CN105293340A - Heavy-load high-capacity winch for integrated breeding industry - Google Patents

Heavy-load high-capacity winch for integrated breeding industry Download PDF

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Publication number
CN105293340A
CN105293340A CN201510799735.XA CN201510799735A CN105293340A CN 105293340 A CN105293340 A CN 105293340A CN 201510799735 A CN201510799735 A CN 201510799735A CN 105293340 A CN105293340 A CN 105293340A
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CN
China
Prior art keywords
gear axle
face
withstands
shaft
ratchet
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Pending
Application number
CN201510799735.XA
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Chinese (zh)
Inventor
李苏
李昭如
王洪根
王长修
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Zhenjiang Huahong Machinery Co Ltd
Original Assignee
Zhenjiang Huahong Machinery Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Zhenjiang Huahong Machinery Co Ltd filed Critical Zhenjiang Huahong Machinery Co Ltd
Priority to CN201510799735.XA priority Critical patent/CN105293340A/en
Publication of CN105293340A publication Critical patent/CN105293340A/en
Pending legal-status Critical Current

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Abstract

The invention relates to a heavy-load high-capacity winch for the integrated breeding industry. The heavy-load high-capacity winch is mainly characterized in that an upper shaft is installed in an annular groove of a center shaft through an elastic retainer ring, the center shaft is sleeved with a gear gasket, the upper end of the center shaft is installed in a center hole of a rope winding roller, a first gear is installed on the bottom face of the rope winding roller, a left gear shaft is meshed with the first gear and installed on a base, a second gear is installed on the left gear shaft, the left gear shaft is sleeved with a left gasket, a lower shaft is installed in an annular groove of the left gear shaft through an elastic retainer ring, a right gear shaft is meshed with the second gear and installed on the base, a lifting ring nut is installed at the top end of the right gear shaft, an inner lining is installed on the right gear shaft, a ratchet wheel gasket is installed on the inner lining, a ratchet wheel is installed on the inner lining, a pin groove gasket is installed on the right gear shaft, a pawl is installed on the base and matched with the ratchet wheel, one end of a tension spring is installed on the pawl, and the other end of the tension spring is installed on the base.

