WO2020119022A1 - 一种回转式电子束杀菌装置 - Google Patents

一种回转式电子束杀菌装置 Download PDF

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WO2020119022A1
WO2020119022A1 PCT/CN2019/087194 CN2019087194W WO2020119022A1 WO 2020119022 A1 WO2020119022 A1 WO 2020119022A1 CN 2019087194 W CN2019087194 W CN 2019087194W WO 2020119022 A1 WO2020119022 A1 WO 2020119022A1
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bottle
turntable
electron beam
lifting
rotary
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PCT/CN2019/087194
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English (en)
French (fr)
Inventor
吴书朋
何德平
刘丁丁
叶鹏
冯志华
钱志良
倪俊芳
王家善
Original Assignee
江苏新美星包装机械股份有限公司
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Publication of WO2020119022A1 publication Critical patent/WO2020119022A1/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
    • B65B55/00Preserving, protecting or purifying packages or package contents in association with packaging
    • B65B55/02Sterilising, e.g. of complete packages
    • B65B55/04Sterilising wrappers or receptacles prior to, or during, packaging
    • B65B55/08Sterilising wrappers or receptacles prior to, or during, packaging by irradiation

Definitions

  • the invention relates to the technical field of filling, in particular to a rotary electron beam sterilization device.
  • the bottle body Before aseptic filling, the bottle body needs to be sterilized.
  • the traditional way is to move the bottle body through the electron beam sterilization area in a linear motion on the conveyor chain. The area is sterilized on the other side.
  • the clamping structure of the manipulator and the turning space requirements are higher, and the equipment cost will increase accordingly.
  • the purpose of the present invention is to provide a rotary electron beam sterilization device, which has a simple structure and can realize full-round irradiation sterilization of the bottle body.
  • a rotary electron beam sterilization device is used for sterilizing a bottle body.
  • the device includes a frame, a first shaft provided on the frame, and a frame respectively rotating on the first axis and arranged on the frame
  • An irradiation mechanism, the first turntable and the second turntable have a height difference H;
  • the bottle body includes a first part and a second part that are equally divided by its axis in the radial direction.
  • the electron beam irradiation mechanism is used to orient the first part;
  • the bottle body When it is located on the second turntable, the electron beam irradiating mechanism is used to orient the second part;
  • the device also includes:
  • At least one elevating conveying mechanism provided on the frame, at least one transitional conveying mechanism provided on the frame, the elevating conveying mechanism and the transitional conveying mechanism are used to coordinate the first return
  • the irradiated bottle body on the turntable is sent into the second rotary disk after being transferred; after the bottle body is irradiated on the first rotary disk, the bottle is irradiated on the first rotary disk, the lifting and conveying mechanism, the
  • the sum of rotation angles on the transition conveyor is N ⁇ 180°, where N is an odd number greater than or equal to 3; the total height of the lifting conveyor to raise or lower the bottle is H;
  • the lifting transmission mechanism includes at least two coaxially rotating lifting dials provided on the frame, and a lifting mechanism disposed between two adjacent lifting dials.
  • the mechanism includes a transition dial provided on the frame and rotating around its own axis.
  • the first turntable, the second turntable, the lifting dial, and the transition dial are all provided with a manipulator for clamping a bottle body.
  • the device further includes a first bottleneck electron beam guide provided on the first frame above the bottle body on the first turntable, and the first The first electron beam guide on the bottom of the bottle on the turntable.
  • the device further includes a second bottleneck electron beam guide provided on the rack above the bottle body on the second turntable, and the second The second beam bottom electron beam guide on the turntable below the bottle body.
  • the first turntable is located below the second turntable; or the first turntable is located above the second turntable.
  • the turning radius of the first turntable is the same as the turning radius of the second turntable.
  • the device further includes a bottle-in conveying mechanism and a bottle-out conveying mechanism, the bottle-in conveying mechanism is used to cooperatively feed the bottle body onto the first rotary plate to receive irradiation, and the bottle-out conveying mechanism It is used for cooperating to receive the irradiated bottle on the second turntable.
