METHOD FOR PROCESSING PLASTIC FLOORING USING DIGITAL PRINTING
Patent Information
- Application Number
- DE602018086123
- Authority / Receiving Office
- DE · DE
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2018-01-26
- Publication Date
- 2025-10-01
- Estimated Expiration
- 2038-01-26
AI Technical Summary
Conventional PVC floor board production methods are costly due to the need for custom color films and wear layers, which increase production costs and complexity.
A digital printing process is used to directly print patterns on PVC floor boards, eliminating the need for color films and wear layers by employing a twin-screw extruder, embossing rolls with marking blocks, and digital printers that align patterns accurately with embossed designs.
This method reduces production costs and improves efficiency by directly forming clear and vivid patterns on the boards without additional films, ensuring precise pattern alignment and maintaining pattern consistency.
Description
TECHNICAL FIELD
[0001] This disclosure generally relates to the technical field of floor boards, and more particularly, to a plastic floor board processing technology using digital printing.BACKGROUND
[0002] With the raise of people's environmental awareness, developing eco-friendly products has become important for floor enterprises. Presently, PVC floor boards have become increasingly popular because of prominent properties that conventional floor decoration materials don't have. The advantages of PVC floor boards, including good decorating performance, effortless installation, convenient maintenance, easy recycling, environmental protection, comfortable foot feeling and high safety, enable them to be widely used in construction projects and become the users' primary choice among floor decoration materials.
[0003] To ensure the necessary properties of floor boards, the conventional processing technology of floor boards roughly comprises material preparation, injection molding, shaping and cutting, and to make the floor boards more aesthetically pleasing and durable, patterns resembling wood grains are embossed on the floor board surface by embossing rolls. Moreover, to reveal a color like wood floor board, a color film needs to be customized and laid on the embossed patterns, and a wear layer needs to be arranged after laying the color film, which sharply increase the production cost.
[0004] Thus, it is urgent for those skilled in the art to provide a novel method. CN106280132A discloses an environmentally-friendly PVC sheet floor board and preparation method. WO2017067978A1 discloses a method for the manufacture of wood fiber based decorative substrates.SUMMARY
[0005] The purpose of the present disclosure is to provide a plastic floor board processing technology using digital printing, which is capable of lowering the production cost.
[0006] To achieve the above purpose, the present disclosure adopts the following technical solution: a plastic floor board processing technology using digital printing, as claimed in claim 1.
[0007] According to the aforesaid technical solution, during production, PVC, stone powder, a stabilizer, stearic acid, PE wax and a modifier are selected first, and are then fed into a blender for being blended evenly. Subsequently, the blended materials are fed into a twin-screw extruder, and are extruded into a mold prepared in advance by the twin-screw extruder, thereby forming a board-like base material therein. Subsequently, the spacing between the first thickness-determining roll and the second thickness-determining roll is adjusted according to the actual needs, and the base material passes through the gap between the first thickness-determining roll and the second thickness-determining roll. Thus, the thickness of the base material is determined. As the edge of the embossing roll is carved with a marking block, when the base material passes through the embossing roll, the marking block leaves marks on the edge of the base material as positioning points in the meantime. The marking block is carved at the starting end of the pattern on the surface of the embossing roll, which allows the positioning marks to be easily sensed and more aesthetically pleasing. After passing through the embossing roll, the surface of the stone-plastic base material is pressed with needed patterns. When cutting, a first positioning mark is taken as the first point, and a second point is selected for cutting according to the required length of the floor board. In this way, both ends of each floor board are provided with positioning points. During the subsequent printing process, patterns corresponding to the embossed patterns on the base material are stored in a digital printer. Once a positioning mark is sensed by the sensing device of the digital printer, an immediate feedback to the digital printer is required, which enables the digital printer to achieve an accurate spray-printing. The aforesaid allows the printed patterns to match the embossed patterns on the surface of the stone-plastic base material more accurately, thus making the embossed patterns clearer. Through adopting the aforesaid technical solution, during production, clear and vivid patterns may be formed on the surface of the stone-plastic base material without arranging a color film and a wear layer on the surface of the stone-plastic base material. Thus, the cost of customizing and purchasing the color film is saved, the forming process of a wear layer is avoided, and the production efficiency is improved.
