead screw 19 are matched with the threads on the inner wall of the first height block 18, the first height block 18 is limited by the first height groove 20 matched with the shape, so that the first height block 18 slides along the lead screw 19, the first height block 18 drives the second height block 15 to move synchronously through the press roller 17, the second height block 15 slides relative to the sliding rod 16, the press roller 17 contacts the top of the wood board, and it is guaranteed that the wood boards with different thicknesses can be stably transmitted along the transmission assembly 10.
[0039] The transmission assembly 10 comprises two mounting seats 103 and two transmission frames 104, the opposite sides of the two mounting seats 103 are respectively rotationally connected with the ends of the two transmission frames 104 away from each other, a plurality of transmission rollers 105 are rotationally connected between the two transmission frames 104, the surfaces of the plurality of transmission rollers 105 are fixedly provided with belt pulleys 106, a belt is transmissionally connected between every two adjacent belt pulleys 106, the bottom ends of the two mounting seats 103 are provided with fixed bases 101, the top ends of the two fixed bases 101 are provided with angle cylinders 102, the movable ends of the two angle cylinders 102 are respectively connected with the ends of the two transmission frames 104 facing each other, one end of the two fixed bases 101 and one end of the two mounting seats 103 are fixedly connected with the sides of the first length shell 201 and the second length shell 202 facing each other, the surface of the second length shell 202 is fixedly provided with a servo motor 13 driving the rotation of the transmission roller 105 facing the end, the angle cylinder 102 performs extension and retraction movement, the angle cylinder 102 pushes the transmission frame 104 from one side, the transmission frame 104 is angularly deflected relative to the fixed base 101, the transmission angle of the transmission roller 105 to the wood board is adjusted, the wood board on the transmission roller 105 is transmitted to the second transmission shell 3, the servo motor 13 is started after being powered, the servo motor 13 drives the rotation of the transmission roller 105 facing the end, the transmission roller 105 drives the rotation of the belt pulley 106 fixedly provided thereon, the belt pulley 106 drives the rotation of the belt pulley 106 adjacent thereto through the belt, so that the plurality of transmission rollers 105 synchronously rotate.
[0040] The assembling mechanism 5 comprises an assembling table 51 and an assembling assembly 57, one side of the top end of the assembling table 51 is rotationally connected with the bottom end of the assembling assembly 57, the top end of the assembling table 51 is provided with a movable groove 53, the inner wall of the movable groove 53 is fixedly provided with a linear track 52 at the bottom end, the movable groove 53 is slidably connected with a movable block 54 at the middle part, the movable block 54 is fixedly provided with a connecting shaft 55 at both sides, the middle part of the two connecting shafts 55 is rotationally connected with a push plate 56, the top end of the two push plates 56 is connected with the opposite side of the assembling assembly 57, one side of the assembling table 51 is fixedly connected with the second transmission machine shell 3, the movable block 54 slides along the linear track 52, the movable block 54 drives the connecting shaft 55 to move synchronously in the sliding process, the connecting shaft 55 drives the push plate 56 to deflect at an angle relative to the push plate 56, the push plate 56 pushes from the bottom of the assembling assembly 57, and the assembling assembly 57 deflects at an angle relative to the assembling table 51, so that the assembling angle is adjusted.
[0041] The assembling assembly 57 comprises a fixed table 571 and a plurality of threaded columns 573, the top end of the fixed table 571 is provided with a plurality of threaded holes 572, the plurality of threaded holes 572 are threadedly connected with the plurality of threaded columns 573 respectively, the top end of the plurality of threaded columns 573 is rotationally connected with a stop lever 574, the bottom end of the fixed table 571 is rotationally connected with the opposite end of the assembling table 51, the user twists the threaded column 573, the threads on the surface of the threaded column 573 are matched with the threads in the inner wall of the threaded hole 572, so that the threaded column 573 rotates up and down relative to the threaded hole 572, the stop lever 574 is fixed on the fixed table 571, and the plurality of stop levers 574 cooperate with each other to fix the wood board, so that the subsequent mold and the porcelain plate are buckled.
[0042] The top end of the top plate 203 is fixedly provided with a lifting ring 204, the surface of the first length shell 201 is fixedly provided with an operation frame 9, the top end of the operation frame 9 is fixedly provided with an operation panel 8, the bottom end between the first length shell 201 and the second length shell 202 is fixedly provided with an electrical box 11, the front surface of the electrical box 11 is hingedly provided with a sealing door 12, and the user uses the hand to press the operation panel 8 to control the wood board transmission speed.
[0043] The bottom end of the second transmission machine shell 3 is fixedly provided with a plurality of height rods 6, and the height rods 6 support from the bottom of the second transmission machine shell 3.
