CN212266190U - Weight type wine jar overturning and hoisting device - Google Patents

Weight type wine jar overturning and hoisting device Download PDF

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Publication number
CN212266190U
CN212266190U CN202020387440.8U CN202020387440U CN212266190U CN 212266190 U CN212266190 U CN 212266190U CN 202020387440 U CN202020387440 U CN 202020387440U CN 212266190 U CN212266190 U CN 212266190U
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CN
China
Prior art keywords
wine jar
plate
connecting plate
vertical
connecting rod
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Expired - Fee Related
Application number
CN202020387440.8U
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Chinese (zh)
Inventor
黄茂波
黄世林
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Luzhou Hexin Ceramics Co ltd
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Luzhou Hexin Ceramics Co ltd
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Priority to CN202020387440.8U priority Critical patent/CN212266190U/en
Application granted granted Critical
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Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model discloses a weight type wine jar upset hoist device, including upset hoisting machine structure and the portal frame of being connected with it, the portal frame includes the transverse connection pole, is provided with the hoist and mount board on the transverse connection pole, and the both ends symmetry of transverse connection pole is provided with vertical connecting rod, and upset hoisting machine constructs is connected to vertical connecting rod. The utility model discloses simple structure, reasonable in design, the practicality is strong, pins the mould of body through upset hoisting machine structure, hoists it, then can overturn the mould through rotatory upset hoisting machine structure. The wine jar is simple and efficient to operate, time-saving and labor-saving, can be operated by one person, is low in labor cost and high in safety, and is suitable for production and application of the weight type wine jar.