[0008] Through adopting the aforesaid technical solution, the heat conduction oil heats the surface embossing roll during the embossing process, which makes the embossing easier and the embossed patterns clearer.
[0009] Through adopting the aforesaid technical solution, the floor boards are placed in an environment having 50% humidity for reconditioning, which prevents the floor boards from bending or warping after prolonged use.
[0010] Through adopting the aforesaid technical solution, the jointing slots formed in the side edges of the floor boards enable the floor boards to be conveniently jointed in the later period.
[0011] Through adopting the aforesaid technical solution, decorative patterns same as the embossed patterns on the stone-plastic base material are pre-stored in a digital printer. When using a digital printer to spray-print decorative patterns on the stone-plastic base material, the printed patterns accurately match the embossed patterns on the surface of the stone-plastic base material, thus making the embossed patterns more vivid.
[0012] Through adopting the aforesaid technical solution, the marking block is carved at the starting end of the pattern on the surface of the embossing roll, which allows the positioning marks to be easily sensed and more aesthetically pleasing.
[0013] Compared with the prior art, the present disclosure has the following advantages: During production, PVC, stone powder, a stabilizer, stearic acid, PE wax and a modifier are selected first, and are then fed into a blender for being blended evenly. Subsequently, the blended materials are fed into a twin-screw extruder, and are extruded into a mold prepared in advance by the twin-screw extruder, thereby forming a board-like base material therein. Subsequently, the spacing between the first thickness-determining roll and the second thickness-determining roll is adjusted according to the actual needs, and the base material passes through the gap between the first thickness-determining roll and the second thickness-determining roll. Thus, the thickness of the base material is determined. As the edge of the embossing roll is carved with a marking block, when the base material passes through the embossing roll, the marking block leaves marks on the edge of the base material as positioning points in the meantime. The marking block is carved at the starting end of the pattern on the surface of the embossing roll, which allows the positioning marks to be easily sensed and more aesthetically pleasing. After passing through the embossing roll, the surface of the stone-plastic base material is pressed with needed patterns. When cutting, a first positioning mark is taken as the first point, and a second point is selected for cutting according to the required length of the floor board. In this way, both ends of each floor board are provided with positioning points. During the subsequent printing process, patterns corresponding to the embossed patterns on the base material are stored in a digital printer. Once a positioning mark is sensed by the sensing device of the digital printer, an immediate feedback to the digital printer is required, which enables the digital printer to achieve an accurate spray-printing. The aforesaid allows the printed patterns to match the embossed patterns on the surface of the stone-plastic base material more accurately, thus making the embossed patterns clearer. Through adopting the aforesaid technical solution, during production, clear and vivid patterns may be formed on the surface of the stone-plastic base material without arranging a color film and a wear layer on the surface of the stone-plastic base material. Thus, the cost of customizing and purchasing the color film is saved, the forming process of a wear layer is avoided, and the production efficiency is improved.DETAILED DESCRIPTION
[0014] Detailed embodiments are combined hereinafter to further elaborate the technical solution of the present disclosure.
