WO2021128863A1 - 一种纺织品生产用散热式印花装置 - Google Patents

一种纺织品生产用散热式印花装置 Download PDF

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Publication number
WO2021128863A1
WO2021128863A1 PCT/CN2020/108027 CN2020108027W WO2021128863A1 WO 2021128863 A1 WO2021128863 A1 WO 2021128863A1 CN 2020108027 W CN2020108027 W CN 2020108027W WO 2021128863 A1 WO2021128863 A1 WO 2021128863A1
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Prior art keywords
heat
bottom box
plate
dissipating
fixedly connected
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PCT/CN2020/108027
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English (en)
French (fr)
Inventor
刘亚楠
Original Assignee
吴江金芙纺织整理厂
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Application filed by 吴江金芙纺织整理厂 filed Critical 吴江金芙纺织整理厂
Priority to DE212020000127.8U priority Critical patent/DE212020000127U1/de
Publication of WO2021128863A1 publication Critical patent/WO2021128863A1/zh

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41FPRINTING MACHINES OR PRESSES
    • B41F13/00Common details of rotary presses or machines
    • B41F13/08Cylinders
    • B41F13/22Means for cooling or heating forme or impression cylinders
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41FPRINTING MACHINES OR PRESSES
    • B41F23/00Devices for treating the surfaces of sheets, webs, or other articles in connection with printing
    • B41F23/04Devices for treating the surfaces of sheets, webs, or other articles in connection with printing by heat drying, by cooling, by applying powders
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41JTYPEWRITERS; SELECTIVE PRINTING MECHANISMS, i.e. MECHANISMS PRINTING OTHERWISE THAN FROM A FORME; CORRECTION OF TYPOGRAPHICAL ERRORS
    • B41J29/00Details of, or accessories for, typewriters or selective printing mechanisms not otherwise provided for
    • B41J29/377Cooling or ventilating arrangements

