WO2021056130A1 - 一种基于流动导向的槟榔生产用切片装置 - Google Patents

一种基于流动导向的槟榔生产用切片装置 Download PDF

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Publication number
WO2021056130A1
WO2021056130A1 PCT/CN2019/107222 CN2019107222W WO2021056130A1 WO 2021056130 A1 WO2021056130 A1 WO 2021056130A1 CN 2019107222 W CN2019107222 W CN 2019107222W WO 2021056130 A1 WO2021056130 A1 WO 2021056130A1
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betel nut
cutting
fixedly installed
worm gear
rod
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PCT/CN2019/107222
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English (en)
French (fr)
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林春芬
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林春芬
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Priority to PCT/CN2019/107222 priority Critical patent/WO2021056130A1/zh
Publication of WO2021056130A1 publication Critical patent/WO2021056130A1/zh

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    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23NMACHINES OR APPARATUS FOR TREATING HARVESTED FRUIT, VEGETABLES OR FLOWER BULBS IN BULK, NOT OTHERWISE PROVIDED FOR; PEELING VEGETABLES OR FRUIT IN BULK; APPARATUS FOR PREPARING ANIMAL FEEDING- STUFFS
    • A23N15/00Machines or apparatus for other treatment of fruits or vegetables for human purposes; Machines or apparatus for topping or skinning flower bulbs

