WO2016155459A1 - 火腿肠打扣和切断装置 - Google Patents

火腿肠打扣和切断装置 Download PDF

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Publication number
WO2016155459A1
WO2016155459A1 PCT/CN2016/075553 CN2016075553W WO2016155459A1 WO 2016155459 A1 WO2016155459 A1 WO 2016155459A1 CN 2016075553 W CN2016075553 W CN 2016075553W WO 2016155459 A1 WO2016155459 A1 WO 2016155459A1
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Prior art keywords
type
shaped
buckle
groove
cutting device
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PCT/CN2016/075553
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English (en)
French (fr)
Inventor
王彬
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北京洋航科贸有限公司
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Publication of WO2016155459A1 publication Critical patent/WO2016155459A1/zh

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    • AHUMAN NECESSITIES
    • A22BUTCHERING; MEAT TREATMENT; PROCESSING POULTRY OR FISH
    • A22CPROCESSING MEAT, POULTRY, OR FISH
    • A22C11/00Sausage making ; Apparatus for handling or conveying sausage products during manufacture
    • AHUMAN NECESSITIES
    • A22BUTCHERING; MEAT TREATMENT; PROCESSING POULTRY OR FISH
    • A22CPROCESSING MEAT, POULTRY, OR FISH
    • A22C11/00Sausage making ; Apparatus for handling or conveying sausage products during manufacture
    • A22C11/12Apparatus for tying sausage skins ; Clipping sausage skins
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B26HAND CUTTING TOOLS; CUTTING; SEVERING
    • B26DCUTTING; DETAILS COMMON TO MACHINES FOR PERFORATING, PUNCHING, CUTTING-OUT, STAMPING-OUT OR SEVERING
    • B26D1/00Cutting through work characterised by the nature or movement of the cutting member or particular materials not otherwise provided for; Apparatus or machines therefor; Cutting members therefor
    • B26D1/01Cutting through work characterised by the nature or movement of the cutting member or particular materials not otherwise provided for; Apparatus or machines therefor; Cutting members therefor involving a cutting member which does not travel with the work
    • B26D1/04Cutting through work characterised by the nature or movement of the cutting member or particular materials not otherwise provided for; Apparatus or machines therefor; Cutting members therefor involving a cutting member which does not travel with the work having a linearly-movable cutting member
    • B26D1/06Cutting through work characterised by the nature or movement of the cutting member or particular materials not otherwise provided for; Apparatus or machines therefor; Cutting members therefor involving a cutting member which does not travel with the work having a linearly-movable cutting member wherein the cutting member reciprocates
    • B26D1/10Cutting through work characterised by the nature or movement of the cutting member or particular materials not otherwise provided for; Apparatus or machines therefor; Cutting members therefor involving a cutting member which does not travel with the work having a linearly-movable cutting member wherein the cutting member reciprocates in, or substantially in, a direction parallel to the cutting edge

