CN214730807U - System jar equipment that accuracy is high is with a jar mechanism - Google Patents

System jar equipment that accuracy is high is with a jar mechanism Download PDF

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Publication number
CN214730807U
CN214730807U CN202120007187.3U CN202120007187U CN214730807U CN 214730807 U CN214730807 U CN 214730807U CN 202120007187 U CN202120007187 U CN 202120007187U CN 214730807 U CN214730807 U CN 214730807U
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China
Prior art keywords
bevel gear
jar
shaped sliding
matched
mounting hole
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CN202120007187.3U
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Chinese (zh)
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张艳敏
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Dongying Xutong Can-making Co.,Ltd.
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Individual
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Abstract

The utility model discloses a system jar equipment technical field's a system jar equipment that accuracy is high constructs, comprising a base plate, one side at bottom plate top is provided with left riser, the opposite side at bottom plate top is provided with right riser, be provided with lifting unit on the riser of a left side, the terminal surface all vertically is provided with unanimous scale around the riser of the right side, the lifting unit top is provided with the centre gripping subassembly, and this system jar equipment constructs can carry the jar body accurately to carrying out the in-process of carrying to the jar body, can carrying out centre gripping fixed processing to the jar body, taking place to rock and fall the damage to prevent jar body, thereby guarantee the stability of the jar body in transportation process.