Description

Weight type wine jar overturning and hoisting device
Technical Field
The utility model belongs to the technical field of wine jar production facility, especially, relate to a weight type wine jar upset hoist device.
Background
In the production process of the ceramic wine jar, the upper half green body and the lower half green body need to be combined together. Because the upper half part of the blank body is inverted in the manufacturing process, the blank body is convenient to form, and the operation and the process are simpler and more convenient. Therefore, when the blanks are combined, the blanks in the upper half part need to be turned over firstly, and then the blanks in the lower half part can be buckled. Small-size wine jar is still good, and present weight type wine jar's upset work adopts many people's manual work to cooperate the completion more, wastes time and energy, and the cost of labor is high, and work efficiency is low, and has higher potential safety hazard.
Therefore, how to solve the above technical problems is the direction of efforts of those skilled in the art.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a weight type wine jar upset hoist device can solve above-mentioned prior art's weak point completely.
The purpose of the utility model is realized through the following technical scheme:
a weight type wine jar overturning and hoisting device comprises an overturning and hoisting mechanism and a portal frame connected with the overturning and hoisting mechanism, wherein the portal frame comprises a transverse connecting rod, a hoisting plate is arranged on the transverse connecting rod, vertical connecting rods are symmetrically arranged at two ends of the transverse connecting rod, the overturning and hoisting mechanism comprises a metal locking ring, the metal locking ring is provided with a locking notch, the locking notch is matched with a sleeve, a first connecting plate and a second connecting plate are welded on the outer side wall of the metal locking ring, the first connecting plate and the second connecting plate are symmetrically arranged, a first fixing seat is arranged on the first connecting plate, a first connecting shaft is fixed on the first fixing seat, the first connecting shaft is connected with a first connecting piece through a bearing, the first connecting piece is correspondingly connected with a vertical connecting rod, a second fixing seat is arranged on the second connecting plate, a second connecting shaft is fixed on the second fixing seat, the second connecting shaft is connected with a second connecting piece through a, and a cycloidal pin gear speed reducer is fixed on the second connecting piece, and a rotating shaft of the cycloidal pin gear speed reducer is connected with the second connecting shaft.
Furthermore, vertical connecting rods are detachably and symmetrically arranged at two ends of the transverse connecting rod.
Furthermore, the second connecting piece comprises a transverse connecting plate, two ends of the transverse connecting plate are respectively connected with a vertical connecting plate and a vertical mounting plate, a second connecting shaft bearing hole is formed in the vertical connecting plate, and the vertical mounting plate is connected with the cycloidal pin gear speed reducer through a bolt.
Compared with the prior art, the beneficial effects of the utility model reside in that: simple structure, reasonable in design, the practicality is strong, pins the mould of body through the metal lock circle, lifts it, then can overturn the mould through rotating cycloid pinwheel speed reducer. The wine jar is simple and efficient to operate, time-saving and labor-saving, can be operated by one person, is low in labor cost and high in safety, and is suitable for production and application of the weight type wine jar.
Drawings
FIG. 1 is a schematic structural diagram of a ceramic wine jar forming production line;
FIG. 2 is a schematic structural view of the demolding apparatus;
FIG. 3 is a top view of the demolding device;
FIG. 4 is a schematic structural diagram of the matching of the blank body and the wine jar lower half forming die;
FIG. 5 is a schematic structural view of an overhead carrying floor;
FIG. 6 is a bottom view of the overhead carrier plate;
FIG. 7 is a schematic structural view of a wine jar forming mold;
FIG. 8 is a schematic structural diagram of a first press-fitting device;
FIG. 9 is a schematic view of the structure of a first rotary mold cylinder;
FIG. 10 is a schematic structural view of the first rotary mold cylinder matched with a lower portion forming mold of a wine jar;
FIG. 11 is a schematic structural view of the matching between the wine jar lower half part forming die and the wine jar lower half part blank;
FIG. 12 is a schematic view of the second press apparatus;
FIG. 13 is a schematic structural view of a second rotary mold cylinder;
FIG. 14 is a schematic view of the second rotary mold cylinder matching the upper mold half of the wine jar;
FIG. 15 is a schematic structural view of the upper half forming die of the wine jar matched with the upper half blank of the wine jar;
fig. 16 is a schematic structural view of the present invention;
FIG. 17 is a schematic view of the second connector;
FIG. 18 is a schematic structural view of a bushing;
fig. 19 is a schematic view of the construction of a metal lock ring.
Reference numerals: the device comprises a jacking device 1, a top plate 2, a fixed base 3, a die bearing table 4, a top plate through hole 5, a demoulding device mounting groove 6, a support rod 7, a first support 8, a first rotary die cylinder 9, a first power device 10, a belt 11, a wine jar lower half forming die 23, a wine jar lower half blank 12, a first jacking mechanism 13, a first connecting rod 14, a first scraper 15, a first mounting plate 16, a first sleeve plate 17, a first blade 18, a first operating rod 19, a second support 20, a second rotary die cylinder 21, a second power device 22, a wine jar upper half forming die 24, a wine jar upper half blank 25, a second jacking mechanism 26, a second connecting rod 27, a second scraper 28, a second mounting plate 29, a second sleeve plate 30, a second blade 31, a second operating rod 32, an overhead type 70, a detachable bottom plate 71, a transverse connecting rod 40, a hoisting plate 41, a hanging hole 42, a supporting rod 7, a first supporting plate 8, The vertical connecting rod 43, the metal locking ring 44, the locking notch 45, the sleeve 46, the first connecting plate 47, the second connecting plate 48, the first fixed seat 49, the first connecting shaft 50, the first connecting piece 51, the second fixed seat 52, the second connecting shaft 53, the second connecting piece 54, the cycloidal pin gear speed reducer 56, the transverse connecting plate 5401, the vertical connecting plate 5402, the vertical mounting plate 5403, the second connecting shaft bearing hole 57 and the annular groove 60.
Detailed Description
The invention will be further described with reference to the following specific embodiments and the accompanying drawings.