Definitions

  • the invention relates to the technical field of betel nut cutting, in particular to a slicing device for betel nut production based on flow orientation.
  • Betel nut is an evergreen tree with upright stem, arbor-like, more than 10 meters high, up to 30 meters high, with obvious circular leaf marks, monoecious, multi-branched inflorescence, and oblong ovary.
  • the fruit is oblong or ovoid, which is an important Chinese medicinal material, but it is used as a chewing hobby in the south.
  • betel nut is gradually being processed as a food.
  • the inventor provides a flow-oriented slicing device for betel nut production, which can guide and position the betel nut, reduce labor intensity, improve cutting efficiency, save manpower, and in the cutting process, It can clean up the residue on the surface of the cutting knife, thereby improving the cutting speed and cutting effect of the cutting knife.
  • a flow-oriented slicing device for betel nut production including a transfer box, a worm gear, a gear, an arc plate, a cutting box, a hydraulic rod, a connecting plate, and a pressure rod , Sleeve, buffer block, first spring, rotating rod, positioning block, second spring, groove, betel nut, mounting seat, cutting knife, protective cover, third spring.
  • a worm gear rod is rotatably connected to the inside of the transmission box, a gear is fixedly installed at the right end of the turbine rod, a circular arc plate is fixedly installed on the top between the worm gear rods in the transmission box, and the left end of the transmission box is fixedly installed
  • a cutting box the top of the cutting box is fixedly installed with a hydraulic rod, the bottom end of the hydraulic rod is fixedly installed with a connecting plate, the bottom end of the connecting rod is fixedly installed with a pressure rod, and the pressure rod is slidably connected to the sleeve
  • the inside of the sleeve is slidingly connected with a buffer block, the pressure rod and the buffer block are fixedly connected with a first spring in front, the bottom end of the buffer block is rotatably connected with a rotating rod, and the other end of the rotating rod rotates
  • a positioning block is connected, a second spring is fixedly connected between the positioning blocks, a groove is opened at the bottom of the inside of the cutting box, a betel
  • worm gear rods there are six worm gear rods in total, and the gears at the right end thereof mesh with each other, and the center of one of the gears is fixedly connected with a motor, so that when one gear is driven, it can drive other gears to rotate synchronously, and the adjacent gears are adjacent to each other.
  • the direction of rotation of the gears is opposite.
  • the six worm gear rods are divided into three groups according to the sequence of arrangement, the upper part of the two worm gear rods in a single group rotates toward the center, and the arc plate is located between the two sets of worm gear rods and on both sides of the worm gear rods. , There is a gap before the two worm gear rods in a single group, so that the betel nut can fall between the two worm gear rods that rotate in opposite directions, so that they are laid flat in the worm gear rod and transmitted forward.
  • the sleeve is fixedly installed inside the cutting box, the bottom of the pressure rod is slidably connected in the sleeve, and the two sleeves in the middle of the cutting box are movably connected with two rotating rods and two Positioning block, and the second spring is located between the two positioning blocks, a rotating rod and a positioning block are movably connected in the two sleeves on both sides of the cutting box, and the second spring is located between the positioning block and the positioning block.
  • positioning blocks are slidably connected to both sides of the betel nut, and the betel nut is squeezed and positioned at the same time when the pressing rod is moved downward.
  • the cross section of the groove is V-shaped, and the depth is less than half of the width of the betel nut, so that the betel nut can be placed in the groove more stably and can be pressed and positioned by the positioning block.
  • the invention provides a slicing device for betel nut production based on flow guidance. Has the following beneficial effects:
  • the flow-oriented slicing device for betel nut production through the design of the turbine rod in the transfer box and the cutting knife in the cutting box, can guide the betel nut so that it is laid flat between the turbine rods and transferred to the groove Inside, and then perform positioning cutting, thereby reducing labor intensity, improving cutting efficiency, and saving manpower.
  • the flow-oriented slicing device for betel nut production through the design of the positioning block and the protective cover, can stably center the betel nut during the downward movement of the cutting knife, and when the cutting knife is moved upward, the cutting The residue on the knife surface is cleaned up, thereby improving the cutting speed and cutting effect of the cutting knife.
  • Figure 1 is a schematic diagram of the structure of the present invention
  • Figure 2 is a schematic diagram of the structure of the worm gear shaft of the present invention.
  • Figure 3 is a cross-sectional view of the structure at A-A in Figure 2 of the present invention.
  • Figure 4 is a cross-sectional view of the structure at B-B in Figure 2 of the present invention.
  • Figure 5 is a cross-sectional view of the structure at C-C in Figure 1 of the present invention.
  • Fig. 6 is an enlarged view of the structure at A in Fig. 5 of the present invention.
