CN209741283U - Novel electrolytic aluminum anode assembling workbench - Google Patents

Novel electrolytic aluminum anode assembling workbench Download PDF

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Publication number
CN209741283U
CN209741283U CN201920128851.2U CN201920128851U CN209741283U CN 209741283 U CN209741283 U CN 209741283U CN 201920128851 U CN201920128851 U CN 201920128851U CN 209741283 U CN209741283 U CN 209741283U
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electrolytic aluminum
assembly
anode
aluminum anode
bolt
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CN201920128851.2U
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Chinese (zh)
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阎强
郝文涛
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Tianjin Bokewen Electromechanical Technology Co Ltd
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Tianjin Bokewen Electromechanical Technology Co Ltd
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Abstract

The utility model provides a novel electrolytic aluminum anode assembly workbench, which comprises an adjustable anode assembly line and a hoisting clamp, wherein the hoisting clamp is arranged on one side of the adjustable anode assembly line, and the hoisting clamp clamps and clamps a finished electrolytic aluminum anode piece on the adjustable anode assembly line; the adjustable anode assembly line is arranged to comprise at least one group of adjustable anode assembly workbenches; the adjustable anode assembling workbench comprises a frame body assembly and at least one group of tools; the tool is set to comprise an anode supporting roller assembly, a roller assembly distance adjusting mechanism and a sliding table. The utility model discloses a good equipment between multiple specification electrolytic aluminum anode spare can be realized to this equipment workstation, and can carry out the centering between adjacent electrolytic aluminum anode spare and adjust, guarantees the equipment quality of electrolytic aluminum anode spare to shift to accomplishing the work piece, with the equipment of convenient follow-up electrolytic aluminum anode spare, thereby guarantee the continuity of production process.

Description

novel electrolytic aluminum anode assembling workbench
Technical Field
The utility model relates to an electrolytic aluminum anode equipment uses auxiliary device technical field, especially relates to a novel electrolytic aluminum anode equipment workstation.
Background
Electrolytic aluminum is a method of producing metallic aluminum by electrolysis. The electrolytic aluminum anode is mostly composed of a conducting rod and an inert conductor carbon block, the carbon block on the electrolytic aluminum anode is consumed due to participation in the reaction of electrolytic aluminum in the process of electrolytic aluminum, the conducting rod can be repeatedly utilized, the conducting rod is installed on a new carbon block to form a new anode, however, the existing electrolytic aluminum anode is difficult to adjust the centering of each section of the anode when being assembled, and the good assembly of electrolytic aluminum anode pieces with various specifications cannot be met, so that the assembly workbench of the electrolytic aluminum anode needs to be continuously improved.
Disclosure of Invention
the utility model discloses a main aim at solves the problem that exists among the prior art, provides one kind and can realize the good equipment between multiple specification electrolytic aluminum positive pole spare, and can carry out the centering between adjacent electrolytic aluminum positive pole spare and adjust, guarantees the equipment quality of electrolytic aluminum positive pole spare to shift to accomplishing the work piece, with the equipment of convenient follow-up electrolytic aluminum positive pole spare, thereby guarantee the neotype electrolytic aluminum positive pole equipment workstation of the continuity of production process.
in order to solve the technical problem, the utility model discloses a technical scheme is: a novel electrolytic aluminum anode assembly workbench comprises an adjustable anode assembly line and a lifting clamp, wherein the lifting clamp is arranged on one side of the adjustable anode assembly line and clamps and transfers a finished electrolytic aluminum anode piece on the adjustable anode assembly line;
The adjustable anode assembly line is arranged to comprise at least one group of adjustable anode assembly workbenches;
The adjustable anode assembly workbench comprises a frame assembly and at least one group of tools, wherein one side of the frame assembly is provided with a hoisting clamp, the top of the frame assembly is provided with the tools at intervals in a sliding manner, and the tools are used for placing electrolytic aluminum anode pieces to be assembled and carrying out centering adjustment on the electrolytic aluminum anode pieces to be assembled;
The frock sets up to including positive pole support roller subassembly, roller subassembly interval guiding mechanism and slip table, the positive pole supports the corresponding slip of roller subassembly and sets up on roller subassembly interval guiding mechanism, roller subassembly interval guiding mechanism sets up on the slip table, the slip table slides and sets up in support body assembly top.