  • the bottle-in conveying mechanism includes a bottle-in wheel set on the frame rotating around its own axis
  • the bottle-out conveying mechanism includes a machine-in-rotation set around the own axis Bottle out wheel on the shelf.
  • the present invention is a rotary electron beam sterilization device, which transfers the irradiated bottle body in the first rotary disk to the The second rotary disk is irradiated again, and the first part and the second part of the bottle body are directly shot twice, which can realize irradiating and sterilizing the bottle body in all directions, without turning the bottle body up and down, the structure is simple, and the cost is low.
  • Figure 1 is a schematic structural diagram of the device of the present invention.
  • Figure 2 is a schematic diagram of the positional relationship between the bottle body and the electron beam guide.
  • Bottle 1. Bottle; 2. First axis; 3. First turntable; 4. Second turntable; 5. Electron beam irradiation mechanism; 6. First part; 7. Second part; 8. Lifting dial 9. Lifting mechanism; 10. Transition dial; 11. First bottle mouth electron beam guide/second bottle mouth electron beam guide; 12. First bottle bottom electron beam guide/second bottle bottom electron beam guide Device; 13, bottle-in dial; 14. bottle-out dial.
  • the above-mentioned rotary electron beam sterilization device is used to sterilize the bottle body 1.
  • the sterilization device includes a frame, a first shaft 2 provided on the frame and extending in the vertical direction.
  • the first turntable 3 and the second turntable 4 which are arranged on the frame and are distributed in the up-and-down direction, respectively rotate about the first axis 2, and are provided on the frame and extend in the up-and-down direction for simultaneously irradiating the first turntable 3 and the electron beam irradiation mechanism 5 of the second turntable 4, the first turntable 3 and the second turntable 4 have a height difference H.
  • the bottle body 1 includes a first part 6 and a second part 7 that are equally divided in the radial direction by its axis.
  • the electron beam irradiation mechanism 5 is used to orthorectify the first part 6;
  • the electron beam irradiation mechanism 5 is used to ortho-direct the second portion 7.
  • the first part 6 and the second part 7 are generally two semi-cylindrical cylinders with the same shape and volume.
  • the first turntable 3 is located below the second turntable 4; or the first turntable 3 is located above the second turntable 4. In this embodiment, the first turntable 3 is located below the second turntable 4, and the turning radius of the first turntable 3 is the same as the turning radius of the second turntable 4.
  • the above-mentioned rotary electron beam sterilization device further includes a first bottleneck electron beam guide 11 located on the first rotary disk 3 above the bottle body 1 and a first rotary disk located on the frame 3
  • the first bottleneck electron beam guide 11, the first bottleneck electron beam guide 12, the second bottleneck electron beam guide 11, and the second bottleneck electron beam guide 12 are all magnetic bodies. Through this setting, the electron beam is guided to sterilize the bottle mouth and the bottom of the bottle, so as to achieve the purpose of 360-degree sterilization of the bottle body, the bottle mouth and the bottom of the bottle.
  • the above-mentioned rotary electron beam sterilization device further includes a bottle-in conveying mechanism and a bottle-out conveying mechanism.
  • the bottle-in conveying mechanism is used to cooperatively send the bottle body 1 onto the first rotary plate 3 to receive irradiation.
  • the bottle-out conveying mechanism is used To receive the bottle body 1 irradiated on the second turntable 4 in cooperation.
  • the bottle feeder transmission mechanism includes a bottle feeder wheel 13 that rotates around its own axis and is provided on the rack.
  • the bottle feeder transmission mechanism includes a bottle feeder that rotates around its own axis and is provided on the rack Dial wheel 14; the axis line of the inlet dial wheel 13 and the axis line of the outlet dial wheel 14 both extend in the vertical direction.
  • the above-mentioned rotary electron beam sterilization device further includes at least one elevating transmission mechanism provided on the rack, and at least one transition transmission mechanism provided on the rack.
  • the lifting conveying mechanism and the transition conveying mechanism are used to cooperate with each other to send the irradiated bottle body 1 on the first turntable 3 to the second turntable 4 after transmission; the bottle body 1 is irradiated on the first turntable 3 after irradiation ,
  • the sum of the angles of rotation on the first turntable 3, the lifting conveyor, and the transition conveyor is N ⁇ 180°, where N is an odd number greater than or equal to 3, and the angle of rotation referred to here includes the bottle body 1
  • the angle of forward rotation and the angle of bottle body 1 reverse rotation; the total height of the bottle body 1 raised or lowered by the lifting and conveying mechanism is H.