  • a flow-oriented slicing device for betel nut production including a transfer box 1, a worm gear 2, a gear 3, an arc plate 4, a cutting box 5, a hydraulic rod 6, a connecting plate 7, and a pressure rod 8.
  • a worm gear rod 2 is rotatably connected to the inside of the transmission box 1, and a gear 3 is fixedly installed at the right end of the turbine rod 2.
  • a gear 3 is fixedly installed at the right end of the turbine rod 2.
  • the motor enables one gear 3 to be driven, which can drive other gears 3 to rotate synchronously, and the rotation direction of adjacent gears 3 is opposite.
  • the top of the transmission box 1 between the worm gear rods 2 is fixedly installed with an arc plate 4, six
  • the worm gear rods 2 are divided into three groups according to the sequence of arrangement.
  • the two worm gear rods 2 of a single group rotate to the center, and the arc plate 4 is located between the two sets of worm gear rods 2 and on both sides of the worm gear rods 2. There is a gap before the two worm gear rods 2, so that the betel nut 16 can fall between the two worm gear rods 2 rotating in opposite directions, so as to be laid flat in the worm gear rod 2 and transferred forward.
  • the left end of the transfer box 1 is fixedly installed with a cutting Box 5, the top of the cutting box 5 is fixedly installed with a hydraulic rod 6, the bottom end of the hydraulic rod 6 is fixedly installed with a connecting plate 7, the bottom end of the connecting rod 7 is fixedly installed with a pressure rod 8, and the pressure rod 8 is slidably connected to the sleeve 9.
  • the inside of the sleeve 9 is slidably connected with a buffer block 10, the pressure rod 8 and the buffer block 10 are fixedly connected to the first spring 11, the bottom end of the buffer block 10 is rotatably connected with a rotating rod 12, and the other end of the rotating rod 12 rotates
  • the positioning block 13 is connected, the sleeve 9 is fixedly installed inside the cutting box 5, the bottom of the pressing rod 8 is slidably connected in the sleeve 9, and the two sleeves 9 in the middle of the cutting box 5 are movably connected with two rotating rods. 12 and two positioning blocks 13, and the second spring 14 is located between the two positioning blocks 13, a rotating rod 12 and a positioning block 13 are movably connected in the two sleeves 9 on both sides of the cutting box 5.
  • the spring 14 is located between the positioning block 13 and the inner wall of the sleeve 9, so that both sides of the betel nut 16 are slidably connected to the positioning block 13, and when the pressing rod 8 moves downward, it moves to the middle at the same time, thereby squeezing the betel nut 16
  • the second spring 14 is fixedly connected between the positioning blocks 13, and the design of the turbine rod 2 in the transmission box 1 and the cutting knife 18 in the cutting box 5 can guide the betel nut 16 so that it is laid flat on the turbine rod 2. It is transferred to the groove 15 and then positioned and cut, thereby reducing labor intensity, improving cutting efficiency, and saving manpower.
  • the bottom end of the cutting box 5 is provided with a groove 15.
  • the cross section of the groove 15 is V-shaped and the depth is less than half of the width of the betel nut 16, so that the betel nut 16 can be placed in the groove 15 more stably and can be
  • the positioning block 13 is squeezed and positioned, the betel nut 16 is placed inside the groove 15, the bottom end of the connecting plate 7 is fixedly installed with a mounting seat 17, and the bottom of the mounting seat 17 is fixedly connected with a cutting knife 18, and the cutting knife 18 is located in the groove 15.
  • a protective cover 19 is slidably connected to the periphery of the cutting knife 18, and a third spring 20 is fixedly connected to the top of the protective cover 19.
  • the cutting knife 18 is moved down.
  • the betel nut 16 can be stably positioned in the center, and when the cutting knife 18 is moved upward, the residue on the cutting surface of the cutting knife 18 can be cleaned, thereby improving the cutting speed and cutting effect of the cutting knife 18.
  • the betel nut 16 When in use, the betel nut 16 is placed in the transfer box 1, and the arc plate 4 is used to make it fall between the two turbine rods 2 rotating in opposite directions, so that the betel nut 16 is better laid on the worm wheel 2 And use the friction force between the betel nut 16 and the worm gear 2 to push it forward to reach the groove 15 of the cutting box 5, and then use the hydraulic rod 6 to drive the connecting plate 7 to move down, so that the pressure rod 8
  • the first spring 11 is compressed to push the buffer block 10 to move downward.
  • the positioning block 13 can be moved outwards by the action of the rotating rod 12, thereby squeezing the betel nut 16 in the middle.
  • the connecting plate 7 Press to locate, and then the connecting plate 7 continues to move downwards, driving the mounting seat 17 to continue to move downwards.
  • the protective cover 19 contacts the betel nut 16, it will compress the third spring 20 to move upwards, and the cutting knife 18 continues to move downwards, thereby aligning The positioned betel nut 16 is cut.
  • the cutting knife 18 moves up and retracts into the protective cover 19 so that the bottom of the protective cover 19 and the surface attached to the cutting knife 18 clean up the residue on the cutting knife 18, while the connecting plate 7 drives the pressing rod 8 to move up, the positioning block 13 will also return to the initial position under the action of the second spring 14 to facilitate the next betel nut 16 to enter the groove 15.

