High-brightness resin tile and traction device
By using a bottom film unwinding assembly of a traction device to composite PET or PVC film in the production of resin tiles, the problems of high production cost and uneven effect caused by high-fineness calcium powder are solved, achieving a high-gloss effect with reduced cost and uniform effect.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-31
- Publication Date
- 2026-03-24
AI Technical Summary
The introduction of high-fineness calcium powder in the current resin tile production process has led to problems such as high production costs and uneven high-gloss effect.
A bottom film unwinding assembly is installed in the traction device, and PET film or PVC film is laminated on the bottom of the resin tile substrate. The high transparency and smooth surface of the PET film achieve mirror reflection, replacing high-fineness calcium powder.
This reduces production costs and ensures uniformity and high gloss of the resin tile bottom, avoiding the use of fine calcium powder.
Smart Images

Figure CN224028456U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to resin tile production equipment technical field especially, it relates to a high light resin tile and traction device. BACKGROUND
[0002] In recent years, resin tile has been widely used due to its wear resistance, light weight, low cost, easy installation and other advantages. In order to reflect the indoor light or natural light to every corner of the room, improve the overall brightness of the room, make the indoor space brighter and more transparent, reduce the lighting dead angle, the resin tile bottom surface facing the room usually needs high light effect.
[0003] In order to make the resin tile bottom facing the room have high light effect, the existing resin tile production enterprises usually introduce high fineness calcium powder into the bottom formula (the bottom formula is usually mainly PVC resin), on the one hand, the high fineness calcium powder is high in price compared with coarse fineness calcium powder, which is not conducive to the promotion of resin tile products by enterprises, on the other hand, high fineness calcium powder and PVC resin are prone to uneven mixing, which will make the high light effect of the resin tile bottom uneven.
[0004] It can be seen that the prior art needs to be improved and improved. INVENTION CONTENTS
[0005] The utility model discloses a high light resin tile, resin tile production's traction device, aims at solving the problem that high light resin tile production cost is high and is not conducive to promotion because of introducing high fineness calcium powder into the bottom formula.
[0006] To achieve the above purpose, the utility model provides a scheme:
[0007] A resin tile production traction device, comprising a traction conveying frame, a lower traction roller rotatably arranged on the traction conveying frame, and an upper traction roller rotatably arranged on the traction conveying frame and corresponding to the position above the lower traction roller, further comprising a bottom film unwinding assembly, the bottom film unwinding assembly is arranged below the lower traction roller, and the bottom film unwinding assembly is located upstream of the input end of the traction conveying frame, and a PVC film or PET film to be unwound between the upper traction roller and the lower traction roller is placed on the bottom film unwinding assembly.
[0008] Optionally, the bottom film unwinding assembly comprises at least one film unwinding mechanism, the film unwinding mechanism comprises two first support frames arranged oppositely, a first gas expansion shaft rotatably arranged on the two first support frames, a first driving motor fixedly arranged on one of the first support frames, a first gear in transmission connection with the output shaft of the first driving motor, and a second gear arranged on the first gas expansion shaft and in meshing connection with the first gear.
[0009] Optionally, the resin tile production traction device further comprises an ASA film unwinding assembly; the ASA film unwinding assembly is arranged on the top of the traction conveying frame.
[0010] Optionally, the ASA film unwinding assembly comprises at least one ASA film unwinding mechanism; the ASA film unwinding mechanism comprises two second support frames arranged oppositely, a second gas expansion shaft rotatably arranged on the two second support frames, a second driving motor fixedly arranged on one of the second support frames, a third gear in transmission connection with an output shaft of the second driving motor, and a fourth gear arranged on the second gas expansion shaft and in meshing connection with the third gear.
[0011] Optionally, the ASA film unwinding mechanism and the film unwinding mechanism each further comprise a roller frame; the roller frame is arranged on the top of the second support frame or the first support frame, and the roller frame rotatably supports the first gas expansion shaft and the second gas expansion shaft.
