CN112938188A - Lifting translation system and use method thereof - Google Patents

Lifting translation system and use method thereof Download PDF

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Publication number
CN112938188A
CN112938188A CN202110131016.6A CN202110131016A CN112938188A CN 112938188 A CN112938188 A CN 112938188A CN 202110131016 A CN202110131016 A CN 202110131016A CN 112938188 A CN112938188 A CN 112938188A
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disc
pipe
bolt
lock
shaft
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CN202110131016.6A
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Chinese (zh)
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蒋李
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Individual
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D85/00Containers, packaging elements or packages, specially adapted for particular articles or materials
    • B65D85/20Containers, packaging elements or packages, specially adapted for particular articles or materials for incompressible or rigid rod-shaped or tubular articles

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Transmission Devices (AREA)

Abstract

The invention discloses a lifting translation system and a using method thereof, and the lifting translation system structurally comprises a left gear lifting disc, a pipe cover, a right gear lifting disc, a pendant block and a bottom bracket, wherein the pipe cover is connected with the left gear lifting disc and the right gear lifting disc, the right gear lifting disc is connected with the pendant block shaft, and the left gear lifting disc The backing wheel structure flexibility moves the circular tube, effectively reduces noise and keeps the circular tube intact.

Description

Lifting translation system and use method thereof
The application is a divisional application of lifting and translating equipment based on circular tube transfer noise reduction transmission, and is applied for 12, 12 and 17 in 2019 and with the application number of CN 201911297482.0.
Technical Field
The invention relates to the technical field of mechanical equipment, in particular to a lifting translation system and a using method thereof.
Background
Need remove the pipe in the manufacturing process, large-scale pipe transport is comparatively wasted time and energy, generally adopts the artifical supplementary mode of equipment transport to go on, because equipment is comparatively heavy in the handling, takes place the scraping easily between haulage equipment and the pipe, and artifical supplementary is controlled comparatively difficultly.
In the prior art, because the pipeline is large in size and has a tiny manual assistance effect, the pipeline is easy to shake in movement, the fluctuation generated by movement can be increased under the action of gravity, the stability of movement is reduced, scraping is caused between the carrying equipment and the round pipe, a large friction impact sound is generated, the noise is large, and the round pipe is damaged.
Disclosure of Invention
The invention mainly aims to overcome the defects of the prior art and provides a lifting translation system and a using method thereof to solve the problems that due to the fact that a pipeline is large in size and has a slight manual assistance effect, shaking is easy to occur during movement, fluctuation generated by movement is increased under the action of gravity, the stability of movement is reduced, scraping occurs between a carrying device and a circular pipe, large friction impact sound is generated, noise is large, and the circular pipe is damaged.
The invention is realized by adopting the following technical scheme: a lifting translation system and a using method thereof structurally comprise a left gear lifting disc, a pipe cover, a right gear lifting disc, a drop block and a bottom support, wherein the left end and the right end of the pipe cover are connected with the left gear lifting disc and the right gear lifting disc in an installing mode, the right gear lifting disc is connected with a left end shaft of the drop block, the left gear lifting disc and the right gear lifting disc are connected with the upper end of the bottom support in an installing mode, the left gear lifting disc and the right gear lifting disc are identical in structure, a cushion wheel structure is installed in the middle of the pipe cover, a wheel shaft is connected with the middle of the drop block in a shaft mode, and a rack bar structure is installed at the bottom of the bottom support.