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  • Life Sciences & Earth Sciences (AREA)
  • Chemical & Material Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Food Science & Technology (AREA)
  • Polymers & Plastics (AREA)
  • Shearing Machines (AREA)

Abstract

一种基于流动导向的槟榔生产用切片装置,涉及槟榔切割技术领域。该基于流动导向的槟榔生产用切片装置,包括传送箱(1),传送箱(1)的内部转动连接有蜗轮杆(2),蜗轮杆(2)的右端固定安装有齿轮(3),传送箱(1)内蜗轮杆(2)之间的顶部固定安装有圆弧板(4),传送箱(1)的左端固定安装有切割箱(5),切割箱(5)的顶部固定安装有液压杆(6),液压杆(6)的底端固定安装有连接板(7),连接板(7)的底端固定安装有压杆(8)。该基于流动导向的槟榔生产用切片装置能够对槟榔进行导向并定位切割,降低了劳动强度,提高了切割效率,节省了人力,且在切割过程中,能够对切割刀刀面上的残留物进行清理,从而提高了切割刀的切割速度和切割效果。

Description

一种基于流动导向的槟榔生产用切片装置 技术领域
本发明涉及槟榔切割技术领域,具体为一种基于流动导向的槟榔生产用切片装置。
背景技术
槟榔是一种棕榈科植物,属于常绿乔木,茎直立,乔木状,高10多米,最高可达30米,有明显的环状叶痕,雌雄同株,花序多分枝,子房长圆形,果实长圆形或卵球形,是重要的中药材,但在南方却将其作为一种咀嚼嗜好品,而随着槟榔爱好者的不断增多,槟榔也渐渐作为一种食品被集中加工。
在槟榔售卖之前,需要对槟榔鲜果进行一系列的工艺加工,而其中有一道工艺就是对槟榔进行切割,而由于槟榔晾干后外形不均匀,需要进行人工进行分类、筛选和切割,不仅劳动强度大,而且效率低下,而槟榔油性较大,在切割时,容易粘附在切割刀的表面,从而增大了刀片与槟榔之间的摩擦力,导致切割速度减缓。
为解决上述问题,发明者提供了一种基于流动导向的槟榔生产用切片装置,能够对槟榔进行导向并定位切割,降低了劳动强度,提高了切割效率,节省了人力,且在切割过程中,能够对切割刀刀面上的残留物进行清理,从而提高了切割刀的切割速度和切割效果。
发明内容
为实现以上目的,本发明通过以下技术方案予以实现:一种基于流动导向的槟榔生产用切片装置,包括传送箱、蜗轮杆、齿轮、圆弧板、切割箱、液压杆、连接板、压杆、套筒、缓冲块、第一弹簧、转杆、定位块、第二弹簧、凹槽、槟榔、安装座、切割刀、防护罩、第三弹簧。
其中:
所述传送箱的内部转动连接有蜗轮杆,所述涡轮杆的右端固定安装有齿轮,所述传送箱内蜗轮杆之间的顶部固定安装有圆弧板,所述传送箱的左端固定安装有切割箱,所述切割箱的顶部固定安装有液压杆,所述液压杆的底端固定安装有连接板,所述连接杆的底端固定安装有压杆,所述压杆滑动连接在套筒的内部,所述套筒的内部滑动连接有缓冲块,所述压杆和缓冲块之前固定连接第一弹簧,所述缓冲块的底端转动连接有转杆,所述转杆的另一端转动连接有定位块,所述定位块之间固定连接有第二弹簧,所述切割箱内部的底端开设有凹槽,所述凹槽的内部放置有槟榔,所述连接板的底端固定安装有安装座,所述安装座的底部固定连接有切割刀,所述切割刀位于凹槽中心的正上方,所述切割刀的外围滑动连接有防护罩,所述防护罩的顶端固定连接有第三弹簧。
优选的,所述蜗轮杆的数量共有六根,且其右端的齿轮均相互啮合,其中一个齿轮的中心固定连接有电机,使得一个齿轮被带动时,能够带动其他齿轮进行同步的转动,且相邻齿轮的旋转方向相反。
优选的,所述六根蜗轮杆按排列顺序分为三组,单组的两个所述蜗轮杆上方均向中心转动,且所述圆弧板位于两组蜗轮杆之间以及蜗轮杆的两侧,单组的两个蜗轮杆之前留有空隙,使得槟榔能够落入两个相向旋转的蜗轮杆之间,从而在蜗轮杆内平铺,并被向前传送。
优选的,所述套筒固定安装在切割箱的内部,所述压杆的底部滑动连接在套筒内,所述切割箱内中间的两个套筒内活动连接有两根转杆和两个定位块,且所述第二弹簧位于两个定位块之间,所述切割箱内两侧的两个套筒内活动连接有一根转杆和一个定位块,所述第二弹簧位于定位块与套筒内壁之间,使得槟榔的两侧均滑动连接有定位块,并在压杆下移的过程中,同时向中间移动,从而对槟榔进行挤压定位。
优选的,所述凹槽的横切面为V字形,且深度小于槟榔的宽度的一半, 使得槟榔能够更加稳定地放置在凹槽内,且能够被定位块进行挤压定位。
本发明提供了一种基于流动导向的槟榔生产用切片装置。具备以下有益效果:
1、该基于流动导向的槟榔生产用切片装置,通过传送箱内涡轮杆和切割箱内切割刀的设计,能够对槟榔进行导向,使其平铺在涡轮杆之间,并被传送至凹槽内,然后进行定位切割,从而降低了劳动强度,提高了切割效率,节省了人力。