[0012] Optionally, a first tensioning roller, a first traction support roller and a second traction support roller are rotatably arranged on one side of the input end of the traction conveying frame, and a second tensioning roller is rotatably arranged on the top of the traction conveying frame; the first tensioning roller and the second tensioning roller are used for tensioning the ASA film drawn between the upper traction roller and the lower traction roller; the first traction support roller is located below the first tensioning roller and is used for supporting the resin tile substrate drawn between the upper traction roller and the lower traction roller; the second traction support roller is located below the first traction support roller and is used for supporting the PVC film or the PET film drawn between the upper traction roller and the lower traction roller.
[0013] Optionally, bearings are arranged at the two ends of the upper traction roller; the bearings are movably connected with the traction conveying frame in the vertical direction; and a pneumatic cylinder is arranged on the traction conveying frame and in transmission connection with the upper end of the bearing.
[0014] Optionally, a fifth gear coaxial with the upper traction roller is arranged on the upper traction roller, a sixth gear coaxial with the lower traction roller is arranged on the lower traction roller, and the fifth gear and the sixth gear are in meshing connection with each other; a chain transmission mechanism is arranged on the lower traction roller, and the chain transmission mechanism is connected with a third driving motor.
[0015] The utility model also provides a high light resin tile, the high light resin tile is produced by the resin tile production traction device, and the high light resin tile comprises an ASA layer, a resin tile substrate layer and a PET film layer from top to bottom, or comprises an ASA layer, a resin tile substrate layer and a PVC film layer from top to bottom.
[0016] Optionally, the resin tile substrate layer comprises a PVC surface layer, a PVC middle layer and a PVC bottom layer from top to bottom.
[0017] Beneficial effects:
[0018] The utility model provides a kind of traction device of resin tile production, by setting bottom film unwinding assembly below lower traction roller, and make bottom film unwinding assembly be located on the input end upstream of traction conveying frame, to be able to be unwound by the unwinding operation of bottom film unwinding assembly when production, PET film or PVC film is released and is pulled into between upper traction roller and lower traction roller, and further composite in the bottom of resin tile base material.PET film, PVC film has the characteristics of high transparency, surface smooth and high flatness, after PET film, PVC film is composite in the bottom of resin tile, when light is directed to resin tile, light can produce specular reflection, so that the bottom of resin tile has high bright effect, compared to the way that high fineness calcium powder is introduced into bottom layer formula to make the bottom of resin tile have high bright effect, the cost of PET film, PVC film is lower, and the problem of uneven high bright effect of resin tile bottom does not appear.
[0019] The utility model also provides a kind of high bright resin tile, by utilizing the characteristics of PET film, PVC film with high transparency, surface smooth and high flatness, after PET film or PVC film is composite in the bottom of resin tile base material layer, when light is directed to resin tile, light can produce specular reflection, so that the bottom of resin tile base material layer has high bright effect.As high fineness calcium powder is not used, the production cost of high bright resin tile can be reduced, and it is beneficial to enterprise to promote high bright resin tile. DRAWINGS
[0020] In order to more clearly illustrate the technical scheme in the embodiments of the utility model or prior art, the drawings needed to be used in the embodiment or prior art description will be briefly introduced below, and obviously, the drawings in the following description are only some embodiments of the utility model, and other drawings can be obtained according to the structure shown in these drawings without creative labor for those skilled in the art.
[0021] Figure 1 It is the structure schematic of the traction device of resin tile production provided by the utility model Figure 1 .
[0022] Figure 2 It is Figure 1 the enlarged view of part A in
[0023] Figure 3 It is Figure 1 the enlarged view of part B in
[0024] Figure 4 It is the structure schematic of the traction device of resin tile production provided by the utility model Figure 2 .
[0025] Figure 5 is Figure 4 is an enlarged view of part C in figure 1.
[0026] Figure 6 is a structure schematic of the traction device for resin tile production provided by the utility model Figure 4 .
[0027] Figure 7 is a structure diagram of the high-brightness resin tile.
[0028] Figure 8 is Figure 7 is an enlarged view of part D in figure 1.