Description

System jar equipment that accuracy is high is with a jar mechanism
Technical Field
The utility model relates to a system jar equipment technical field specifically is a system jar equipment that accuracy is high is with a jar mechanism.
Background
The metal can manufacturing equipment is often provided with a can jacking mechanism so that the metal can body on the production post of the can manufacturing equipment can ascend to the upper processing position of the can manufacturing equipment for certain processing. Traditional top jar mechanism has the mechanism complicacy in the use, and the stationarity of carrying and accuracy are relatively poor, influence the defect of machining precision, and, traditional top jar mechanism is carrying out the in-process of carrying the jar body, do not carry out centre gripping fixed treatment to the jar body mostly, lead to the fixed unstability of jar body and take place to fall to decrease easily, thereby influence the qualification rate of system jar and the quality of system jar, consequently, a system jar for equipment that the accuracy is high is with top jar mechanism very much has practical value.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a system jar equipment that accuracy is high is with a jar mechanism to solve the problem that proposes among the above-mentioned background art.
In order to achieve the above object, the utility model provides a following technical scheme: the utility model provides a system jar equipment that accuracy is high is with a jar mechanism, includes the bottom plate, one side at bottom plate top is provided with left riser, the opposite side at bottom plate top is provided with right riser, be provided with lifting unit on the riser of a left side, the terminal surface all vertically is provided with unanimous scale around the riser of the right side, the lifting unit top is provided with the centre gripping subassembly.
Preferably, the lifting assembly comprises a main rotating shaft, a guide sleeve is sleeved on the periphery of the main rotating shaft, a transverse line of the left vertical plate penetrates through a first mounting hole matched with the guide sleeve, the guide sleeve is fixedly connected to an inner cavity of the first mounting hole matched with the guide sleeve, the right end of the main rotating shaft penetrates through the guide sleeve and is connected with a main bevel gear, the left end of the main rotating shaft is connected with a handle, a secondary bevel gear matched with the main bevel gear is arranged below the main bevel gear, a driven screw is fixedly arranged in the inner cavity of the secondary bevel gear in an inserting mode, a supporting table is arranged above the secondary bevel gear, a second mounting hole is longitudinally formed in the bottom of the supporting table, a threaded sleeve matched with the driven screw is fixedly connected to the inner cavity of the mounting hole, and the top end of the driven screw penetrates through the threaded sleeve and extends to the inner cavity of the supporting table.
Preferably, the support table is longitudinally and uniformly provided with T-shaped sliding blocks on one side close to the right vertical plate, the right vertical plate is longitudinally provided with T-shaped sliding grooves matched with the T-shaped sliding blocks on one side close to the T-shaped sliding blocks, and the T-shaped sliding blocks are movably arranged in inner cavities of the matched T-shaped sliding grooves.
Preferably, the centre gripping subassembly is including placing a section of thick bamboo, it is provided with the grip block to place a section of thick bamboo inner chamber, grip block outer wall one side gluing is provided with anti-skidding bed course, the other end of grip block outer wall is provided with horizontal pole, just it transversely runs through on one side of horizontal pole to place a section of thick bamboo inner wall to be close to horizontal pole and is provided with mounting hole three, just three inner chamber fixedly connected with of mounting hole and the outer sleeve that horizontal pole matches, horizontal pole is kept away from grip block one end and is passed the outer sleeve and extend and place a section of thick bamboo inner chamber and be connected with the side handle, horizontal pole periphery is cup jointed and is provided with the spring, the spring both ends respectively with place a section of thick bamboo inner wall and grip block welding.
Preferably, the placing cylinder is fixedly connected with the supporting table through a bolt, and a through hole is formed in the top of the supporting table in a penetrating mode and corresponds to the driven screw.
Preferably, the top of the driven screw is connected with an upper limiting plate, and the upper limiting plate is arranged in an inner cavity of the supporting table.
Compared with the prior art, the beneficial effects of the utility model are that: a high-accuracy tank jacking mechanism for tank making equipment is characterized in that a main rotating shaft is driven to rotate through a rotating handle in the use process of the tank jacking mechanism for tank making equipment, the main rotating shaft drives a slave bevel gear to rotate through a main bevel gear, and when the slave bevel gear rotates, a driven screw drives a threaded sleeve to perform height adjustment, so that a tank body placed in an inner cavity of a placing barrel is subjected to height adjustment, and the adjusted height is accurately controlled through scales on a right vertical plate, so that the accuracy of the tank body in the conveying process is guaranteed;
after putting into the jar body that will carry to placing a section of thick bamboo inner chamber, because the effect of spring, make the grip block can carry out centre gripping fixed processing to the jar body, take place to rock the emergence of falling the damage phenomenon in order to prevent the jar body in transportation process, thereby guarantee the stability of jar body transport, and simultaneously, set up the T type spout that matches with T type slider on the riser of the right side, realize the spacing processing to T type slider motion, make a supporting bench along the accurate motion of vertical direction, avoid a supporting bench to take place the incline in the motion process, thereby realize the stationarity of jar body transportation process.
