CN216804115U - Mould structure for gliding of slide - Google Patents
Mould structure for gliding of slide Download PDFInfo
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- CN216804115U CN216804115U CN202122098983.5U CN202122098983U CN216804115U CN 216804115 U CN216804115 U CN 216804115U CN 202122098983 U CN202122098983 U CN 202122098983U CN 216804115 U CN216804115 U CN 216804115U
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Abstract
本实用新型公开了行位下滑的模具结构,包括油缸和成型件,所述油缸的右部外侧设置有油缸座,且油缸座的内侧安置有油缸T块,所述油缸T块的右部外侧连接有第一行位块,且第一行位块的底部外侧设置有连动座,所述连动座的左侧底部设置有第一定位柱,且连动座的内侧开设有滑槽,所述第一行位块的左部外侧设置有第二行位块,该行位下滑的模具结构通过使行位镶件分离成第一行位镶件和第二行位镶件,并使第一行位镶件进行横移且第二行位镶件进行水平下移,能有效的解决成型件上同一行位有多个不同角度的倒扣时,行位镶件无法有效的与成型件分离的难题,此外设备结构稳定可靠,能长时间使用,并且能节省模具空间,降低模具成本。
The utility model discloses a mold structure with sliding position, which comprises an oil cylinder and a molded part, an oil cylinder seat is arranged on the outer side of the right part of the oil cylinder, and an oil cylinder T block is arranged on the inner side of the oil cylinder seat, and the outer side of the right part of the oil cylinder T block is arranged A first row position block is connected, and the bottom outer side of the first row position block is provided with a linkage seat, the left bottom of the linkage seat is provided with a first positioning column, and the inner side of the linkage seat is provided with a chute, A second row position block is arranged on the outer side of the left part of the first row position block, and the row position sliding mold structure is separated into a first row position insert piece and a second row position The first row of inserts is moved horizontally and the second row of inserts is moved down horizontally, which can effectively solve the problem that when there are multiple undercuts of different angles in the same row on the molded part, the row of inserts cannot be effectively formed. In addition, the structure of the equipment is stable and reliable, it can be used for a long time, and it can save the mold space and reduce the mold cost.
Description
技术领域technical field
本实用新型涉及模具制作技术领域,具体为行位下滑的模具结构。The utility model relates to the technical field of mold making, in particular to a mold structure with a sliding position.
背景技术Background technique
模具是工业生产上用以注塑、吹塑、挤出、压铸或锻压成型、冶炼、冲压等方法得到所需产品的各种模子和工具,简而言之,模具是用来制作成型物品的工具,而注塑模具是最为常见的一种模具,在模具行业里,机械运动是行位常用的运动方式,在产品内部有扣位,不能直接脱模时,就要用到行位结构。Molds are various molds and tools used in industrial production to obtain the desired products by injection molding, blow molding, extrusion, die casting or forging, smelting, stamping, etc. In short, molds are tools used to make molded articles , And the injection mold is the most common kind of mold. In the mold industry, mechanical movement is a common movement method for positioning. There is a buckle position inside the product, and the positioning structure is used when it cannot be directly demolded.
市场上常见的模具用行位结构当生产的成型件上同一行位有多个不同角度的倒扣时,行位镶件无法有效的与成型件分离,并且容易造成倒扣损坏的问题,为此,我们提出行位下滑的模具结构。The common mold row structure on the market When there are multiple undercuts with different angles in the same row on the produced molded part, the row insert cannot be effectively separated from the molded part, and it is easy to cause the problem of undercut damage. Therefore, we propose a mold structure with a sliding position.
实用新型内容Utility model content
本实用新型的目的在于提供行位下滑的模具结构,以解决上述背景技术中提出的模具用行位结构当生产的成型件上同一行位有多个不同角度的倒扣时,行位镶件无法有效的与成型件分离,并且容易造成倒扣损坏的问题。The purpose of the present utility model is to provide a mold structure with a sliding position, so as to solve the problem that when the mold position structure proposed in the above-mentioned background technology has a plurality of undercuts with different angles in the same row position, the position of the row position inserts It cannot be effectively separated from the molded part, and it is easy to cause the problem of undercut damage.
为实现上述目的,本实用新型提供如下技术方案:行位下滑的模具结构,包括油缸和成型件,所述油缸的右部外侧设置有油缸座,且油缸座的内侧安置有油缸T块,所述油缸T块的右部外侧连接有第一行位块,且第一行位块的底部外侧设置有连动座,所述连动座的左侧底部设置有第一定位柱,且连动座的内侧开设有滑槽,所述第一行位块的左部外侧设置有第二行位块,且第二行位块的底部外侧连接有第二定位柱,所述第二行位块的底部内侧连接有第一行位镶件,且第一行位镶件的顶部外侧开设有T型槽,所述第一行位镶件的顶部外侧连接有第二行位镶件,所述成型件安置于第二行位镶件的右部外侧,且成型件的外侧安置有铸模腔。In order to achieve the above purpose, the present utility model provides the following technical solutions: a mold structure with sliding position, including an oil cylinder and a molded part, an oil cylinder seat is provided on the outer side of the right part of the oil cylinder, and an oil cylinder T block is arranged on the inner side of the oil cylinder seat, so The outer side of the right part of the oil cylinder T block is connected with a first position block, and the outer side of the bottom of the first position block is provided with a linkage seat, and the bottom left side of the linkage seat is provided with a first positioning column, and the linkage seat is provided with a first positioning column. The inner side of the seat is provided with a chute, the left outer side of the first positioning block is provided with a second positioning block, and the bottom outer side of the second positioning block is connected with a second positioning column, and the second positioning block is A first row insert is connected to the inner side of the bottom of the first row, and a T-shaped groove is opened on the top outer side of the first row insert, and a second row insert is connected to the top outer side of the first row insert. The molded part is arranged on the outer side of the right part of the second row of inserts, and the outer side of the molded part is arranged with a mold cavity.