[0015] In accordance with the present invention, Embodiment 1: A plastic floor board processing technology using digital printing, comprising the steps of: Step A: preparing raw materials of a base material: selecting PVC, stone powder, a stabilizer, stearic acid, PE wax and a modifier, and fully mixing the above raw materials; Step B: blending: blending at a temperature of 120°C with a speed of 2000 r / min, and when the temperature falls to 50°C, blending with a speed of 200 r / min; Step C: extrusion molding: extruding the blended raw materials into a mold through a twin-screw extruder, thereby forming a stone-plastic base material; Step D: shaping: adjusting the spacing between a first thickness-determining roll and a second thickness-determining roll, and enabling the stone-plastic base material to pass through the gap between a surface embossing roll (the first thickness-determining roll) and a bottom embossing roll (the second thickness-determining roll); Step E: embossing: arranging the surface embossing roll and the bottom embossing roll up and down, carving a marking block on the edge of the surface embossing roll, wherein the marking block is carved at the starting end of the pattern on the surface embossing roll; introducing heat conduction oil into the surface embossing roll, thereby heating the surface embossing roll to a temperature of 180-190°C; subsequently, enabling the stone-plastic base material to pass through the gap between the surface embossing roll and the bottom embossing roll, thereby circularly and repeatedly embossing patterns on the surface of the stone-plastic base material while forming positioning marks at equal intervals; Step F: cooling: cooling the stone-plastic base material with embossed patterns at a natural temperature of 26°C-30°C; Step G: cutting: selecting a positioning mark as a first point, selecting another positioning mark as a second point according to the required length of the floor board, and cutting at the second point; finally, cutting the stone-plastic base material into a plurality of segments with equal length; Step H: digital printing: preparing patterns to be digitally printed, making the patterns to correspond to the embossed patterns formed on the stone-plastic base material in step E; subsequently, spray-printing the patterns on the surfaces of the floor boards by a digital printer, wherein the digital printer starts printing when the first point of each floor board is sensed by a sensing device of the digital printer, and stops printing when the second point is sensed; Step I: shower-coating: sequentially shower-coating a UV primer paint and a UV finish paint on the printed floor boards; Step J: reconditioning: placing the floor boards in an environment having 50% humidity; Step K: slotting: forming jointing slots in the side edges of the floor boards.
[0016] During production, PVC, stone powder, a stabilizer, stearic acid, PE wax and a modifier are selected first, and are then fed into a blender for being blended evenly. Subsequently, the blended materials are fed into a twin-screw extruder, and are extruded into a mold prepared in advance by the twin-screw extruder, thereby forming a board-like base material therein. Subsequently, the spacing between the first thickness-determining roll and the second thickness-determining roll is adjusted according to the actual needs, and the base material passes through the gap between the first thickness-determining roll and the second thickness-determining roll. Thus, the thickness of the base material is determined.
[0017] As the edge of the surface embossing roll is carved with a marking block, when the base material passes through the surface embossing roll, the marking block leaves marks on the edge of the base material as positioning points in the meantime. The marking block is carved at the starting end of the pattern on the surface of the surface embossing roll, which allows the positioning marks to be easily sensed and more aesthetically pleasing. After passing through the surface embossing roll, the surface of the stone-plastic base material is pressed with needed patterns. When cutting, a first positioning mark is taken as the first point, and a second point is selected for cutting according to the required length of the floor board. In this way, both ends of each floor board are provided with positioning points.
[0018] During the subsequent printing process, patterns corresponding to the embossed patterns on the base material are stored in a digital printer. Once a positioning mark is sensed by the sensing device of the digital printer, an immediate feedback to the digital printer is required, which enables the digital printer to achieve an accurate spray-printing. The aforesaid allows the printed patterns to match the embossed patterns on the surface of the stone-plastic base material more accurately, thus making the embossed patterns clearer. Through adopting the aforesaid technical solution, during production, clear and vivid patterns may be formed on the surface of the stone-plastic base material even without arranging a color film and a wear layer on the surface of the stone-plastic base material. Thus, the cost of customizing and purchasing the color film is saved, the forming process of a wear layer is avoided, and the production efficiency is improved.
[0019] Additionally, in step B, the purpose of high-speed heating and blending is to evenly blend all raw materials, and the purpose of low-speed cooling and blending is to keep the raw materials in a stable state after the blending and before the production. Thus, the stability of quality is ensured.