Preferably, the left gear lifting disc comprises a wheel pad, spiral teeth, a wheel disc, a movable key, disc grooves, a disc shaft and a rail bar, the wheel pad is connected with the spiral teeth in an assembling mode and the wheel pad and the spiral teeth form an integrated structure, the disc grooves are formed in the middle of the wheel disc, the movable key is installed at the left end and the right end of the wheel disc, the middle of the wheel disc is connected with the disc shaft, the rail bar is embedded on the wheel disc, and the rail bar and the wheel disc form the integrated structure.
Further preferably, the spiral teeth comprise a spiral disc and a spiral tooth rod, the spiral disc is connected with the spiral tooth rod in an installing mode, and the spiral tooth rod penetrates through the spiral disc.
Further preferably, the mobile key comprises a mobile pad rod and a rail ring, the mobile pad rod is connected with the rail ring in a rail way, and the mobile pad rod penetrates through the rail ring.
Further preferably, the rail bar is provided with a rail lock at the middle part, the rail lock comprises a connecting rod, a connecting ring lock, a connecting ring and a hook lock, the middle part of the connecting rod is connected with the connecting ring lock catch, the right end of the connecting rod is connected with the connecting ring lock track, the connecting ring lock is buckled with the left end of the connecting ring lock, and the right end of the connecting ring lock is locked with the right end of the hook lock.
Further preferably, the rack bar structure comprises a tooth bolt device and an inner bar rack, wherein the tooth bolt device is mounted on the inner bar rack and the tooth bolt device and the inner bar rack form an integrated structure.
Preferably, the tooth bolt device comprises a bolt cover, a bolt shaft, a bolt rod and a bolt disc, wherein the right end of the bolt cover is connected with the bolt shaft, the bolt shaft is locked with the left end of the bolt rod, and the right end of the bolt rod is embedded with the bolt disc.
Further preferably, the pad wheel structure comprises a pad shaft rod, a pad shaft ring and a pad shaft wheel, wherein the pad shaft rod is connected with the middle shaft of the pad shaft ring, and the pad shaft ring is embedded in the middle of the pad shaft wheel.
Advantageous effects
According to the invention, a left gear lifting disc moves on a bottom support to drive a pipe cover to move downwards, the pipe cover slides downwards from the left gear lifting disc and a right gear lifting disc after moving downwards, at the moment, a circular pipe is attached to the pipe cover, the circular pipe is fed into the pipe cover, meanwhile, the pipe cover, the left gear lifting disc and the right gear lifting disc sequentially return to the position under the transmission assistance of a cushion wheel structure to stably place the circular pipe into the pipe cover, then the bottom support moves, the pipe cover overturns, and the circular pipe is moved out and fed to a specified position; during transmission, the spiral teeth of the left gear lifting disc and the right gear lifting disc roll from the bottom support to move, the spiral teeth are formed by splicing spiral discs and spiral tooth rods, the seam gaps between the spiral discs can improve the rolling stability of the spiral teeth, the spiral discs are of C-shaped structures, when the spiral teeth roll and move downwards, the spiral teeth can slide downwards stably, when the pipe cover slides downwards from the left gear lifting disc and the right gear lifting disc (namely, the pipe cover moves downwards from a wheel disc and slides downwards through a rail bar, a disc groove and a disc shaft play a fixing role in mounting and connecting the left gear lifting disc, the pipe cover and the right gear lifting disc and a falling block), a moving key can assist in micro-deviation of the pipe cover, when the moving key is transmitted, the moving cushion rod moves left and right on a rail ring to realize micro-deviation of the pipe cover, and a friction layer is arranged on the surface of the moving cushion rod and used for improving the moving stability; when the pipe cover slides downwards on the rail bar, the rail lock moves in an auxiliary way, the pipe cover is fixed through the connecting rod and the hook lock, the connecting rod and the hook lock are locked through the matching of the