Definitions

  • the invention belongs to the field of food processing, and in particular relates to a ham bowing and cutting device.
  • the process of the process is first cut and then cut, and the ham sausage aluminum buckle exposed casing is longer, resulting in great waste of the PVDC casing film.
  • the present invention solves these problems well, not only realizes the simultaneous rotation of the buckle and the cutting, but also shortens the buckle distance by 5 mm, that is, the PVDC casing film used for each finished ham is reduced by 5 mm. This not only improves production efficiency, but also saves resources and reduces costs. It provides a new choice for manufacturers in the current general increase in the cost of production materials.
  • the present invention provides a ham bowing and cutting device, which can simultaneously achieve the action of buckle and cut, and the casing film used for each ham sausage can be reduced by 5 mm; the production efficiency is improved. , saving costs.
  • the technical solution adopted by the present invention is to provide a ham sausage buckle and cutting device, which comprises a primary molding upper and lower type mechanism, a secondary molding upper and lower type mechanism, and a cluster plate mechanism.
  • the forming upper and lower type mechanism comprises a primary forming upper type and a primary forming lower type
  • the secondary forming upper and lower type mechanism comprises a secondary forming lower type and a secondary forming upper type; the primary forming upper type and the one forming forming lower type matching are passed once.
  • the upper surface of the overmolded lower type is provided with a Y-shaped groove, and the Y-shaped groove includes two branches, each of which is provided with a release plate capable of moving along the respective branches, and the inside of the two off-plate tails
  • a clamping portion for placing a U-shaped aluminum wire is formed between the side faces, the clamping portion corresponding to the position of the U-shaped buckle of the primary molding type, and the tail end of the overmolded lower type is provided with a horizontal one a through-groove; a first end of the overmolded top is respectively provided with a U-shaped groove for pressing the U-shaped buckle into a heart-shaped buckle and a blade for cutting the casing film;
  • the bundling plate mechanism comprises a bundling plate and Two brackets connected to the bundle plate, and the two brackets are respectively connected to the overmolded upper by the upper clamp.
  • the stripper is fixed to the overmolded molding by a stripping fixing block.
  • a spring is disposed in each of the Y-shaped grooves, and the spring is fixed on the off-plate fixing block.
  • the front end of the blade is a V-shaped structure
  • the tail end of the overmolded lower type is a V-shaped structure corresponding to the front end of the blade.
  • the blade is fixed in the open groove of the overmolding type by the upper pressing block and the lower pressing block.
  • the primary molding is a square block structure, the lower surface of the square block structure is provided with a through groove, and the through groove is provided with a strip block and three through holes, and the three through holes are uniformly distributed a periphery of the strip-shaped block;
  • the one-shot molding type is a strip-shaped plate structure, and one end of the one-shot molding type is provided with a U-shaped port, and the one-time forming lower type is disposed in a through-shaped through-groove, and The U-shaped port cooperates with the strip block.
  • the primary molding upper and lower type mechanism further includes a bracket lever mechanism; the primary molding upper type and the lever mechanism are both fixed on the bracket, and the end of the lever mechanism is provided with a three-column pin, the three pillars The position of the pin corresponds to the position of the three through holes in the formed upper through groove.
  • the primary molding upper and lower type mechanism further includes a slider connected to the primary molding lower type for pushing the primary molding lower type to horizontally move in the one-piece upper type through groove.
  • each of the brackets includes two front and rear portions, one of which is connected to the upper and lower ends of the front portion, the two brackets include four baffles, and the four baffles form an inner groove, and both ends of the bundling plate The socket is inserted into the inner groove and can be horizontally moved on the inner groove; the bundling plate is connected to the bracket by a spring.