As shown in fig. 16 to 19, a weight-type overturning and hoisting device comprises an overturning and hoisting mechanism and a portal frame connected with the overturning and hoisting mechanism, wherein the portal frame comprises a transverse connecting rod 40, a hoisting plate 41 is arranged on the transverse connecting rod 40, and a hanging hole 42 for hanging a hook of an electric hoist is arranged on the hoisting plate 41. The two ends of the transverse connecting rod 40 are detachably and symmetrically provided with the vertical connecting rods 43, the transverse connecting rod 40 can be detachably replaced or the position of the transverse connecting rod 40 on the vertical connecting rods 43 can be adjusted, and the transverse connecting rod can be directly welded and fixedly connected for manufacturing convenience. The overturning and hoisting mechanism comprises a metal lock ring 44, and the metal lock ring 44 can be made of steel bars. The metal locking ring 44 is provided with a locking opening 45, the locking opening 45 is matched with a sleeve 46, and the sleeve 46 is sleeved on the locking opening 45, so that the metal locking ring 44 can be folded, and the purpose of locking is achieved. The outer side wall of the metal locking ring 44 is welded with a first connecting plate 47 and a second connecting plate 48, the first connecting plate 47 and the second connecting plate 48 are symmetrically arranged, a first fixing seat 49 is arranged on the first connecting plate 47, the first fixing seat 49 is fixed with a first connecting shaft 50, the first connecting shaft 50 is connected with a first connecting piece 51 through a bearing, and the first connecting piece 51 is correspondingly connected with a vertical connecting rod 43. The second connecting plate 48 is provided with a second fixed seat 52, the second fixed seat 52 is fixed with a second connecting shaft 53, the second connecting shaft 53 is connected with a second connecting piece 54 through a bearing, and the second connecting piece 54 is correspondingly connected with another vertical connecting rod 43. The second connecting piece 54 is fixed with a cycloidal pin gear reducer 56, the cycloidal pin gear reducer is preferably a reducer with the model number XL3-59 produced by Jiangnan reducer Co., Ltd, Changzhou, China, and the rotating shaft of the cycloidal pin gear reducer 56 is connected with the second connecting shaft 53. The second connector 54 includes a horizontal connection plate 5401, and both ends of the horizontal connection plate 5401 are connected with a vertical connection plate 5402 and a vertical mounting plate 5403, respectively. The vertical connecting plate 5402 is connected with the vertical connecting rod 43, a second connecting shaft bearing hole 57 is formed in the vertical connecting plate 5402 and used for connecting a second connecting shaft 53, and the vertical mounting plate 5402 is connected with the cycloidal pin gear speed reducer 56 through bolts. In operation, the metal locking ring 44 is inserted into the annular groove 60 of the jar upper half forming mold 24, as shown in fig. 7. The metal locking ring 44 is locked by the sleeve 46, lifted by the electric hoist, and rotated by the handle of the cycloid pin gear speed reducer 56, so that the second connecting shaft 53, the metal locking ring 44 and the first connecting shaft 50 are driven to rotate by the rotating shaft of the cycloid pin gear speed reducer 56, and the die is turned over.
The utility model discloses simple structure, reasonable in design, the practicality is strong, pins the mould of body through metal lock loop 44, lifts it, then can overturn the mould through rotating cycloid pinwheel speed reducer 56. The wine jar is simple and efficient to operate, time-saving and labor-saving, can be operated by one person, is low in labor cost and high in safety, and is suitable for production and application of the weight type wine jar.
The utility model discloses the application in the production line is shown in fig. 1 to 19, and the production line is including shedder, first quick-witted pressure equipment to be put and the second machine that sets gradually presses the device. The demolding device is used for being matched with the first mechanical pressing device to perform demolding operation. The first mechanical pressing device is used for the green body forming operation of the lower half part of the ceramic wine jar, and the second mechanical pressing device is used for the green body forming operation of the upper half part of the ceramic wine jar.
The demolding device comprises a jacking device 1 and a top plate 2 connected to the jacking device 1. Preferably cylinder or pneumatic cylinder of jacking device 1, the vertical setting of jacking device 1, unable adjustment base 3 is installed to the bottom. As shown in fig. 2, a mold bearing platform 4 is arranged above the jacking device 1, and the mold bearing platform 4 is preferably made of steel plate and is preferably flush with the ground. The mould plummer 4 is used for placing the wine jar forming die that needs the drawing of patterns, is provided with roof via hole 5 on the mould plummer 4 for pass roof 2.
In the installation process, firstly, a demoulding device installation groove 6 is arranged on the ground, the demoulding device is installed in the demoulding device installation groove 6, and the mould bearing platform 4 is flush with the ground. When the jacking device 1 is retracted, the top plate 2 is just positioned in the top plate through hole 5, so that the top surface of the die bearing table 4 is a horizontal plane, and when the jacking device is not operated, the jacking device does not occupy the space of a workshop and does not influence other operation items. In order to increase the carrying capacity of the mould carriers 4, support bars 7 are provided in the stripper mounting groove 6 for supporting at the bottom of the mould carriers 4.
As shown in fig. 8, the first pressing device includes a first mold rotating mechanism and a first scraper mechanism associated with the first mold rotating mechanism. The first pressing device further comprises a first support 8, and the first model rotating mechanism and the first scraper mechanism are correspondingly installed on the first support 8. The first model rotating mechanism comprises a first rotating model cylinder 9 and a first power device 10 which are correspondingly arranged on the first support 8, wherein the first power device 10 is an electric motor, and the electric motor is connected with the first rotating model cylinder 9 through a belt 11 so as to drive the first rotating model cylinder 9 to rotate. As shown in fig. 10 and 11, the first rotary mold cylinder 9 is used for carrying a wine jar lower half forming mold 23, and a wine jar lower half blank 12 is arranged in the mold. Through the synchronous rotation of the first rotary model cylinder 9, the inside of the lower half part blank 12 of the wine jar is molded by the first scraper mechanism. The first scraper mechanism