WO2021077492A1 - 一种双涨方双压印机构 - Google Patents

一种双涨方双压印机构 Download PDF

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Publication number
WO2021077492A1
WO2021077492A1 PCT/CN2019/118224 CN2019118224W WO2021077492A1 WO 2021077492 A1 WO2021077492 A1 WO 2021077492A1 CN 2019118224 W CN2019118224 W CN 2019118224W WO 2021077492 A1 WO2021077492 A1 WO 2021077492A1
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Prior art keywords
double
mold
imprinting
expansion
positioning
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PCT/CN2019/118224
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English (en)
French (fr)
Inventor
程立斌
庄晨辉
孔桢焕
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苏州华源控股股份有限公司
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Publication of WO2021077492A1 publication Critical patent/WO2021077492A1/zh

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41FPRINTING MACHINES OR PRESSES
    • B41F19/00Apparatus or machines for carrying out printing operations combined with other operations
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B21MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21DWORKING OR PROCESSING OF SHEET METAL OR METAL TUBES, RODS OR PROFILES WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21D51/00Making hollow objects
    • B21D51/16Making hollow objects characterised by the use of the objects
    • B21D51/18Making hollow objects characterised by the use of the objects vessels, e.g. tubs, vats, tanks, sinks, or the like

Definitions

  • the invention relates to the technical field of making packaging cans, in particular to a double-stretching square and double-imprinting mechanism.
  • the present invention provides a double-stretching and double-imprinting mechanism, which is equipped with two can-type expansion and imprinting molds on the production line at the same time, so that the two can-type expansion and imprinting molds are provided at the same time. Fast switching, saving time and effort, reducing production costs and ensuring production progress.
  • a double-stretching and double embossing mechanism is characterized in that it comprises two positioning plates arranged in parallel, the upper surfaces of the two positioning plates are fixedly equipped with a combination bracket, and the expansion drive components are fixed at intervals on the combination brackets ,
  • the imprinting drive assembly, the expansion drive assembly and the imprinting drive assembly are arranged with a barrel space between them, the two positioning plates are connected to the corresponding side of the slide rail plate through a guide rail pair, and the slide rail plate is along the Moving straight along the positioning plate, the slide rail plate is sequentially provided with a first expanding mold, a second expanding mold, a first imprinting mold, and a second imprinting mold along its length direction.
  • the adjacent molds are arranged with a barrel space apart, and the body mounting plate of each mold is connected to the vertical driving guide structure, and the vertical driving guide structure synchronously drives the convex driving connection head, and the driving of each mold
  • the connector is used to connect the lower output end of the corresponding expansion drive assembly and imprint drive assembly.
  • the vertical guide driving structure specifically includes vertical driving cylinders on both sides, an upper end plate, and a vertical guide post.
  • the vertical driving cylinders are fixedly mounted on the upper end plate, and the two sides of each upper end plate are respectively fixedly connected to the upper end plate.
  • the top of the vertical guide post, the vertical guide post is fixed to the corresponding position of the slide rail plate, the lower piston end of each vertical drive cylinder penetrates the slide rail plate and is connected to the corresponding upper part of the body mounting plate
  • the drive connector of the mold penetrates the body mounting plate and the slide rail plate and then protrudes upward.
  • the drive connector is connected to the transmission structure in the mold through a connecting rod, and the transmission structure drives the corresponding mold to complete expansion. Square or embossing action;
  • the bottom of the vertical guide post penetrates the slide rail plate and is sleeved with a corresponding linear bearing, and the linear bearing is fixedly mounted on the body of the corresponding imprinting mold.