  • the bundling plate comprises two square blocks and two Y-shaped plates, and the two Y-shaped plates are symmetrically disposed between the two square blocks, and a cavity is formed between the two square blocks.
  • the present invention is provided with a secondary forming upper and lower type mechanism, the first end of which is matched with the primary forming upper and lower type mechanism, and the tail end is matched with the bundling plate mechanism, so that the buckle and the cutting action can be simultaneously realized, and the production efficiency is improved;
  • the buckle and cutting device of the present invention can also shorten the ham bowing distance by 5 mm, that is, the PVDC casing film used for each ham sausage is reduced by 5 mm, saving resources and reducing costs.
  • Figure 1 is a schematic view showing the structure of the ham bowing and cutting device of the present invention
  • Figure 2 is an exploded view of Figure 1;
  • FIG. 3 is a schematic structural view of a primary molding upper and lower mechanism
  • FIG. 4 is a schematic structural view of a secondary molding upper and lower type mechanism
  • Figure 5 is a schematic structural view of a cluster plate mechanism
  • Figure 6 is a mating diagram of a primary molding upper molding and a primary molding lower molding
  • Figure 7 is a view of the fit of the three-column pin and the one-shot molding
  • Figure 8 is a front elevational view of the overmolding and overmolding top fit
  • Figure 9 is a plan view of the overmolding and overmolding top fit
  • Figure 10 is a cross-sectional view taken along line A-A of Figure 9;
  • Figure 11 is a schematic view showing the structure of the over-molding upper-type and the over-molded lower-type matching to complete the buckle;
  • Fig. 12 is a schematic view showing the structure in which the secondary molding upper type and the secondary molding lower type are combined to complete the cutting.
  • the primary molding upper and lower type mechanism 1 includes a slider 11, a bracket 12, a primary molding upper mold 13, a primary molding lower mold 14, and a lever mechanism.
  • the bracket 12 includes a lower base and an upper fixing frame
  • the upper fixing frame has a frame-shaped structure
  • the slider 11 is always horizontally moved in the frame-shaped structure of the upper part of the bracket 12, and the primary forming upper type 13 is fixed on the upper part of the bracket 12.
  • the frame structure Inside the frame structure.
  • the primary molding upper type 13 includes two square block structures symmetrically arranged on the upper and lower sides, the lower surface of the upper square block is provided with a through groove 132, and the upper surface of the lower square block is provided with a through groove 131, two Each of the through grooves 131 and 132 is provided with a strip block 133 and three through holes 134, and three through holes 134 on each of the through grooves are uniformly distributed around the corresponding strip block.
  • the one-shot forming type 14 comprises two strip-shaped plates of the same structure, the width of the two strip-shaped plates is the same as the width of the through-grooves on the upper square block and the lower square block, and one end of each strip-shaped plate is provided with a U-shaped opening.
  • Two strip plates are respectively disposed in the two through slots 131, 132 Internally, the two U-shaped buckles are formed at one time, which improves the efficiency. Both strip plates are connected to the slider 11, and the aluminum wire 135 passing through the molded upper mold 13 is extruded into a U-shaped buckle 136 by the pushing of the slider 11, as shown in FIG.
  • a lever 15 is disposed on the lower base of the bracket 12, and the end of the lever 15 is fixed with a three-post pin 17 corresponding to the position of the three through holes of the upper and lower square blocks.
  • the three-column pin passes through the three through holes to press the U-shaped buckle into the lower surface of the overmolded lower mold, as shown in FIG.
  • the upper end of the upper fixing frame is provided with a bracket 19, and the bracket 19 is provided with a lever 16, the end of the lever 16 is fixed with a three-column pin 18, the position of the three-column pin 18 and three through holes on the square block on the upper molding type. The position corresponds to the U-shaped buckle being pressed into the overmolded upper surface by a three-post pin.
