WO2023024199A1 - 封膜装置 - Google Patents

封膜装置 Download PDF

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Publication number
WO2023024199A1
WO2023024199A1 PCT/CN2021/118898 CN2021118898W WO2023024199A1 WO 2023024199 A1 WO2023024199 A1 WO 2023024199A1 CN 2021118898 W CN2021118898 W CN 2021118898W WO 2023024199 A1 WO2023024199 A1 WO 2023024199A1
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WIPO (PCT)
Prior art keywords
film
sealing
film sealing
conveying
loading
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PCT/CN2021/118898
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English (en)
French (fr)
Inventor
蒋析文
刘霭珊
赵继光
徐浩坚
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广州达安基因股份有限公司
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Publication of WO2023024199A1 publication Critical patent/WO2023024199A1/zh

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B41/00Supplying or feeding container-forming sheets or wrapping material
    • B65B41/12Feeding webs from rolls
    • B65B41/16Feeding webs from rolls by rollers
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B51/00Devices for, or methods of, sealing or securing package folds or closures; Devices for gathering or twisting wrappers, or necks of bags
    • B65B51/10Applying or generating heat or pressure or combinations thereof
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B51/00Devices for, or methods of, sealing or securing package folds or closures; Devices for gathering or twisting wrappers, or necks of bags
    • B65B51/32Cooling, or cooling and pressing, package closures after heat-sealing

