Microfiber leather compounding machine
Patent Information
- Application Number
- CN202522136428.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-10
- Publication Date
- 2026-09-15
- Estimated Expiration
- 2035-10-10
AI Technical Summary
[0003]本实用新型的目的在于提供一种超纤皮革复合机,以解决上述背景技术中提出复合操作时胶水进入胶水盒的内部长时间存储时,不便于对胶水加热处理,胶水盒的内部胶液易产生沉淀,使得复合操作时涂胶不均匀,降低复合效果,同时胶液排出内部残留至较少时,对于底端的较少胶液不便于引料输送排出,使得排出不干净的问题
通过设计加热均匀混合机构,可以在胶水盒的内部通过电加热板对胶水盒的内部胶液加热操作,排出时由底端的引料槽引入胶液进入内部,再次将搅拌输送轴转动处于引料槽的内部输送并对其胶液混合输送操作,再次将引料槽内部胶液输送至引料槽的端部由辅助连接管进入吸管的内部排出,长时间操作时不易引起胶液沉淀与排出不干净的现象,提高复合机主体在超纤皮革复合操作时对胶水盒内部加热与引料输送的便利性。
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Figure CN224752093U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of composite machine technology, specifically relating to a microfiber leather composite machine. Background Technology
[0002] Existing multifunction printers, Existing laminating machines, when laminating microfiber leather, and when the glue is stored inside the glue tank for a long time during the laminating process, make it inconvenient to heat the glue. The glue inside the glue tank is prone to sedimentation, resulting in uneven glue application and reduced laminating effect. At the same time, when the glue residue inside is discharged to a small amount, it is not easy to guide and transport the remaining glue at the bottom, resulting in incomplete discharge. If not used for a long time, the glue will dry and adhere inside, affecting the convenience of heating the glue tank and guiding and transporting the glue during the microfiber leather laminating process. To address these issues, this utility model proposes a microfiber leather laminating machine. Utility Model Content
[0003] The purpose of this utility model is to provide a microfiber leather laminating machine to solve the problems mentioned in the background art, such as the difficulty in heating the glue when it is stored in the glue box for a long time during the laminating operation, the easy precipitation of glue in the glue box, the uneven application of glue during the laminating operation, the reduction of the laminating effect, and the difficulty in conveying and discharging the small amount of glue at the bottom when it is discharged to a small amount, resulting in incomplete discharge.
[0004] To achieve the above objectives, this utility model provides the following technical solution: a microfiber leather laminating machine, comprising a laminating machine body, the laminating machine body including a laminating box, one end of the laminating box having two inlets, a rotating shaft mounted on the surface of the inlets via bearings, a main motor mounted at the end of the rotating shaft, leather material wound around the outer surface of the rotating shaft, the leather material penetrating the interior of the inlets, a glue box fixed to one end of the interior of the laminating box by bolts, and the laminating machine body also having: A heating and uniform mixing mechanism is provided, and the heating and uniform mixing mechanism includes a material feeding assembly disposed at the bottom of the glue box, the material feeding assembly is provided with a conveying and mixing assembly inside, and a heating assembly is disposed at the bottom of the glue box; A cooling mechanism, comprising mounting components disposed on the upper and lower surfaces of one end of the interior of the composite housing, wherein a blower cooling component is disposed inside the mounting components.
[0005] Preferably, a glue pump is fixed to one end of the upper surface of the glue box, a suction tube is provided at one end of the inside of the glue box, the top end of the suction tube is sealed and fixed to the surface of the glue pump, a discharge pipe is fixed to the upper surface of the glue pump, a glue application roller is installed on one side of the glue box through a bearing, a spray pipe is fixed to the end of the discharge pipe inside the glue application roller, a nozzle is equidistantly sealed and installed on the side of the spray pipe, and an outlet is opened at the other end of the composite box.
[0006] Preferably, the interior sides of the composite box are each equipped with a mounting bracket II via two cylinders, and the interior of the mounting bracket II is equipped with a pressure roller via a bearing.
[0007] Preferably, the feeding assembly includes a feeding groove located at the middle of the bottom of the glue box, and an auxiliary connecting pipe is fixedly installed at the bottom of the glue pump, with the bottom of the auxiliary connecting pipe extending into one end of the feeding groove.
[0008] Preferably, the conveying and mixing assembly includes a drive shaft rotatably connected inside the feed trough, an auxiliary motor is mounted on the end of the drive shaft located on the end surface of the glue box, and a stirring and conveying shaft is fixed on the outer surface of the drive shaft.
[0009] Preferably, the heating assembly includes an electric heating plate fixedly installed at the bottom of the glue box, and the surface of the electric heating plate is in contact with the bottom of the glue box.