  • the lever 15 and the lever 16 are engaged by the sector gears, so that the ends of the two levers drive the three-column pins to move up and down, and the U-shaped buckles are pressed into the secondary forming and lowering type by the three-column pins.
  • FIG. 4 As shown in Figs. 4, 8, 9, and 10, it is a schematic structural view of the upper and lower type mechanism 1 in one molding.
  • the secondary molding upper and lower type mechanism 2 includes an overmolded lower mold 21 and a secondary molded upper mold 22.
  • the secondary molding lower mold 21 is a plate-like structure, and the upper surface and the lower surface are both provided with Y-shaped grooves 211, each of the Y-shaped grooves includes two branch portions, and each of the branch portions is provided with a release plate 212 movable along the respective branches.
  • a clamping portion for placing a U-shaped aluminum wire is formed between the inner sides of the two tail plates, and the clamping portion corresponds to the position of the U-shaped buckle of the primary molding type.
  • a spring is disposed in each of the Y-shaped grooves, and the spring is fixed to the strip fixing block 214.
  • the overmolded profile 21 is provided with a horizontal in-line slot 216 and a vertical opening slot 217 for the casing film to pass through.
  • the front end of the overmolded upper mold 22 is provided with upper and lower U-shaped grooves 26 for pressing the U-shaped aluminum wire into a chicken heart buckle, and the front end of the overmolded upper mold 22 is also fixed with a thread for passing through the slot 216.
  • Blade 23, the front end of the blade 23 is V-shaped mouth.
  • the overmolded upper mold 22 has a square block structure, and one end of the square block structure is provided with a horizontal groove 27 for fixing the upper pressing block 24 and the lower pressing block 25.
  • FIG. 5 it is a schematic structural view of the bundling plate mechanism 3.
  • the bundling plate mechanism 3 includes a bundling plate 31 and two brackets 34, 35 connected to the bundling plate 31. Both sides of the bundling plate are connected to the two brackets by springs 32, 33, and both brackets 34, 35 pass through
  • the type jig is connected to the overmolded upper type, and the lower end of the overmolded upper type is provided with a slider mechanism for driving the secondary forming upper type horizontal movement.
  • Each bracket includes two front and rear portions, one baffle is connected to the upper and lower portions of the front portion, and four baffles 36, 37, 38, 39 are arranged above and below the two brackets, and four baffles form an inner groove, and the bundling plate 31 Both sides are inserted into the inner groove and can move horizontally on the inner groove.
  • a stud 310, 311 is inserted between the upper and lower baffles of each bracket for limiting the displacement of the front end of the bundling plate 31.
  • the bundling plate 31 includes two square blocks and two Y-shaped plates which are respectively fixed between the two square blocks and form a cavity with the two square blocks.
  • the aluminum wire 135 is inserted into the primary forming upper mold 13, and the lower molding 14 is horizontally moved once.
  • the primary molding 14 is formed into a U-shaped buckle 136 by a U-shaped groove, as shown in FIG.
  • the secondary forming lower type is moved to the position corresponding to the primary forming upper type 13 by the lower slider mechanism, and the U-shaped buckle is pressed into the secondary forming lower type 21 through the three-column pin, and the secondary forming upper type 22 is moved to the corresponding position.
  • the U-shaped buckles 136 are pressed against each other to deform the U-shaped buckles 136 into a heart-shaped buckle, and the buckle process is completed, as shown in FIG.
  • the ham sausage buckle and cutting device of the present invention can not only achieve the buckle and the cutting action at the same time, but also can reduce the casing film used for each ham sausage by 5 mm. Increased production efficiency and saved costs.
  • the ham sausage buckle and cutting device of the present invention is not limited to the above specific embodiments, and other embodiments are obtained by those skilled in the art according to the technical solution of the present invention, and also belong to the technical innovation scope of the present invention.