Definitions

  • the utility model relates to the technical field of printing, in particular to a heat-dissipating printing device for textile production.
  • Fabric is a product made by processing and weaving textile fibers. It is divided into two categories: woven fabrics and knitted fabrics. China is one of the earliest countries in the world to produce textiles. The main production areas are Puyuan, Zhejiang and Qinghe, Hebei. In the production process of textile fabrics, the printing process is often required. During the printing process, a lot of heat will be generated, and over time, more heat will accumulate inside the equipment, which will affect the use of the equipment and reduce In order to improve the service life and poor safety of the equipment, it is necessary to design a heat-dissipating printing device for textile production to solve the above problems.
  • the present utility model proposes a heat-dissipating printing device for textile production, which improves heat dissipation efficiency and has good safety.
  • the utility model provides a heat-dissipating printing device for textile production, which includes a machine body, a heat-conducting working plate, a bottom box, a heat insulation board, a supporting partition, a heat dissipation plate and a serpentine cooling pipe.
  • the bottom end of the machine body is fixedly connected to the bottom box and the bottom box.
  • the inner top is fixedly connected with the heat-conducting working plate and the heat-conducting working plate extends into the body.
  • the inside of the bottom box is fixedly connected with the horizontally arranged heat insulation plate.
  • the middle position of the lower end of the heat insulation plate is fixedly connected to the support partition and the support partition is fixed at the bottom of the bottom box.
  • At least two radiating plates are equidistantly arranged at the upper end of the heat insulation board, the lower end of the heat-conducting working plate is attached to the serpentine cooling pipe, and at least two radiating plates are arranged at the lower end of the serpentine cooling pipe.
  • an inlet is opened at the lower edge of the left end of the machine body, and the inlet is connected to the textile conveyor.
  • an outlet is provided at the lower edge of the right end of the machine body, and the lower side of the right end of the outlet is connected with a guide plate and the guide plate is fixed at the right end of the bottom box.
  • the front and rear sides of the connecting position of the bottom box and the guide plate are fixedly connected to the reinforcing plate.
  • At the upper end of the heat insulation board at least two convex grooves are equally spaced at the upper end of the heat insulation board, the lower end of the heat dissipation plate is fixedly connected to the plug-in board and the plug-in board is in the convex groove, and the upper side of the back end of the bottom box is rotatably connected to the double-opening door and the double-opening door.
  • the support partition At the upper end of the support partition.
  • a plurality of through holes are evenly provided on the heat dissipation plate, the middle position of the upper left end of the bottom box is fixedly connected with a heat dissipation fan, the upper right end of the bottom box is provided with ventilation holes and the ventilation holes are located on the lower side of the guide plate.
  • a protective pad is provided on the upper end of the heat dissipation plate and the protective pad is located at the lower end of the serpentine cooling pipe, and the upper end of the protective pad is provided with a plurality of arc-shaped grooves for fitting the upper pipe of the serpentine cooling pipe.
  • the inner bottom of the bottom box is fixedly connected to the water pump and the water pump is located on the left side of the support partition.
  • the water pump is connected to the inlet of the serpentine cooling pipe through a connecting pipe.
  • the outlet of the serpentine cooling pipe is connected to the bottom box through a water pipe and the water pipe is located Support the right side of the partition.
  • the heat generated during the printing work will be conducted to the heat conduction work plate, at this time, the heat dissipation plate will dissipate the heat on the heat conduction work plate to realize the heat dissipation function.
  • the water can also be transported to the serpentine cooling pipe through the water pump. In the process of flowing in the serpentine cooling pipe, the water will exchange heat with the heat on the heat-conducting working plate, which further realizes the heat dissipation function, improves the heat dissipation efficiency, and has good safety.
  • the heat dissipation plate can be quickly disassembled and assembled, which is convenient for maintenance and replacement.
  • Figure 1 is a schematic structural diagram of a heat-dissipating printing device for textile production proposed by the utility model.
  • Figure 2 is a schematic diagram of the middle heat insulation board of a heat-dissipating printing device for textile production proposed by the utility model.
  • Figure 3 is a schematic diagram of a heat dissipation plate in a heat dissipation printing device for textile production proposed by the utility model.