[0029] BRIEF DESCRIPTION OF DRAWINGS
[0030] 1-towing conveying frame; 2-lower traction roller; 3-upper traction roller;
[0031] 4-bottom film unwinding assembly; 41-film unwinding mechanism; 411-first support frame; 412-first air expansion shaft; 413-first drive motor; 414-first gear; 415-second gear;
[0032] 5-ASA film unwinding assembly; 51-ASA film unwinding mechanism; 511-second support frame; 512-second air expansion shaft; 513-second drive motor; 514-third gear; 515-fourth gear; 516-roller frame;
[0033] 6-first tensioning roller; 7-second tensioning roller; 8-ASA film; 9-first traction support roller; 10-second traction support roller; 11-resin tile base material; 12-PET film or PVC film; 13-bearing seat; 14-air cylinder; 15-fifth gear; 16-sixth gear;
[0034] 17-chain transmission mechanism; 171-transmission chain; 172-driving gear; 173-driven gear;
[0035] 18-third drive motor;
[0036] 19-ASA layer; 20-PVC layer; 201-PVC surface layer; 202-PVC middle layer; 203-PVC bottom layer; 21-PET film layer or PVC film layer;
[0037] 22-rectangular frame; 23-roller; 24-guide rail. DETAILED DESCRIPTION
[0038] With reference to the drawings of the embodiments of the present application, the technical solutions in the embodiments of the present application will be clearly and completely described. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the present application.
[0039] It should be noted that all directional indications (such as up, down, left, right, front, back, etc.) in the embodiments of the present application are only used to explain the relative positional relationship, movement condition, etc. between components in a certain posture (as shown in the drawings), and if the certain posture changes, the directional indications will also change accordingly.
[0040] It should also be noted that when an element is referred to as being "fixed to" or "set on" another element, it can be directly on the other element or can have a middle element. When an element is referred to as being "connected" to another element, it can be directly connected to the other element or can have a middle element.
[0041] In addition, the description of "first", "second", etc. in the present application is only for the purpose of description, and cannot be understood as indicating or implying the relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features limited by "first", "second" can explicitly or implicitly include at least one of the features. In addition, the technical solutions of each embodiment can be combined with each other, but it must be based on the realization of the person skilled in the art, and when the combination of technical solutions appears contradictory or unachievable, it should be considered that the combination of technical solutions does not exist, and is not within the protection scope required by the present application.
[0042] Please refer to Figures 1 to 7 The present application provides a kind of traction device of resin tile production, the traction device of resin tile production belongs to a part of resin tile production line, it can be set between extruder unit and chain plate type continuous forming device of resin tile, wherein, the extruder unit is used to melt the PVC resin material and auxiliary material required for producing resin tile, and make the material after melting pass through sheet die continuous extrusion into single layer sheet or multilayer sheet, the chain plate type continuous forming device is used to shape resin tile base material 11, so that sheet-shaped resin tile can form tile shape;And the traction device of resin tile production can play the role of traction resin tile base material 11 and film coating to resin tile base material 11, so that resin tile base material 11 can be pulled to chain plate type continuous forming device.
[0043] Specifically, the traction device for producing the resin tile includes a traction conveying frame 1, an upper traction roller 3, a lower traction roller 2, and a bottom film unwinding assembly 4. The traction conveying frame 1 can be arranged in a steel frame structure. The lower traction roller 2 is rotatably arranged on the traction conveying frame 1, and the upper traction roller 3 is rotatably arranged on the traction conveying frame 1 and located above the lower traction roller 2. After the resin tile substrate 11 is extruded, it will enter between the upper traction roller 3 and the lower traction roller 2, and through the clamping of the rotating upper traction roller 3 and the lower traction roller 2, the resin tile substrate 11 can be traction conveyed to the chain plate type continuous molding device. The bottom film unwinding assembly 4 is arranged below the lower traction roller 2, and the bottom film unwinding assembly 4 is located upstream of the input end of the traction conveying frame 1. In actual production, a PVC film roll or a PET film roll is placed on the bottom film unwinding assembly 4. Through the unwinding operation of the bottom film unwinding assembly 4, the PET film or PVC film 12 is continuously unwound from the film roll. After the PET film or PVC film 12 is unwound from the bottom film unwinding assembly 4, it will also be traction conveyed between the upper traction roller 3 and the lower traction roller 2, and further compounded on the bottom of the resin tile substrate 11. Since the PET film and the PVC film have high transparency and smooth surface and high flatness, after the PET film and the PVC film are compounded on the bottom of the resin tile, when light is incident on the resin tile, the light can produce specular reflection, so that the bottom of the resin tile has a high light effect. Compared with the method of introducing high-fineness calcium powder into the bottom layer formula to make the bottom of the resin tile have a high light effect, the cost of the PET film and the PVC film is lower, and the problem of uneven high light effect of the bottom of the resin tile does not occur.