[0044] The application provides an integrated forming process for a wood-porcelain composite structure, comprising the following steps:
[0045] Step one, porcelain tile cutting: according to the requirements and the wood-porcelain composite structure drawing, the porcelain tile is placed on the cutting equipment, and the porcelain tile is cut according to the requirements and the drawing;
[0046] Step two, tile cleaning: the cut tiles are placed on the conveyor, which transports the tiles to the brush cleaning equipment to clean the debris generated after cutting, and then the tiles are transported by the second conveyor to the cleaning equipment for impurity cleaning;
[0047] Step three, drying the tiles: the cleaned tiles are placed in the drying equipment, and the moisture of the cleaned tiles is removed by the drying lamp or heating plate in the drying equipment;
[0048] Step four, mold installation: according to the requirements of ceramic-wood composite structure, the required mold is prepared, and the tooling mold required for preparing ceramic-wood composite structure is installed on one side of the forming equipment 1;
[0049] Step five, wood board gluing: the wood board is placed on the forming equipment 1, and the wood board surface is coated with glue solution by the PUR equipment during the transmission of the forming equipment 1 to complete the gluing;
[0050] Step six, first assembly: the glued wood board and the prepared mold are assembled together by the roll pressing machine to obtain the assembled product;
[0051] Step seven, mold removal: according to the actual requirements, the mold is removed from the assembled product;
[0052] Step eight, second assembly: the tiles are placed on the assembled product to form a semi-finished product;
[0053] Step nine, product reinforcement: the semi-finished product is placed in the flat press for static pressing, and the pressing time is 20-40 min;
[0054] Step ten, product processing: the reinforced product is sequentially polished, grooved and painted;
[0055] Step eleven, packaging and delivery: the treated product is detected by the visual detector, and the product is packaged and delivered after passing the detection.
[0056] In step four, the required mold is prepared by selecting CNC equipment as the mold processing equipment and selecting wood strips or easily processed raw materials as the mold raw materials.
[0057] In the application, according to the demand and the ceramic wood composite structure drawing, the ceramic tile is placed on the cutting equipment, and the ceramic tile is cut according to the demand and the drawing; the cut ceramic tile is placed on the conveyor, the conveyor transmits the ceramic tile, and the conveyor is transmitted to the belt brush cleaning equipment to clean the debris generated after cutting, and then the ceramic tile is transmitted to the cleaning equipment by the conveyor for impurity cleaning; the cleaned ceramic tile is placed in the drying equipment, and the moisture of the cleaned ceramic tile is removed by the drying lamp or the heating plate in the drying equipment; according to the demand of the ceramic wood composite structure, the required mold is prepared, the required mold for preparing the ceramic wood composite structure is installed on one side of the forming equipment 1, and the mold is assembled on the wood plate to obtain an intermediate product; the cut and ground ceramic plate is placed in the intermediate product to obtain the required ceramic wood composite structure, and the required mold is prepared according to the demand of the ceramic wood composite structure, and the required mold for preparing the ceramic wood composite structure is installed on one side of the forming equipment 1; the wood plate is placed on the forming equipment 1, and the wood plate is transmitted by the forming equipment 1 to complete the glue coating by the PUR equipment on the surface of the wood plate;The post-gluing wood board and the prepared mold are assembled together through a roller compounding machine to obtain an assembled product; the assembled product is separated from the mold according to actual requirements; the ceramic tile is placed on the assembled product to obtain a semi-finished product; the semi-finished product is placed in a flat press for static pressing, and the pressing time is 20-40 min; the reinforced product is sequentially subjected to polishing, slotting and paint spraying treatments; the treated product is detected through a visual detector, and the product is packaged and shipped after passing the detection.
[0058] Although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art can make modifications to the technical solutions recorded in the foregoing embodiments, or make equivalent replacements to part of the technical features, and any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present application shall be included in the protection scope of the present application.
Claims
1. A forming apparatus for a wood- ceramic composite structure, comprising a forming apparatus (1), characterized in that: The forming equipment (1) includes a first transmission casing (2) and a second transmission casing (3), one side of the first transmission casing (2) is fixedly connected with one side of the second transmission casing (3), a plurality of conveying rollers (4) are rotatably connected inside the second transmission casing (3), a plurality of assembling mechanisms (5) are installed on both sides of the second transmission casing (3), the first transmission casing (2) includes a first length casing (201), a second length casing (202) and a top plate (203), the top end of the first length casing (201) and the top end of the second length casing (202) are fixedly connected with both sides of the bottom end of the top plate (203), respectively, a transmission assembly (10) is installed at the middle part between the first length casing (201) and the second length casing (202), a first height groove (20) is formed in the top end of the side, close to the second length casing (202), of the first length casing (201), a lead screw (19) is rotatably connected inside the first height groove (20), a first height block (18) that is slidably connected with the first height groove (20) is threadedly connected with the middle part of the lead screw (19), and a compression roller (17) is rotatably connected with one side of the first height block (18); The transmission assembly (10) includes two mounting seats (103) and two transmission frames (104), the opposite sides of the two mounting seats (103) are rotatably connected with the ends, away from each other, of the two transmission frames (104), respectively, a plurality of transmission rollers (105) are rotatably connected between the two transmission frames (104), a belt pulley (106) is fixedly installed on the surface of each transmission roller (105), a belt is transmissionally connected between every two adjacent belt pulleys (106), a fixed base (101) is arranged at the bottom end of each mounting seat (103), an angle air cylinder (102) is installed at the top end of each fixed base (101), the movable ends of the two angle air cylinders (102) are connected with the ends, facing each other, of the two transmission frames (104), respectively, one end of each fixed base (101) and one end of each mounting seat (103) are fixedly connected with the side, facing each other, of the first length casing (201) and the second length casing (202), respectively, and a servo motor (13) that drives the end, facing each other, of the transmission roller (105) is fixedly installed on the surface of the second length casing (202). The assembling mechanism (5) comprises an assembling table (51) and an assembling assembly (57), one side of the top end of the assembling table (51) is rotationally connected with the bottom end of the assembling assembly (57), the top end of the assembling table (51) is provided with a movable slot (53), the bottom end of the inner wall of the movable slot (53) is fixedly installed with a linear rail (52), the middle part of the linear rail (52) is slidably connected with a movable block (54), the two sides of the movable block (54) are fixedly installed with a connecting shaft (55), the middle part of the two connecting shafts (55) is rotationally connected with a push plate (56), the top end of the two push plates (56) is connected with the side opposite to the assembling assembly (57), and one side of the assembling table (51) is fixedly connected with the second transmission machine shell (3).