2、该基于流动导向的槟榔生产用切片装置,通过定位块和防护罩的设计,在切割刀下移的过程中,能够对槟榔进行稳定的居中定位,并在切割刀上移时,对切割刀刀面上的残留物进行清理,从而提高了切割刀的切割速度和切割效果。
附图说明
图1为本发明结构示意图;
图2为本发明蜗轮杆的结构示意图;
图3为本发明图2中A-A处结构的剖视图;
图4为本发明图2中B-B处结构的剖视图;
图5为本发明图1中C-C处结构的剖视图;
图6为本发明图5中A处结构的放大图。
图中:1传送箱、2蜗轮杆、3齿轮、4圆弧板、5切割箱、6液压杆、7连接板、8压杆、9套筒、10缓冲块、11第一弹簧、12转杆、13定位块、14第二弹簧、15凹槽、16槟榔、17安装座、18切割刀、19防护罩、20第三弹簧。
具体实施方式
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分实施例,而 不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
该基于流动导向的槟榔生产用切片装置的实施例如下:
请参阅图1-6,一种基于流动导向的槟榔生产用切片装置,包括传送箱1、蜗轮杆2、齿轮3、圆弧板4、切割箱5、液压杆6、连接板7、压杆8、套筒9、缓冲块10、第一弹簧11、转杆12、定位块13、第二弹簧14、凹槽15、槟榔16、安装座17、切割刀18、防护罩19、第三弹簧20。
其中:
传送箱1的内部转动连接有蜗轮杆2,涡轮杆2的右端固定安装有齿轮3,蜗轮杆2的数量共有六根,且其右端的齿轮3均相互啮合,其中一个齿轮3的中心固定连接有电机,使得一个齿轮3被带动时,能够带动其他齿轮3进行同步的转动,且相邻齿轮3的旋转方向相反,传送箱1内蜗轮杆2之间的顶部固定安装有圆弧板4,六根蜗轮杆2按排列顺序分为三组,单组的两个蜗轮杆2上方均向中心转动,且圆弧板4位于两组蜗轮杆2之间以及蜗轮杆2的两侧,单组的两个蜗轮杆2之前留有空隙,使得槟榔16能够落入两个相向旋转的蜗轮杆2之间,从而在蜗轮杆2内平铺,并被向前传送,传送箱1的左端固定安装有切割箱5,切割箱5的顶部固定安装有液压杆6,液压杆6的底端固定安装有连接板7,连接杆7的底端固定安装有压杆8,压杆8滑动连接在套筒9的内部,套筒9的内部滑动连接有缓冲块10,压杆8和缓冲块10之前固定连接第一弹簧11,缓冲块10的底端转动连接有转杆12,转杆12的另一端转动连接有定位块13,套筒9固定安装在切割箱5的内部,压杆8的底部滑动连接在套筒9内,切割箱5内中间的两个套筒9内活动连接有两根转杆12和两个定位块13,且第二弹簧14位于两个定位块13之间,切割箱5内两侧的两个套筒9内活动连接有一根转杆12和一个定位块13,第二弹簧14位于定位块13与套筒9内壁之间,使得槟榔16的两侧均滑动连接有定位 块13,并在压杆8下移的过程中,同时向中间移动,从而对槟榔16进行挤压定位,定位块13之间固定连接有第二弹簧14,通过传送箱1内涡轮杆2和切割箱5内切割刀18的设计,能够对槟榔16进行导向,使其平铺在涡轮杆2之间,并被传送至凹槽15内,然后进行定位切割,从而降低了劳动强度,提高了切割效率,节省了人力。
切割箱5内部的底端开设有凹槽15,凹槽15的横切面为V字形,且深度小于槟榔16的宽度的一半,使得槟榔16能够更加稳定地放置在凹槽15内,且能够被定位块13进行挤压定位,凹槽15的内部放置有槟榔16,连接板7的底端固定安装有安装座17,安装座17的底部固定连接有切割刀18,切割刀18位于凹槽15中心的正上方,切割刀18的外围滑动连接有防护罩19,防护罩19的顶端固定连接有第三弹簧20,通过定位块13和防护罩19的设计,在切割刀18下移的过程中,能够对槟榔16进行稳定的居中定位,并在切割刀18上移时,对切割刀18刀面上的残留物进行清理,从而提高了切割刀18的切割速度和切割效果。
在使用时,将槟榔16放置在传送箱1内,通过圆弧板4的作用使其掉落在相向转动的两个涡轮杆2之间,从而使槟榔16更好地平铺在蜗轮杆2之间,并利用槟榔16与蜗轮杆2之间的摩擦力,将其向前推动,使其到达切割箱5的凹槽15内,然后利用液压杆6带动连接板7进行下移,使得压杆8压缩第一弹簧11而推动缓冲块10向下移动,在缓冲块10向下移动的过程中,通过转杆12的作用,能够使定位块13向外移动,从而对中间的槟榔16进行挤压定位,然后连接板7持续下移,带动安装座17继续向下移动,当防护罩19与槟榔16接触后,会压缩第三弹簧20上移,而切割刀18继续向下移动,从而对定位的槟榔16进行切割,切割完成后,切割刀18上移,并回缩至防护罩19内,使得防护罩19底部与切割刀18贴附的表面对切割刀18上的残留物进行清理,而在连接板7带动压杆8上移的过程中,定位块13也会在第二 弹簧14的作用下回到初始位置,以方便下一个槟榔16进入到凹槽15内。
尽管已经示出和描述了本发明的实施例,对于本领域的普通技术人员而言,可以理解在不脱离本发明的原理和精神的情况下可以对这些实施例进行多种变化、修改、替换和变型,本发明的范围由所附权利要求及其等同物限定。