connecting ring lock, the connecting ring is added to further strengthen and lock the connecting ring lock, so that the pipe cover can stably move downwards, moving noise can not occur when the pipe cover moves downwards, the spiral teeth move in a transmission way through the matching of the rack bar structure when rolling, the tooth bolt device can decompose the structure during the moving process, the bolt cover, the bolt shaft and the bolt rod decompose and tighten up to realize flexible height change of the pipe cover when bearing the gravity of the circular pipe, so that the circular pipe moves more smoothly, the friction and the generated noise during the moving process are reduced, meanwhile, the cushion wheel structure also assists to move the circular pipe, the circular pipe is collected into the pipe cover in a rolling way, the left-right movement of the cushion shaft rod can drive the change of the cushion ring shaft ring, and the cushion layer at the middle part of the cushion shaft wheel becomes larger or smaller, the flexible control of being convenient for is to the removal of pipe, avoids the pipe to take place not hard up in the removal and leads to appearing sliding, and the pad wheel structure has increased the bed course, the noise that produces in the reduction removal that can the maximize.
Compared with the prior art, the invention has the beneficial effects that: the dish is lifted to the left part gear, the right part gear is lifted the dish and is driven the pipe casing and remove on the support of bottom in putting into the pipe casing with the pipe, rethread bottom support removes the transfer that realizes the pipe to the mobile device, replace the manual work through the equipment and shift the pipe, security when shifting improves greatly, the spiral shell tooth removes with the mode of meshing in bottom support department, stability obtains improving, remove through removing the key assistance, make the pipe when shifting to pipe casing department, the maximize has reduced the collision scraping, also remove the reinforcement when the pipe casing is further moved through the track lock, the backing wheel structure flexibility removes the pipe, effectually fall and make an uproar, and keep the intact of pipe.
Drawings
Other features, objects and advantages of the invention will become more apparent upon reading of the detailed description of non-limiting embodiments with reference to the following drawings:
FIG. 1 is a schematic diagram of a lift translation system and method of use of the same according to the present invention.
Fig. 2 shows a front view of the left gear lifting plate of the invention.
Fig. 3 shows a side view of the left gear lifting plate of the invention.
Fig. 4 shows a schematic of the construction of the inventive thread.
Fig. 5 shows a schematic structure of the mobile key of the present invention.
Fig. 6 shows a schematic structural view of the track lock of the present invention.
Fig. 7 shows a schematic view of the structure of the rack bar structure of the present invention.
Fig. 8 shows a schematic structural view of the tooth bolt device of the present invention.
Fig. 9 shows a schematic structural view of the mat wheel structure of the present invention.
In the figure: left gear lifting disc 1, pipe cover 2, right gear lifting disc 3, pendant 4, bottom bracket 5, pad wheel structure 20, wheel shaft 40, rack bar structure 50, wheel pad 10, screw tooth 11, wheel disc 12, mobile key 13, disc groove 14, disc shaft 15, rail bar 16, screw disc 110, screw rod 111, mobile pad rod 130, rail ring 131, rail lock 160, link rod 1600, link ring lock 1601, link ring 1602, hook lock 1603, tooth bolt device 500, inner bar rack 501, bolt cover 5000, bolt shaft 5001, bolt rod 5002, bolt disc 5003, pad shaft rod 200, pad shaft ring 201 and pad shaft wheel 202.