  • the number of lifting and lowering transport mechanisms and the number of transitional transporting mechanisms are arranged, and the order of the lifting and lowering transporting mechanism and the transitional transporting mechanism along the bottle 1 transport path
  • the above-mentioned rotary electron beam sterilization device further includes at least two lifting and lowering mechanisms provided on the rack. At least two lifting and lowering conveying mechanisms are used to cooperate with each other to send the irradiated bottle body 1 on the first turntable 3 to the second turntable 4 after transmission; after the bottle body 1 is irradiated on the first turntable 3,
  • the sum of rotation angles on the first turntable 3 and the lifting and conveying mechanism is N ⁇ 180°, where N is an odd number greater than or equal to 3, and the rotation angles mentioned here also include the positive rotation of the bottle body 1
  • the angle of rotation and the angle of reverse rotation of the bottle body 1; the total height of the bottle body 1 raised or lowered by the lifting and conveying mechanism is H. According to actual needs, to configure the number of lifting and conveying mechanism.
  • the lifting and conveying mechanism includes two coaxially rotating lifting dials 8 provided on the frame, and a lifting mechanism 9 provided between the two lifting dials 8.
  • the lifting mechanism 9 can be driven by a cam or Cylinder drive;
  • the transition transmission mechanism includes a transition dial 10 which is arranged on the frame and rotates around its own axis. The axis of the lifting dial 8 and the axis of the transition dial 10 both extend in the vertical direction.
  • the first rotary disk 3, the second rotary disk 4, the lifting dial 8 and the transition dial 10 are all provided with a manipulator for clamping the bottle body 1.
  • the absolute position of the bottle body 1 remains unchanged during the handover between the two of the above four, only through the two The opening and closing of the manipulator completes the handover of the bottle body 1.
  • FIG. 1 it includes a lifting conveyor mechanism and a transition conveyor mechanism.
  • the horizontal line between the axis line of the lifting dial 8, the axis line of the transition dial 10, and the axis line of the first rotary disc 3 form an equilateral triangle; the lifting dial 8, the transition dial 10.
  • the diameters of the first turntable 3 and the second turntable 4 are equal; the first turntable 3 and the lower lifting dial 8 have the same height, the second turntable 4 and the upper lifting dial 8 and the transition dial 10 Contour.
  • the bottle body 1 is sent from the point A to the lower first turntable 3 through the bottle feed dial 13 and rotates counterclockwise with the first turntable 3 to the point B. It passes through the electron beam irradiation mechanism 5 for the first time. The first part 6 of the bottle and the second part 7 of the bottle body 1 are not illuminated;
  • the first turntable 3 continues to rotate, and the bottle body 1 transfers to the lower lifting dial 8 at point C (the bottle body 1 rotates counterclockwise through 180° counterclockwise between points B and C), and the lifting dial 8 clockwise At the same time, the bottle body 1 is lifted up by the lifting mechanism 9 into the lifting dial 8 above;
  • the lifting dial 8 continues to rotate, and the bottle body 1 transfers to the transition dial 10 at point D (the bottle body 1 rotates clockwise through 300° between points C and D), and the transition dial 10 rotates counterclockwise.
  • the body 1 transfers into the second turntable 4 at point E (the bottle body 1 rotates counterclockwise through 60° between points D and E);
  • the bottle body 1 rotates clockwise with the second turntable 4 to point F, and then passes through the electron beam irradiation mechanism 5, orthographically shoots the second part 7 of the bottle body 1, and point F is located directly above point B;
  • the second turntable 4 continues to rotate, feeding the bottle body 1 into the bottle-out dial 14.