Definitions

  • This application relates to the field of biomedicine, in particular to a sealing device.
  • Biological preparations have high requirements for their storage environment during use, and high-temperature environments can easily lead to unstable enzyme activity and impaired activity.
  • cold-chain transportation and low-temperature storage are often used to keep alive.
  • all film sealing instruments or film sealing machines on the market use the principle of heat sealing, raise the temperature to about 150 degrees, and heat seal the aluminum film or tin foil for 3-5 seconds to achieve the sealing effect.
  • the temperature of the mold loading the sample will continue to rise, and the maximum temperature may reach 70 or 80 degrees.
  • the mold is usually made of metal, which has good thermal conductivity and will transfer the temperature to the sealing film. The sample, thus exceeding the maximum tolerance temperature of the sample itself, thus affecting the performance of the sample.
  • the purpose of this application is to provide a film sealing device to avoid damage to the film sealing sample due to temperature rise after the film sealing machine works for a long time.
  • the first aspect of the present application provides a film sealing device, including: a film sealing machine, the film sealing machine is provided with a conveying channel, and a molding device is arranged above the conveying channel, and the pressing The film device is used to move up and down in the conveying channel to carry out the hot pressing of the sealing film; the conveying device is arranged to be able to move through the conveying channel; the loading part is arranged on the conveying On the device; wherein, at least a part of the conveying device is provided with a constant temperature section.
  • the loading portion includes a plurality of loading slots, and thermal conductive glue is filled between the plurality of loading slots.
  • the lower surface of the loading part is a plane, and at least part of the upper surface of the conveying device is in full contact with the lower surface of the loading part.
  • the constant temperature portion includes metal heat sinks.
  • the constant temperature part includes a cooling liquid circulation passage, and the cooling liquid circulation passage is provided in the conveying device.
  • the thermostatic portion includes a cavity operable to contain liquid nitrogen.
  • a heat-conducting glue or a heat-conducting pad is provided between the loading part and the conveying device.
  • both the loading portion and the conveying device are made of thermally conductive material.
  • it also includes an inlet cut film part and an outlet cut film part, the inlet cut film part and the outlet cut film part are respectively arranged on the inlet side and the outlet side of the film sealing machine, wherein The cutting pieces of the inlet cut film part and the outlet cut film part are arranged vertically.
  • a sealing drum configured to supply the sealing film
  • an inlet drum configured to supply the sealing film
  • an inlet drum configured to turn the sealing film to a horizontal orientation
  • an inlet drum and an outlet drum the An outlet drum is configured to receive the membrane supplied by the inlet drum and to flatten the membrane.
  • the embodiment of the present application realizes automatic sealing of the film, and controls the ambient temperature of the sealing film sample by setting a constant temperature part to continuously cool the sealing device, thereby avoiding the temperature rise after the sealing machine works for a long time Damage to sealed samples.
  • Figure 1 shows a schematic structural view of a film sealing device in an embodiment of the present application
  • Fig. 2 shows a structural schematic diagram of a film sealing device with a film to be sealed in an embodiment of the present application
  • FIG. 3 is a schematic structural view of a film sealing device with an object to be sealed after film sealing in an embodiment of the present application.
  • first, second, etc. are used herein to describe various elements, these elements should not be limited by these terms. These terms are only used to distinguish one element from another. For example, the first interface and the second interface are described. Furthermore, as used herein, the singular forms “a”, “an” and “the” are intended to include the plural forms as well, unless the context indicates otherwise. It should be further understood that the terms “comprising”, “comprising” indicate the presence of stated features, steps, operations, elements, components, items, species, and/or groups, but do not exclude one or more other features, steps, operations, The existence, occurrence or addition of an element, component, item, species, and/or group.
  • Relative spatial terms denoting "below”, “upper”, etc. may be used in order to more easily explain the relationship of one device relative to another device illustrated in the drawings. Such terms mean not only the meaning indicated in the drawings but also other meanings or operations of the device in use. For example, if the device in the figures is turned over, elements described as “under” other elements would then be oriented “above” the other elements. Therefore, the exemplary term “under” includes all above and below. The device may be rotated by 90° or at other angles, and relative spatial terms are to be construed accordingly.
  • the film sealing device in the embodiment of the present application includes: a film sealing machine, a loading part, a conveying device and a constant temperature part, wherein the film sealing machine is provided with a conveying channel, and a laminating device is arranged above the conveying channel, and the laminating device is used for lifting in the conveying channel
  • the movement is used to carry out heat pressing of the sealing film
  • the conveying device is set to be able to move through the conveying channel
  • the loading part is arranged on the conveying device; wherein, at least a part of the conveying device is provided with a constant temperature part.
  • the film sealing device of the embodiment of the present application includes: a film sealing machine 1, a loading part 2, a conveying device 3 and a constant temperature part 4. Inside the film sealing machine 1 A conveying channel 10 is provided, and a laminating device 11 is arranged above the conveying channel 10, and the laminating device 11 is used to move up and down in the conveying channel 10 to carry out hot pressing of the sealing film, for example, when the loading part 2 arrives in the conveying channel 10 When at the predetermined position, the laminating device 11 descends to press the sealing film on the opening of the material container in the loading part 2 , and then rises to allow the loading part 2 to leave the conveying channel 10 .