Description

A kind of heavily loaded Large Copacity capstan winch for integrated aquaculture
Technical field
The present invention relates to capstan arrangement technical field, specifically, particularly a kind of heavily loaded Large Copacity capstan winch for integrated aquaculture.
Background technology
Capstan winch is a kind of draw gear, and it is mainly used in vehicle, the self-protection of ship and traction, especially in aquaculture.Existing winch configurations is complicated, load-carrying capacity is little, and installation and maintenance are inconvenient, and can not realize self-lubricating, service life is short, cannot meet the demand of the aquaculture day by day changed.
Summary of the invention
Technical matters to be solved by this invention is for above-mentioned deficiency of the prior art, a kind of heavily loaded Large Copacity capstan winch for integrated aquaculture is provided, its structure is simple and compact, load-carrying capacity is large, and Rong Shengliang is large, easy for installation, two-way simultaneous can be realized promote, freedom from repairs, exempts from lubrication, long service life.
The technical solution adopted for the present invention to solve the technical problems is: a kind of heavily loaded Large Copacity capstan winch for integrated aquaculture, comprise base, center shaft, first gear, second gear, left packing ring, lower circlip for shaft, left graphite oilless sintered-metal bearing, general flat key, lower elastic cylindrical pin, right packing ring, lower graphite oilless sintered-metal bearing, right gear axle, upper graphite oilless sintered-metal bearing, upper elastic cylindrical pin, cotter way packing ring, friction lining, ratchet, ratchet packing ring, inner covering, eyenut, deep groove ball bearing, left gear axle, gearset spacer, upper circlip for shaft, straight-through forced filling oil cup, vinyl cover, the opening collar, groove pin, ratchet, screw, nut, flat gasket, extension spring, spring cotter and serving cylinder, described center shaft external cylindrical surface is provided with annular groove and close center shaft end face, described upper circlip for shaft is fixedly mounted in the annular groove of center shaft, described gearset spacer is overlapped on center shaft and its end face withstands on the bottom surface of circlip for shaft, the bottom surface of gearset spacer withstands on the end face of serving cylinder, in the centre hole that described center shaft upper end is arranged on serving cylinder and its lower end is arranged in the mounting hole of base, described vinyl cover is fixedly mounted on center shaft top, described straight-through forced filling oil cup is fixedly mounted in the centre hole on center shaft end face, described first gear is fixedly mounted on by screw and nut on the bottom surface of serving cylinder, the bottom surface of the first gear withstands on base outer wall, described base side wall is provided with the opening collar, described left gear axle and the first gears meshing, left gear axle is arranged on base by left graphite oilless sintered-metal bearing and deep groove ball bearing, described second gear is fixedly mounted on left gear axle and its bottom surface by general flat key and withstands on the end face of left graphite oilless sintered-metal bearing, described left gasket sleeve is on left gear axle and its end face withstands on the bottom surface of left graphite oilless sintered-metal bearing, in the annular groove that described lower circlip for shaft is fixedly mounted on left gear axle and its end face withstands on the bottom surface of left packing ring, described right gear axle and the second gears meshing, right gear axle is arranged on base by lower graphite oilless sintered-metal bearing and upper graphite oilless sintered-metal bearing, described right gasket sleeve is on right gear axle and its end face withstands on the bottom surface of lower graphite oilless sintered-metal bearing, described lower elastic cylindrical pin is arranged on right gear axle and it withstands on the bottom surface of right packing ring, described eyenut is fixedly mounted on the top of right gear axle, described inner covering is arranged on right gear axle and its end face withstands on the bottom surface of eyenut, described ratchet packing ring is arranged on inner covering and its end face withstands on the bottom surface of eyenut, friction lining described in upper end is arranged on inner covering and its end face withstands on the bottom surface of ratchet packing ring, described ratchet is arranged on inner covering and its end face withstands on the bottom surface of upper end friction lining, friction lining described in lower end is arranged on inner covering and its end face withstands on the bottom surface of ratchet, described cotter way packing ring to be fixedly mounted on right gear axle by upper elastic cylindrical pin and its end face withstands on the bottom surface of lower end friction lining, described ratchet to be arranged on base and to coordinate with ratchet, described extension spring one end is fixedly mounted on ratchet, its other end is arranged on base by spring cotter, described groove pin is fixedly mounted on right gear axle in the mounting hole on top.
As preferably, described center shaft central axis is provided with oilhole.
As preferably, described base is welded by the cylindrical drum end of with and disk.
As preferably, described center shaft is provided with screw thread near the external cylindrical surface of end face, and vinyl cover is threaded connection installation on center shaft.
As preferably, described serving cylinder adopts welding processing to form by section bar.
The present invention compared with prior art has the following advantages: structure is simple and compact, is particularly suitable for the aquaculture demand day by day changed; Load-carrying capacity is large, and Rong Shengliang is large, and position of mounting hole is novel in design, easy for installation, exempts from lubrication, freedom from repairs; Two-way simultaneous can be realized promote; There is self-lubricating property, long service life.
Accompanying drawing explanation
Fig. 1 is the structural representation of a kind of detailed description of the invention of the present invention;
Fig. 2 is the structure cutaway view of A-A of the present invention;
Fig. 3 is the structure cutaway view of B-B of the present invention.