[0044] Specifically, the upper traction roller 3 and the lower traction roller 2 can be connected with the mold temperature machine through a rotary joint and a heat conduction oil pipeline, so that hot heat conduction oil can be circulated and conveyed into the upper traction roller 3 and the lower traction roller 2, thereby heating the surfaces of the upper traction roller 3 and the lower traction roller 2, so that the film material such as the PET film and the PVC film can be better compounded on the surface of the resin tile substrate 11, and the resin tile substrate 11 can maintain a certain temperature, thereby helping the resin tile substrate 11 to be subsequently shaped into a tile shape.
[0045] Specifically, the upper traction roller 3 can be an embossing roller, which can emboss the upper surface of the resin tile substrate 11 or the film material compounded on the upper surface of the resin tile substrate 11.
[0046] As Figures 1 to 4As shown, optionally, the bottom film unwinding assembly 4 includes at least one film unwinding mechanism 41. When multiple film unwinding mechanisms 41 are provided, spare PET film rolls or PVC film rolls can be placed on the film unwinding mechanisms 41 in advance. When the film roll on one of the film unwinding mechanisms 41 is about to run out, the worker can pull out the PET film or PVC film from the spare film roll and bond the PET film or PVC film to the film material that is about to be used up, thereby ensuring a continuous supply of PET film and PVC film and not reducing the production efficiency of resin tiles.
[0047] like Figures 1 to 4 As shown, specifically, each of the film unwinding mechanisms 41 includes two opposing first support frames 411, a first air shaft 412 rotatably mounted on the two first support frames 411, a first drive motor 413 fixed on one of the first support frames 411, a first gear 414 (all gears in the figures are simplified) driven by the output shaft of the first drive motor 413, and a second gear 415 mounted on the first air shaft 412 and meshing with the first gear 414. It is understood that when the first air shaft 412 is placed on the first support frame 411, the length direction of the first air shaft 412 is parallel to the length directions of the upper and lower traction rollers. When the first drive motor 413 operates, the first gear 414, driven by the output shaft of the first drive motor 413, rotates, thereby transmitting power to the second gear 415, causing the first air shaft 412 to rotate, allowing the PET film or PVC film to be smoothly unwound and conveyed.
[0048] Because gear transmission can precisely control the rotation speed and torque of the first air shaft 412, it can accurately control the unwinding tension of the PET or PVC film. Compared with the overall traction of the traction device, this avoids the PET film 12 being too loose or too tight, ensuring the quality of the coating.
[0049] Optionally, the bottom film unwinding assembly 4 further includes a rectangular frame 22 for supporting the first support frame 411. The bottom of the rectangular frame 22 is provided with rollers 23, and the rollers 23 are rotatably connected to a guide rail 24 horizontally disposed on the ground. The guide rail 24 is parallel to the width direction of the resin tile substrate 11. When the bottom mold unwinding assembly is placed below the lower traction roller 2, the space above the bottom mold unwinding assembly is limited, making it inconvenient to place new film rolls on it. Therefore, by providing a rectangular frame 22 for supporting the first support frame 411 and providing rollers 23 below the rectangular frame 22, the bottom mold unwinding assembly can move along the guide rail 24 to an open area (i.e., the outside of the resin tile production line), thus facilitating workers to place new film rolls on the bottom mold unwinding assembly.
