CN213639569U - Coconut peeling machine - Google Patents

Coconut peeling machine Download PDF

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Publication number
CN213639569U
CN213639569U CN202022600548.3U CN202022600548U CN213639569U CN 213639569 U CN213639569 U CN 213639569U CN 202022600548 U CN202022600548 U CN 202022600548U CN 213639569 U CN213639569 U CN 213639569U
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coconut
claw
cylinder
fixedly connected
base
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CN202022600548.3U
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Chinese (zh)
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陈洪平
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Individual
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Individual
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Abstract

The utility model discloses a coconut peeler, which comprises a base and a frame, wherein the frame is arranged above the base, a support component is inserted on the surface of the base, the support component respectively comprises a lower cylinder, a rotating motor, a material placing sleeve and a lower claw, the lower cylinder is fixedly connected inside the base, the transmission output end of the lower cylinder is fixedly connected with the rotating motor, the transmission output end of the rotating motor is in transmission connection with the lower claw, the material placing sleeve is sleeved outside the lower claw, the material placing sleeve is fixedly connected on the surface of the base, the top end inside the frame is fixedly connected with the upper cylinder, the transmission output end of the upper cylinder is in transmission connection with the upper claw, the coconut green is arranged between the upper claw and the lower claw, the frame surface is respectively provided with an undercut component and a beveling component, the utility model has simple structure, the cooperation operation between the components is fixed to the coconut green through the upper claw and the lower claw, the rotating motor drives the coconut green to, the side cutting component and the beveling component automatically cut the coconut green skin, so that the time and the labor are saved, and the safety is high.