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  • Life Sciences & Earth Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Wood Science & Technology (AREA)
  • Zoology (AREA)
  • Food Science & Technology (AREA)
  • Meat, Egg Or Seafood Products (AREA)
  • Forests & Forestry (AREA)
  • Mechanical Engineering (AREA)

Abstract

一种火腿肠打扣和切断装置,包括相互配合的一次成型上下型机构(1)、二次成型上下型机构(2)和集束板机构(3)。一次成型上下型机构包括一次成型上型(13)和一次成型下型(14),二次成型上下型机构包括二次成型下型(21)和二次成型上型(22);一次成型上型和一次成型下型配合,用于将穿入一次成型上型的铝丝制成U形扣,并将其压入二次成型下型;二次成型下型和二次成型上型配合,用于将U形扣挤压为鸡心扣,并将从上而下穿过的肠衣薄膜切断。该打扣和切断装置,能够同时实现打扣和切断,提高了生产效率,节约了成本。

Description

火腿肠打扣和切断装置 技术领域
本发明属于食品加工领域,具体涉及一种火腿肠打扣和切断装置。
背景技术
在现有的高温火腿肠打扣及切断装置中,其工艺动作过程均为先打扣后切断,而且火腿肠铝扣外露肠衣较长,造成了PVDC肠衣膜的极大浪费。而本新型很好的解决了这些问题,不但实现了打扣及切断的同步进行,而且将打扣距离缩短了5mm,即每根成品火腿肠所使用的PVDC肠衣膜减少了5mm。这不但提高了生产效率,而且节约了资源降低了成本,在当今生产资料成本普遍提高的情况下,为厂商提供了新的选择。
发明内容
针对现有技术中存在的缺陷,本发明提供一种火腿肠打扣和切断装置,不但能够同时实现打扣和切断的动作,而且每根火腿肠使用的肠衣膜能够减少5mm;提高了生产效率,节约了成本。
为达到以上目的,本发明采用的技术方案是:提供一种火腿肠打扣和切断装置,该装置包括相互配合的一次成型上下型机构、二次成型上下型机构以及集束板机构,所述一次成型上下型机构包括一次成型上型和一次成型下型,所述二次成型上下型机构包括二次成型下型和二次成型上型;一次成型上型和一次成型下型配合使穿过一次成型上型的铝丝形成U形 扣;所述二次成型下型的上表面设有Y型槽,所述Y型槽包括两个支部,每个支部内设有能够沿各自支部移动的脱板,两个脱板尾部的内侧面之间形成一个用于放置U形铝丝的夹持部,该夹持部与一次成型上型的U形扣位置相对应,所述二次成型下型的尾端设有水平向的一字通槽;二次成型上型的首端分别设有用于将U形扣挤压成鸡心扣的U形槽和用于切断肠衣薄膜的刀片;所述集束板机构包括集束板和与所述集束板连接的两个托架,两个所述托架通过上型夹具分别与二次成型上型连接。
进一步,所述脱板通过脱板固定块固定在所述二次成型下型上。
进一步,所述Y型槽每个支部内设有弹簧,该弹簧固定在所述脱板固定块上。
进一步,所述刀片的前端为V形结构,所述二次成型下型的尾端为与刀片的前端对应的V形结构。
进一步,所述刀片通过上压刀块和下压刀块固定在二次成型上型的开口槽内。
进一步,所述一次成型上型为方形块结构,该方形块结构的下表面设有通槽,所述通槽上设有条形块和三个通孔,所述三个通孔均布在条形块的周边;所述一次成型下型为条形板结构,该一次成型下型的一端设有U型口,所述一次成型下型穿设在一次成型上型的通槽内,且U型口与条形块配合。
进一步,所述一次成型上下型机构还包括托架杠杆机构;所述一次成型上型和杠杆机构均固定在所述托架上,所述杠杆机构的端部设有三柱销,所述三柱销的位置与一次成型上型通槽内三个通孔的位置相对应。
进一步,所述一次成型上下型机构还包括滑块,该滑块与一次成型下型连接,用于推动一次成型下型在一次成型上型的通槽内水平移动。
进一步,每个所述托架包括前后两个部分,前部分上下端各连接一个挡板,两个托架包括四个挡板,四个挡板形成一个内槽,所述集束板的两端插接在内槽上,且能够在内槽上水平移动;所述集束板通过弹簧与托架连接。
进一步,所述集束板包括两个方形块和两个Y形板,两个Y形板对称设置在两个方形块之间,且与两个方形块之间形成一个空腔。
本发明的有益技术效果在于:
(1)本发明通过设有二次成型上下型机构,其首端与一次成型上下型机构配合,尾端与集束板机构配合,能够同时实现打扣和切断的动作,提高了生产效率;
(2)本发明的打扣和切断装置,还能够将火腿肠打扣距离缩短5mm,即每根火腿肠所使用的PVDC肠衣膜减少5mm,节约了资源,降低了成本。
附图说明
图1是本发明火腿肠打扣和切断装置的结构示意图;
图2是图1的分解图;
图3是一次成型上下型机构的结构示意图;
图4是二次成型上下型机构的结构示意图;
图5是集束板机构的结构示意图;