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Embodiment 1 referring to fig. 1 to 5, the present invention provides a lifting translation system and a technical solution of a method for using the same: the structure of the pipe comprises a left gear lifting disc 1, a pipe cover 2, a right gear lifting disc 3, a pendant block 4 and a bottom support 5, wherein the pipe cover 2 is connected with the left gear lifting disc 1 and the right gear lifting disc 3 in an installing mode, the pipe cover 2, the left gear lifting disc 1 and the right gear lifting disc 3 can drive a cushion wheel structure 20 to drive a round pipe to be stably placed into the pipe cover 2 when returning, the transmission is flexible, the utilization rate is high, the right gear lifting disc 3 is connected with the pendant block 4 in a shaft mode, the left gear lifting disc 1, the right gear lifting disc 3 and the bottom support 5 are connected in an installing mode, the left gear lifting disc 1 and the right gear lifting disc 3 are identical in structure, the pipe cover 2 is provided with the cushion wheel structure 20, the pendant block 4 is connected with a shaft 40 in a shaft mode, the bottom support 5 is provided with a rack structure 50, the left gear lifting disc 1 comprises a wheel pad 10, spiral teeth 11, a wheel disc 12, a moving key 13 and a bottom support 5, The disc groove 14, the disc shaft 15 and the rail bar 16, the disc groove 14 and the disc shaft 15 play a role in fixing the left gear lifting disc 1, the tube cover 2, the right gear lifting disc 3 and the drop block 4 in an installing and connecting manner, the wheel pad 10 is connected with the spiral teeth 11 in an assembling manner, the disc 12 is provided with the disc groove 14, the mobile key 13 is installed on the disc 12, the disc 12 is connected with the disc shaft 15 in an axis manner, the rail bar 16 is embedded on the disc 12, the spiral teeth 11 comprise a spiral disc 110 and a spiral rod 111, the spiral disc 110 is in a C-shaped structure, when the spiral teeth 11 move downwards, the flat surface of the spiral disc 110 can stably slide downwards, the spiral disc 110 is connected with the spiral rod 111 in an installing manner, the slot gaps between the spiral discs 110 can improve the fixity of the rail groove, so that the rolling stability of the spiral teeth 11 is also improved, the mobile key 13 comprises a mobile cushion rod 130 and a rail ring 131, and the mobile cushion rod 130 is connected with the rail ring 131, the mobile key 13 is used for assisting in micro-deviation of the pipe cover 2 and enhancing the moving stability of the pipe cover 2, and a friction layer is arranged on the surface of the mobile pad bar 130 and used for improving the attaching performance and stability of the movement.
The left gear lifting disc 1 moves on the bottom support 5 to drive the pipe cover 2 to move downwards, the pipe cover 2 slides downwards from the left gear lifting disc 1 and the right gear lifting disc 3 after moving downwards, at the moment, the circular pipe is attached to the pipe cover 2 and is sent into the pipe cover 2, meanwhile, the pipe cover 2, the left gear lifting disc 1 and the right gear lifting disc 3 return in sequence, the circular pipe is stably placed into the pipe cover 2 under the transmission assistance of the backing wheel structure 20, then the bottom support 5 moves, the pipe cover 2 overturns, and the circular pipe is moved out and sent to a specified position; when in transmission, the spiral teeth 11 of the left gear lifting plate 1 and the right gear lifting plate 3 roll from the bottom bracket 5 to move, the spiral teeth 11 are formed by assembling the spiral plates 110 and the spiral rod 111, the slot seam between the spiral plates 110 can improve the rolling stability of the spiral teeth 11, the spiral plates 110 are C-shaped structures, when the spiral teeth 11 roll and move downwards, the spiral teeth can slide downwards stably, when the pipe cover 2 slides downwards from the left gear lifting plate 1 and the right gear lifting plate 3 (namely, the pipe cover 2 moves downwards from the wheel disc 12, through the rail bar 16, the sliding plate groove 14 and the disc shaft 15 play a role in fixing the mounting and engagement of the left gear lifting plate 1, the pipe cover 2, the right gear lifting plate 3 and the drop block 4) to move the key 13 to assist in the micro-offset of the pipe cover 2, when the moving key 13 is transmitted, the moving pad rod 130 moves left and right on the rail ring 131 to drive the micro-offset of the pipe cover 2, and the surface of the moving pad rod 130 is provided with a friction layer, for improved stability of movement.