  • the vertical drive cylinders corresponding to the four molds are opened or closed synchronously by the external controller to ensure the synchronous and consistent action;
  • Corresponding through positioning holes are provided on the positioning plate, two positioning inner concave holes are arranged on the corresponding side of the slide rail plate, the interval between the two positioning inner concave holes is a stepping bucket position, and the positioning pin is inserted It is installed in the through positioning hole and the positioning inner concave hole to complete the positioning of the position of a set of expanding molds and imprinting molds;
  • the two ends of the positioning plate are respectively provided with stop bolts, and the stop bolts of the positioning plate ensure that the linear direction travel distance of the slide rail plate is a distance of one stepping barrel at a time, ensuring quick and reliable mold conversion;
  • a drive motor is arranged between the expansion drive assembly and the imprint drive assembly.
  • the drive motor includes two output shafts, one of which is connected to the power input end of the expansion drive assembly, and the other is connected to the output shaft
  • the power input end of the imprinting drive assembly enables the expansion and imprinting on the production line to use the same power, so that synchronization is good, costs are reduced, and energy consumption is reduced;
  • the two ends of the slide rail plate in the longitudinal direction are respectively provided with handles to facilitate the rapid pushing and pulling of the slide rail plate in a straight line direction;
  • the outer casings of the expansion drive assembly and the imprint drive assembly are provided with escape holes at positions corresponding to the vertical drive guide structure to ensure the normal operation of the vertical drive structure driven by the slide rail plate.
  • the vertical drive guide structure when switching to another tank type, the vertical drive guide structure will lower the mold, so that the combined drive connector is separated from the corresponding expansion drive assembly and the lower output end of the imprint drive assembly, and then drive The slide rail plate moves along the positioning plate, so that the expansion mold and imprint mold corresponding to the other can are arranged directly under the expansion drive assembly and the imprint drive assembly, and the vertical drive guide structure is driven again to raise the mold.
  • the drive connector of the mold is connected to the lower output end of the expanding drive assembly and the imprinting drive assembly.
  • Two types of expansion and imprinting molds are installed on the production line at the same time, so that the two types of cans are The expansion and imprinting molds can be quickly switched, saving time and effort, reducing production costs and ensuring production progress.
  • Fig. 1 is a schematic structural diagram of the front view of the present invention
  • Figure 2 is a schematic top view of the structure of the present invention.
  • Fig. 3 is a schematic diagram of a three-dimensional structure of the invention.
  • Positioning plate 1 combined bracket 2, expanding drive assembly 3, imprinting drive assembly 4, slide rail plate 5, first expanding mold 6, second expanding mold 7, first imprinting mold 8, second imprinting Mold 9, linear bearing 10, drive connector 11, vertical drive cylinder 12, upper end plate 13, vertical guide column 14, connecting rod 15, through positioning hole 16, positioning pin 17, drive motor 18, handle 19, avoiding hole 20, Stop bolt 21, body mounting plate 22.
  • a double-stretching-square and double-imprinting mechanism as shown in Figure 1 to Figure 3: It includes two positioning plates 1 arranged in parallel, and the two positioning plates are fixedly connected to the frame of the stepping production line through a bracket (not shown in the figure, It belongs to the existing mature structure), the upper surface of the two positioning plates 1 is fixedly equipped with a combined bracket 2, and the combined bracket 2 is fixedly installed with an expansion drive assembly 3 and an imprint drive assembly 4, an expansion drive assembly 3, an imprint