further, positive pole support roller assembly sets up to including bracket, nylon wheel, plum blossom hand screwed bolt and the pad of stopping, the bracket passes through wheel locking bolt and locks on roller assembly interval guiding mechanism, and rotates through the pivot on this bracket and erect the nylon wheel, nylon takes turns to place and waits to assemble the electrolytic aluminum positive pole, plum blossom hand screwed bolt wears to locate on the bracket, and sets up the pad of stopping on the part that this plum blossom hand screwed bolt passed the bracket, the pad of stopping is used for locking the nylon wheel.
Further, roller subassembly interval guiding mechanism sets up to including dovetail platform slide rail, slide, two screw thread lead screws and hand wheel, the cooperation is slided and is set up the slide on the dovetail platform slide rail, pass wheel locking bolt locking on two screw thread lead screws on the slide, two screw thread lead screws coaxial line is worn to locate on the dovetail platform slide rail, and the lower extreme of slide is established to the cooperation cover on this two screw thread lead screws, the hand wheel is fixed in the input of two screw thread lead screws, and two slides on this hand wheel rotation drive two screw thread lead screws are moved in opposite directions.
Further, the slip table sets up to including bottom plate, leading wheel, fixing bolt and slip table locking bolt, set up roller subassembly interval guiding mechanism on the bottom plate, and set up four groups of leading wheels along its contour direction equidistant on this bottom plate, the leading wheel fastens on the bottom plate through fixing bolt, and this leading wheel cooperatees and rolls and set up in the both sides at support body assembly top, slip table locking bolt passes the bottom plate and can lock the slip table on support body assembly top.
Further, the support body assembly sets up to including the base support body, supporting support body, wrist support, I shape guide rail and blocks the piece, the bottom of base support body is fixed in electrolytic aluminum positive pole spare assembly area through the chemical crab-bolt, and the top interval of this base support body sets up the multiunit and supports the support body, bolt fixed connection I shape guide rail is passed through at the top of supporting the support body, and wears to establish the wrist support through supporting the cover on this supporting the lateral wall of support body, the upper end of putting stone tongs is held in the palm to the wrist, the top of I shape guide rail cooperatees and slides and set up the slip table, and the top both ends of this I shape guide rail block the piece through bolt fixed connection, block the piece and can prevent that the slip table from droing the I shape.
Further, stone tongs sets up to including channel-section steel support, hoist and eyebolt, the channel-section steel supports to set up in one side of support body assembly, and wears to establish the multiunit hoist along its axis direction interval on this channel-section steel supports, eyebolt sets up on the channel-section steel supports through the mounting panel.
Further, the hoist sets up to including jib, lug, crossing ring, lifting hook and holder, the jib wears to establish and is fixed in the logical groove that the channel-section steel supported, and the fixed lug of the lower extreme of this jib, through the upper end of the corresponding fixed two sets of crossing rings of bolt and holder on the lug, it is two sets of the lower extreme of crossing ring is all through the upper end of a bolt fastening lifting hook, and is two sets of the lifting hook cross arrangement, and the lower extreme that the crossing of two sets of lifting hooks passes through bolt and holder cooperatees fixedly.
Further, the holder sets up to include fixed part, clamping part and supplementary portion of establishing of colluding, fixed part, clamping part and supplementary portion of establishing integrated into one piece of colluding, the fixed part passes through the bolt fastening on the lug, the clamping part is held tightly on the lateral wall of lug, wear to establish the bolt of two sets of lifting hook cross departments in the supplementary portion of establishing of colluding.
the utility model has the advantages and positive effects that:
(1) Can carry out the good equipment of multiple specification electrolysis aluminium anode spare through adjustable type anode assembly line, and shift the electrolysis aluminium anode spare that assembles with the help of stone tongs by current lifting device such as overhead traveling crane to make things convenient for the equipment of follow-up electrolysis aluminium anode spare, thereby guarantee the continuity of production process.