Description

Coconut peeling machine
Technical Field
The utility model relates to a coconut is peeled and is used mechanical equipment technical field, specifically is a coconut chestnut peeling machine.
Background
The coconut (scientific name: Cocos nucifera L.) is a plant of the genus Cocos of the family Palmae, which is tall and big, arborous, 15-30 m tall, thick and strong stem with annular leaf marks, thickened base and often clustered small roots. The thick petiole, the axil of the inflorescence, the egg-shaped or nearly spherical shape of the fruit, the cavity of the fruit containing the endosperm (i.e. "pulp" or kernel), the embryo and the juice (coconut water), and the flowering and flowering phases are mainly in autumn. Coconut is native to southeast Asia, Indonesian to Pacific Islands, islands in south China Guangdong, and tropical regions in peninsula, Hainan, Taiwan, and south Yunnan.
Coconut green is also called green coconut, and compared with yellow coconut, the coconut green has shorter fruiting period, and the coconut water is fresh and sweet and has the effects of relieving fever and promoting the secretion of saliva. The coconut green peeling has the main function that the coconut green peeling can be carried out for fresh-keeping treatment after green husks are removed.
However, the existing coconut peeling machine has the following disadvantages:
1. the coconut peeling machine has the advantages of complex structure, troublesome operation, time and labor waste during use and low peeling work efficiency.
2. When the coconut peeling machine is used, multiple manual auxiliary operations are needed, so that great potential safety hazards exist, and the safety is poor.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a coconut peeling machine, which solves the problems of the prior coconut peeling machine in the background technology that the structure of the coconut peeling machine is complex, the operation is troublesome, the use is time-consuming and labor-consuming, and the peeling work efficiency is low; when the coconut peeling machine is used, multiple manual auxiliary operations are needed, so that the problems of great potential safety hazard and poor safety are solved.
In order to achieve the above object, the utility model provides a following technical scheme: a coconut peeling machine comprises a base and a frame, wherein the frame is installed above the base, a supporting component is inserted in the surface of the base and respectively composed of a lower cylinder, a rotating motor, a material placing sleeve and a lower claw, the lower cylinder is fixedly connected inside the base, the transmission output end of the lower cylinder is fixedly connected with the rotating motor, the transmission output end of the rotating motor is in transmission connection with the lower claw, the material placing sleeve is sleeved outside the lower claw and fixedly connected to the surface of the base, the top end inside the frame is fixedly connected with an upper cylinder, the transmission output end of the upper cylinder is in transmission connection with an upper claw, coconut green is arranged between the upper claw and the lower claw, a side cutting component and a beveling component are respectively installed on the surface of the frame, the coconut green is clamped and fixed through the upper claw and the lower claw, the rotating motor drives the coconut green to rotate, and the side cutting component and the beveling component automatically cut the coconut green, time and labor are saved, and the safety is high.
Preferably, the side cutting assembly comprises a side knife moving motor, a side knife sliding block and a side knife, the transmission output end of the side knife moving motor is in transmission connection with the side knife through the side knife sliding block, the side knife moving motor is detachably connected to the surface of the rack, the side cutting assembly is located on one side of the fixed coconut shell, after the lower jaw and the upper jaw clamp the coconut shell fixedly, the lower jaw is driven by a rotating motor to drive the coconut shell to rotate circumferentially, and after the side knife moving motor is electrified, the side knife is pushed to the coconut shell side wall through the side knife sliding block to peel the coconut shell side wall.
Preferably, the beveling component comprises a bevel knife, a bevel knife sliding block and a bevel knife moving motor respectively, the transmission output end of the bevel knife moving motor is in transmission connection with the bevel knife through the bevel knife sliding block, the bevel knife moving motor is detachably connected to the surface of the rack, the beveling component is located above the discharging sleeve in an inclined mode and is arranged in an inclined mode, the lower claw and the upper claw clamp and fix the coconut green, and after the bevel knife moving motor is powered on, the bevel knife is pushed to the inclined plane of the top of the coconut green through the bevel knife sliding block to perform peeling operation on the coconut green.
Preferably, the side cutting assembly is located one side of the discharging sleeve and is horizontally arranged, the beveling assembly is located obliquely above the discharging sleeve and is obliquely arranged, the side cutting assembly is matched with the beveling assembly to be used for peeling the outer surface of the coconut pulp, the operation is simple, and the cutting efficiency is improved.
Preferably, the frame surface is fixedly connected with the discharging cylinder, the frame surface is fixedly connected with the receiving groove, after the cutting operation is completed, the lower claw presses the coconut green to the upper surface of the discharging sleeve, the upper claw continuously descends to separate from the coconut green, the discharging cylinder is electrified, the discharging cylinder ejects the coconut green out of the discharging sleeve, the blanking is automatically performed along the receiving groove, and the automation degree is high.
Preferably, the discharging cylinder is located one side of the discharging sleeve, the receiving groove is located the other side of the discharging sleeve, the receiving groove is obliquely arranged, after cutting operation is completed, the lower claw presses the coconut green to the upper surface of the discharging sleeve, the upper claw continuously descends, the coconut green is separated, the discharging cylinder is electrified, the discharging cylinder ejects the coconut green out of the discharging sleeve, automatic blanking is performed along the receiving groove, and the automation degree is high.
The utility model provides a coconut chestnut peeling machine possesses following beneficial effect:
(1) the utility model discloses it has supporting component to peg graft on the base surface, and rack surface installs side respectively and cuts subassembly and oblique cutting assembly, and cooperation operation between each subassembly is fixed to the blue or green centre gripping of coconut palm through last claw and lower claw, and the blue or green rotation of rotating electrical machines drive coconut palm, and side is cut subassembly and oblique cutting assembly and is to the blue or green crust automatic cutout of coconut palm, and labour saving and time saving improves production efficiency.
(2) The utility model discloses the subassembly is cut to side is located blowing cover one side and is the level setting, and the oblique cutting subassembly is located blowing cover oblique top and is the slope setting, and the subassembly cooperation oblique cutting subassembly of cutting of side is used, and the operation of peeling is carried out to the blue or green surface of coconut palm, and the side sword of the subassembly of cutting to side and the oblique sword of oblique cutting subassembly all are located inside the frame, can not cause the injury to the human body, improve the security of using.