[0010] Preferably, the installation assembly includes two mounting brackets, one above the other, which are fixedly installed inside the composite housing by bolts. An installation box is fixedly installed at the end connection of the two mounting brackets by bolts, and air cavities are formed at both ends of the installation box.
[0011] Preferably, the air-blowing cooling assembly includes a fan fixedly mounted on both ends of the mounting box by bolts, an air-guiding inclined plate is fixed at equal intervals at the top of the inside of the air cavity, and an exhaust hole is opened at equal intervals at the bottom of the inside of the air cavity.
[0012] Compared with the prior art, the beneficial effects of this utility model are: By designing a uniform heating and mixing mechanism, the glue liquid inside the glue box can be heated by an electric heating plate inside the glue box. When discharging, the glue liquid is introduced into the box through the bottom feed trough. The stirring and conveying shaft is rotated again to transport and mix the glue liquid inside the feed trough. The glue liquid inside the feed trough is then transported to the end of the feed trough and discharged through the auxiliary connecting pipe into the suction pipe. During long-term operation, it is less likely to cause glue sedimentation or incomplete discharge, thus improving the convenience of heating the glue box and feeding the glue liquid during microfiber leather lamination operations. Attached Figure Description
[0013] Figure 1This is a schematic diagram of the structure of this utility model; Figure 2 This is a cross-sectional structural diagram of the present invention; Figure 3 This utility model Figure 2 Enlarged structural diagram of section A; Figure 4 This is a cross-sectional view of the glue box, feed trough and mixing conveyor shaft of this utility model; Figure 5 This utility model Figure 2 Enlarged structural diagram of section B; Figure 6 This is a schematic diagram of the mounting box, exhaust hole, and air cavity structure of this utility model; In the diagram: 100, main body of the laminating machine; 101, laminating box; 1011, mounting bracket one; 1012, mounting box; 1013, fan; 1014, discharge port; 1015, air intake plate; 1016, air cavity; 102, inlet; 103, rotating shaft; 104, leather material body; 105, glue box; 1051, auxiliary motor; 1052, electric heating plate; 1053, material feed trough; 1054, drive shaft; 1055, mixing and conveying shaft; 1056, auxiliary connecting pipe; 106, pressure roller; 107, mounting bracket two; 108, outlet; 109, suction pipe; 1091, glue pump; 1092, discharge pipe; 1093, spray pipe; 1094, nozzle; 1095, glue coating roller. Detailed Implementation
[0014] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0015] Please see Figures 1 to 6 This utility model provides a technical solution: a microfiber leather laminating machine, including a laminating machine body 100, the laminating machine body 100 including a laminating box 101, two inlets 102 are opened at one end of the laminating box 101, a rotating shaft 103 is mounted on the surface of the inlet 102 through bearings, a main motor is mounted at the end of the rotating shaft 103, a leather material body 104 is wound on the outer surface of the rotating shaft 103, the leather material body 104 penetrates the interior of the inlet 102, and a glue box 105 is fixed to one end of the interior of the laminating box 101 by bolts. During the laminating process, the rotating shaft 103 can be rotated to open the leather material body 104 and enter the interior of the laminating box 101 through the inlet 102; A glue pump 1091 is fixed to one end of the upper surface of the glue container 105. A suction tube 109 is provided inside the glue container 105 at one end. The top end of the suction tube 109 is sealed and fixed to the surface of the glue pump 1091. A discharge pipe 1092 is fixed to the upper surface of the glue pump 1091. A glue applicator roller 1095 is mounted on one side of the glue container 105 via a bearing. A spray pipe 1093 is fixed to the end of the discharge pipe 1092 inside the glue applicator roller 1095. A nozzle 1094 is equidistantly and sealed on the side of the spray pipe 1093 to spray the glue applicator roller 1095. Glue is sprayed onto the surface, and the leather material 104 is moved to the surface of the glue box 105 for glue application. The interior of the composite box 101 has two mounting brackets 107 installed on both sides by two cylinders. The mounting brackets 107 have pressure rollers 106 installed inside by bearings. The other end of the composite box 101 has an outlet 108. After glue application and lamination, the material is conveyed to the connection of the two pressure rollers 106 for pressing and lamination. It is then conveyed to the outside through the outlet 108 and can be wound up by an external winding shaft. The main body 100 of the laminating machine is also equipped with [missing information].
[0016] The heating and uniform mixing mechanism includes a feeding component located at the bottom of the glue box 105. The feeding component has a conveying and mixing component inside, and a heating component is located at the bottom of the glue box 105. During the bonding operation, the heating and uniform mixing mechanism heats and mixes the glue inside the glue box 105 and then conveys and discharges it, effectively mixing it for bonding and bonding processing.