Embodiment 2 referring to fig. 6 to 9, the present invention provides a lifting translation system and a technical solution of a method for using the same: the track lock 160 is installed on the rail 16, the track lock 160 includes a link rod 1600, a link ring lock 1601, a link ring 1602 and a hook lock 1603, the link rod 1600 is fastened with the link ring lock 1601, the link rod 1600 is connected with the link ring 1602 in a track manner, the link ring lock 1601 is fastened with the link ring 1602, the link ring 1602 is used for further strengthening and locking the link ring lock 1601, so that the pipe cover 2 can stably move downwards and does not generate moving noise when moving downwards, the link ring lock 1601 is locked with the hook lock 1603, the rack bar structure 50 includes a latch device 500 and an inner bar 501, the screw 11 is matched with the rack bar structure 50 to perform transmission movement when rolling, the latch device 500 is installed on the inner bar rack 501, the latch device 500 includes a latch cover 5000, a latch shaft 5001, a rod 5002 and a latch disk 5003, the latch cover 5000 is connected with the latch shaft 5001, the bolt shaft 5001 and the bolt rod 5002 are locked, the bolt rod 5002 and the bolt disc 5003 are embedded, the tooth bolt device 500 can be disassembled in the moving process, the bolt cover 5000, the bolt shaft 5001 and the bolt rod 5002 are disassembled and tightened to realize flexible height change of the pipe cover 2 when bearing the gravity of a circular pipe, so that the circular pipe can move more smoothly, friction in the moving process and noise of the friction are reduced, the backing wheel structure 20 comprises a backing shaft rod 200, a backing shaft ring 201 and a backing shaft wheel 202, the backing shaft rod 200 is connected with the backing shaft ring 201 in a shaft mode, the backing shaft ring 201 is embedded with the backing shaft wheel 202, the backing wheel structure 20 also assists in moving the circular pipe, the circular pipe is collected into the pipe cover 2 in a rolling mode, and the backing wheel structure 20 is provided with a backing layer, so that noise generated in the moving process can be reduced to the maximum.
When the pipe cover 2 slides downwards on the rail bar 16, the rail lock 160 assists to move, the pipe cover 2 is fixed through the connecting rod 1600 and the hook lock 1603, the connecting ring lock 1601 cooperates to lock the connecting rod 1600 and the hook lock 1603, the connecting ring 1602 acts on further strengthening locking of the connecting ring lock 1601 to enable the pipe cover 2 to stably move downwards, moving noise cannot occur when the pipe cover moves downwards, the spiral teeth 11 move in a transmission manner by cooperating with the rack bar structure 50 when rolling, the tooth bolt device 500 can perform a decomposition structure in the moving process, the bolt cover 5000, the bolt shaft 5001 and the bolt rod 5002 decompose and tighten to realize flexible height change of the pipe cover 2 when bearing the gravity of the pipe, so that the pipe moves more smoothly, friction and noise generated in the moving process are reduced, meanwhile, the backing wheel structure 20 also assists to move the pipe, the pipe is collected into the pipe cover 2 in a rolling manner, left and right movement of the backing wheel 200 can drive the change of the diameter of the backing shaft collar 201, make the bed course grow or diminish of pad arbor wheel 202 middle part trench, the nimble control of being convenient for is to the removal of pipe, avoids the pipe to take place not hard up in the removal and leads to appearing sliding, and pad wheel structure 20 has increased the bed course, the noise that produces in the reduction that can the maximize removes.
Compared with the prior art, the invention has the technical progress that: the left part gear lifts a set 1, the right part gear lifts a set 3 and drives pipe casing 2 and removes on bottom bracket 5 and take in pipe casing 2 with the pipe in, rethread bottom bracket 5 removes the transfer that realizes the pipe to mobile device, replace the manual work through the equipment and shift the pipe, security when shifting improves greatly, spiral tooth 11 removes with the mode of meshing in bottom bracket 5 department, stability obtains improving, through removing key 13 auxiliary movement, make the pipe when shifting to pipe casing 2 department, the maximize has reduced the collision scraping, reinforcement when also further moving pipe casing 2 through track lock 160, the pipe that moves of backing wheel structure 20 flexibility, effectually fall and make an uproar, and keep the intact of pipe.
Although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that various changes in the embodiments and/or modifications of the invention can be made, and equivalents and modifications of some features of the invention can be made without departing from the spirit and scope of the invention.