comprises a first jacking mechanism 13 correspondingly installed on the first support 8, and the first jacking mechanism 13 is an air cylinder or a hydraulic cylinder. The top of first climbing mechanism 13 articulates there is first connecting rod 14, and the one end of first connecting rod 14 articulates on first support 8, and first scraper 15 is installed to the other free end of first connecting rod 14, and the shape of the operation face of first scraper 15 matches with the inside shape of wine jar lower half for cooperate the use of first rotary model section of thick bamboo 9. The first blade 15 includes a first mounting plate 16, a first bushing 17, and a first blade 18. The first blade 18 has a certain thickness and is made of a wood material or a rubber material, which is advantageous for weight reduction. The first bushing 17 and the first mounting plate 16 are made of a metal material, such as an iron plate, a stainless steel plate, or the like. First mounting panel 16 is fixed on first connecting rod 14, and first bushing 17 and first blade 18 overlap the matching together, and its working face shape all is unanimous with the inside shape of wine jar lower half, fixes on first mounting panel 16 through the bolt, is favorable to dismantling the tool changing. In order to facilitate the stable control of the operation of the first scraper 15 by the operator, a first operating rod 19 is arranged at the free end of the first link 14 for the purpose of manually controlling the first scraper 15, thereby controlling the stability of the operation and the thickness of the blank.
As shown in fig. 12, the second press device includes a second mold rotating mechanism and a second scraper mechanism matched with the second mold rotating mechanism. The second press device also comprises a second bracket 20, and the second model rotating mechanism and the second scraper mechanism are correspondingly arranged on the second bracket 20. The second mold rotating mechanism includes a second rotating mold cylinder 21 and a second power device 22 correspondingly mounted on the second support 20, the second power device 22 is a motor, and the motor is connected to the second rotating mold cylinder 21 through a belt 11, so as to drive the second rotating mold cylinder 21 to rotate. As shown in fig. 14 and 15, the second rotary mold cylinder 21 is used to fit and carry a wine jar upper half forming mold 24, in which a wine jar upper half blank 25 is placed. Through the synchronous rotation of the second rotary model cylinder 21, the second scraper mechanism is used for molding the inner part of the wine jar upper half blank 25. The second scraper mechanism comprises a second jacking mechanism 26 correspondingly installed on the second support 20, and the second jacking mechanism 26 is an air cylinder or a hydraulic cylinder. The top of the second jacking mechanism 26 is hinged with a second connecting rod 27, one end of the second connecting rod 27 is hinged on the second support 20, the other free end of the second connecting rod 27 is provided with a second scraper 28, and the shape of the working surface of the second scraper 28 is matched with the shape of the upper half part of the wine jar and used for being matched with the second rotary model cylinder 21. The second scraper 28 comprises a second mounting plate 29, a second strap 30 and a second blade 31. The second blade 31 has a certain thickness and is made of wood material or rubber material, which is beneficial to reducing weight. The second strap 30 and the second mounting plate 29 are made of a metal material, such as iron plate, stainless steel plate, etc. The second mounting plate 29 is fixed on the second connecting rod 27, the second sleeve plate 30 and the second blade 31 are overlapped and matched together, the shape of the working face of the second sleeve plate is consistent with the shape of the inner part of the upper half part of the wine jar, and the second sleeve plate and the second blade are fixed on the second mounting plate 29 through bolts, so that the disassembly and tool changing are facilitated. In order to facilitate the operator to stably control the operation of the second scraper 28, a second operating rod 32 is provided at the free end of the second link 27 for the purpose of manually controlling the second scraper 28, thereby controlling the stability of the operation and the thickness of the blank.
In the installation process of the first mechanical pressing device and the second mechanical pressing device, a ground installation groove needs to be arranged, one part of the ground installation groove is located above the ground, and the rest of the ground installation groove is located below the ground. As shown in fig. 8 and 12, the dotted line is the horizon line, and the dotted line is arranged below the ground, so that the design is to reduce the height of the whole equipment, and is beneficial to an operator to stand on the ground for operation.
In the operation process, the moulds provided with the upper wine jar blank 25 and the lower wine jar blank 12 are respectively hoisted in corresponding rotary mould cylinders, and then the first mechanical pressing device and the second mechanical pressing device are respectively and independently started to carry out independent operation on the moulds. After the mechanical pressing device is started, the motor drives the rotary mold cylinder to rotate, the jacking mechanism retracts, the connecting rod is pulled downwards, the scraper enters the blank, then an operator presses the operating rod with hands, the scraper contacts the wall of the blank, and redundant materials are scraped through automatic rotation of the scraper. According to the design, an operator only needs to simply control the operating rod and well master the removal amount, so that the operation is simple, the labor amount is low, and the working efficiency is high. After the allowance is removed, the mold is lifted out by a lifting device (such as an electric hoist), and an empty bearing plate 70 is placed on the mold bearing table 4 above the demolding device, as shown in fig. 5 and 6. The lower half forming die 23 of the wine jar is placed on the overhead bearing plate 70, and the upper half forming die 24 of the wine jar is turned over by the turning and hoisting device arranged on the hoisting device and buckled on the lower half forming die 23 of the wine jar, so that the upper half forming die 24 of the wine jar is taken off. And finally, starting the jacking device 1 to drive the top plate 2 to move upwards to jack up the detachable bottom plate 71 of the wine jar lower half forming die 23, so that the whole blank body is separated from the wine jar lower half forming die 23.
The above description is only exemplary of the present invention and should not be taken as limiting the scope of the present invention, as any modifications, equivalents, improvements and the like made within the spirit and principles of the present invention are intended to be included within the scope of the present invention.