  • Fig. 4 is a schematic diagram of a serpentine cooling pipe in a heat-dissipating printing device for textile production proposed by the utility model.
  • a heat-dissipating printing device for textile production and a heat-dissipating printing device for textile production proposed by this utility model include a body 1, a heat-conducting working plate 2, a bottom box 3, and a heat insulation board 4 , Supporting partition 5, radiating plate 6 and serpentine cooling tube 7, the lower end of the body 1 is fixedly connected to the bottom box 3, the top of the bottom box 3 is fixedly connected to the heat conduction work plate 2 and the heat conduction work plate 2 extends into the body 1, the bottom box 3
  • the inner part is fixedly connected to the horizontally arranged heat insulation board 4, the lower end of the heat insulation board 4 is fixedly connected to the support partition 5 and the support partition 5 is fixed at the inner bottom end of the bottom box 3.
  • At least two heat sinks are installed at the upper end of the heat shield 4 at equal intervals
  • the lower end of the plate 6 and the heat-conducting working plate 2 is attached to the serpentine cooling pipe 7 and at least two heat dissipation plates 6 are provided at the lower end of the serpentine cooling pipe 7.
  • the bottom box 3, the heat insulation board 4 and the supporting partition will form two cavities.
  • the left cavity is used to store water
  • the right cavity is used to collect heat exchange water.
  • the textile cloth can be conveyed into the body 1 through the conveyor, so that the textile cloth is printed in the body 1, and the heat generated during the work will be transferred to the heat-conducting work plate 2.
  • the heat sink 6 will be on the heat-conducting work plate 2.
  • the heat is dissipated to realize the heat dissipation function.
  • water can be transported into the serpentine cooling pipe 7 through a water pump. When the water flows in the serpentine cooling pipe 7, the water will exchange heat with the heat on the heat conduction working plate 2. , To further realize the heat dissipation function, improve the heat dissipation efficiency, and have good safety.
  • an inlet is opened at the lower edge of the left end of the body 1, and the inlet is connected to a textile conveyor.
  • the woven cloth can be conveyed into the body 1.
  • an outlet 11 is provided at the lower edge of the right end of the body 1, the lower right end of the outlet 11 is connected to a guide plate 12 and the guide plate 12 is fixed at the right end of the bottom box 3.
  • the printed textile fabric will be conveyed out of the machine body 1 through the outlet 11 and guided and collected by the guide plate 12.
  • the reinforcing plate 13 is fixedly connected to the front and rear sides of the connection position of the bottom box 3 and the guide plate 12.
  • connection strength between the bottom box 3 and the guide plate 12 is increased.
  • At least two convex grooves 41 are equally spaced at the upper end of the heat insulation board 4, and the lower end of the heat dissipation plate 6 is fixedly connected to the plug-in board 61 and the plug-in board 61 is in the convex groove 41.
  • the bottom box 3 The upper side of the rear end is pivotally connected to the double-opening door, and the double-opening door is at the upper end of the supporting partition 5.
  • the double door can be opened, and the damaged heat dissipation plate 6 can be pulled back, which will pull the plug-in board 61 out of the convex groove 41, and then dissipate the new heat.
  • the plug-in board 61 of the board 6 is inserted into the convex groove 41 to realize the quick disassembly and assembly of the heat dissipation board 6, which is convenient for maintenance and replacement.
  • a plurality of through holes 62 are evenly opened on the heat sink 6, the upper middle of the left end of the bottom box 3 is fixedly connected with a heat dissipation fan, the upper right end of the bottom box 3 is provided with vent holes and the vent holes are in the guide plate 12 Down side.
  • the air on the upper side of the heat insulation plate 4 in the bottom box 3 can be exhausted by the heat dissipation fan, and the outside air enters the bottom box 3 through the ventilation holes to assist the heat dissipation function of the heat dissipation plate 6, and the through holes 62 are used For assisting gas flow.
  • a protective pad 63 is provided on the upper end of the heat sink 6 and the protective pad 63 is located at the lower end of the serpentine cooling pipe 7, and the upper end of the protective pad 63 is provided with a plurality of arcs for fitting the upper pipe of the serpentine cooling pipe 7. ⁇ 64.
  • the inner bottom of the bottom box 3 is fixedly connected with a water pump and the water pump is located on the left side of the supporting partition 5, the water pump is connected to the inlet of the serpentine cooling pipe 7 through a connecting pipe, and the outlet of the serpentine cooling pipe 7 11 communicates with the bottom tank 3 through a water pipe, and the water pipe is on the right side of the support partition 5.
  • the water in the storage cavity can be transported to the serpentine cooling pipe 7 through a water pump, and heat exchange is performed in the serpentine cooling pipe 7, and after completion, the water can be transported to the collection cavity through a water pipe.