Drawings
FIG. 1 is a schematic structural view of the present invention;
in the figure: 1. a base plate; 2. a left vertical plate; 3. a lifting assembly; 4. a guide sleeve; 5. a handle; 6. a main bevel gear; 7. a slave bevel gear; 8. a bearing seat; 9. a driven screw; 10. an upper limiting plate; 11. a threaded sleeve; 12. a right vertical plate; 13. calibration; 14. a main rotating shaft; 15. a T-shaped slider; 16. a support table; 17. a pass-through hole; 18. a clamping assembly; 19. placing the cylinder; 20. an outer sleeve; 21. a transverse rod; 22. a side handle; 23. a spring; 24. a clamping plate; 25. an anti-slip mat layer.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1, the present invention provides a technical solution: the utility model provides a system jar equipment that accuracy is high is with a jar mechanism, includes bottom plate 1, and one side at 1 top of bottom plate is provided with left riser 2, and the opposite side at 1 top of bottom plate is provided with right riser 12, is provided with lifting unit 3 on the riser 2 of a left side, and the terminal surface all vertically is provided with unanimous scale 13 around the riser 12 of the right side, and 3 tops of lifting unit are provided with centre gripping subassembly 18.
Referring to fig. 1, the lifting assembly 3 includes a main rotating shaft 14, a guide sleeve 4 is sleeved on the periphery of the main rotating shaft 14, a first mounting hole matched with the guide sleeve 4 is transversely formed in the left vertical plate 2 in a penetrating manner, the guide sleeve 4 is fixedly connected to an inner cavity of the matched first mounting hole, the right end of the main rotating shaft 14 penetrates through the guide sleeve 4 and is connected with a main bevel gear 6, a handle 5 is connected to the left end of the main rotating shaft 14, a secondary bevel gear 7 matched with the main bevel gear 6 is arranged below the main bevel gear 6, a driven screw 9 is fixedly connected to the inner cavity of the secondary bevel gear 7 in an inserting manner, a supporting table 16 is arranged above the bevel gear 7, a second mounting hole is longitudinally formed in the bottom of the supporting table 16, a threaded sleeve 11 matched with the driven screw 9 is fixedly connected to the inner cavity of the second mounting hole, and the top end of the driven screw 9 penetrates through the threaded sleeve 11 and extends to the inner cavity of the supporting table 16.
Referring to fig. 1, a T-shaped sliding block 15 is longitudinally and uniformly arranged on one side, close to the right vertical plate 12, of the supporting table 16, a T-shaped sliding groove matched with the T-shaped sliding block 15 is longitudinally arranged on one side, close to the T-shaped sliding block 15, of the right vertical plate 12, the T-shaped sliding groove matched with the T-shaped sliding block 15 is movably arranged in an inner cavity of the matched T-shaped sliding groove, the T-shaped sliding groove matched with the T-shaped sliding block 15 is arranged on the right vertical plate 12, limiting processing of movement of the T-shaped sliding block 15 is achieved, the supporting table 16 accurately moves along the vertical direction, deviation of the supporting table 16 in the movement process is avoided, and accordingly stability in the tank conveying process is achieved.
Referring to fig. 1, the clamping assembly 18 includes a placing cylinder 19, a clamping plate 24 is disposed in an inner cavity of the placing cylinder 19, an anti-slip pad layer 25 is adhesively disposed on one side of an outer wall of the clamping plate 24, a transverse rod 21 is disposed at the other end of the outer wall of the clamping plate 24, a third mounting hole is transversely formed in one side, close to the transverse rod 21, of an inner wall of the placing cylinder 19, the three mounting holes are fixedly connected with an outer sleeve 20 matched with the transverse rod 21, one end, far away from the clamping plate 24, of the transverse rod 21 penetrates through the outer sleeve 20 to extend out of the inner cavity of the placing cylinder 19 and is connected with a side handle 22, a spring 23 is sleeved on the periphery of the transverse rod 21, and two ends of the spring 23 are respectively welded with the inner wall of the placing cylinder 19 and the clamping plate 24.
Referring to fig. 1, the placing cylinder 19 is fixedly connected to the supporting platform 16 through bolts, and a through hole 17 is formed at a position corresponding to the driven screw 9 on the top of the supporting platform 16.
Referring to fig. 1, the top of the driven screw 9 is connected to an upper limiting plate 10, and the upper limiting plate 10 is disposed in the inner cavity of the supporting platform 16.
The working principle is as follows:
when the tank jacking mechanism for the tank making equipment is used, the handle 5 is rotated to drive the main rotating shaft 14 to rotate, the main rotating shaft 14 is driven by the main bevel gear 6 to rotate the auxiliary bevel gear 7, and when the auxiliary bevel gear 7 rotates, the driven screw 9 drives the threaded sleeve 11 to perform height adjustment, so that the tank body placed in the inner cavity of the placing barrel 19 is subjected to height adjustment, and the adjusted height is accurately controlled through the scales 13 on the right vertical plate 12, so that the accuracy of the tank body in the conveying process is guaranteed;