Drawings
FIG. 1 is a schematic view of the coconut peeling machine of the present invention;
FIG. 2 is a schematic view of a beveling assembly of a coconut peeler in accordance with the present invention;
FIG. 3 is a schematic view of a side cutting assembly of the coconut peeling machine of the present invention;
fig. 4 is a schematic view of a supporting assembly of the coconut peeling machine of the present invention.
In the figure: 1. lowering the cylinder; 2. a rotating electric machine; 3. discharging the material cylinder; 4. a material discharging sleeve; 5. a lower jaw; 6. a side cutter moving motor; 7. a side cutter slider; 8. side cutting; 9. a bevel blade; 10. a diagonal tool slide block; 11. a skew-blade moving motor; 12. feeding a cylinder; 13. an upper jaw; 14. coconut green; 15. a material receiving groove; 16. a base; 17. and a frame.
Detailed Description
The technical solution in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention.
As shown in fig. 1-4, the utility model provides a technical solution: a coconut peeling machine comprises a base 16 and a frame 17, wherein the frame 17 is installed above the base 16, a support assembly is inserted into the surface of the base 16 and respectively consists of a lower cylinder 1, a rotating motor 2, a material placing sleeve 4 and a lower claw 5, the lower cylinder 1 is fixedly connected inside the base 16, the transmission output end of the lower cylinder 1 is fixedly connected with the rotating motor 2, the transmission output end of the rotating motor 2 is in transmission connection with the lower claw 5, the material placing sleeve 4 is sleeved outside the lower claw 5, the material placing sleeve 4 is fixedly connected to the surface of the base 16, the top end inside the frame 17 is fixedly connected with an upper cylinder 12, the transmission output end of the upper cylinder 12 is in transmission connection with an upper claw 13, a coconut shell 14 is arranged between the upper claw 13 and the lower claw 5, a side cutting assembly and a beveling assembly are respectively installed on the surface of the frame 17, and the coconut shell 14 is clamped and fixed through the upper claw 13 and the lower claw 5, the rotary motor 2 drives the coconut green 14 to rotate, and the side cutting assembly and the beveling assembly automatically cut 14 outer skins of the coconut green, so that time and labor are saved, and the safety is high.
The side cutting assembly comprises a side knife moving motor 6, a side knife sliding block 7 and a side knife 8 respectively, the transmission output end of the side knife moving motor 6 is in transmission connection with the side knife 8 through the side knife sliding block 7, the side knife moving motor 6 is detachably connected to the surface of the rack 17, the side cutting assembly is located on one side of a fixed coconut shell 14, after the lower claw 5 and the upper claw 13 clamp and fix the coconut shell 14, the rotating motor 2 drives the lower claw 5 to drive the coconut shell 14 to rotate circumferentially, and after the side knife moving motor 6 is electrified, the side knife 8 is pushed to the side wall of the coconut shell 14 through the side knife sliding block 7 to peel the same.
The beveling component comprises a bevel knife 9, a bevel knife sliding block 10 and a bevel knife moving motor 11 respectively, the transmission output end of the bevel knife moving motor 11 is in transmission connection with the bevel knife 9 through the bevel knife sliding block 10, the bevel knife moving motor 11 is detachably connected to the surface of the rack 17, the beveling component is positioned above the discharging sleeve 4 in an inclined mode and is arranged in an inclined mode, the lower claw 5 and the upper claw 13 clamp and fix the coconut green 14, and after the bevel knife moving motor 11 is electrified, the bevel knife 9 is pushed to the inclined plane at the top of the coconut green 14 through the bevel knife sliding block 10 to peel the coconut green 14.
The side cutting assembly is located one side of the discharging sleeve 4 and is horizontally arranged, the beveling assembly is located obliquely above the discharging sleeve 4 and is obliquely arranged, the side cutting assembly is matched with the beveling assembly to be used for peeling the outer surface of the coconut green 14, the operation is simple, and the cutting efficiency is improved.
Frame 17 fixed surface connects discharging cylinder 3, frame 17 fixed surface connects and connects silo 15, and after the cutting operation was accomplished, lower claw 5 pushed down the blue or green 14 of coconut to the blowing cover 4 upper surface, and upper claw 13 continues to descend, breaks away from the blue or green 14 of coconut, to the circular telegram of discharging cylinder 3, discharging cylinder 3 ejecting blowing cover 4 of the blue or green 14 of coconut to along receiving the automatic blanking of silo 15, degree of automation is high.
Discharging cylinder 3 is located blowing cover 4 one side, connect silo 15 to be located 4 opposite sides of blowing cover, and connect silo 15 to be the slope setting, after the cutting operation was accomplished, lower claw 5 pushes down the blue or green 14 of coconut to 4 upper surfaces of blowing cover, goes up claw 13 and continues to descend, breaks away from the blue or green 14 of coconut, switches on to discharging cylinder 3, and discharging cylinder 3 is the ejecting blowing cover 4 of the blue or green 14 of coconut to along connecing 15 automatic blanking of silo, degree of automation is high.
The coconut peeling machine comprises a base 16, a support assembly is inserted into the surface of the base, the support assembly is composed of a lower cylinder 1, a rotating motor 2, a material placing sleeve 4 and a lower claw 5, a front coconut leaf 14 is placed above the material placing sleeve 4, an upper cylinder 12 descends by pressing a starting button, an upper claw 3 is inserted into the top of the coconut leaf 14 for positioning, the lower cylinder 1 ascends, the lower claw 5 is inserted into the bottom of the coconut leaf 14 for positioning, then the upper cylinder 12 ascends, the coconut leaf 14 is separated from the material placing sleeve 4, and the rotating motor 2 is started to drive the coconut leaf 14 to rotate through a speed reducer; the side cutting assembly comprises a side knife moving motor 6, a side knife sliding block 7 and a side knife 8 respectively, the transmission output end of the side knife moving motor 6 is in transmission connection with the side knife 8 through the side knife sliding block 7, the beveling assembly comprises an inclined knife 9, an inclined knife sliding block 10 and an inclined knife moving motor 11 respectively, the transmission output end of the inclined knife moving motor 11 is in transmission connection with the inclined knife 9 through the inclined knife sliding block 10, the side knife motor 6 and the inclined knife motor 11 rotate fast to drive the side knife 8 and the inclined knife 9 to advance fast, the side knife 8 and the inclined knife 9 rotate slowly after reaching a set paring position, the side knife 8 and the inclined knife 9 are driven to advance slowly to perform paring work, after reaching a set stopping position, the side knife motor 6 and the inclined knife motor 11 rotate reversely fast to drive the side knife 8 and the inclined knife 9 to retreat fast to original positions, the rotating motor 2 stops, the lower cylinder 1 descends, the discharging cylinder 3 advances to push out a coconut blue 14 to the inside a material receiving groove 15, and the material receiving groove 15 is obliquely arranged, and the peeled coconut green 14 is automatically fed along the material receiving groove 15.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (6)