[0050] like Figures 1 to 4As shown, optionally, the resin tile production traction device further comprises an ASA film unwinding assembly 5; the ASA film unwinding assembly 5 is arranged at the top of the traction conveying frame 1. In actual production, the ASA film unwinding assembly 5 is placed with ASA film 8 roll material, and through the unwinding operation of the ASA film unwinding assembly 5, the ASA film 8 roll continuously releases ASA film 8 (acrylonitrile-butadiene-styrene copolymer film), and after being released from the ASA film unwinding assembly 5, the ASA film 8 is also pulled into between the upper traction roller 3 and the lower traction roller 2, and further compounded on the top of the resin tile base material 11.
[0051] By compounding the ASA film 8 on the top of the resin tile, the surface hardness and wear resistance of the resin tile product can be improved, and the scratching of the resin tile surface by external objects can be effectively resisted.
[0052] As shown in Figures 1 to 4 Optionally, the ASA film unwinding assembly 5 comprises at least one ASA film unwinding mechanism 51, and the arrangement of a plurality of ASA film unwinding mechanisms 51 can also ensure the continuity of the film material supply. The ASA film unwinding mechanism 51 comprises two second support frames 511 arranged oppositely, a second gas expansion shaft 512 rotatably arranged on the two second support frames 511, a second drive motor 513 fixedly arranged on one of the second support frames 511, a third gear 514 in transmission connection with the output shaft of the second drive motor 513, and a fourth gear 515 arranged on the second gas expansion shaft 512 and in meshing connection with the third gear 514. It can be understood that when the second gas expansion shaft 512 is rotatably arranged on the two second support frames 511, the second gas expansion shaft 512 is parallel to the first gas expansion shaft 412, and the unwinding modes of the ASA film unwinding mechanism 51 and the film roll unwinding mechanism 41 are the same.
[0053] As shown in Figures 1 to 3 Optionally, the ASA film unwinding mechanism 51 and the film roll unwinding mechanism 41 each further comprise a roller frame 516; the roller frame 516 is arranged at the top of the second support frame 511 or the first support frame 411, and the roller frame 516 rotatably supports the first gas expansion shaft 412 and the second gas expansion shaft 512. The roller frame 516 can provide stable support for the first gas expansion shaft 412 and the second gas expansion shaft 512, can prevent the first gas expansion shaft 412 and the second gas expansion shaft 512 from shaking and deviating during rotation, and can make the PET film, the PVC film and the ASA film 8 maintain stable tension and position when being released, thereby avoiding problems such as wrinkles and deviation of the film material, and thus the quality of the resin tile can be ensured.
[0054] As shown in Figure 6As shown, optionally, the input end side of the traction conveying frame 1 is rotationally provided with a first tensioning roller 6, a first traction supporting roller 9 and a second traction supporting roller 10, and the top of the traction conveying frame 1 is rotationally provided with a second tensioning roller 7. The first tensioning roller 6 and the second tensioning roller 7 are used to tension the ASA film 8 between the upper traction roller 3 and the lower traction roller 2, so that the ASA film 8 can be smoothly tractioned between the upper traction roller 3 and the lower traction roller 2 and be compounded on the upper surface of the resin tile base material 11. The first traction supporting roller 9 is located below the first tensioning roller 6, used to support the resin tile base material 11 and traction the resin tile to the upper traction roller 3 and the lower traction roller 2. The second traction supporting roller 10 is located below the first traction supporting roller 9, used to support the PVC film or PET film tractioned between the upper traction roller 3 and the lower traction roller 2, and make the PVC film or PET film be compounded on the bottom surface of the resin tile base material 11.
[0055] As shown in Figure 1 and Figure 3 As shown, optionally, the two ends of the upper traction roller 3 are provided with bearing seats 13, which are movably connected with the traction conveying frame 1 in the vertical direction. The traction conveying frame 1 is provided with air cylinders 14 which are drivingly connected with the upper ends of the bearing seats 13. It can be understood that the air cylinders 14 are provided with two, and thus the synchronous extension and retraction of the two air cylinder 14 extension rods can synchronously drive the two ends of the upper traction roller 3 provided with the bearing seats 13 to move upward or downward, so that the upper traction roller 3 can move away from and close to the lower traction roller 2. When the upper traction roller 3 moves away from the lower traction roller 2, the ASA film 8, the PET film, the PVC film and the resin tile base material 11 just extruded from the sheet material mold can enter between the upper and lower traction rollers, which is convenient for the subsequent film material and the resin tile base material 11 to be compounded and the traction conveying of the resin tile base material 11.