Claims (7)

1. The utility model provides a driven lifting translation equipment of making an uproar falls based on pipe shifts, its structure includes that the left part gear lifts dish (1), pipe cover (2), right part gear lift dish (3), weighs down piece (4), bottom support (5), pipe cover (2) lift dish (1) with the left part gear, right part gear lifts dish (3) erection joint, the right part gear lifts dish (3) and weighs down piece (4) hub connection, the left part gear lifts dish (1), right part gear lifts dish (3) and installs with bottom support (5) and be connected its characterized in that:
the left gear lifting disc (1) and the right gear lifting disc (3) are identical in structure, a cushion wheel structure (20) is installed on the pipe cover (2), the balance block (4) is connected with a wheel shaft (40) in a shaft connection mode, and a rack bar structure (50) is installed on the bottom support (5);
the left gear lifting disc (1) comprises a wheel pad (10), spiral teeth (11), a wheel disc (12), a movable key (13), a disc groove (14), a disc shaft (15) and a rail bar (16), the wheel pad (10) is connected with the spiral teeth (11) in an assembling mode, the wheel disc (12) is provided with the disc groove (14), the movable key (13) is installed on the wheel disc (12), the wheel disc (12) is connected with the disc shaft (15) in a shaft mode, and the rail bar (16) is embedded on the wheel disc (12).
2. The lifting and translating device based on the circular tube transfer noise reduction transmission of claim 1, wherein: the spiral teeth (11) comprise a spiral disc (110) and a spiral tooth rod (111), and the spiral disc (110) is connected with the spiral tooth rod (111) in an installing mode.
3. The lifting and translating device based on the circular tube transfer noise reduction transmission of claim 1, wherein: the mobile key (13) comprises a mobile pad rod (130) and a rail ring (131), wherein the mobile pad rod (130) is in rail connection with the rail ring (131).
4. The lifting and translating device based on the circular tube transfer noise reduction transmission of claim 1, wherein: track lock (160) are installed in rail bar (16), track lock (160) include link pole (1600), link ring lock (1601), link ring (1602), collude lock (1603), link pole (1600) and link ring lock (1601) lock joint, link pole (1600) and link ring lock (1601) rail coupling with link ring (1602), link ring lock (1601) and link ring lock (1602) lock joint, link ring lock (1601) and collude lock (1603) locking.
5. The lifting and translating device based on the circular tube transfer noise reduction transmission of claim 1, wherein: the rack bar structure (50) comprises a tooth bolt device (500) and an inner bar rack (501), wherein the tooth bolt device (500) is arranged on the inner bar rack (501).
6. The lifting and translating device based on the circular tube transfer noise reduction transmission of claim 5, wherein: the tooth bolt device (500) comprises a bolt cover (5000), a bolt shaft (5001), a bolt rod (5002) and a bolt disc (5003), wherein the bolt cover (5000) is connected with the bolt shaft (5001) in a shaft mode, the bolt shaft (5001) is locked with the bolt rod (5002), and the bolt rod (5002) is embedded with the bolt disc (5003).
7. A lift translation system and method of use thereof according to any of claims 1-6 wherein:
the left gear lifting plate (1) and the right gear lifting plate (3) drive the pipe cover (2) to move on the bottom support (5) to take the circular pipe into the pipe cover (2), the bottom support (5) moves the mobile equipment to transfer the circular pipe, the equipment replaces manpower to transfer the circular pipe, safety during transfer is greatly improved, the spiral teeth (11) move in a mode of being meshed with the bottom support (5), and stability is improved;
through removing the supplementary removal of key (13), make the pipe when shifting to pipe casing (2), the maximize reduction the collision scraping, also remove the pipe through reinforcement, the flexibility of backing wheel structure (20) when track lock (160) further removes pipe casing (2), effectually fall and make an uproar to keep the intact of pipe.
CN202110131016.6A 2019-12-17 2019-12-17 Lifting translation system and use method thereof Pending CN112938188A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202110131016.6A CN112938188A (en) 2019-12-17 2019-12-17 Lifting translation system and use method thereof

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Application Number Priority Date Filing Date Title
CN202110131016.6A CN112938188A (en) 2019-12-17 2019-12-17 Lifting translation system and use method thereof
CN201911297482.0A CN110980010B (en) 2019-12-17 2019-12-17 Lifting translation equipment based on circular tube transfer noise reduction transmission

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CN201911297482.0A Division CN110980010B (en) 2019-12-17 2019-12-17 Lifting translation equipment based on circular tube transfer noise reduction transmission

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CN202110131016.6A Pending CN112938188A (en) 2019-12-17 2019-12-17 Lifting translation system and use method thereof

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Application publication date: 20210611