1. A coconut chestnut peeling machine, includes base (16) and frame (17), frame (17) are installed to base (16) top, its characterized in that: the surface of the base (16) is spliced with a supporting assembly, the supporting assembly is composed of a lower cylinder (1), a rotating motor (2), a material placing sleeve (4) and a lower claw (5), the lower cylinder (1) is fixedly connected inside the base (16), the transmission output end of the lower cylinder (1) is fixedly connected with the rotating motor (2), the transmission output end of the rotating motor (2) is in transmission connection with the lower claw (5), the material placing sleeve (4) is sleeved outside the lower claw (5), the material placing sleeve (4) is fixedly connected on the surface of the base (16), the top end inside the rack (17) is fixedly connected with an upper cylinder (12), the transmission output end of the upper cylinder (12) is in transmission connection with an upper claw (13), a coconut green (14) is arranged between the upper claw (13) and the lower claw (5), and a side cutting assembly and a beveling assembly are installed on the surface of the rack (17) respectively.
2. The coconut peeler of claim 1, wherein: the side cutting assembly comprises a side cutting moving motor (6), a side cutting sliding block (7) and a side cutting (8), the transmission output end of the side cutting moving motor (6) is in transmission connection with the side cutting (8) through the side cutting sliding block (7), and the side cutting moving motor (6) is detachably connected to the surface of the rack (17).
3. The coconut peeler of claim 1, wherein: the beveling assembly comprises a bevel knife (9), a bevel knife sliding block (10) and a bevel knife moving motor (11), the transmission output end of the bevel knife moving motor (11) is in transmission connection with the bevel knife (9) through the bevel knife sliding block (10), and the bevel knife moving motor (11) is detachably connected to the surface of the rack (17).
4. The coconut peeler of claim 1, wherein: the side cutting assembly is positioned on one side of the discharging sleeve (4) and is arranged horizontally, and the beveling assembly is positioned above the discharging sleeve (4) in an inclined mode and is arranged in an inclined mode.
5. The coconut peeler of claim 1, wherein: the discharging cylinder (3) is fixedly connected to the surface of the rack (17), and the receiving groove (15) is fixedly connected to the surface of the rack (17).
6. The coconut peeler of claim 5, wherein: the discharging cylinder (3) is positioned on one side of the discharging sleeve (4), the receiving groove (15) is positioned on the other side of the discharging sleeve (4), and the receiving groove (15) is obliquely arranged.
CN202022600548.3U 2020-11-11 2020-11-11 Coconut peeling machine Active CN213639569U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022600548.3U CN213639569U (en) 2020-11-11 2020-11-11 Coconut peeling machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022600548.3U CN213639569U (en) 2020-11-11 2020-11-11 Coconut peeling machine

Publications (1)

Publication Number Publication Date
CN213639569U true CN213639569U (en) 2021-07-09

Family

ID=76707083

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022600548.3U Active CN213639569U (en) 2020-11-11 2020-11-11 Coconut peeling machine

Country Status (1)

Country Link
CN (1) CN213639569U (en)

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