  • the loading part 2 is arranged on the conveying device 3 , and the conveying device 3 is also provided with a constant temperature part 4 .
  • the conveying channel 10 of the film sealing machine 1 includes an inlet side 12 and an outlet side 13.
  • the loading part 2 can be a metal frame with multiple loading slots, and material containers such as eight-tube tubes can be loaded in the loading slots.
  • the metal frame can be made of aluminum or other metal material that conducts heat well.
  • the loading slots can be 8 in each row, and there are 12 rows distributed on the loading part 2 in the longitudinal direction, or other arrangement sizes are also possible.
  • the metal frame can be made of solid material, but the quality of the solid material is relatively heavy.
  • the loading part 2 can be an internal hollow frame, and the multiple loading slots can be filled with heat-conducting glue to facilitate heat conduction.
  • the conveying device 3 is a kind of conveying device.
  • the transfer table 31 can be erected on the transfer track 32 , and the two ends of the transfer table 31 are kept in contact with the transfer track 32 , and move along with the operation of the transfer track 32 . At least a part of the upper surface of the transfer table 31 is in full contact with the lower surface of the loading part 2 to achieve the largest contact area and obtain the best heat conduction effect.
  • a heat-conducting glue or a heat-conducting pad may also be provided between the loading part 2 and the conveying platform 31 to obtain a better heat-conducting effect.
  • the transmission device 3 is made of a metal material with good thermal conductivity, which can be aluminum or other materials. It should be understood that the transmission device may also be in other structural forms, and this is only an example for illustration.
  • the conveying device 3 is also provided with a constant temperature section 4 .
  • the constant temperature unit 4 may be disposed at the bottom of the transfer platform 31 as shown in FIG. 1 .
  • the temperature of the transfer platform 31 can be affected, and further, the temperature of the loading part 2 can be controlled indirectly. Due to the long-term sealing work of the production line, the frame temperature of the loading part 2 will continue to rise.
  • the conveying device 3 and the loading part 2 can always be in a low temperature environment, which also avoids the temperature rise of the frame. High adverse effects on sealing film products.
  • the constant temperature part 4 can be a group of metal heat sinks.
  • the metal cooling fins may be a sheet or plate-like structure arranged on the bottom surface of the transfer table 31, and each metal cooling fin extends vertically downward from the lower surface of the transfer table 31 and is spaced apart from each other to form a gap to facilitate air flow. Cool down.
  • the constant temperature part 4 can also be a cooling liquid circulation passage provided in the conveying device 3, specifically, the cooling liquid circulation passage can be an internal passage provided in the conveying table 31, and the cooling liquid can operably circulate in the internal passage, thereby The transfer platform 31 is dissipated to further cool down the temperature of the loading portion 2 on the transfer platform 31 .
  • the constant temperature part 4 can also be a cavity provided in the transfer table 31 , liquid nitrogen is operatively accommodated in the cavity, so as to dissipate heat from the transfer table 31 and further cool down the temperature of the loading part 2 on the transfer table 31 .
  • the constant temperature part 4 may be a combination of one or more of the above structures.
  • the above-mentioned constant temperature section 4 may also be provided in the conveying track 32 of the conveying device 3 to further improve the heat dissipation efficiency, and details will not be repeated here.
  • the film sealing device also includes a film sealing drum 50, an inlet drum 51 and an outlet drum 52.
  • the sealing drum 50 is used to supply the sealing film 6, the inlet drum 51 turns the sealing film 6 to a horizontal direction, and the outlet drum is used to receive the supply from the inlet drum 51.
  • the sealing film 6 and the sealing film 6 are pulled flat, as shown in Figure 2, each loading groove of the loading part 2 is equipped with a container for material loading, such as eight tubes.
  • the conveying device 3 sends the loading part 2 into the conveying channel 10, and the laminating device 11 lowers to heat-press the sealing film 6 to the nozzle surface of the eight-tube tube for heat sealing, and then raises the laminating device 11 after heat sealing is completed. As shown in FIG.
  • the film sealing device also includes an inlet cutting film member 70 and an outlet cutting film member 71, and the inlet cutting film member 70 and the outlet cutting film member 71 are respectively arranged on the inlet side 12 and the outlet side 13 of the film sealing machine 1,
  • the cutting pieces of the inlet cutting film part 70 and the outlet cutting film part 71 are arranged vertically, and the outlet cutting film part 71 includes a plurality of vertically arranged cutting pieces.
  • the laminating device 11 heat-seals the surface of the nozzle of the eight-tube tube
  • the inlet film cutting member 70 is lowered synchronously to cut the sealing film 6.
  • the conveying device 3 sends out the loaded part 2 with the sealed film.
  • the exit film cutting member 71 on the exit side 13 utilizes a plurality of vertically arranged cutting pieces to divide the sealed container into multiple rows of eight tubes.
  • the film sealing device in the embodiment of the present application realizes automatic film sealing, and the environment temperature of the sealing film sample is controlled by setting a constant temperature part to continuously cool down the film sealing device, so as to avoid the damage of the sealing film sample to the temperature rise of the film sealing machine after working for a long time damage.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Package Closures (AREA)
  • Closing Of Containers (AREA)