Claims (3)

1. The utility model provides a weight type wine jar upset hoist device which characterized in that: the overturning hoisting mechanism comprises a metal locking ring, the metal locking ring is provided with a locking notch, the locking notch is matched with a sleeve, the outer side wall of the metal locking ring is welded with a first connecting plate and a second connecting plate, the first connecting plate and the second connecting plate are symmetrically arranged, the first connecting plate is provided with a first fixing seat, the first fixing seat is fixedly provided with a first connecting shaft, the first connecting shaft is connected with a first connecting piece through a bearing, the first connecting piece is correspondingly connected with a vertical connecting rod, the second connecting plate is provided with a second fixing seat, the second fixing seat is fixedly provided with a second connecting shaft, the second connecting shaft is connected with a second connecting piece through a bearing, and the second connecting piece is correspondingly connected with another vertical connecting rod, and a cycloidal pin gear speed reducer is fixed on the second connecting piece, and a rotating shaft of the cycloidal pin gear speed reducer is connected with the second connecting shaft.
2. The weight type wine jar overturning and hoisting device according to claim 1, which is characterized in that: vertical connecting rods are detachably and symmetrically arranged at the two ends of the transverse connecting rod.
3. The weight type wine jar overturning and hoisting device according to claim 1, which is characterized in that: the second connecting piece comprises a transverse connecting plate, two ends of the transverse connecting plate are respectively connected with a vertical connecting plate and a vertical mounting plate, a second connecting shaft bearing hole is formed in the vertical connecting plate, and the vertical mounting plate is connected with the cycloidal pin gear speed reducer through a bolt.
CN202020387440.8U 2020-03-25 2020-03-25 Weight type wine jar overturning and hoisting device Expired - Fee Related CN212266190U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020387440.8U CN212266190U (en) 2020-03-25 2020-03-25 Weight type wine jar overturning and hoisting device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020387440.8U CN212266190U (en) 2020-03-25 2020-03-25 Weight type wine jar overturning and hoisting device

Publications (1)

Publication Number Publication Date
CN212266190U true CN212266190U (en) 2021-01-01

Family

ID=73884863

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020387440.8U Expired - Fee Related CN212266190U (en) 2020-03-25 2020-03-25 Weight type wine jar overturning and hoisting device

Country Status (1)

Country Link
CN (1) CN212266190U (en)

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CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20210101

CF01 Termination of patent right due to non-payment of annual fee