图6是一次成型上型与一次成型下型的配合图;
图7是三柱销与一次成型上型的配合图;
图8是二次成型下型和二次成型上型配合的主视图;
图9是二次成型下型和二次成型上型配合的俯视图;
图10是图9中A-A的剖视图;
图11是二次成型上型与二次成型下型配合完成打扣的结构示意图;
图12是二次成型上型与二次成型下型配合完成切断的结构示意图。
具体实施方式
下面结合附图,对本发明的具体实施方式作进一步详细的描述。
如图1、2所示,是本发明提供的火腿肠打扣和切断装置,该装置包括相互配合的一次成型上下型机构1、二次成型上下型机构2以及集束板机构3。
如图3所示,一次成型上下型机构1包括滑块11、托架12、一次成型上型13、一次成型下型14以及杠杆机构。其中,托架12包括下部底座和上部固定架,上部固定架为框形结构,滑块11始终在托架12上部的框形结构内水平运动,一次成型上型13固定在托架12上部的框形结构内。为了一次完成两个U形扣,一次成型上型13包括上下对称设置的两个方形块结构,上方形块的下表面设有通槽132,下方形块的上表面设有通槽131,两个通槽131、132上均设有条形块133和三个通孔134,每个通槽上的三个通孔134均布在对应的条形块周边。一次成型下型14包括两个结构相同的条形板,两个条形板的宽度均与上方形块和下方形块上通槽的宽度相同,每个条形板的一端设有U型口,两个条形板分别穿设在两个通槽131、132 内,从而实现一次成形两个U形扣,提高了效率。两个条形板均与滑块11连接,通过滑块11的推动将穿过一次成型上型13的铝丝135挤压成U形扣136,如图6所示。
托架12下部底座上穿设有杠杆15,该杠杆15的端部固定有三柱销17,该三柱销17的位置与一次成型上型下方形块的三个通孔的位置相对应,从而三柱销穿过三个通孔将U形扣压入二次成型下型下表面,如图7所示。上部固定架的上端设有支架19,支架19上穿设有杠杆16,该杠杆16的端部固定三柱销18,三柱销18的位置与一次成型上型上方形块上三个通孔的位置相对应,从而通过三柱销将U形扣压入二次成型下型上表面。其中,杠杆15和杠杆16通过扇形齿轮的啮合,从而使两个杠杆的端部带动三柱销做上下运动,通过三柱销将U形扣压入二次成型下型。
如图4、8、9、10所示,是一次成型上下型机构1的结构示意图。
二次成型上下型机构2包括二次成型下型21和二次成型上型22。二次成型下型21为板状结构,且上表面和下表面均设有Y型槽211,每个Y型槽包括两个支部,每个支部内设有能够沿各自支部移动的脱板212,两个脱板尾部内侧面之间形成一个用于放置U形铝丝的夹持部,该夹持部与一次成型上型的U形扣位置相对应。Y型槽每个支部内设有弹簧,该弹簧固定在脱板固定块214上。二次成型下型21的一侧设有水平向的一字通槽216和用于肠衣薄膜穿过的垂直的开口槽217。二次成型上型22的前端设有用于将U形铝丝挤压成鸡心扣的上下两个U形槽26,二次成型上型22的前端还固定有用于穿入一字通槽216的刀片23,该刀片23的前端为V形开 口。二次成型上型22为方形块结构,该方形块结构的一端设有用于固定上压刀块24和下压刀块25的水平槽27。
如图5所示,是集束板机构3的结构示意图。
集束板机构3包括集束板31和与集束板31连接的两个托架34、35,集束板的两侧通过弹簧32、33与两个托架连接,两个托架34、35均通过上型夹具与二次成型上型连接,二次成型上型的下端设有用于驱动二次成型上型水平移动的滑块机构。每个托架包括前后两个部分,前部分上下各连接一个挡板,两个托架上下共有四个挡板36、37、38、39,四个挡板形成一个内槽,集束板31的两侧插接在内槽上,且能够在内槽上水平移动。
每个托架上下两个挡板的之间穿设轴钉310、311,用于限制集束板31的前端位移。集束板31包括两个方形块和两个Y形板,两个Y形板分别固定在两个方形块之间,且与两个方形块之间形成一个空腔。
下面是火腿肠打扣和切断装置的工作过程:
将铝丝135穿入一次成型上型13,水平移动一次成型下型14,一次成型下型14通过U形槽将铝丝制成U形扣136,如图6所示。二次成型下型通过下部的滑块机构运动到一次成型上型13对应的位置,通过三柱销,将U形扣压入二次成型下型21,同时二次成型上型22运动到对应位置后,与二次成型下型21相互挤压,使U形扣136受力变形成为鸡心扣,完成打扣过程,如图11所示。同时集束板结构3穿过二次成型上型22运动到相应位置后,与二次成型下型21相互挤压,将自上而下穿过的PVDC肠衣薄膜4集束成型,同时刀片随二次成型上型一起运动到相应位置后将火腿肠5的 PVDC肠衣薄膜切断,如图12所示。本结构各部分动作同步完成,高效、快捷。
综上所述,本发明的火腿肠打扣和切断装置,不但能够同时实现打扣和切断的动作,而且每根火腿肠使用的肠衣膜能够减少5mm。提高了生产效率,节约了成本。
本发明的火腿肠打扣和切断装置,该装置并不限于上述具体实施方式,本领域技术人员根据本发明的技术方案得出其他的实施方式,同样属于本发明的技术创新范围。