Abstract

一种纺织品生产用散热式印花装置,包括机体(1)、导热工作板(2)、底箱(3)、隔热板(4)、支撑隔板(5)、散热板(6)以及蛇形冷却管(7),机体(1)下端固定连接底箱(3),底箱(3)内部顶端固定连接导热工作板(2)且导热工作板(2)延伸入机体(1)内,底箱(3)内部固定连接水平布置的隔热板(4),隔热板(4)下端中间位置固定连接支撑隔板(5)且支撑隔板(5)固定在底箱(3)内部底端,隔热板(4)上端等距设置至少两个散热板(6),导热工作板(2)下端贴合蛇形冷却管(7)且蛇形冷却管(7)下端设置至少两个散热板(6),该设计提高散热效率,安全性好。

Description

一种纺织品生产用散热式印花装置 技术领域
本实用新型涉及印花技术领域,尤其涉及一种纺织品生产用散热式印花装置。
背景技术
织品是纺织纤维经过加工织造而成的一种产品,分为梭织布和针织布两大类,中国是世界上最早生产纺织品的国家之一,主要产地是浙江濮院、河北清河等地,在纺织布在生产过程中,常需要进行印花工序,在印花工作过程中,会产生很大的热量,且随着时间的推移,设备内部会积累更多的热量,从而影响设备的使用,减少了设备的使用寿命,安全性差,需要设计一种纺织品生产用散热式印花装置来解决上述问题。
实用新型内容
(一)实用新型目的
为解决背景技术中存在的技术问题,本实用新型提出一种纺织品生产用散热式印花装置,提高散热效率,安全性好。
(二)技术方案
本实用新型提供了一种纺织品生产用散热式印花装置,包括机体、导热工作板、底箱、隔热板、支撑隔板、散热板以及蛇形冷却管,机体下端固定连接底箱,底箱内部顶端固定连接导热工作板且导热工作板延伸入机体内,底箱内部固定连接水平布置的隔热板,隔热板下端中间位置固定连接支撑隔板且支撑隔板固定在底箱内部底端,隔热板上端等距设置至少两个散热板,导热工作板下端贴合蛇形冷却管且蛇形冷却管下端设置至少两个散热板。
优选的,机体左端下侧边缘位置开设进口且进口与纺织布输送机连接。
优选的,机体右端下侧边缘位置开设出口,出口右端下侧连接导板且导板固定在底箱右端。
优选的,底箱与导板连接位置前后两侧均固定连接加强板。
优选的,隔热板上端等距开设至少两个凸型凹槽,散热板下端固定连接插板且插板处在凸型凹槽内,底箱后端上侧转动连接双开门且双开门处在支撑隔板上端。
优选的,散热板上均匀开设若干个通孔,底箱左端上侧中间位置固定连接散热风机,底箱右端上侧开设通风孔且通风孔处在导板下侧。
优选的,散热板上端设置保护垫且保护垫处在蛇形冷却管下端,保护垫上端开设若干个用于贴合蛇形冷却管上管道的弧形槽。
优选的,底箱内部底端固定连接水泵且水泵处在支撑隔板左侧,水泵通过连接管与蛇形冷却管的进口连接,蛇形冷却管的出口通过水管与底箱连通且水管处在支撑隔板右侧。
与现有技术相比,本实用新型的上述技术方案具有如下有益的技术效果:
1、在印花工作产生的热量会传导到导热工作板上,此时散热板会对导热工作板上的热量进行散热,实现散热功能,另外也能通过水泵将水输送到蛇形冷却管内,水在蛇形冷却管内流动过程中,会使水与导热工作板上热量进行热交换,进一步实现散热功能,提高散热效率,安全性好。
2、当某个散热板出现损坏时,能打开双开门,再将损坏散热板向后拉动,会使插板从凸型凹槽内拉出,再将新的散热板的插板插入凸型凹槽内,实现散热板的快速拆装,便于维护和更换。
附图说明
图1为本实用新型提出的一种纺织品生产用散热式印花装置的结构示意图。
图2为本实用新型提出的一种纺织品生产用散热式印花装置的中隔热板示意图。
图3为本实用新型提出的一种纺织品生产用散热式印花装置中散热板示意图。
图4为本实用新型提出的一种纺织品生产用散热式印花装置中蛇形冷却管的示意图。
附图标记:1、机体;2、导热工作板;3、底箱;4、隔热板;5、支撑隔板;6、散热板;7、蛇形冷却管;11、出口;12、导板;13、加强板;41、凸型凹槽;61、插板;62、通孔;63、保护垫;64、弧形槽。
具体实施方式
为使本实用新型的目的、技术方案和优点更加清楚明了,下面结合具体实施方式并参照附图,对本实用新型进一步详细说明。应该理解,这些描述只是示例性的,而并非要限制本实用新型的范围。此外,在以下说明中,省略了对公知结构和技术的描述,以避免不必要地混淆本实用新型的概念。
如图1-4所示,本实用新型提出的一种纺织品生产用散热式印花装置,一种纺织品生产用散热式印花装置,包括机体1、导热工作板2、底箱3、隔热板4、支撑隔板5、散热板6以及蛇形冷却管7,机体1下端固定连接底箱3,底箱3内部顶端固定连接导热工作板2且导热工作板2延伸入机体1内,底箱3内部固定连接水平布置的隔热板4,隔热板4下端中间位置固定连接支撑隔板5且支撑隔板5固定在底箱3内部底端,隔热板4上端等距设置至少两个散热板6,导热工作板2下端贴合蛇形冷却管7且蛇形冷却管7下端设置至少两个散热板6。
本实用新型中,底箱3、隔热板4以及支持隔板会形成两个腔体,左侧腔体 用于储存水,右侧腔体用于收集换热的水,工作时,先将纺织布能通过输送机输送到机体1内,进而使纺织布在机体1内进行印花,并在工作产生的热量会传导到导热工作板2上,此时散热板6会对导热工作板2上的热量进行散热,实现散热功能,另外也能通过水泵将水输送到蛇形冷却管7内,水在蛇形冷却管7内流动过程中,会使水与导热工作板2上热量进行热交换,进一步实现散热功能,提高散热效率,安全性好。
在一个可选的实施例中,机体1左端下侧边缘位置开设进口且进口与纺织布输送机连接。
需要说明的是,实现将纺织布输送到机体1内。
在一个可选的实施例中,机体1右端下侧边缘位置开设出口11,出口11右端下侧连接导板12且导板12固定在底箱3右端。
需要说明的是,印花后的纺织布会通过出口11从机体1内输送出,并通过导板12进行引导收集。
在一个可选的实施例中,底箱3与导板12连接位置前后两侧均固定连接加强板13。
需要说明的是,增加底箱3与导板12的连接强度。
在一个可选的实施例中,隔热板4上端等距开设至少两个凸型凹槽41,散热板6下端固定连接插板61且插板61处在凸型凹槽41内,底箱3后端上侧转动连接双开门且双开门处在支撑隔板5上端。
需要说明的是,当某个散热板6出现损坏时,能打开双开门,再将损坏散热板6向后拉动,会使插板61从凸型凹槽41内拉出,再将新的散热板6的插板61插入凸型凹槽41内,实现散热板6的快速拆装,便于维护和更换。
在一个可选的实施例中,散热板6上均匀开设若干个通孔62,底箱3左端 上侧中间位置固定连接散热风机,底箱3右端上侧开设通风孔且通风孔处在导板12下侧。
需要说明的是,能通过散热风机将底箱3内隔热板4上侧气体排出,另为外界空气通过通风孔进入底箱3内,用于辅助散热板6散热功能,此外通孔62用于辅助气体流动。
在一个可选的实施例中,散热板6上端设置保护垫63且保护垫63处在蛇形冷却管7下端,保护垫63上端开设若干个用于贴合蛇形冷却管7上管道的弧形槽64。
需要说明的是,实现对蛇形冷却管7进行保护。
在一个可选的实施例中,底箱3内部底端固定连接水泵且水泵处在支撑隔板5左侧,水泵通过连接管与蛇形冷却管7的进口连接,蛇形冷却管7的出口11通过水管与底箱3连通且水管处在支撑隔板5右侧。
需要说明的是,能通过水泵将储存腔内水输送到蛇形冷却管7内,并在蛇形冷却管7内进行换热,完成后通过水管输送到收集腔。
应当理解的是,本实用新型的上述具体实施方式仅仅用于示例性说明或解释本实用新型的原理,而不构成对本实用新型的限制。因此,在不偏离本实用新型的精神和范围的情况下所做的任何修改、等同替换、改进等,均应包含在本实用新型的保护范围之内。此外,本实用新型所附权利要求旨在涵盖落入所附权利要求范围和边界、或者这种范围和边界的等同形式内的全部变化和修改例。