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  • Health & Medical Sciences (AREA)
  • General Health & Medical Sciences (AREA)
  • Toxicology (AREA)
  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Apparatus For Disinfection Or Sterilisation (AREA)

Abstract

一种回转式电子束杀菌装置,用于为瓶体(1)杀菌,该装置包括机架、分别绕第一轴(2)转动的设于机架上的第一回转盘(3)和第二回转盘(4)、设于机架上的电子束照射机构(5)。瓶体(1)包括被其轴心线沿径向等分的第一部分(6)和第二部分(7),瓶体(1)位于第一回转盘(3)上时,第一部分(6)被正射;瓶体(1)位于第二回转盘(4)上时,第二部分(7)被正射。该装置还包括设于机架上的至少一个升降传送机构及至少一个过渡传送机构,或设于机架上的至少两个升降传送机构,上述至少一个升降传送机构及至少一个过渡传送机构相互配合、或上述至少两个升降传送机构相互配合,用于将第一回转盘(3)上的瓶体(1)送入第二回转盘(4)中。

Description

一种回转式电子束杀菌装置 技术领域
本发明涉及灌装技术领域,特别涉及一种回转式电子束杀菌装置。
背景技术
在无菌灌装之前需要对瓶体进行杀菌,传统方式是瓶体在输送链上以直线运动经过电子束杀菌区域,完成一面杀菌后,再通过导轨实现瓶体上下翻转后再次通过电子束杀菌区域完成另一面杀菌。对于瓶身较长的瓶体,若要完成翻转动作,对于机械手夹持结构以及翻转空间的要求较高,设备成本也会相应的增加。
发明内容
本发明的目的是提供一种回转式电子束杀菌装置,结构简单,能够实现对瓶体全方位的照射杀菌。
为达到上述目的,本发明采用的技术方案是:
一种回转式电子束杀菌装置,用于为瓶体杀菌,所述装置包括机架、设于所述机架上的第一轴、分别绕所述第一轴转动的设于所述机架上的沿上下方向分布的第一回转盘和第二回转盘、设于所述机架上的沿上下方向延伸的用于同时照射所述第一回转盘和所述第二回转盘的电子束照射机构,所述第一回转盘和所述第二回转盘具有高度差H;
瓶体包括被其轴心线沿径向等分的第一部分和第二部分,瓶体位于所述第一回转盘上时,所述电子束照射机构用于正射所述第一部分;瓶体位于所述第二回转盘上时,所述电子束照射机构用于正射所述第二部分;
所述装置还包括:
至少一个设于所述机架上的升降传送机构、至少一个设于所述机架上的过渡传送机构,所述升降传送机构和所述过渡传送机构用于相互配合的将所述第一回转盘上照射过的瓶体经过传送后送入所述第二回转盘中;瓶体在所述第一回转盘上经过照射后,在所述第一回转盘、所述升降传送机构、所述过渡传送机构上自转转过的角度和为N·180°,其中N为大于等于3的奇数;所述升降传送机构升高或降低瓶体的总高度为H;
或;至少两个设于所述机架上的所述升降传送机构,至少两个所述升降传送机构用于相互配合的将所述第一回转盘上照射过的瓶体经过传送后送入所述第二回转盘中;瓶体在所述第一回转盘上经过照射后,在所述第一回转盘、所述升降传送机构上自转转过的角度和为N·180°,其中N为大于等于3的奇数;所述升降传送机构升高或降低瓶体的总高度为H。
优选地,所述升降传送机构包括至少两个同轴转动的设于所述机架上的升降拨盘、设于相邻的两个所述升降拨盘之间的升降机构,所述过渡传送机构包括绕自身轴心线转动的设于所述机架上的过渡拨盘。
更优选地,所述第一回转盘、所述第二回转盘、所述升降拨盘、所述过渡拨盘上均设有用于夹持瓶体的机械手。