[0017] In order to facilitate the discharge of the internally injected glue to the middle position through the feeding assembly, in this embodiment, preferably, the feeding assembly includes a feeding groove 1053 opened at the middle position of the bottom of the glue box 105. An auxiliary connecting pipe 1056 is fixedly installed at the bottom of the glue pump 1091, and the bottom end of the auxiliary connecting pipe 1056 extends to one end of the inner end of the feeding groove 1053. The glue injected inside the glue box 105 can be introduced to the middle position for discharge through the feeding groove 1053, which is convenient for mixing and discharge.
[0018] In order to facilitate the mixing of the internally injected glue and its delivery to the end discharge via the conveying and mixing component, in this embodiment, preferably, the conveying and mixing component includes a drive shaft 1054 rotatably connected inside the feed trough 1053. An auxiliary motor 1051 is mounted on the end surface of the glue box 105 at the end of the drive shaft 1054. A stirring and conveying shaft 1055 is fixed on the outer surface of the drive shaft 1054. The auxiliary motor 1051 can drive the drive shaft 1054 and the stirring and conveying shaft 1055 to rotate, which facilitates the rotation of the stirring and conveying shaft 1055 for mixing and delivery to the end discharge, resulting in cleaner discharge and more uniform compounding.
[0019] In order to facilitate effective bonding and composite use of glue injected into the glue box 105 by means of a heating component, in this embodiment, preferably, the heating component includes an electric heating plate 1052 fixedly installed at the bottom of the glue box 105, and the surface of the electric heating plate 1052 is in contact with the bottom of the glue box 105, so that the electric heating plate 1052 can be heated by electricity to effectively bond the glue box 105 and the glue added inside.
[0020] The cooling mechanism includes a mounting assembly disposed on the upper and lower surfaces of one end inside the composite housing 101. The mounting assembly is equipped with a blower cooling assembly, which can cool the heated microfiber leather after lamination, thus effectively completing the lamination operation.
[0021] To facilitate installation and use, in this embodiment, preferably, the installation component includes two mounting brackets 1011 fixedly installed at one end of the composite housing 101 by bolts. The end connection of the two mounting brackets 1011 is fixedly installed with a mounting box 1012 by bolts. The two ends of the mounting box 1012 form air cavities 1016. After the mounting box 1012 is fixedly installed by the mounting brackets 1011, air is introduced into the air cavity 1016 and then discharged to the outside.
[0022] In order to facilitate the cooling treatment of the composite heated microfiber leather by means of the air blowing cooling assembly, in this embodiment, preferably, the air blowing cooling assembly includes a fan 1013 fixedly installed at both ends of the mounting box 1012 by bolts, an air guiding inclined plate 1015 is fixed at equal distances at the top of the inside of the air cavity 1016, and an exhaust hole 1014 is opened at equal distances at the bottom of the inside of the air cavity 1016. After air enters the inside of the air cavity 1016, it is guided downward by the air guiding inclined plate 1015 into the inside of the exhaust hole 1014, and discharged through the exhaust hole 1014 to the surface of the composite heated microfiber leather for cooling treatment.
[0023] In this utility model, the blower 1013 is model WBTG duct blower, the auxiliary motor 1051 is model 57CM23, and the electric heating plate 1052 is model cast copper 01.
[0024] The working principle and usage process of this utility model are as follows: When using this microfiber leather laminating machine, first, the laminating machine body 100 is stably placed in the desired position. After the laminating machine body 100 is stably placed, the roll of the externally wound leather material 104 is engaged and installed on the outer surface of the rotating shaft 103. The main motor drives the rotating shaft 103 to rotate, opening the leather material 104 and allowing it to enter the interior of the laminating box 101 until the leather material 104 contacts the coating roller 1095. Before contacting the coating roller 1095... The glue pump 1091 operates to draw glue stored in the glue box 105 through the suction pipe 109 until it enters the discharge pipe 1092 and is sprayed onto the surface of the glue coating roller 1095 through the spray pipe 1093 and the nozzle 1094. When the leather material body 104 is conveyed to the surface of the glue coating roller 1095, it is treated with glue. It continues to be conveyed to the connection of the two pressing rollers 106 for pressing and lamination. It is then conveyed to the outside through the outlet 108 and can be wound up by the external winding shaft, thus facilitating the lamination operation of microfiber leather through the laminating machine body 100. Then, when the laminating machine body 100 is in the lamination operation, the glue liquid inside the glue box 105 is heated by the electric heating plate 1052. When the glue liquid is discharged from the glue box 105, it is introduced into the interior through the bottom feed trough 1053. At the same time, the auxiliary motor 1051 rotates, driving the drive shaft 1054 and the stirring and conveying shaft 1055 to rotate and transport the glue liquid inside the feed trough 1053, and mix and transport the glue liquid. The glue liquid inside the feed trough 1053 is transported to the end of the feed trough 1053 and discharged into the suction pipe 109 through the auxiliary connecting pipe 1056. During long-term operation, it is not easy to cause glue liquid sedimentation and incomplete discharge, which improves the convenience of heating the glue box 105 and feeding the glue liquid inside the laminating machine body 100 during the microfiber leather lamination operation. Finally, when the two leather material bodies 104 are fed into and pressed into the interior of the composite box 101, they are discharged from the outlet 108. Before being discharged from the outlet 108, the blower 1013 blows air into the air chamber 1016. When the air enters the air chamber 1016, the air is guided downward by the air guide plate 1015 and discharged into the discharge hole 1014. This facilitates the rapid cooling of the heat generated by the heating and gluing of the leather material body 104 after the composite pressing. It also facilitates the rapid cooling of the adhesive for effective bonding and composite operation, improving the convenience of the composite machine body 100 in cooling and rapid composite operation after microfiber leather composite operation.