Abstract

本申请涉及生物医疗领域,公开了一种封膜装置。本申请中封膜装置包括封膜机,所述封膜机设有传送通道,所述传送通道上方设有压膜装置,所述压膜装置用于在所述传送通道内升降运动以进行封膜的热压;传送装置,所述传送装置设置成能够移动穿过所述传送通道;装载部,所述装载部设于所述传送装置上;其中,所述传送装置的至少一部分设置有恒温部。本申请中封膜装置避免了封膜机长时间工作后温度升高对封膜样品的损害。

Description

封膜装置
相关申请交叉引用
本专利申请要求于2021年8月26日提交的、申请号为2021109876834、发明名称为“封膜装置”的中国专利申请的优先权,上述申请的全文以引用的方式并入本文中。
技术领域
本申请涉及生物医疗领域,尤其涉及封膜装置。
背景技术
生物制剂在使用过程中对其储存环境要求较高,而高温环境容易导致酶活不稳定,活力受损,现有技术中常采用冷链运输、低温存储的方式进行保活,在存储时通常可以分装到八连管、离心管、流式管、96孔板等包材里,再进行封膜密封处理。目前市场上所有的封膜仪或封膜机都是利用热封原理,将温度升高至150度左右,对铝膜或锡箔纸进行热封3-5秒,以达到封膜效果。但是一般生产线因长时间进行封膜工作,会导致装载样品的模具温度持续升高,最高温度可能达到七八十度,而模具通常为金属材质,导热性较好,会把温度传递至封膜样品,从而超过样品的自身最高耐受温度,从而影响样品的性能状况。
发明内容
本申请的目的在于提供一种封膜装置,避免封膜机长时间工作后温度升高对封膜样品的损害。
为解决上述技术问题,本申请的第一方面提供了一种封膜装置,包括:封膜机,所述封膜机设有传送通道,所述传送通道上方设有压模装置,所述压膜装置用于在所述传送通道内升降运动以进行封膜的热压;传送装置,所述传送装置设置成能够移动穿过所述传送通道;装载部,所述装载部设于所述传送装置上;其中,所述传送装置的至少一部分设置有恒温部。
在第一方面的实施例中,所述装载部包括多个装载槽,所述多个装载槽间 填充有导热胶。
在第一方面的实施例中,所述装载部的下表面为平面,所述传送装置的上表面至少具有部分表面与所述装载部的下表面全部贴合。
在第一方面的实施例中,所述恒温部包括金属散热片。
在第一方面的实施例中,所述恒温部包括冷却液循环通路,所述冷却液循环通路设于所述传送装置中。
在第一方面的实施例中,所述恒温部包括可操作地容纳液氮的空腔部。
在第一方面的实施例中,所述装载部和所述传送装置件之间设有导热胶或导热垫。
在第一方面的实施例中,所述装载部和所述传送装置均由导热材料制成。
在第一方面的实施例中,还包括进口切膜件和出口切膜件,所述进口切膜件和所述出口切膜件分别设于所述封膜机的入口侧和出口侧,其中所述进口切膜件和所述出口切膜件的切割片竖向设置。
在第一方面的实施例中,还包括封膜滚筒、入口滚筒和出口滚筒,所述封膜滚筒构造成供应封膜,所述入口滚筒构造成使得所述封膜转向至水平方向,所述出口滚筒构造成接收所述入口滚筒供应的所述封膜并将所述封膜拉平。
本申请实施方式相对于现有技术而言,实现了自动化封膜,并通过设置恒温部对封膜装置持续降温进而控制封膜样品的环境温度,避免了封膜机长时间工作后温度升高对封膜样品的损害。
附图说明
图1显示为本申请一实施例中封膜装置的结构示意图;
图2显示为本申请一实施例中带有待封膜件的封膜装置进行封膜时的结构示意图;
图3展示为本申请一实施例中带有待封膜件的封膜装置进行封膜后的结构示意图。
具体实施例
以下通过特定的具体实例说明本申请的实施方式,本领域技术人员可由本说明书所揭露的内容轻易地了解本申请的其他优点与功效。本申请还可以通过 另外不同的具体实施方式加以实施或应用系统,本说明书中的各项细节也可以基于不同观点与应用系统,在没有背离本申请的精神下进行各种修饰或改变。需说明的是,在不冲突的情况下,本申请中的实施例及实施例中的特征可以相互组合。