更优选地,所述第一回转盘、所述第二回转盘、所述升降拨盘、所述过渡拨盘,瓶体在上述四者的其中两者之间交接时,其绝对位置保持不变。
优选地,所述装置还包括设于所述机架上的位于所述第一回转盘上瓶体上方的第一瓶口电子束导向器、设于所述机架上的位于所述第一回转盘上瓶体下方的第一瓶底电子束导向器。
优选地,所述装置还包括设于所述机架上的位于所述第二回转盘上瓶体上方的第二瓶口电子束导向器、设于所述机架上的位于所述第二回转盘上瓶体下方的第二瓶底电子束导向器。
优选地,所述第一回转盘位于所述第二回转盘的下方;或所述第 一回转盘位于所述第二回转盘的上方。
优选地,所述第一回转盘的转动半径与所述第二回转盘的转动半径相同。
优选地,所述装置还包括进瓶传送机构、出瓶传送机构,所述进瓶传送机构用于配合的将瓶体送入所述第一回转盘上以接受照射,所述出瓶传送机构用于配合的接收所述第二回转盘上照射过的瓶体。
更优选地,所述进瓶传送机构包括绕自身轴心线转动的设于所述机架上的进瓶拨轮,所述出瓶传送机构包括绕自身轴心线转动的设于所述机架上的出瓶拨轮。
由于上述技术方案的运用,本发明与现有技术相比具有下列优点:本发明一种回转式电子束杀菌装置,将第一回转盘中照射过的瓶体经过传送转向并升降后送入第二回转盘中再次照射,两次分别正射瓶体的第一部分和第二部分,能够实现对瓶体全方位的照射杀菌,无需上下翻转瓶体,结构简单,成本较低。
附图说明
附图1为本发明装置的结构示意图;
附图2为瓶体和电子束导向器的位置关系示意图。
其中:1、瓶体;2、第一轴;3、第一回转盘;4、第二回转盘;5、电子束照射机构;6、第一部分;7、第二部分;8、升降拨盘;9、升降机构;10、过渡拨盘;11、第一瓶口电子束导向器/第二瓶口电子束导向器;12、第一瓶底电子束导向器/第二瓶底电子束导向器;13、进瓶拨轮;14、出瓶拨轮。
具体实施方式
下面结合附图来对本发明的技术方案作进一步的阐述。
参见图1-2所示,上述一种回转式电子束杀菌装置,用于为瓶体1杀菌,该杀菌装置包括机架、设于机架上的沿竖直方向延伸的第一 轴2、分别绕第一轴2转动的设于机架上的沿上下方向分布的第一回转盘3和第二回转盘4、设于机架上的沿上下方向延伸的用于同时照射第一回转盘3和第二回转盘4的电子束照射机构5,第一回转盘3和第二回转盘4具有高度差H。
瓶体1包括被其轴心线沿径向等分的第一部分6和第二部分7,瓶体1位于第一回转盘3上时,电子束照射机构5用于正射第一部分6;瓶体1位于第二回转盘4上时,电子束照射机构5用于正射第二部分7。参见图1所示,第一部分6和第二部分7大体为两个形状体积相同的半圆柱形。
第一回转盘3位于第二回转盘4的下方;或第一回转盘3位于第二回转盘4的上方。在本实施例中,第一回转盘3位于第二回转盘4的下方,第一回转盘3的转动半径与第二回转盘4的转动半径相同。
上述一种回转式电子束杀菌装置还包括设于机架上的位于第一回转盘3上瓶体1上方的第一瓶口电子束导向器11、设于机架上的位于第一回转盘3上瓶体1下方的第一瓶底电子束导向器12、设于机架上的位于第二回转盘4上瓶体1上方的第二瓶口电子束导向器11、设于机架上的位于第二回转盘4上瓶体1下方的第二瓶底电子束导向器12。在本实施例中,第一瓶口电子束导向器11、第一瓶底电子束导向器12、第二瓶口电子束导向器11、第二瓶底电子束导向器12均为磁性体,通过这个设置,引导电子束偏转对瓶口及瓶底杀菌,从而实现瓶身、瓶口、瓶底360度全方位杀菌的目的。
上述一种回转式电子束杀菌装置还包括进瓶传送机构、出瓶传送机构,进瓶传送机构用于配合的将瓶体1送入第一回转盘3上以接受照射,出瓶传送机构用于配合的接收第二回转盘4上照射过的瓶体1。在本实施例中,进瓶传送机构包括绕自身轴心线转动的设于机架上的进瓶拨轮13,出瓶传送机构包括绕自身轴心线转动的设于机架上的出瓶拨轮14;进瓶拨轮13的轴心线和出瓶拨轮14的轴心线均沿竖直方向延伸。