  • the drive components 4 are arranged with a barrel space apart, and the two positioning plates 1 are connected to the corresponding sides of the slide rail plate 5 through a pair of guide rails.
  • the slide rail plate 5 travels straight along the positioning plate 1, and the slide rail plate 5 runs along it.
  • a first expansion mold 6, a second expansion mold 7, a first imprinting mold 8, and a second imprinting mold 9 are sequentially arranged in the longitudinal direction.
  • Each adjacent mold is arranged with a barrel space apart, each The main body mounting plate 22 of the mold is connected to the vertical driving guide structure, and the vertical driving guide structure synchronously drives the convex driving connector 11.
  • the driving connector 11 of each mold is used to connect the corresponding expansion drive assembly 3 and the imprinting drive.
  • the vertical guide driving structure specifically includes vertical driving cylinders 12, upper end plates 13, and vertical guide posts 14 on both sides.
  • the vertical driving cylinders 12 are fixed on the upper end plate 13, and the two sides of each upper end plate 13 are respectively fixed to the vertical guide posts 14
  • the vertical guide post 14 is fixed to the corresponding position of the slide rail plate 5.
  • the lower piston end of each vertical drive cylinder 12 penetrates the slide rail plate 5 and connects to the corresponding upper surface of the body mounting plate 22, the drive connector of the mold 11 After passing through the body mounting plate 22 and the slide rail plate 5, the drive connector 11 is connected to the transmission structure in the mold through the connecting rod 15, and the transmission structure drives the corresponding mold to complete the expansion or imprinting action;
  • the bottom of the vertical guide post 14 penetrates the slide rail plate 5 and is sleeved with a corresponding linear bearing 10, and the linear bearing 10 is fixed on the corresponding imprinting mold body mounting plate 22 Location, due to the heavy weight of the imprinting mold, a linear bearing 10 is provided for auxiliary guidance;
  • the vertical drive cylinders 12 corresponding to the four molds are opened or closed synchronously through the external controller to ensure the synchronization of the actions;
  • Corresponding through positioning holes 16 are provided on the positioning plate 1, two positioning internal recessed holes are arranged on the corresponding side of the slide rail plate 5, the interval between the two positioning internal recesses is a stepping bucket position, and the positioning pin 17 is inserted It is installed in the through positioning hole 16, and the positioning inner concave hole completes the positioning of the position of a set of expanding molds and imprinting molds;
  • the two ends of the positioning plate 1 are respectively provided with stop bolts 21.
  • the stop bolts of the positioning plate 1 ensure that the linear direction travel distance of the slide rail plate 5 is a distance of one step barrel at a time, ensuring quick and reliable mold conversion;
  • a drive motor 18 is arranged between the expansion drive assembly 3 and the imprint drive assembly 4.
  • the drive motor 18 includes two output shafts, one of which is connected to the power input end of the expansion drive assembly 3, and the other output shaft is connected to the press
  • the power input end of the printing drive assembly 4 makes the expansion and imprinting on the production line use the same power, so that the synchronization is good, the cost is reduced, and the energy consumption is reduced;
  • Both ends of the slide rail plate 5 in the longitudinal direction are respectively provided with handles 19 to facilitate the rapid pushing and pulling of the slide rail plate 5 in the linear direction;
  • the positions of the outer casings of the expansion drive assembly 3 and the imprint drive assembly 4 corresponding to the vertical drive guide structure are provided with escape holes 20 to ensure the normal operation of the vertical drive structure driven by the slide rail plate.
  • Two types of can type expansion and imprinting molds are installed on the production line at the same time, so that the expansion and imprinting molds of the two types of cans can be quickly switched, which saves time and effort, and reduces Reduce the production cost and ensure the production schedule.