下面以附图为参考,针对本申请的实施例进行详细说明,以便本申请所属技术领域的技术人员能够容易地实施。本申请可以以多种不同形态体现,并不限定于此处说明的实施例。
为了明确说明本申请,省略与说明无关的器件,对于通篇说明书中相同或类似的构成要素,赋予了相同的参照符号。
在通篇说明书中,当说某器件与另一器件“连接”时,这不仅包括“直接连接”的情形,也包括在其中间把其它元件置于其间而“间接连接”的情形。另外,当说某种器件“包括”某种构成要素时,只要没有特别相反的记载,则并非将其它构成要素排除在外,而是意味着可以还包括其它构成要素。
当说某器件在另一器件“之上”时,这可以是直接在另一器件之上,但也可以在其之间伴随着其它器件。当对照地说某器件“直接”在另一器件“之上”时,其之间不伴随其它器件。
虽然在一些实例中术语第一、第二等在本文中用来描述各种元件,但是这些元件不应当被这些术语限制。这些术语仅用来将一个元件与另一个元件进行区分。例如,第一接口及第二接口等描述。再者,如同在本文中所使用的,单数形式“一”、“一个”和“该”旨在也包括复数形式,除非上下文中有相反的指示。应当进一步理解,术语“包含”、“包括”表明存在所述的特征、步骤、操作、元件、组件、项目、种类、和/或组,但不排除一个或多个其他特征、步骤、操作、元件、组件、项目、种类、和/或组的存在、出现或添加。此处使用的术语“或”和“和/或”被解释为包括性的,或意味着任一个或任何组合。因此,“A、B或C”或者“A、B和/或C”意味着“以下任一个:A;B;C;A和B;A和C;B和C;A、B和C”。仅当元件、功能、步骤或操作的组合在某些方式下内在地互相排斥时,才会出现该定义的例外。
此处使用的专业术语只用于言及特定实施例,并非意在限定本申请。此处使用的单数形态,只要语句未明确表示出与之相反的意义,那么还包括复数形态。在说明书中使用的“包括”的意义是把特定特性、区域、整数、步骤、作 业、要素及/或成份具体化,并非排除其它特性、区域、整数、步骤、作业、要素及/或成份的存在或附加。
表示“下”、“上”等相对空间的术语可以为了更容易地说明在附图中图示的一器件相对于另一器件的关系而使用。这种术语是指,不仅是在附图中所指的意义,还包括使用中的装置的其它意义或作业。例如,如果翻转附图中的装置,曾说明为在其它器件“下”的某器件则说明为在其它器件“上”。因此,所谓“下”的示例性术语,全部包括上与下方。装置可以旋转90°或其它角度,代表相对空间的术语也据此来解释。
虽然未不同地定义,但包括此处使用的技术术语及科学术语,所有术语均具有与本申请所属技术领域的技术人员一般理解的意义相同的意义。普通使用的字典中定义的术语追加解释为具有与相关技术文献和当前提示的内容相符的意义,只要未进行定义,不得过度解释为理想的或非常公式性的意义。
本申请实施例封膜装置包括:封膜机、装载部、传送装置和恒温部,其中封膜机设有传送通道,传送通道上方设有压膜装置,压膜装置用于在传送通道内升降运动以进行封膜的热压;传送装置设置成能够移动穿过传送通道;装载部设于传送装置上;其中,传送装置的至少一部分设置有恒温部。
下文参照附图描述本申请的第一实施例,如图1所示,本申请实施例封膜装置包括:封膜机1、装载部2、传送装置3和恒温部4,封膜机1内设有传送通道10,传送通道10的上方设有压膜装置11,压膜装置11用于在传送通道10内升降运动以进行封膜的热压,例如在装载部2在传送通道10内到达预定位置时,压膜装置11下降以将封膜压结在装载部2内的物料容器的开口上,之后上升以允许装载部2离开传送通道10。装载部2设于传送装置3上,传送装置3还设置有恒温部4。