2. A forming apparatus for a woodceramics composite structure according to claim 1, characterized in that: The second length shell (202) is provided with a second height slot (14) at the top end of the side close to the first length shell (201), a sliding rod (16) is fixedly installed in the second height slot (14), a second height block (15) is slidably connected with the middle part of the sliding rod (16), and one side of the second height block (15) is rotationally connected with the side opposite to the compression roller (17).
3. A forming apparatus for a woodceramics structure according to claim 1, characterized in that: The assembling assembly (57) comprises a fixed table (571) and a plurality of threaded columns (573), the top end of the fixed table (571) is provided with a plurality of threaded holes (572), the plurality of threaded holes (572) are respectively threadedly connected with the plurality of threaded columns (573), and the top end of the plurality of threaded columns (573) is rotationally connected with a stop lever (574).
4. A forming apparatus for a woodceramics structure according to claim 1, characterized in that: The top end of the top plate (203) is fixedly installed with a lifting ring (204), the surface of the first length shell (201) is fixedly installed with an operation frame (9), the top end of the operation frame (9) is fixedly installed with an operation panel (8), the bottom end between the first length shell (201) and the second length shell (202) is fixedly installed with an electrical box (11), and the front of the electrical box (11) is hingedly connected with a sealing door (12).
5. A forming apparatus for a woodceramics structure according to claim 1, characterized in that: The bottom end of the second transmission machine shell (3) is fixedly installed with a plurality of height rods (6).
6. A one-step forming process for a forming apparatus for a wood- ceramic composite structure according to any one of claims 1-5, characterized in that: The method comprises the following steps: Step one, ceramic tile cutting: according to the demand and the ceramic-wood composite structure drawing, the ceramic tile is placed on the cutting equipment, and the ceramic tile is cut according to the demand and the drawing; Step two, ceramic tile cleaning: the cut ceramic tile is placed on the transmission machine, the transmission machine transmits the ceramic tile, the transmission machine transmits the ceramic tile to the brush cleaning equipment to clean the debris generated after cutting, and then the ceramic tile is transmitted by the transmission machine to the cleaning equipment for impurity cleaning; Step three, drying the ceramic tile: the cleaned ceramic tile is placed in the drying equipment, and the drying lamp or heating plate in the drying equipment removes the moisture of the cleaned ceramic tile; Step four, mold installation: according to the demand of the ceramic-wood composite structure, the required mold is prepared, and the mold required for preparing the ceramic-wood composite structure is installed on one side of the forming equipment (1); Step five, wood board glue: the wood board is placed on the forming equipment (1), and the forming equipment (1) is transmitted to the wood board surface by the PUR equipment to complete the glue coating of the wood board; Step six, first assembly: the glued wood board and the prepared mold are assembled together by the roller pressing compound machine to obtain an assembled product; Step seven, mold stripping: according to the actual requirement, the mold of the assembled product is stripped; Step eight, second assembly; the ceramic tile is placed on the assembled product to prepare a semi-finished product; Step nine, product reinforcement: the semi-finished product is placed in a flat press for static pressing, and the pressing time is 20-40 min; Step ten, product processing: the reinforced product is sequentially polished, grooved and painted; Step eleven, packing and delivery: the treated product is detected by a visual detector, and the product is packed and delivered after passing the detection.
7. A one-piece forming process for a forming apparatus for a wood- ceramic composite structure according to claim 6, characterized in that: In step four, the required mold is prepared by selecting CNC equipment as the mold processing equipment and selecting wood strips as the mold raw materials.
Citation Information
Patent Citations
Veneer composite tile and making process thereof
CN105839878A
Manufacturing process of porcelain-wood sound-absorption anti-seismic ground heating floor
CN114771076A