优选的,所述油缸T块与第一行位块卡合连接,且油缸T块的中心线与油缸座的中心线相互重合。Preferably, the oil cylinder T block is connected with the first row block, and the center line of the oil cylinder T block and the center line of the oil cylinder seat overlap each other.
优选的,所述第一行位块的外表面与油缸座的内表面相贴合,且第一行位块与连动座固定连接。Preferably, the outer surface of the first alignment block is in contact with the inner surface of the oil cylinder seat, and the first alignment block is fixedly connected to the linkage seat.
优选的,所述第二定位柱与第二行位块垂直状分布,且第二定位柱与连动座滑动连接。Preferably, the second positioning column and the second positioning block are vertically distributed, and the second positioning column is slidably connected to the linkage seat.
优选的,所述第一行位镶件与第一行位块螺纹连接,且第一行位镶件呈梯形结构。Preferably, the first alignment insert is threadedly connected to the first alignment block, and the first alignment insert has a trapezoidal structure.
优选的,所述第一行位镶件与T型槽之间为一体化,且第一行位镶件的上表面与第二行位镶件的下表面相贴合。Preferably, the first row insert and the T-shaped groove are integrated, and the upper surface of the first row insert is abutted with the lower surface of the second row insert.
本实用新型提供了行位下滑的模具结构,具备以下有益效果:The utility model provides a mold structure with a sliding position, and has the following beneficial effects:
1、本实用新型通过第一行位镶件进行回退的过程中,会从第二行位块内部的通孔中进行位移,在相互运动下,第一行位镶件顶部的T型槽能拉动第二行位镶件进行水平下移,这使得第二行位镶件能与成型件内部的多个扣位分离,通过使行位镶件分离成第一行位镶件和第二行位镶件,并使第一行位镶件进行横移且第二行位镶件进行水平下移,能有效的解决成型件上同一行位有多个不同角度的倒扣时,行位镶件无法有效的与成型件分离的难题,此外设备结构稳定可靠,能长时间使用,并且能节省模具空间,降低模具成本。1. During the retraction process of the first row insert, the utility model will be displaced from the through hole inside the second row block. Under the mutual movement, the T-slot on the top of the first row insert will be displaced. The second row of inserts can be pulled to move down horizontally, which enables the second row of inserts to be separated from a plurality of buckle positions inside the molded part, by separating the row of inserts into a first row of inserts and a second row of inserts The first row of inserts is moved horizontally and the second row of inserts is moved down horizontally, which can effectively solve the problem that when there are multiple undercuts of different angles in the same row on the molded part, the row position The problem is that the inserts cannot be effectively separated from the molded parts. In addition, the equipment has a stable and reliable structure, can be used for a long time, and can save mold space and reduce mold costs.
附图说明Description of drawings
图1为本实用新型行位下滑的模具结构的正视整体结构示意图;Fig. 1 is the front view overall structure schematic diagram of the mold structure of the utility model sliding position;
图2为本实用新型行位下滑的模具结构的第一行位块仰视结构示意图;Fig. 2 is the bottom view structural schematic diagram of the first row position block of the mold structure of the utility model sliding position;
图3为本实用新型行位下滑的模具结构的保温板结构示意图。FIG. 3 is a schematic structural diagram of the thermal insulation board of the mold structure with the sliding position of the utility model.
图中:1、油缸;2、油缸座;3、油缸T块;4、第一行位块;5、连动座;6、第一定位柱;7、滑槽;8、第二行位块;9、第二定位柱;10、第一行位镶件;11、T型槽;12、第二行位镶件;13、成型件;14、铸模腔。In the figure: 1. Oil cylinder; 2. Oil cylinder seat; 3. Oil cylinder T block; 4. The first row position block; block; 9, the second positioning column; 10, the first row of inserts; 11, the T-slot; 12, the second row of inserts; 13, the molding; 14, the mold cavity.