具体地说,封膜机1的传送通道10包括入口侧12和出口侧13,装载部2可以是一个具有多个装载槽的金属框架,装载槽内可装载例如八连管等物料容器。该金属框架可以由铝制成,也可以由其他导热性良好的金属材料制成。装载槽可以是每行8个,纵向有12行分布在装载部2上,也可以是其他布置尺寸。该金属框架可以由实心材料制成,但实心材料质量较重,为实现框架轻量化设计,装载部2可以是内部空心框架,并且在多个装载槽间可充满导热胶,以方便热量传导。传送装置3为一种传输装置,在如图1所示的优选实施例中,传送装置3包括传送台31和传送轨道32,传送轨道32包括两路 分别位于传送台31两侧的轨道。传送台31可架设于传送轨道32上,传送台31的两端保持与传送轨道32接触连接,随着传送轨道32的运转而移动。传送台31的上表面至少具有部分表面与装载部2的下表面完全贴合,实现最大接触面积以获取最佳的导热效果。在一些实施例中,装载部2和传送台31之间还可以设有导热胶或导热垫,以获取更佳的导热效果。传送装置3采用导热性良好的金属材料制成,可以是铝,也可以是其他材料。应理解,传送装置也可以是其他结构形式,此处仅为举例说明。
传送装置3还设有恒温部4。具体地,恒温部4可设置于如图1中所示的传送台31底部。通过设置恒温部4的温度,可影响传送台31的温度,进而间接对装载部2进行温控。生产线因长时间进行封膜工作,会导致装载部2的框架温度持续升高,通过设置恒温部4可以使传送装置3和装载部2始终处于一个低温的环境中,也就避免了框架温度升高对封膜产品的不利影响。恒温部4可以是一组金属散热片。具体地,金属散热片可以是设置于传送台31底部表面的片状或板状结构,各个金属散热片自传送台31下表面垂向下延伸且彼此间隔隔开形成空隙以利于空气流动来进行降温。恒温部4还可以是在传送装置3中设置的冷却液循环通路,具体地,冷却液循环通路可以是设于传送台31中的内部通路,冷却液可操作地在内部通路中循环流动,从而对传送台31进行散热,进步对传送台31上的装载部2降温。此外,恒温部4还可以是在传送台31中设置的空腔,液氮可操作地容纳在该空腔中,从而对传送台31进行散热,进步对传送台31上的装载部2降温。应理解,恒温部4可以是上述结构的一种或多种结构的结合。此外,传送装置3的传送轨道32中也可以设置上述的恒温部4,以进步提高散热效率,这里不再赘述。
封膜装置还包括封膜滚筒50、入口滚筒51和出口滚筒52,封膜滚筒50用于供应封膜6,入口滚筒51使得封膜6转向至水平方向,出口滚筒用于接收入口滚筒51供应的封膜6并将封膜6拉平,如图2中所示,装载部2的各个装载槽内装有物料装载的容器,例如八连管。传送装置3将装载部2送入传送通道10内,压膜装置11降下将封膜6热压至八连管的管口表面进行热封,完成热封后再将压膜装置11升起。如图3所示,封膜装置还包括进口切膜件70和出口切膜件71,进口切膜件70和出口切膜件71分别设于封膜机1的入口侧12和出口侧13,其中进口切膜件70和出口切膜件71的切割片竖向设置,且出口切膜 件71包括多个竖向设置的切割片。在压膜装置11对八连管的管口表面进行热封的同时,进口切膜件70同步降下对封膜6进行切割,切割完成后,传送装置3将封膜完成的装载部2送出传送通道10,在出口侧13的出口切膜件71利用多个竖向设置的切割片将封膜完成的容器分割成多排八连管。
本申请实施例封膜装置实现了自动化封膜,并通过设置恒温部对封膜装置持续降温进而控制封膜样品的环境温度,避免了封膜机长时间工作后温度升高对封膜样品的损害。
上述实施例仅例示性说明本申请的原理及其功效,而非用于限制本申请。任何熟悉此技术的人士皆可在不违背本申请的精神及范畴下,对上述实施例进行修饰或改变。因此,凡所属技术领域中具有通常知识者在未脱离本申请所揭示的精神与技术思想下所完成的一切等效修饰或改变,仍应由本申请的权利要求所涵盖。