在一个实施例中,上述一种回转式电子束杀菌装置还包括至少一 个设于机架上的升降传送机构、至少一个设于机架上的过渡传送机构。升降传送机构和过渡传送机构用于相互配合的将第一回转盘3上照射过的瓶体1经过传送后送入第二回转盘4中;瓶体1在第一回转盘3上经过照射后,在第一回转盘3、升降传送机构、过渡传送机构上自转转过的角度和为N·180°,其中N为大于等于3的奇数,这里说的自转转过的角度包括瓶体1正向自转转过的角度和瓶体1反向自转转过的角度;升降传送机构升高或降低瓶体1的总高度为H。根据实际需要,来配置升降传送机构的数量和过渡传送机构的数量,以及沿瓶体1传送路径上升降传送机构和过渡传送机构的顺序。
在另一个实施例中,上述一种回转式电子束杀菌装置还包括至少两个设于机架上的升降传送机构。至少两个升降传送机构用于相互配合的将第一回转盘3上照射过的瓶体1经过传送后送入第二回转盘4中;瓶体1在第一回转盘3上经过照射后,在第一回转盘3、升降传送机构上自转转过的角度和为N·180°,其中N为大于等于3的奇数,这里说的自转转过的角度同样包括瓶体1正向自转转过的角度和瓶体1反向自转转过的角度;升降传送机构升高或降低瓶体1的总高度为H。根据实际需要,来配置升降传送机构的数量。
在本实施例中,升降传送机构包括两个同轴转动的设于机架上的升降拨盘8、设于两个升降拨盘8之间的升降机构9,升降机构9可以为凸轮驱动或气缸驱动;过渡传送机构包括绕自身轴心线转动的设于机架上的过渡拨盘10。升降拨盘8的轴心线和过渡拨盘10的轴心线均沿竖直方向延伸。
第一回转盘3、第二回转盘4、升降拨盘8、过渡拨盘10上均设有用于夹持瓶体1的机械手。第一回转盘3、第二回转盘4、升降拨盘8、过渡拨盘10,瓶体1在上述四者的其中两者之间交接时,其绝对位置保持不变,仅仅通过两者之间机械手的开合来完成瓶体1的交接。
在本实施例中,参见图1所示,包括一个升降传送机构和一个过渡传送机构。其中,升降拨盘8的轴心线、过渡拨盘10的轴心 线、第一回转盘3的轴心线两两之间的水平连线构成等边三角形;升降拨盘8、过渡拨盘10、第一回转盘3、第二回转盘4的直径均相等;第一回转盘3与下方的升降拨盘8等高,第二回转盘4与上方的升降拨盘8、过渡拨盘10等高。
以下具体阐述下本实施例的工作过程:
瓶体1通过进瓶拨轮13由A点送入下方的第一回转盘3中,随第一回转盘3逆时针转动至B点第一次经过电子束照射机构5,正射瓶体1的第一部分6,瓶体1的第二部分7未得到照射;
第一回转盘3继续转动,瓶体1在C点(B点和C点之间瓶体1逆时针自转转过180°)交接进入下方的升降拨盘8中,升降拨盘8顺时针转动,同时通过升降机构9将瓶体1向上升高送入上方的升降拨盘8中;
升降拨盘8继续转动,瓶体1在D点(C点和D点之间瓶体1顺时针自转转过300°)交接进入过渡拨盘10中,过渡拨盘10逆时针转动,瓶体1在E点(D点和E点之间瓶体1逆时针自转转过60°)交接进入第二回转盘4中;
瓶体1随第二回转盘4顺时针转动至F点第二经过电子束照射机构5,正射瓶体1的第二部分7,F点位于B点的正上方;
第二回转盘4继续转动,将瓶体1送入出瓶拨轮14中。
上述实施例只为说明本发明的技术构思及特点,其目的在于让熟悉此项技术的人士能够了解本发明的内容并据以实施,并不能以此限制本发明的保护范围。凡根据本发明精神实质所作的等效变化或修饰,都应涵盖在本发明的保护范围之内。

Claims (10)