after the jar body that will carry is put into to placing 19 inner chambers of a section of thick bamboo, because spring 23's effect, make grip block 24 can carry out centre gripping fixed processing to the jar body, take place to rock the emergence of falling the damage phenomenon in the transportation process in order to prevent the jar body, thereby guarantee the stability of jar body transport, and simultaneously, set up the T type spout that matches with T type slider 15 on the right side riser 12, realize the spacing processing to T type slider 15 motion, make brace table 16 along the accurate motion of vertical direction, avoid brace table 16 to take place the incline in the motion process, thereby realize the stationarity of jar body transportation process.
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. The utility model provides a system jar top jar mechanism for equipment that accuracy is high, includes bottom plate (1), its characterized in that: one side at bottom plate (1) top is provided with left riser (2), the opposite side at bottom plate (1) top is provided with right riser (12), be provided with lifting unit (3) on left riser (2), the terminal surface all vertically is provided with unanimous scale (13) around right riser (12), lifting unit (3) top is provided with centre gripping subassembly (18).
2. The top can mechanism for the can manufacturing equipment with high precision according to claim 1, wherein: the lifting component (3) comprises a main rotating shaft (14), a guide sleeve (4) is sleeved on the periphery of the main rotating shaft (14), a first mounting hole matched with the guide sleeve (4) is formed in the transverse line of the left vertical plate (2) in a penetrating mode, the guide sleeve (4) is fixedly connected to an inner cavity of the matched first mounting hole, the right end of the main rotating shaft (14) penetrates through the guide sleeve (4) and is connected with a main bevel gear (6), the left end of the main rotating shaft (14) is connected with a handle (5), a secondary bevel gear (7) matched with the main bevel gear (6) is arranged below the main bevel gear (6), a driven screw rod (9) is fixedly arranged in the inner cavity of the secondary bevel gear (7) in an inserting mode, a supporting table (16) is arranged above the secondary bevel gear (7), a second mounting hole is longitudinally formed in the bottom of the supporting table (16), and a threaded sleeve (11) matched with the driven screw rod (9) is fixedly connected to the inner cavity of the second mounting hole, and the top end of the driven screw rod (9) penetrates through the threaded sleeve (11) and extends to the inner cavity of the support platform (16).
3. The top can mechanism for the can manufacturing equipment with high precision according to claim 2, wherein: the supporting table is characterized in that T-shaped sliding blocks (15) are longitudinally and uniformly arranged on one side, close to the right vertical plate (12), of the supporting table (16), T-shaped sliding grooves matched with the T-shaped sliding blocks (15) are longitudinally arranged on one side, close to the T-shaped sliding blocks (15), of the right vertical plate (12), and the T-shaped sliding blocks (15) are movably arranged in inner cavities of the matched T-shaped sliding grooves.
4. The top can mechanism for the can manufacturing equipment with high precision according to claim 1, wherein: centre gripping subassembly (18) is including placing a section of thick bamboo (19), it is provided with grip block (24) to place a section of thick bamboo (19) inner chamber, grip block (24) outer wall one side gluing is provided with anti-skidding bed course (25), the other end of grip block (24) outer wall is provided with horizontal pole (21), just it is provided with mounting hole three to place a section of thick bamboo (19) inner wall and transversely run through near horizontal pole (21) one side, just outer sleeve (20) that three inner chamber fixedly connected with of mounting hole and horizontal pole (21) mate, horizontal pole (21) are kept away from grip block (24) one end and are passed outer sleeve (20) and extend and place a section of thick bamboo (19) inner chamber and be connected with side handle (22), horizontal pole (21) periphery is cup jointed and is provided with spring (23), spring (23) both ends respectively with place a section of thick bamboo (19) inner wall and grip block (24) welding.
5. The top can mechanism for the can manufacturing equipment with high precision according to claim 4, wherein: the placing barrel (19) is fixedly connected with the supporting platform (16) through bolts, and a through hole (17) penetrates through the top of the supporting platform (16) and the position corresponding to the driven screw (9).
6. The top can mechanism for the can manufacturing equipment with high precision according to claim 5, wherein: the top of the driven screw (9) is connected with an upper limiting plate (10), and the upper limiting plate (10) is arranged in the inner cavity of the supporting platform (16).
CN202120007187.3U 2021-01-04 2021-01-04 System jar equipment that accuracy is high is with a jar mechanism Active CN214730807U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120007187.3U CN214730807U (en) 2021-01-04 2021-01-04 System jar equipment that accuracy is high is with a jar mechanism

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120007187.3U CN214730807U (en) 2021-01-04 2021-01-04 System jar equipment that accuracy is high is with a jar mechanism

Publications (1)

Publication Number Publication Date
CN214730807U true CN214730807U (en) 2021-11-16

Family

ID=78637609

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120007187.3U Active CN214730807U (en) 2021-01-04 2021-01-04 System jar equipment that accuracy is high is with a jar mechanism

Country Status (1)

Country Link
CN (1) CN214730807U (en)

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GR01 Patent grant
GR01 Patent grant
TR01 Transfer of patent right
TR01 Transfer of patent right

Effective date of registration: 20230119

Address after: 257000 Building 3, No. 1, Nanzhong Road, Hekou District, Dongying City, Shandong Province

Patentee after: Dongying Xutong Can-making Co.,Ltd.

Address before: 510800 Xinlida cans Equipment Co., Ltd., 5th floor, No. 11, 24th lane, jiuzhuang, Huangling, Yangyi village, Huadu District, Guangzhou City, Guangdong Province

Patentee before: Zhang Yanmin