Description of reference numerals:
1-base, 2-center shaft, 3-first gear, 4-second gear, the left packing ring of 5-, circlip for shaft under 6-, the left graphite oilless sintered-metal bearing of 7-, 8-general flat key, elastic cylindrical pin under 9-, the right packing ring of 10-, graphite oilless sintered-metal bearing under 11-, 12-right gear axle, the upper graphite oilless sintered-metal bearing of 13-, the upper elastic cylindrical pin of 14-, 15-cotter way packing ring, 16-friction lining, 17-ratchet, 18-ratchet packing ring, 19-inner covering, 20-eyenut, 21-deep groove ball bearing, 22-left gear axle, 23-gearset spacer, the upper circlip for shaft of 24-, 25-leads directly to forced filling oil cup, 26-vinyl cover, the 27-opening collar, 28-groove pin, 29-ratchet, 30-screw, 31-nut, 32-flat gasket, 33-extension spring, 34-spring cotter, 35-serving cylinder.
Detailed description of the invention
Below in conjunction with drawings and Examples, the specific embodiment of the invention is described:
Embodiment, as Fig. 1, shown in Fig. 2 and Fig. 3, a kind of heavily loaded Large Copacity capstan winch for integrated aquaculture, comprise base 1, center shaft 2, first gear 3, second gear 4, left packing ring 5, lower circlip for shaft 6, left graphite oilless sintered-metal bearing 7, general flat key 8, lower elastic cylindrical pin 9, right packing ring 10, lower graphite oilless sintered-metal bearing 11, right gear axle 12, upper graphite oilless sintered-metal bearing 13, upper elastic cylindrical pin 14, cotter way packing ring 15, friction lining 16, ratchet 17, ratchet packing ring 18, inner covering 19, eyenut 20, deep groove ball bearing 21, left gear axle 22, gearset spacer 23, upper circlip for shaft 24, straight-through forced filling oil cup 25, vinyl cover 26, the opening collar 27, groove pin 28, ratchet 29, screw 30, nut 31, flat gasket 32, extension spring 33, spring cotter 34 and serving cylinder 35, described center shaft 2 external cylindrical surface is provided with annular groove and close center shaft 2 end face, described upper circlip for shaft 24 is fixedly mounted in the annular groove of center shaft 2, described gearset spacer 23 is enclosed within center shaft 2 and its end face withstands on the bottom surface of circlip for shaft 24, the bottom surface of gearset spacer 23 withstands on the end face of serving cylinder 35, in the centre hole that described center shaft 2 upper end is arranged on serving cylinder 35 and its lower end is arranged in the mounting hole of base 1, described vinyl cover 26 is fixedly mounted on center shaft 2 top, described straight-through forced filling oil cup 25 is fixedly mounted in the centre hole on center shaft 2 end face, described first gear 3 is fixedly mounted on the bottom surface of serving cylinder 35 by screw 30 and nut 31, the bottom surface of the first gear 3 withstands on base 1 outer wall, described base 1 sidewall is provided with the opening collar 27, described left gear axle 22 engages with the first gear 3, left gear axle 22 is arranged on base 1 by left graphite oilless sintered-metal bearing 7 and deep groove ball bearing 21, described second gear 4 is fixedly mounted on left gear axle 22 and its bottom surface by general flat key 8 and withstands on the end face of left graphite oilless sintered-metal bearing 7, described left packing ring 5 is enclosed within left gear axle 22 and its end face withstands on the bottom surface of left graphite oilless sintered-metal bearing 7, in the annular groove that described lower circlip for shaft 6 is fixedly mounted on left gear axle 22 and its end face withstands on the bottom surface of left packing ring 5, described right gear axle 12 engages with the second gear 4, right gear axle 12 is arranged on base 1 by lower graphite oilless sintered-metal bearing 11 and upper graphite oilless sintered-metal bearing 13, described right packing ring 10 is enclosed within right gear axle 12 and its end face withstands on the bottom surface of lower graphite oilless sintered-metal bearing 11, described lower elastic cylindrical pin 9 is arranged on right gear axle 12 and it withstands on the bottom surface of right packing ring 10, described eyenut 20 is fixedly mounted on the top of right gear axle 12, described inner covering 19 is arranged on right gear axle 12 and its end face withstands on the bottom surface of eyenut 20, described ratchet packing ring 18 is arranged on inner covering 19 and its end face withstands on the bottom surface of eyenut 20, friction lining 16 described in upper end is arranged on inner covering 19 and its end face withstands on the bottom surface of ratchet packing ring 18, described ratchet 17 is arranged on inner covering 19 and its end face withstands on the bottom surface of upper end friction lining 16, friction lining 16 described in lower end is arranged on inner covering 19 and its end face withstands on the bottom surface of ratchet 17, described cotter way packing ring 15 to be fixedly mounted on right gear axle 12 by upper elastic cylindrical pin 14 and its end face withstands on the bottom surface of lower end friction lining 16, described ratchet 29 to be arranged on base 1 and to coordinate with ratchet 17, described extension spring 33 one end is fixedly mounted on ratchet 29, its other end is arranged on base 1 by spring cotter 34, described groove pin 28 is fixedly mounted on right gear axle 12 in the mounting hole on top.
Preferably, described center shaft 2 central axis is provided with oilhole.
Preferably, described base 1 is welded by the cylindrical drum and disk being with the end.
Preferably, described center shaft 2 is provided with screw thread near the external cylindrical surface of end face, and vinyl cover 26 is threaded connection and is arranged on center shaft 2.
By reference to the accompanying drawings the preferred embodiment for the present invention is explained in detail above, but the invention is not restricted to above-mentioned embodiment, in the ken that those of ordinary skill in the art possess, can also make a variety of changes under the prerequisite not departing from present inventive concept.
Do not depart from the spirit and scope of the present invention and can make other changes many and remodeling.Should be appreciated that and the invention is not restricted to specific embodiment, scope of the present invention is defined by the following claims.