  1. 一种回转式电子束杀菌装置,用于为瓶体杀菌,其特征在于:所述装置包括机架、设于所述机架上的第一轴、分别绕所述第一轴转动的设于所述机架上的沿上下方向分布的第一回转盘和第二回转盘、设于所述机架上的沿上下方向延伸的用于同时照射所述第一回转盘和所述第二回转盘的电子束照射机构,所述第一回转盘和所述第二回转盘具有高度差H;
    瓶体包括被其轴心线沿径向等分的第一部分和第二部分,瓶体位于所述第一回转盘上时,所述电子束照射机构用于正射所述第一部分;瓶体位于所述第二回转盘上时,所述电子束照射机构用于正射所述第二部分;
    所述装置还包括:
    至少一个设于所述机架上的升降传送机构、至少一个设于所述机架上的过渡传送机构,所述升降传送机构和所述过渡传送机构用于相互配合的将所述第一回转盘上照射过的瓶体经过传送后送入所述第二回转盘中;瓶体在所述第一回转盘上经过照射后,在所述第一回转盘、所述升降传送机构、所述过渡传送机构上自转转过的角度和为N·180°,其中N为大于等于3的奇数;所述升降传送机构升高或降低瓶体的总高度为H;
    或;至少两个设于所述机架上的所述升降传送机构,至少两个所述升降传送机构用于相互配合的将所述第一回转盘上照射过的瓶体经过传送后送入所述第二回转盘中;瓶体在所述第一回转盘上经过照射后,在所述第一回转盘、所述升降传送机构上自转转过的角度和为N·180°,其中N为大于等于3的奇数;所述升降传送机构升高或降低瓶体的总高度为H。
  2. 根据权利要求1所述的一种回转式电子束杀菌装置,其特征在于:所述升降传送机构包括至少两个同轴转动的设于所述机架上的升降拨盘、设于相邻的两个所述升降拨盘之间的升降机构,所述过渡 传送机构包括绕自身轴心线转动的设于所述机架上的过渡拨盘。
  3. 根据权利要求2所述的一种回转式电子束杀菌装置,其特征在于:所述第一回转盘、所述第二回转盘、所述升降拨盘、所述过渡拨盘上均设有用于夹持瓶体的机械手。
  4. 根据权利要求2所述的一种回转式电子束杀菌装置,其特征在于:所述第一回转盘、所述第二回转盘、所述升降拨盘、所述过渡拨盘,瓶体在上述四者的其中两者之间交接时,其绝对位置保持不变。
  5. 根据权利要求1所述的一种回转式电子束杀菌装置,其特征在于:所述装置还包括设于所述机架上的位于所述第一回转盘上瓶体上方的第一瓶口电子束导向器、设于所述机架上的位于所述第一回转盘上瓶体下方的第一瓶底电子束导向器。
  6. 根据权利要求1所述的一种回转式电子束杀菌装置,其特征在于:所述装置还包括设于所述机架上的位于所述第二回转盘上瓶体上方的第二瓶口电子束导向器、设于所述机架上的位于所述第二回转盘上瓶体下方的第二瓶底电子束导向器。
  7. 根据权利要求1所述的一种回转式电子束杀菌装置,其特征在于:所述第一回转盘位于所述第二回转盘的下方;或所述第一回转盘位于所述第二回转盘的上方。
  8. 根据权利要求1所述的一种回转式电子束杀菌装置,其特征在于:所述第一回转盘的转动半径与所述第二回转盘的转动半径相同。
  9. 根据权利要求1所述的一种回转式电子束杀菌装置,其特征在于:所述装置还包括进瓶传送机构、出瓶传送机构,所述进瓶传送机构用于配合的将瓶体送入所述第一回转盘上以接受照射,所述出瓶传送机构用于配合的接收所述第二回转盘上照射过的瓶体。
  10. 根据权利要求9所述的一种回转式电子束杀菌装置,其特征在于:所述进瓶传送机构包括绕自身轴心线转动的设于所述机架上的进瓶拨轮,所述出瓶传送机构包括绕自身轴心线转动的设于所述机架上的出瓶拨轮。
PCT/CN2019/087194 2018-12-14 2019-05-16 一种回转式电子束杀菌装置 WO2020119022A1 (zh)

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