[0056] As shown in Figure 4 and Figure 5 As shown, optionally, the upper traction roller 3 is provided with a fifth gear 15 coaxially arranged with the upper traction roller 3, and the lower traction roller 2 is provided with a sixth gear 16 coaxially arranged with the lower traction roller 2. The fifth gear 15 and the sixth gear 16 are meshed with each other. The lower traction roller 2 is provided with a chain transmission mechanism 17, and the chain transmission mechanism 17 is connected with a third driving motor 18. The chain transmission mechanism 17 includes a driving sprocket coaxially arranged with the output shaft of the third driving motor 18, a driven sprocket coaxially arranged with the lower traction roller 2, and a transmission chain 171 wound around the driving sprocket and the driven sprocket. By using the chain transmission mechanism 17, the third driving motor 18 can drive the lower traction roller 2, thereby driving the sixth gear 16 to rotate. Since the fifth gear 15 and the sixth gear 16 are meshed with each other, the sixth gear 16 can drive the fifth gear 15, so that the upper traction roller 3 rotates towards the direction in which the resin tile base material 11 is tractioned.
[0057] As Figure 7 and Figure 8 The utility model also provides a high bright resin tile, the high bright resin tile is produced by the traction device of resin tile production, and the high bright resin tile comprises ASA layer 19, resin tile base material 11 layer and PET film layer 21 from top to bottom, or comprises ASA layer 19, resin tile base material 11 layer and PVC film layer 21 from top to bottom. By using the characteristics of high transparency, smooth surface and high flatness of PET film and PVC film, after the PET film or PVC film is compounded at the bottom of resin tile base material 11 layer, when light is incident on the resin tile, the light can produce mirror reflection, so that the bottom of resin tile base material 11 layer has high bright effect. Since high fineness calcium powder is not used, the production cost of high bright resin tile can be reduced, and the high bright resin tile is beneficial to enterprise promotion.
[0058] Optionally, the resin tile base material 11 layer comprises PVC surface layer 201, PVC middle layer 202 and PVC bottom layer 203 from top to bottom. The resin tile base material 11 layer provided by the utility model can be composed of PVC bottom layer 203, PVC middle layer 202 and PVC surface layer 201, wherein PVC bottom layer 203 and PVC surface layer 201 have good aging resistance, ensure the integrity of the surface layer and the bottom layer structure of the resin tile, maintain the protection and support of PVC surface layer 201 and PVC bottom layer 203 on PVC middle layer 202, and guarantee the mechanical properties and mechanical stability of the whole resin tile structure. Moreover, the resistance of PVC surface layer 201 to natural environmental factors such as rain, wind erosion and temperature change can be enhanced, the discoloration, pulverization and cracking of PVC surface layer 201 caused by long-term exposure to outdoor environment can be reduced, and the resin tile can better adapt to different climate conditions. PVC middle layer 202, as the key part connecting PVC bottom layer 203 and PVC surface layer 201, has higher support strength, not only makes the resin tile effectively bear its own weight and the weight of possible accumulated snow and dust, but also makes the resin tile not appear delamination and cracking when subjected to various external force impacts.
[0059] The above only describes the preferred embodiments of the utility model, and does not limit the patent range of the utility model, and any equivalent structural transformation made according to the utility model specification and the drawings, or direct / indirect application in other related technical fields is included in the patent protection range of the utility model.