Claims (5)

1. the heavily loaded Large Copacity capstan winch for integrated aquaculture, it is characterized in that: comprise base, center shaft, first gear, second gear, left packing ring, lower circlip for shaft, left graphite oilless sintered-metal bearing, general flat key, lower elastic cylindrical pin, right packing ring, lower graphite oilless sintered-metal bearing, right gear axle, upper graphite oilless sintered-metal bearing, upper elastic cylindrical pin, cotter way packing ring, friction lining, ratchet, ratchet packing ring, inner covering, eyenut, deep groove ball bearing, left gear axle, gearset spacer, upper circlip for shaft, straight-through forced filling oil cup, vinyl cover, the opening collar, groove pin, ratchet, screw, nut, flat gasket, extension spring, spring cotter and serving cylinder, described center shaft external cylindrical surface is provided with annular groove and close center shaft end face, described upper circlip for shaft is fixedly mounted in the annular groove of center shaft, described gearset spacer is overlapped on center shaft and its end face withstands on the bottom surface of circlip for shaft, the bottom surface of gearset spacer withstands on the end face of serving cylinder, in the centre hole that described center shaft upper end is arranged on serving cylinder and its lower end is arranged in the mounting hole of base, described vinyl cover is fixedly mounted on center shaft top, described straight-through forced filling oil cup is fixedly mounted in the centre hole on center shaft end face, described first gear is fixedly mounted on by screw and nut on the bottom surface of serving cylinder, the bottom surface of the first gear withstands on base outer wall, described base side wall is provided with the opening collar, described left gear axle and the first gears meshing, left gear axle is arranged on base by left graphite oilless sintered-metal bearing and deep groove ball bearing, described second gear is fixedly mounted on left gear axle and its bottom surface by general flat key and withstands on the end face of left graphite oilless sintered-metal bearing, described left gasket sleeve is on left gear axle and its end face withstands on the bottom surface of left graphite oilless sintered-metal bearing, in the annular groove that described lower circlip for shaft is fixedly mounted on left gear axle and its end face withstands on the bottom surface of left packing ring, described right gear axle and the second gears meshing, right gear axle is arranged on base by lower graphite oilless sintered-metal bearing and upper graphite oilless sintered-metal bearing, described right gasket sleeve is on right gear axle and its end face withstands on the bottom surface of lower graphite oilless sintered-metal bearing, described lower elastic cylindrical pin is arranged on right gear axle and it withstands on the bottom surface of right packing ring, described eyenut is fixedly mounted on the top of right gear axle, described inner covering is arranged on right gear axle and its end face withstands on the bottom surface of eyenut, described ratchet packing ring is arranged on inner covering and its end face withstands on the bottom surface of eyenut, friction lining described in upper end is arranged on inner covering and its end face withstands on the bottom surface of ratchet packing ring, described ratchet is arranged on inner covering and its end face withstands on the bottom surface of upper end friction lining, friction lining described in lower end is arranged on inner covering and its end face withstands on the bottom surface of ratchet, described cotter way packing ring to be fixedly mounted on right gear axle by upper elastic cylindrical pin and its end face withstands on the bottom surface of lower end friction lining, described ratchet to be arranged on base and to coordinate with ratchet, described extension spring one end is fixedly mounted on ratchet, its other end is arranged on base by spring cotter, described groove pin is fixedly mounted on right gear axle in the mounting hole on top.
2. a kind of heavily loaded Large Copacity capstan winch for integrated aquaculture as claimed in claim 1, is characterized in that: described center shaft central axis is provided with oilhole.
3. a kind of heavily loaded Large Copacity capstan winch for integrated aquaculture as claimed in claim 1, is characterized in that: described base is welded by the cylindrical drum end of with and disk.
4. a kind of heavily loaded Large Copacity capstan winch for integrated aquaculture as claimed in claim 1, it is characterized in that: described center shaft is provided with screw thread near the external cylindrical surface of end face, vinyl cover is threaded connection installation on center shaft.
5. a kind of heavily loaded Large Copacity capstan winch for integrated aquaculture as claimed in claim 1, is characterized in that: described serving cylinder adopts welding processing to form by section bar.
CN201510799735.XA 2015-11-18 2015-11-18 Heavy-load high-capacity winch for integrated breeding industry Pending CN105293340A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201510799735.XA CN105293340A (en) 2015-11-18 2015-11-18 Heavy-load high-capacity winch for integrated breeding industry

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201510799735.XA CN105293340A (en) 2015-11-18 2015-11-18 Heavy-load high-capacity winch for integrated breeding industry

Publications (1)

Publication Number Publication Date
CN105293340A true CN105293340A (en) 2016-02-03

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Family Applications (1)

Application Number Title Priority Date Filing Date
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Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2155666Y (en) * 1993-04-16 1994-02-16 河南省商丘市机床厂 Highly mounting hauler
US5641151A (en) * 1994-05-13 1997-06-24 H.H.H. Manufacturing Co. Chain lever hoist
CN201713284U (en) * 2010-07-02 2011-01-19 柯伯林 Manual elevator mechanism of forklift
CN205204721U (en) * 2015-11-18 2016-05-04 镇江华虹机械有限公司 A heavily loaded large capacity capstan winch for $integrateing aquaculture

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2155666Y (en) * 1993-04-16 1994-02-16 河南省商丘市机床厂 Highly mounting hauler
US5641151A (en) * 1994-05-13 1997-06-24 H.H.H. Manufacturing Co. Chain lever hoist
CN201713284U (en) * 2010-07-02 2011-01-19 柯伯林 Manual elevator mechanism of forklift
CN205204721U (en) * 2015-11-18 2016-05-04 镇江华虹机械有限公司 A heavily loaded large capacity capstan winch for $integrateing aquaculture

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Application publication date: 20160203

RJ01 Rejection of invention patent application after publication