Abstract

一种双涨方双压印机构,其在产线上同时设置有两种罐型的涨方模具(6,7)和压印模具(8,9),使得两种罐型的涨方模具(6,7)和压印模具(8,9)快速切换,省时省力,降低了生产成本,确保了生产进度。其包括两条平行布置的定位板(1),两条定位板(1)的上表面固装有组合支架(2),所述组合支架(2)上间隔固装有涨方驱动组件(3)、压印驱动组件(4),所述涨方驱动组件(3)、压印驱动组件(4)之间间隔一个桶位布置,两条所述定位板(1)之间通过导轨副连接滑轨板(5)的对应侧,所述滑轨板(5)沿着所述定位板(1)直线行进,所述滑轨板(5)上沿着其长度方向顺次设置有第1涨方模具(6)、第2涨方模具(7)、第1压印模具(8)、第2压印模具(9),每个相邻的模具间间隔一个桶位布置,每个所述模具的本体安装板(22)连接垂直向驱动导向结构。

Description

一种双涨方双压印机构 技术领域
本发明涉及包装罐制作的技术领域,具体为一种双涨方双压印机构。
背景技术
现有的包装罐在制作时,在正常生产时一种罐型需要一条完整的生产线来进行制作,在实际生产中,生产线需要生产另外一种罐型时,需要通过人工在原来的涨方和压印工位更换对应的模具,使得模具的更换费时费力,耽误生产进度。
发明内容
针对上述问题,本发明提供了一种双涨方双压印机构,其在产线上同时设置有两种罐型的涨方和压印模具,使得两种罐型的涨方和压印模具快速切换,省时省力,降低了生产成本,确保了生产进度。
一种双涨方双压印机构,其特征在于:其包括两条平行布置的定位板,两条定位板的上表面固装有组合支架,所述组合支架上间隔固装有涨方驱动组件、压印驱动组件,所述涨方驱动组件、压印驱动组件之间间隔一个桶位布置,两条所述定位板之间通过导轨副连接滑轨板的对应侧,所述滑轨板沿着所述定位板直线行进,所述滑轨板上沿着其长度方向顺次设置有有第1涨方模具、第2涨方模具、第1压印模具、第2压印模具,每个相邻的模具间间隔一个桶位布置,每个所述模具的本体安装板连接垂直向驱动导向结构,所述垂直向驱动导向结构同步驱动上凸的驱动连接头,每个所述模具的驱动连接头用于连接对应的涨方驱动组件、压印驱动组件的下部输出端。
其进一步特征在于:
所述垂直向导向驱动结构具体包括两侧的垂直驱动气缸、上端板、垂直导柱,所述垂直驱动气缸固装于所述上端板,每个所述上端板的两侧分别固接所述垂直导柱的顶部,所述垂直导柱固接于所述滑轨板的对应位置,每个所述垂直驱动气缸的下部活塞端贯穿所述滑轨板后连接所述本体安装板的对应上表面,所述模具的驱动连接头贯穿所述本体安装板、滑轨板后上凸,所述驱动连接头通过连杆连接所述模具内的传动结构,所述传动结构带动对应的模具完成涨方或压印动作;
对应于压印模具的所述垂直向导向驱动结构的所述垂直导柱的底部贯穿所述滑轨板后套设有对应的直线轴承,所述直线轴承固装于对应压印模具的本体安装板的对应位置;
四个所述模具所对应的垂直驱动气缸通过外接控制器同步打开或关闭,确保动作同步一致;
所述定位板上设置有对应的贯穿定位孔,所述滑轨板上对应侧布置有两个定位内凹孔,两个定位内凹孔之间的间隔为一个步进桶位,定位销插装于贯穿定位孔、定位内凹孔完成对于一组涨方模具、压印模具位置的定位;
所述定位板的两末端分别设置有止挡螺栓,所述定位板的止挡螺栓确保滑轨板的直线方向行进距离单次为一个步进桶位的距离,确保模具转换快捷可靠;
所述涨方驱动组件、压印驱动组件之间布置有驱动电机,所述驱动电机包括两根输出轴,其中一个输出轴连接所述涨方驱动组件的动力输入端,另外一根输出轴连接所述压印驱动组件的动力输入端,使得生产线上的涨方、 压印均使用同一个动力,使得同步性好、降低成本,减少了能耗;
所述滑轨板的长度方向两端分别设置有拉手,便于方便滑轨板的直线方向快速推拉;
所述涨方驱动组件、压印驱动组件的外壳体对应于所述垂直向驱动导向结构的位置处设置有避让孔,确保垂直向驱动结构在滑轨板的带动下正常工作。
采用上述技术方案后,要切换使用另一个罐型时,垂直向驱动导向结构将模具下降,使得已经结合的驱动连接头脱离对应的涨方驱动组件、压印驱动组件的下部输出端,之后驱动滑轨板沿着定位板移动,使得另一个罐型所对应的涨方模具、压印模具位于涨方驱动组件、压印驱动组件的正下方布置,再次驱动垂直向驱动导向结构将模具上升,同时使得模具的驱动连接头对接住涨方驱动组件、压印驱动组件的下部输出端,其在产线上同时设置有两种罐型的涨方和压印模具,使得两种罐型的涨方和压印模具快速切换,省时省力,降低了生产成本,确保了生产进度。
附图说明
图1为本发明的主视图结构示意图;