Claims (7)

  1. 一种基于流动导向的槟榔生产用切片装置,包括传送箱(1),其特征在于:所述传送箱(1)的内部转动连接有蜗轮杆(2),所述涡轮杆(2)的右端固定安装有齿轮(3),所述传送箱(1)内蜗轮杆(2)之间的顶部固定安装有圆弧板(4),所述传送箱(1)的左端固定安装有切割箱(5),所述切割箱(5)的顶部固定安装有液压杆(6),所述液压杆(6)的底端固定安装有连接板(7),所述连接杆(7)的底端固定安装有压杆(8),所述压杆(8)滑动连接在套筒(9)的内部,所述套筒(9)的内部滑动连接有缓冲块(10),所述压杆(8)和缓冲块(10)之前固定连接第一弹簧(11),所述缓冲块(10)的底端转动连接有转杆(12),所述转杆(12)的另一端转动连接有定位块(13),所述定位块(13)之间固定连接有第二弹簧(14),所述切割箱(5)内部的底端开设有凹槽(15),所述凹槽(15)的内部放置有槟榔(16),所述连接板(7)的底端固定安装有安装座(17),所述安装座(17)的底部固定连接有切割刀(18),所述切割刀(18)的外围滑动连接有防护罩(19),所述防护罩(19)的顶端固定连接有第三弹簧(20)。
  2. 根据权利要求1所述的一种基于流动导向的槟榔生产用切片装置,其特征在于:所述蜗轮杆(2)的数量共有六根,且其右端的齿轮(3)均相互啮合,其中一个齿轮(3)的中心固定连接有电机。
  3. 根据权利要求1所述的一种基于流动导向的槟榔生产用切片装置,其特征在于:所述六根蜗轮杆(2)按排列顺序分为三组,单组的两个所述蜗轮杆(2)上方均向中心转动,且所述圆弧板(4)位于两组蜗轮杆(2)之间以及蜗轮杆(2)的两侧,单组的两个蜗轮杆(2)之前留有空隙。
  4. 根据权利要求1所述的一种基于流动导向的槟榔生产用切片装置,其特征在于:所述套筒(9)固定安装在切割箱(5)的内部,所述压杆(8)的底部滑动连接在套筒(9)内。
  5. 根据权利要求1所述的一种基于流动导向的槟榔生产用切片装置,其 特征在于:所述切割箱(5)内中间的两个套筒(9)内活动连接有两根转杆(12)和两个定位块(13),且所述第二弹簧(14)位于两个定位块(13)之间,所述切割箱(5)内两侧的两个套筒(9)内活动连接有一根转杆(12)和一个定位块(13),所述第二弹簧(14)位于定位块(13)与套筒(9)内壁之间。
  6. 根据权利要求1所述的一种基于流动导向的槟榔生产用切片装置,其特征在于:所述凹槽(15)的横切面为V字形,且深度小于槟榔(16)的宽度的一半。
  7. 根据权利要求1所述的一种基于流动导向的槟榔生产用切片装置,其特征在于:所述切割刀(18)位于凹槽(15)中心的正上方。
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TWM258804U (en) * 2004-05-11 2005-03-11 Wun-Bang Jhong An improvement of a sifting and cutting structure for betel nuts
KR20130014994A (ko) * 2011-08-01 2013-02-12 엄재풍 더덕, 우엉 및 도라지 박피기.
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