[0020] Not in accordance with the present invention, Embodiment 2: What makes embodiment 2 different from embodiment 1 is, the plastic floor board processing technology using digital printing in embodiment 2, comprising the steps of: Step A: preparing raw materials of a base material: selecting PVC, stone powder, a stabilizer, stearic acid, PE wax and a modifier, and fully mixing the above raw materials; Step B: blending: blending at a temperature of 120°C with a speed of 2000 r / min, and when the temperature falls to 50°C, blending with a speed of 200 r / min; Step C: extrusion molding: extruding the blended raw materials into a mold through a twin-screw extruder, thereby forming a stone-plastic base material; Step D: shaping: adjusting the spacing between a first thickness-determining roll and a second thickness-determining roll, and enabling the stone-plastic base material to pass through the gap between a surface embossing roll and a bottom embossing roll; Step E: embossing: arranging the surface embossing roll and the bottom embossing roll up and down, carving a marking block on the edge of the surface embossing roll, wherein the marking block is carved at the starting end of the pattern on the surface embossing roll; introducing heat conduction oil into the surface embossing roll, thereby heating the surface embossing roll to a temperature of 180-190°C; subsequently, enabling the stone-plastic base material to pass through the gap between the surface embossing roll and the bottom embossing roll, thereby circularly and repeatedly embossing patterns on the surface of the stone-plastic base material, and forming positioning marks at equal intervals; Step F: cooling: cooling the stone-plastic base material with embossed patterns at a natural temperature of 26°C-30°C; Step G: cutting: selecting a positioning mark as a first point, selecting another positioning mark as a second point according to the required length of the floor board, and cutting at the second point; finally, cutting the stone-plastic base material into a plurality of segments with equal length; Step J: reconditioning: placing the floor boards in an environment having 50% humidity; Step K: slotting: forming jointing slots in the side edges of the floor boards; Step H: digital printing: preparing patterns to be digitally printed, making the patterns to correspond to the embossed patterns formed on the stone-plastic base material in step E; subsequently, spray-printing the patterns on the surfaces of the floor boards by a digital printer, wherein the digital printer starts printing when the first point of each floor board is sensed by a sensing device of the digital printer, and stops printing when the second point is sensed; Step I: shower-coating: sequentially shower-coating a UV primer paint and a UV finish paint on the printed floor boards.
[0021] In this embodiment, steps including reconditioning and slotting are performed before the digital printing and shower-coating. According to this arrangement, a long-term shaping of the floor boards is achieved, avoiding the patterns on the floor boards from deforming in the later period. As the errors of patterns are significantly reduced, the patterns on the floor boards remain highly consistent with the original ones.
Claims
1. A plastic floor board processing technology using digital printing, comprising the steps of: Step A: preparing raw materials of a base material: selecting PVC, stone powder, a stabilizer, stearic acid, PE wax and a modifier, and fully mixing the above raw materials; Step B: blending: blending at a temperature of 120°C with a speed of 2000 r / min, and when the temperature falls to 50°C, blending with a speed of 200 r / min; Step C: extrusion molding: extruding the blended raw materials into a mold through a twin-screw extruder, thereby forming a stone-plastic base material; Step D: shaping: adjusting the spacing between a first thickness-determining roll and a second thickness-determining roll, and enabling the stone-plastic base material to pass through the gap between a surface embossing roll and a bottom embossing roll; Step E: embossing: arranging the surface embossing roll and the bottom embossing roll up and down, carving a marking block on the edge of the surface embossing roll, wherein the marking block is carved at the starting end of the pattern on the surface embossing roll; introducing heat conduction oil into the surface embossing roll, thereby heating the surface embossing roll to a temperature of 180-190°C; subsequently, enabling the stone-plastic base material to pass through the gap between the surface embossing roll and the bottom embossing roll, thereby circularly and repeatedly embossing patterns on the surface of the stone-plastic base material while forming positioning marks at equal intervals; Step F: cooling: cooling the stone-plastic base material with embossed patterns at a natural temperature of 26°C-30°C; Step G: cutting: selecting a positioning mark as a first point, selecting another positioning mark as a second point according to the required length of the floor board, and cutting at the second point; finally, cutting the stone-plastic base material into a plurality of segments with equal length; Step H: digital printing: preparing patterns to be digitally printed, making the patterns to correspond to the embossed patterns formed on the stone-plastic base material in step E; subsequently, spray-printing the patterns on the surfaces of the floor boards by a digital printer, wherein the digital printer starts printing when the first point of each floor board is sensed by a sensing device of the digital printer, and stops printing when the second point is sensed; Step I: shower-coating: sequentially shower-coating a UV primer paint and a UV finish paint on the printed floor boards; Step J: reconditioning: placing the floor boards in an environment having 50% humidity; Step K: slotting: forming jointing slots in the side edges of the floor boards.