图2为本发明的俯视图结构示意图;
图3为发明的立体图结构示意图;
图中序号所对应的名称如下:
定位板1、组合支架2、涨方驱动组件3、压印驱动组件4、滑轨板5、第1涨方模具6、第2涨方模具7、第1压印模具8、第2压印模具9、直线轴承10、驱动连接头11、垂直驱动气缸12、上端板13、垂直导柱14、连杆15、 贯穿定位孔16、定位销17、驱动电机18、拉手19、避让孔20、止挡螺栓21、本体安装板22。
具体实施方式
一种双涨方双压印机构,见图1-图3:其包括两条平行布置的定位板1,两条定位板通过支架固接于步进生产线的框架上(图中未画出、属于现有成熟结构),两条定位板1的上表面固装有组合支架2,组合支架2上间隔固装有涨方驱动组件3、压印驱动组件4,涨方驱动组件3、压印驱动组件4之间间隔一个桶位布置,两条定位板1之间通过导轨副连接滑轨板5的对应侧,滑轨板5沿着定位板1直线行进,滑轨板5上沿着其长度方向顺次设置有有第1涨方模具6、第2涨方模具7、第1压印模具8、第2压印模具9,每个相邻的模具间间隔一个桶位布置,每个模具的本体安装板22连接垂直向驱动导向结构,垂直向驱动导向结构同步驱动上凸的驱动连接头11,每个模具的驱动连接头11用于连接对应的涨方驱动组件3、压印驱动组件4的下部输出端。
垂直向导向驱动结构具体包括两侧的垂直驱动气缸12、上端板13、垂直导柱14,垂直驱动气缸12固装于上端板13,每个上端板13的两侧分别固接垂直导柱14的顶部,垂直导柱14的固接于滑轨板5的对应位置,每个垂直驱动气缸12的下部活塞端贯穿滑轨板5后连接本体安装板22的对应上表面,模具的驱动连接头11贯穿本体安装板22、滑轨板5后上凸,驱动连接头11通过连杆15连接模具内的传动结构,传动结构带动对应的模具完成涨方或压印动作;
对应于压印模具的垂直向导向驱动结构的垂直导柱14的底部贯穿滑轨板 5后套设有对应的直线轴承10,直线轴承10固装于对应压印模具的本体安装板22的对应位置,由于压印模具重量大,故设置直线轴承10用于辅助导向;
四个模具所对应的垂直驱动气缸12通过外接控制器同步打开或关闭,确保动作同步一致;
定位板1上设置有对应的贯穿定位孔16,滑轨板5上对应侧布置有两个定位内凹孔,两个定位内凹孔之间的间隔为一个步进桶位,定位销17插装于贯穿定位孔16、定位内凹孔完成对于一组涨方模具、压印模具位置的定位;
定位板1的两末端分别设置有止挡螺栓21,定位板1的止挡螺栓确保滑轨板5的直线方向行进距离单次为一个步进桶位的距离,确保模具转换快捷可靠;
涨方驱动组件3、压印驱动组件4之间布置有驱动电机18,驱动电机18包括两根输出轴,其中一个输出轴连接涨方驱动组件3的动力输入端,另外一根输出轴连接压印驱动组件4的动力输入端,使得生产线上的涨方、压印均使用同一个动力,使得同步性好、降低成本,减少了能耗;
滑轨板5的长度方向两端分别设置有拉手19,便于方便滑轨板5的直线方向快速推拉;
涨方驱动组件3、压印驱动组件4的外壳体对应于垂直向驱动导向结构的位置处设置有避让孔20,确保垂直向驱动结构在滑轨板的带动下正常工作。
其工作原理如下:要切换使用另一个罐型时,将定位板上的定位销拔出,通过控制器驱动垂直向气缸带动模具下降,使得已经结合的驱动连接头脱离对应的涨方驱动组件、压印驱动组件的下部输出端,之后通过拉手朗驱动滑轨板沿着定位板移动,通过止挡螺栓限位,使得另一个罐型所对应的涨方模 具、压印模具快速切换位于涨方驱动组件、压印驱动组件的正下方布置,再次驱动垂直驱动气缸将模具上升,同时使得模具的驱动连接头对接住涨方驱动组件、压印驱动组件的下部输出端,插入定位销,之后即可进行另一桶型的生产,其在产线上同时设置有两种罐型的涨方和压印模具,使得两种罐型的涨方和压印模具快速切换,省时省力,降低了生产成本,确保了生产进度。
对于本领域技术人员而言,显然本发明不限于上述示范性实施例的细节,而且在不背离本发明的精神或基本特征的情况下,能够以其他的具体形式实现本发明。因此,无论从哪一点来看,均应将实施例看作是示范性的,而且是非限制性的,本发明的范围由所附权利要求而不是上述说明限定,因此旨在将落在权利要求的等同要件的含义和范围内的所有变化囊括在本发明内。不应将权利要求中的任何附图标记视为限制所涉及的权利要求。
此外,应当理解,虽然本说明书按照实施方式加以描述,但并非每个实施方式仅包含一个独立的技术方案,说明书的这种叙述方式仅仅是为清楚起见,本领域技术人员应当将说明书作为一个整体,各实施例中的技术方案也可以经适当组合,形成本领域技术人员可以理解的其他实施方式。