Claims (8)

  1. 一种纺织品生产用散热式印花装置,其特征在于,包括机体(1)、导热工作板(2)、底箱(3)、隔热板(4)、支撑隔板(5)、散热板(6)以及蛇形冷却管(7);
    机体(1)下端固定连接底箱(3),底箱(3)内部顶端固定连接导热工作板(2)且导热工作板(2)延伸入机体(1)内,底箱(3)内部固定连接水平布置的隔热板(4),隔热板(4)下端中间位置固定连接支撑隔板(5)且支撑隔板(5)固定在底箱(3)内部底端,隔热板(4)上端等距设置至少两个散热板(6),导热工作板(2)下端贴合蛇形冷却管(7)且蛇形冷却管(7)下端设置至少两个散热板(6)。
  2. 根据权利要求1所述的一种纺织品生产用散热式印花装置,其特征在于,机体(1)左端下侧边缘位置开设进口且进口与纺织布输送机连接。
  3. 根据权利要求1所述的一种纺织品生产用散热式印花装置,其特征在于,机体(1)右端下侧边缘位置开设出口(11),出口(11)右端下侧连接导板(12)且导板(12)固定在底箱(3)右端。
  4. 根据权利要求3所述的一种纺织品生产用散热式印花装置,其特征在于,底箱(3)与导板(12)连接位置前后两侧均固定连接加强板(13)。
  5. 根据权利要求1所述的一种纺织品生产用散热式印花装置,其特征在于,隔热板(4)上端等距开设至少两个凸型凹槽(41),散热板(6)下端固定连接插板(61)且插板(61)处在凸型凹槽(41)内,底箱(3)后端上侧转动连接双开门且双开门处在支撑隔板(5)上端。
  6. 根据权利要求1所述的一种纺织品生产用散热式印花装置,其特征在于,散热板(6)上均匀开设若干个通孔(62),底箱(3)左端上侧中间位置固定连 接散热风机,底箱(3)右端上侧开设通风孔且通风孔处在导板(12)下侧。
  7. 根据权利要求1所述的一种纺织品生产用散热式印花装置,其特征在于,散热板(6)上端设置保护垫(63)且保护垫(63)处在蛇形冷却管(7)下端,保护垫(63)上端开设若干个用于贴合蛇形冷却管(7)上管道的弧形槽(64)。
  8. 根据权利要求1所述的一种纺织品生产用散热式印花装置,其特征在于,底箱(3)内部底端固定连接水泵且水泵处在支撑隔板(5)左侧,水泵通过连接管与蛇形冷却管(7)的进口连接,蛇形冷却管(7)的出口(11)通过水管与底箱(3)连通且水管处在支撑隔板(5)右侧。
PCT/CN2020/108027 2019-12-24 2020-08-08 一种纺织品生产用散热式印花装置 WO2021128863A1 (zh)

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