Claims (10)

  1. 一种封膜装置,其特征在于,包括:
    封膜机,所述封膜机设有传送通道,所述传送通道上方设有压膜装置,所述压膜装置用于在所述传送通道内升降运动以进行封膜的热压;
    传送装置,所述传送装置设置成能够移动穿过所述传送通道;
    装载部,所述装载部设于所述传送装置上;其中,所述传送装置的至少一部分设置有恒温部。
  2. 根据权利要求1所述的封膜装置,其特征在于,所述装载部包括多个装载槽,所述多个装载槽间填充有导热胶。
  3. 根据权利要求1所述的封膜装置,其特征在于,所述装载部的下表面为平面,所述传送装置的上表面至少具有部分表面与所述装载部的下表面全部贴合。
  4. 根据权利要求1所述的封膜装置,其特征在于,所述恒温部包括金属散热片。
  5. 根据权利要求1所述的封膜装置,其特征在于,所述恒温部包括冷却液循环通路,所述冷却液循环通路设于所述传送装置中。
  6. 根据权利要求1所述的封膜装置,其特征在于,所述恒温部包括可操作地容纳液氮的空腔部。
  7. 根据权利要求1所述的封膜装置,其特征在于,所述装载部和所述传送装置件之间设有导热胶或导热垫。
  8. 根据权利要求1所述的封膜装置,其特征在于,所述装载部和所述传送装置均由导热材料制成。
  9. 根据权利要求1所述的封膜装置,其特征在于,还包括进口切膜件和出口切膜件,所述进口切膜件和所述出口切膜件分别设于所述封膜机的入口侧和出口侧,其中所述进口切膜件和所述出口切膜件的切割片竖向设置。
  10. 根据权利要求1所述的封膜装置,其特征在于,还包括封膜滚筒、入口滚筒和出口滚筒,所述封膜滚筒构造成供应封膜,所述入口滚筒构造成使得所述封膜转向至水平方向,所述出口滚筒构造成接收所述入口滚筒供应的所述封 膜并将所述封膜拉平。
PCT/CN2021/118898 2021-08-26 2021-09-17 封膜装置 WO2023024199A1 (zh)

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CN215794852U (zh) * 2021-08-26 2022-02-11 广州达安基因股份有限公司 封膜装置
CN215794554U (zh) * 2021-08-26 2022-02-11 广州达安基因股份有限公司 物料球的自动化包装系统

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GB2071565A (en) * 1980-03-14 1981-09-23 Ti Fords Ltd Improvements in or relating to methods and machines for applying and sealing diaphragm closures to the mouths of containers
CN207292551U (zh) * 2017-08-30 2018-05-01 深圳市汉匠自动化科技有限公司 3d贴膜设备
CN208439511U (zh) * 2018-06-15 2019-01-29 北京艾莱发喜食品有限公司 一种杯类产品封膜装置
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