Claims (10)

  1. 一种火腿肠打扣和切断装置,所述装置包括相互配合的一次成型上下型机构(1)、二次成型上下型机构(2)以及集束板机构(3),其中,所述一次成型上下型机构(1)包括一次成型上型(13)和一次成型下型(14),所述二次成型上下型机构(2)包括二次成型下型(21)和二次成型上型(22);一次成型上型(13)和一次成型下型(14)配合使穿过一次成型上型(13)的铝丝形成U形扣;所述二次成型下型(21)的上表面设有Y型槽(211),所述Y型槽包括两个支部,每个支部内设有能够沿各自支部移动的脱板,两个脱板尾部的内侧面之间形成一个用于放置U形铝丝的夹持部,该夹持部与一次成型上型(13)的U形扣位置相对应,所述二次成型下型(21)的尾端设有水平向的一字通槽(216);二次成型上型(22)的首端分别设有用于将U形扣挤压成鸡心扣的U形槽和用于切断肠衣薄膜的刀片(23);所述集束板机构(3)包括集束板(31)和与所述集束板(31)连接的两个托架(34、35),两个所述托架通过上型夹具分别与二次成型上型(22)连接。
  2. 根据权利要求1所述的火腿肠打扣和切断装置,其中,所述脱板通过脱板固定块(214)固定在所述二次成型下型(21)上。
  3. 根据权利要求2所述的火腿肠打扣和切断装置,其中,所述Y型槽每个支部内设有弹簧,该弹簧固定在所述脱板固定块(214)上。
  4. 根据权利要求3所述的火腿肠打扣和切断装置,其中,所述刀片(23)的前端为V形结构,所述二次成型下型(21)的尾端为与刀片(23)的前端对应的V形结构。
  5. 根据权利要求4所述的火腿肠打扣和切断装置,其中,所述二次成型上型(22)的首端设有水平槽(27),所述刀片(23)通过上压刀块(24)和下压刀块(25)固定在二次成型上型(22)的水平槽(27)内。
  6. 根据权利要求1-5中任一项所述的火腿肠打扣和切断装置,其中,所述一次成型上型(13)为方形块结构,该方形块结构的下表面设有通槽,所述通槽上设有条形块和三个通孔,所述三个通孔均布在条形块的周边;所述一次成型下型(14)为条形板结构,该一次成型下型的一端设有U型口,所述一次成型下型穿设在一次成型上型的通槽内,且U型口与条形块配合。
  7. 根据权利要求6所述的火腿肠打扣和切断装置,其中,所述一次成型上下型机构(1)还包括托架(12)和杠杆机构;所述一次成型上型(13)和杠杆机构均固定在所述托架(12)上,所述杠杆机构的端部设有三柱销(17),所述三柱销(17)的位置与一次成型上型通槽内三个通孔(134)的位置相对应。
  8. 根据权利要求7所述的火腿肠打扣和切断装置,其中,所述一次成型上下型机构(1)还包括滑块(11),所述滑块(11)与一次成型下型连接,用于推动一次成型下型在一次成型上型的通槽内水平移动。
  9. 根据权利要求1所述的火腿肠打扣和切断装置,其中,每个所述托架包括前后两个部分,前部分上下端各连接一个挡板,两个托架包括四个挡板(36、37、38、39),四个挡板(36、37、38、39)形成一个内槽,所述集束板(31)的两端插接在内槽上,且能够在内槽上水平移动;所述集束板通过弹簧与托架连接。
  10. 根据权利要求9所述的火腿肠打扣和切断装置,其中,所述集束板(31)包括两个方形块和两个Y形板,两个Y形板对称设置在两个方形块之间,且与两个方形块之间形成一个空腔。
PCT/CN2016/075553 2015-03-30 2016-03-03 火腿肠打扣和切断装置 WO2016155459A1 (zh)

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