(2) Through adjusting the frock interval on the adjustable type positive pole assembly work platform, can satisfy the equipment between multiple length specification electrolytic aluminum anode spare, and the cooperation of positive pole support roller subassembly, roller subassembly interval guiding mechanism and slip table in the frock, then can carry out adjacent centering between waiting to assemble electrolytic aluminum anode spare according to the diameter of waiting to assemble electrolytic aluminum anode spare and adjust to guarantee the equipment quality between electrolytic aluminum anode spare.
(3) through the slip of bracket on roller subassembly interval guiding mechanism, change the interval between two nylon wheels to the stable stay of treating equipment electrolytic aluminum anode spare and adjacent centering between waiting to assemble electrolytic aluminum anode spare are adjusted, and the cooperation of plum blossom hand twisting bolt and the pad of stopping then can realize the locking of nylon wheel, avoid it to drive and wait to assemble electrolytic aluminum anode spare and rotate the assembly that influences the attach fitting.
(4) the double-threaded screw is driven to rotate through the hand wheel, the sliding seat sleeved on the sliding seat is driven to move linearly in opposite directions under the assistance of the dovetail table sliding rail, and after the sliding seat is adjusted in place, the lower end of a wheel locking bolt penetrating through the bracket and the sliding seat is abutted to the double-threaded screw, so that the adjustment of the distance between the two nylon wheels is realized.
Drawings
fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is a schematic view of the working state structure of the present invention.
Fig. 3 is a schematic structural diagram of an operating state of the adjustable anode assembly line in fig. 2.
Figure 4 is the structure schematic diagram of the middle lifting clamp part of the utility model.
Fig. 5 is a schematic structural diagram of the adjustable anode assembling workbench part of the present invention.
Fig. 6 is a schematic structural view of the tooling part in fig. 5.
Fig. 7 is a schematic structural view of the assembly portion of the housing in fig. 5.
Fig. 8 is a schematic structural diagram of a middle spreader portion of the present invention.
In the figure: the anode support device comprises a hoisting clamp 10, a steel channel support 101, a lifting appliance 102, a hanging rod 1021, a lifting lug 1022, a cross ring 1023, a lifting hook 1024, a retainer 1025, a lifting eye screw 103, a frame assembly 20, a base frame body 201, a support frame body 202, a wrist support 203, an I-shaped guide rail 204, a stop block 205, a tool 30, an anode support roller assembly 301, a bracket 3011, a nylon wheel 3012, a torx bolt 3013, a brake pad 3014, a wheel locking bolt 3015, a rotating shaft 3016, a roller assembly spacing adjusting mechanism 302, a dovetail slide rail 3021, a sliding seat 3022, a double-threaded lead screw 3023, a hand wheel 3024, a sliding table 303, a base plate 3031, a guide wheel 3032, a fixing bolt 3033 and a sliding table locking bolt 3034.
Detailed Description
For a better understanding of the present invention, the following further description is given in conjunction with the following embodiments and accompanying drawings.
Example one
As shown in fig. 1, fig. 2, fig. 3, fig. 5 and fig. 6, a novel electrolytic aluminum anode assembly workbench, including adjustable type anode assembly line and stone tongs 10, one side of adjustable type anode assembly line sets up stone tongs 10, the completion electrolytic aluminum anode spare on the adjustable type anode assembly line is got to stone tongs 10 clamp and is shifted, can carry out the good equipment of multiple specification electrolytic aluminum anode spare through adjustable type anode assembly line, and shift the electrolytic aluminum anode spare that has assembled with the help of stone tongs 10 by current lifting device such as overhead traveling crane, in order to make things convenient for the equipment of follow-up electrolytic aluminum anode spare, thereby guarantee the continuity of production process.