具体实施方式Detailed ways
请参考图1-3所示,行位下滑的模具结构,包括油缸1和成型件13,油缸1的右部外侧设置有油缸座2,且油缸座2的内侧安置有油缸T块3,油缸T块3的右部外侧连接有第一行位块4,且第一行位块4的底部外侧设置有连动座5,连动座5的左侧底部设置有第一定位柱6,且连动座5的内侧开设有滑槽7,第一行位块4的左部外侧设置有第二行位块8,且第二行位块8的底部外侧连接有第二定位柱9,第二行位块8的底部内侧连接有第一行位镶件10,且第一行位镶件10的顶部外侧开设有T型槽11,第一行位镶件10的顶部外侧连接有第二行位镶件12,成型件13安置于第二行位镶件12的右部外侧,且成型件13的外侧安置有铸模腔14,油缸T块3与第一行位块4卡合连接,且油缸T块3的中心线与油缸座2的中心线相互重合,第一行位块4的外表面与油缸座2的内表面相贴合,且第一行位块4与连动座5固定连接,第二定位柱9与第二行位块8垂直状分布,且第二定位柱9与连动座5滑动连接,第一行位镶件10与第一行位块4螺纹连接,且第一行位镶件10呈梯形结构,第一行位镶件10与T型槽11之间为一体化,且第一行位镶件10的上表面与第二行位镶件12的下表面相贴合,通过油缸1进行工作,能使油缸T块3带动第一行位块4在油缸座2的内侧进行滑动,这使得第一行位块4能推动第二行位块8进行位移,从而能使第二行位块8将第一行位镶件10和第二行位镶件12移动至铸模腔14的内侧,第一行位镶件10和第二行位镶件12外部形状与成型件13扣位的形状一致,当向铸模腔14内部进行浇筑时,第一行位镶件10和第二行位镶件12外侧的塑料冷却后便可形成成型件13的多个扣位,成型件13冷却完成后,通过油缸1进行工作,能使第一行位块4进行回退,第一行位块4与第一行位镶件10之间为螺纹连接,这使得第一行位块4能带动第一行位镶件10进行回退,而第二行位块8和第二行位镶件12未受到回退的力不进行移动,第一行位镶件10进行回退的过程中,会从第二行位块8内部的通孔中进行位移,在相互运动下,第一行位镶件10顶部的T型槽11能拉动第二行位镶件12进行水平下移,这使得第二行位镶件12能与成型件13内部的多个扣位分离,第一行位块4在回退的过程中,能使第一定位柱6带动连动座5进行移动,这使得连动座5能通过中端开设的滑槽7在第二定位柱9的表面进行滑动,油缸1继续向后抽动,第二定位柱9与滑槽7的末端接触后,连动座5能带动第二行位块8进行后移,这使得第一行位块4和第二行位块8能一同进行后移,从而能使第一行位镶件10和第二行位镶件12完全脱离成型件13,通过使行位镶件分离成第一行位镶件10和第二行位镶件12,并使第一行位镶件10进行横移且第二行位镶件12进行水平下移,能有效的解决成型件13上同一行位有多个不同角度的倒扣时,行位镶件无法有效的与成型件13分离的难题,此外设备结构稳定可靠,能长时间使用,并且能节省模具空间,降低模具成本。Please refer to Figures 1-3. The mold structure for the sliding position includes an
综上,该行位下滑的模具结构,使用时,首先根据图1-3中所示的结构,通过油缸1进行工作,能使油缸T块3带动第一行位块4在油缸座2的内侧进行滑动,这使得第一行位块4能推动第二行位块8进行位移,从而能使第二行位块8将第一行位镶件10和第二行位镶件12移动至铸模腔14的内侧,第一行位镶件10和第二行位镶件12外部形状与成型件13扣位的形状一致,当向铸模腔14内部进行浇筑时,第一行位镶件10和第二行位镶件12外侧的塑料冷却后便可形成成型件13的多个扣位。To sum up, when using the mold structure with the sliding position, first, according to the structure shown in Figures 1-3, the
然后成型件13冷却完成后,通过油缸1进行工作,能使第一行位块4进行回退,第一行位块4与第一行位镶件10之间为螺纹连接,这使得第一行位块4能带动第一行位镶件10进行回退,而第二行位块8和第二行位镶件12未受到回退的力不进行移动,第一行位镶件10进行回退的过程中,会从第二行位块8内部的通孔中进行位移,在相互运动下,第一行位镶件10顶部的T型槽11能拉动第二行位镶件12进行水平下移,这使得第二行位镶件12能与成型件13内部的多个扣位分离。Then, after the cooling of the
最后第一行位块4在回退的过程中,能使第一定位柱6带动连动座5进行移动,这使得连动座5能通过中端开设的滑槽7在第二定位柱9的表面进行滑动,油缸1继续向后抽动,第二定位柱9与滑槽7的末端接触后,连动座5能带动第二行位块8进行后移,这使得第一行位块4和第二行位块8能一同进行后移,从而能使第一行位镶件10和第二行位镶件12完全脱离成型件13。Finally, during the retreat of the
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| CN202122098983.5U CN216804115U (en) | 2021-09-02 | 2021-09-02 | Mould structure for gliding of slide |
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| CN202122098983.5U CN216804115U (en) | 2021-09-02 | 2021-09-02 | Mould structure for gliding of slide |
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