[0025] Although embodiments of the present invention have been shown and described (see the detailed description above), it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A microfiber leather laminating machine, comprising a laminating machine body (100), the laminating machine body (100) including a laminating box (101), one end of the laminating box (101) having two inlets (102), a rotating shaft (103) mounted on the surface of the inlet (102) via bearings, a main motor mounted on the end of the rotating shaft (103), a leather material body (104) wound around the outer surface of the rotating shaft (103), the leather material body (104) penetrating the interior of the inlet (102), and a glue box (105) fixed to one end of the interior of the laminating box (101) by bolts, characterized in that: The main body (100) of the composite machine is also provided with: A heating and uniform mixing mechanism, wherein the heating and uniform mixing mechanism includes a feeding assembly disposed at the bottom of the glue box (105), the feeding assembly is provided with a conveying and mixing assembly, and the bottom of the glue box (105) is provided with a heating assembly; The cooling mechanism includes a mounting assembly disposed on the upper and lower surfaces of one end inside the composite housing (101), wherein a blower cooling assembly is disposed inside the mounting assembly.
2. The microfiber leather composite machine according to claim 1, characterized in that: A glue pump (1091) is fixed to one end of the upper surface of the glue box (105). A suction tube (109) is provided inside the glue box (105) at one end. The top end of the suction tube (109) is sealed and fixed to the surface of the glue pump (1091). A discharge pipe (1092) is fixed to the upper surface of the glue pump (1091). A glue roller (1095) is installed on one side of the glue box (105) through a bearing. A spray pipe (1093) is fixed to the end of the discharge pipe (1092) inside the glue roller (1095). A nozzle (1094) is installed at equal intervals on the side of the spray pipe (1093). An outlet (108) is opened at the other end of the composite box (101).
3. The microfiber leather composite machine according to claim 1, characterized in that: The composite box (101) has mounting brackets (107) installed on both sides of its interior via two cylinders. The mounting brackets (107) have pressure rollers (106) installed inside via bearings.
4. The microfiber leather composite machine according to claim 2, characterized in that: The feeding assembly includes a feeding groove (1053) located at the middle of the bottom of the glue box (105). An auxiliary connecting pipe (1056) is fixedly installed at the bottom of the glue pump (1091), and the bottom of the auxiliary connecting pipe (1056) extends to one end of the feeding groove (1053).
5. A microfiber leather composite machine according to claim 4, characterized in that: The conveying and mixing assembly includes a drive shaft (1054) rotatably connected inside the feed trough (1053). An auxiliary motor (1051) is mounted on the end surface of the glue box (105) at the end of the drive shaft (1054). A stirring and conveying shaft (1055) is fixed on the outer surface of the drive shaft (1054).
6. The microfiber leather composite machine according to claim 1, characterized in that: The heating assembly includes an electric heating plate (1052) fixedly installed at the bottom of the glue box (105), and the surface of the electric heating plate (1052) is in contact with the bottom of the glue box (105).
7. The microfiber leather composite machine according to claim 1, characterized in that: The installation assembly includes two mounting brackets (1011) that are fixedly installed at one end of the composite housing (101) by bolts. An installation box (1012) is fixedly installed at the end connection of the two mounting brackets (1011) by bolts. Air cavities (1016) are formed at both ends of the installation box (1012).
8. A microfiber leather composite machine according to claim 7, characterized in that: The air-blowing cooling assembly includes a fan (1013) fixedly mounted on both ends of the mounting box (1012) by bolts. An air-guiding inclined plate (1015) is fixed at equal intervals at the top of the inside of the air cavity (1016). An exhaust hole (1014) is opened at equal intervals at the bottom of the inside of the air cavity (1016).