The adjustable anode assembly line is arranged to comprise at least one group of adjustable anode assembly workbenches.
adjustable type positive pole assembly work platform sets up to including support body final assembly 20 and at least a set of frock 30, and one side of support body final assembly 20 sets up stone tongs 10, and this support body final assembly 20's top interval and slip and set up frock 30, places on the frock 30 and waits to assemble electrolytic aluminum anode spare, and can wait to assemble the centering between the electrolytic aluminum anode spare and adjust.
The frock 30 sets up to including positive pole support roller assembly 301, roller assembly interval guiding mechanism 302 and slip table 303, positive pole support roller assembly 301 is corresponding to slide and sets up on roller assembly interval guiding mechanism 302, roller assembly interval guiding mechanism 302 sets up on slip table 303, slip table 303 slides and sets up in 20 tops of support body final assembly, through adjusting the 30 intervals of frock on the adjustable type positive pole assembly workstation, can satisfy the equipment between multiple length specification electrolytic aluminum anode spare, and positive pole support roller assembly 301 among the frock 30, the cooperation of roller assembly interval guiding mechanism 302 and slip table 303, then can carry out the centering between the adjacent electrolytic aluminum anode spare of waiting to assemble according to the diameter of waiting to assemble the electrolytic aluminum anode spare and adjust, with the equipment quality between the assurance electrolytic aluminum anode spare.
Example two
As shown in fig. 6, further, the anode support roller assembly 301 is configured to include a bracket 3011, a nylon wheel 3012, a quincunx hand-screwed bolt 3013 and a brake pad 3014, the bracket 3011 is locked on the roller assembly spacing adjustment mechanism 302 by a wheel locking bolt 3015, and the nylon wheel 3012 is rotatably erected on the bracket 3011 through a rotation shaft 3016, an electrolytic aluminum anode to be assembled is placed on the nylon wheel 3012, the quincunx hand-screwed bolt 3013 is inserted into the bracket 3011, and a brake pad 3014 is disposed on a portion of the quincunx hand-screwed bolt 3013 that passes through the bracket 3011, the brake pad 3014 is used for locking the nylon wheel 3012, by sliding the bracket 3011 on the roller assembly spacing adjustment mechanism 302, the spacing between the two nylon wheels 3012 is changed to ensure stable support of an electrolytic aluminum anode to be assembled and centering adjustment between adjacent electrolytic aluminum anodes to be assembled, and the quincunx hand-screwed bolt 3013 and the brake pad 3014 are matched, so as to achieve locking of the nylon wheel 3012, the problem that the assembly of the mounting joint is influenced by the rotation of the electrolytic aluminum anode piece to be assembled driven by the electrolytic aluminum anode piece is avoided.
specifically, the bracket 3011 is locked on the slide 3022 by a wheel lock bolt 3015, and the bracket 3011 is rotatably inserted through the rotating shaft 3016; the rotating shaft 3016 can be connected with a key or welded with a nylon wheel 3012; the quincunx hand-screwed bolt 3013 is connected to the bracket 3011 in a threaded manner, and a fixed brake pad 3014 can be welded on the part of the quincunx hand-screwed bolt 3013 penetrating through the bracket 3011; the brake pad 3014 may be made of an organic material, which is not described in detail herein for the sake of the prior art.