Claims (9)

  1. 一种双涨方双压印机构,其包括两条平行布置的定位板,两条定位板的上表面固装有组合支架,所述组合支架上间隔固装有涨方驱动组件、压印驱动组件,所述涨方驱动组件、压印驱动组件之间间隔一个桶位布置,两条所述定位板之间通过导轨副连接滑轨板的对应侧,所述滑轨板沿着所述定位板直线行进,所述滑轨板上沿着其长度方向顺次设置有有第1涨方模具、第2涨方模具、第1压印模具、第2压印模具,每个相邻的模具间间隔一个桶位布置,每个所述模具的本体安装板连接垂直向驱动导向结构,所述垂直向驱动导向结构同步驱动上凸的驱动连接头,每个所述模具的驱动连接头用于连接对应的涨方驱动组件、压印驱动组件的下部输出端。
  2. 如权利要求1所述的一种双涨方双压印机构,其特征在于:所述垂直向导向驱动结构具体包括两侧的垂直驱动气缸、上端板、垂直导柱,所述垂直驱动气缸固装于所述上端板,每个所述上端板的两侧分别固接所述垂直导柱的顶部,所述垂直导柱固接于所述滑轨板的对应位置,每个所述垂直驱动气缸的下部活塞端贯穿所述滑轨板后连接所述本体安装板的对应上表面,所述模具的驱动连接头贯穿所述本体安装板、滑轨板后上凸,所述驱动连接头通过连杆连接所述模具内的传动结构,所述传动结构带动对应的模具完成涨方或压印动作。
  3. 如权利要求2所述的一种双涨方双压印机构,其特征在于:对应于压印模具的所述垂直向导向驱动结构的所述垂直导柱的底部贯穿所述滑轨板后套设有对应的直线轴承,所述直线轴承固装于对应压印模具的本体安装板的对应位置。
  4. 如权利要求2所述的一种双涨方双压印机构,其特征在于:四个所述 模具所对应的垂直驱动气缸通过外接控制器同步打开或关闭。
  5. 如权利要求1所述的一种双涨方双压印机构,其特征在于:所述定位板上设置有对应的贯穿定位孔,所述滑轨板上对应侧布置有两个定位内凹孔,两个定位内凹孔之间的间隔为一个步进桶位,定位销插装于贯穿定位孔、定位内凹孔完成对于一组涨方模具、压印模具位置的定位。
  6. 如权利要求1所述的一种双涨方双压印机构,其特征在于:所述定位板的两末端分别设置有止挡螺栓。
  7. 如权利要求1所述的一种双涨方双压印机构,其特征在于:所述涨方驱动组件、压印驱动组件之间布置有驱动电机,所述驱动电机包括两根输出轴,其中一个输出轴连接所述涨方驱动组件的动力输入端,另外一根输出轴连接所述压印驱动组件的动力输入端。
  8. 如权利要求1所述的一种双涨方双压印机构,其特征在于:所述滑轨板的长度方向两端分别设置有拉手。
  9. 如权利要求1所述的一种双涨方双压印机构,其特征在于:所述涨方驱动组件、压印驱动组件的外壳体对应于所述垂直向驱动导向结构的位置处设置有避让孔。
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