Claims
1. A traction device for producing resin tiles, comprising a traction conveyor frame (1), a lower traction roller (2) rotatably disposed on the traction conveyor frame (1), and an upper traction roller (3) rotatably disposed on the traction conveyor frame (1) and correspondingly located above the lower traction roller (2); characterized in that, It also includes a bottom film unwinding assembly (4), which is located below the lower traction roller (2) and upstream of the input end of the traction conveyor (1); a PVC film or PET film to be unwound between the upper traction roller (3) and the lower traction roller (2) is placed on the bottom film unwinding assembly (4).
2. The traction device for producing resin tiles according to claim 1, characterized in that, The bottom film unwinding assembly (4) includes at least one film unwinding mechanism (41); the film unwinding mechanism (41) includes two first support frames (411) arranged opposite to each other, a first air shaft (412) rotatably mounted on the two first support frames (411), a first drive motor (413) fixed on one of the first support frames (411), a first gear (414) that is drively connected to the output shaft of the first drive motor (413), and a second gear (415) mounted on the first air shaft (412) and meshing with the first gear (414).
3. The traction device for producing resin tiles according to claim 2, characterized in that, It also includes an ASA film unwinding assembly (5); the ASA film unwinding assembly (5) is located on top of the traction conveyor (1).
4. The traction device for producing resin tiles according to claim 3, characterized in that, The ASA film unwinding assembly (5) includes at least one ASA film unwinding mechanism (51); the ASA film unwinding mechanism (51) includes two second support frames (511) arranged opposite to each other, a second air shaft (512) rotatably mounted on the two second support frames (511), a second drive motor (513) fixed on one of the second support frames (511), a third gear (514) that is drively connected to the output shaft of the second drive motor (513), and a fourth gear (515) mounted on the second air shaft (512) and meshing with the third gear (514).
5. The traction device for producing resin tiles according to claim 4, characterized in that, Both the ASA film unwinding mechanism (51) and the film unwinding mechanism (41) further include a roller frame (516); the roller frame (516) is located on the top of the second support frame (511) or the first support frame (411), and the roller frame (516) rotatably supports the first air shaft (412) and the second air shaft (512).
6. The traction device for producing resin tiles according to claim 4, characterized in that, The traction conveyor (1) is rotatably provided with a first tensioning roller (6), a first traction support roller (9) and a second traction support roller (10) on one side of the input end. The top of the traction conveyor (1) is rotatably provided with a second tensioning roller (7). The first tensioning roller (6) and the second tensioning roller (7) are used to tension the ASA film (8) traction between the upper traction roller (3) and the lower traction roller (2). The first traction support roller (9) is located below the first tensioning roller (6) and is used to support the resin tile substrate (11) traction between the upper traction roller (3) and the lower traction roller (2). The second traction support roller (10) is located below the first traction support roller (9) and is used to support the PVC film or PET film (12) traction between the upper traction roller (3) and the lower traction roller (2).
7. The traction device for producing resin tiles according to claim 1, characterized in that, The upper traction roller (3) is provided with bearing seats (13) at both ends. The bearing seats (13) are movably connected to the traction conveyor frame (1) in the vertical direction. The traction conveyor frame (1) is provided with a cylinder (14) that is connected to the upper end of the bearing seat (13) for transmission.
8. The traction device for producing resin tiles according to claim 1, characterized in that, The upper traction roller (3) is provided with a fifth gear (15) coaxially arranged with the upper traction roller (3), and the lower traction roller (2) is provided with a sixth gear (16) coaxially arranged with the lower traction roller (2). The fifth gear (15) and the sixth gear (16) mesh with each other. The lower traction roller (2) is provided with a chain drive mechanism (17), and the chain drive mechanism (17) is connected to a third drive motor (18).
9. A high-gloss resin tile, characterized in that, The high-gloss resin tile is produced by the traction device for producing resin tiles according to any one of claims 1-8, and the high-gloss resin tile comprises, from top to bottom, an ASA layer (19), a resin tile substrate layer (20), and a PET film layer, or from top to bottom, an ASA layer (19), a resin tile substrate layer (20), and a PVC film layer.
10. The high-gloss resin tile according to claim 9, characterized in that, The resin tile substrate layer (20) consists of a PVC top layer (201), a PVC middle layer (202), and a PVC bottom layer (203) from top to bottom.