further, the roller assembly distance adjusting mechanism 302 comprises a dovetail platform slide rail 3021, a slide base 3022, a double-threaded lead screw 3023, and a hand wheel 3024, wherein the slide base 3022 is slidably disposed on the dovetail platform slide rail 3021 in a matching manner, the slide base 3022 is locked on the double-threaded lead screw 3023 by passing through a wheel locking bolt 3015, the double-threaded lead screw 3023 is coaxially disposed on the dovetail platform slide rail 3021, the double-thread screw 3023 is matched and sleeved with the lower end of the sliding seat 3022, the hand wheel 3024 is fixed at the input end of the double-thread screw 3023, and the hand wheel 3024 drives the two sliding seats 3022 on the double-threaded lead screw 3023 to move oppositely, the double-thread screw 3023 is driven to rotate by the hand wheel 3024, so as to drive the sliding seat 3022 sleeved on the hand wheel to linearly move towards each other with the aid of the dovetail platform slide rail 3021, and after the adjustment is in place, the lower end of a wheel locking bolt 3015 passing through the bracket 3011 and the sliding seat 3022 is abutted against the double-thread lead screw 3023, so that the adjustment of the distance between the two nylon wheels 3012 is realized.
Specifically, the dovetail platform slide rail 3021 is clamped on the bottom plate 3031, and a through groove is formed in the dovetail platform slide rail 3021 along the axial direction of the dovetail platform slide rail, and a common axial line in the through groove passes through the double-thread lead screw 3023; the double-thread screw 3023 is matched and screwed with the lower end of the sliding base 3022; the hand wheel 3024 may be keyed to the input end of the double threaded lead screw 3023.
Further, the sliding table 303 is configured to include a base plate 3031, guide wheels 3032, fixing bolts 3033 and sliding table locking bolts 3034, the roller assembly distance adjusting mechanisms 302 are arranged on the base plate 3031, four groups of guide wheels 3032 are arranged on the base plate 3031 at equal intervals along the circumferential direction of the base plate 3031, the guide wheels 3032 are fastened on the base plate 3031 through the fixing bolts 3033, the guide wheels 3032 are matched and rolled on two sides of the top of the frame assembly 20, the sliding table locking bolts 3034 penetrate through the base plate 3031 to lock the sliding table 303 on the top of the frame assembly 20, the base plate 3031 is driven by the guide wheels 3032 to slide along the top of the frame assembly 20, the distance between adjacent roller assembly distance adjusting mechanisms 302 is changed, the placing requirements of the electrolytic aluminum anode components to be assembled in various length specifications are met, and the applicability of the assembling workbench is improved.
Specifically, a guide groove is formed in the side wall of the guide wheel 3032 along the circumferential direction, a fixing bolt 3033 is arranged in the guide wheel 3032 in a matching and penetrating manner, and the upper end of the fixing bolt 3033 penetrates through the bottom plate 3031 in a threaded manner and is locked by a nut in a matching manner; the structure of the guide groove is matched with the top structure of the I-shaped guide rail 204; the bottom plate 3031 is provided with a threaded hole, the threaded hole is matched with the sliding table locking bolt 3034 in threaded connection, and the sliding table locking bolt 3034 is manually screwed to enable the lower end of the sliding table locking bolt 3034 to be close to or far away from the top wall of the I-shaped guide rail 204, so that the sliding table 303 is locked or moved.
As shown in fig. 7, further, the frame assembly 20 is configured to include a base frame body 201, a support frame body 202, a wrist support 203, an i-shaped guide rail 204 and a stop block 205, the bottom of the base frame body 201 is fixed in an electrolytic aluminum anode assembly area by a chemical anchor, and a plurality of sets of support frame bodies 202 are arranged at intervals on the top of the base frame body 201, the top of the support frame body 202 is fixedly connected with the i-shaped guide rail 204 by bolts, and the wrist support 203 is arranged on the side wall of the support frame body 202 by a support sleeve, the upper end of the hoisting fixture 10 is placed on the wrist support 203, a sliding table 303 is arranged on the top of the i-shaped guide rail 204 in a matching and sliding manner, and two ends of the top of the i-shaped guide rail 204 are fixedly connected with the stop block 205 by bolts, the stop block 205 can prevent the sliding table 303 from falling off the i-shaped guide rail 204, and the spacing adjustment of the plurality of sets of fixtures 30 can be realized by the cooperation of, so as to carry out convenient assembly of electrolytic aluminum anode pieces with various specifications.
Specifically, the bottom plate 3031 of the base frame 201 is fixed on the ground of the electrolytic aluminum anode assembly region through a chemical anchor bolt, and the top of the base frame 201 can be fixed with a plurality of groups of support frames 202 at intervals through bolt connection; a fixed support sleeve can be welded on the side wall of the support frame body 202, and one end of the wrist support 203 is arranged in the support sleeve in a matched and penetrating way; the channel steel support 101 can be arranged on the transverse rod of the wrist support 203.
EXAMPLE III
As shown in fig. 4 and 8, further, the lifting clamp 10 is configured to include a channel support 101, a lifting tool 102, and an eye screw 103, the channel support 101 is mounted on one side of the rack assembly 20, a plurality of groups of lifting tools 102 are arranged on the channel support 101 at intervals along an axial direction thereof, and the eye screw 103 is arranged on the channel support 101 through a mounting plate.
Further, the hanger 102 is provided to include a hanger bar 1021, a lifting lug 1022, a cross ring 1023, a hook 1024 and a holder 1025, wherein the hanger bar 1021 is fixed in the through slot of the channel steel support 101, the lower end of the hanger rod 1021 is fixed with a lifting lug 1022, the lifting lug 1022 is correspondingly fixed with the upper ends of two groups of cross rings 1023 and a retainer 1025 through bolts, the lower ends of the two groups of cross rings 1023 are fixed with the upper end of a lifting hook 1024 through bolts, the two groups of lifting hooks 1024 are arranged in a cross way, and the intersection of the two sets of hooks 1024 is fixed by the bolt and the lower end of the retainer 1025, by adjusting the angle between the two sets of intersecting rings 1023 and the angle between the hooks 1024 and the intersecting rings 1023, so that two sets of lifting hooks 1024 cooperate and hug closely on completion electrolytic aluminum anode spare lateral wall, holder 1025 then supports the intersection of two sets of lifting hooks 1024 to guarantee the reliable transfer of stone tongs 10 to completion electrolytic aluminum anode spare.
Specifically, a through groove is formed in the channel steel support 101 along the axial direction of the channel steel support, the upper end of the suspender 1021 is penetrated through the through groove, and the channel steel support is locked on the top wall of the channel steel support 101 through a nut; the contact area of the lifting bolt 103 and the channel steel support 101 can be increased by arranging the mounting plate so as to further ensure the hoisting reliability, the mounting plate is arranged into an upper mounting plate and a lower mounting plate, the lifting bolt 103 is fixedly welded on the upper mounting plate, the upper mounting plate is erected on the top of the channel steel support 101, the bottom of the upper mounting plate can be fixedly welded with a screw rod, the lower end of the screw rod penetrates through the lower mounting plate and is locked on the lower mounting plate through a nut, and the lower mounting plate is erected on the bottom of the channel steel support 101; the lower end of the suspension rod 1021 may be welded with a fixing lug 1022.
further, the holder 1025 comprises a fixing portion, a clamping portion and an auxiliary hooking portion, the fixing portion, the clamping portion and the auxiliary hooking portion are integrally formed, the fixing portion is fixed on the lifting lug 1022 through bolts, the clamping portion is tightly held on the side wall of the lifting lug 1022, and bolts at the intersection of the two groups of lifting hooks 1024 penetrate through the auxiliary hooking portion.
Use the utility model provides a novel electrolytic aluminum positive pole equipment workstation can realize the good equipment between multiple specification electrolytic aluminum positive pole spare, and can carry out the centering between adjacent electrolytic aluminum positive pole spare and adjust, guarantees the equipment quality of electrolytic aluminum positive pole spare to shift to accomplishing the work piece, with the equipment of convenient follow-up electrolytic aluminum positive pole spare, thereby guarantee the continuity of production process. The working process of the assembly workbench is as follows:
1. setting a corresponding number of groups of adjustable anode assembly workbenches according to the total length of the electrolytic aluminum anode piece to be assembled, and fixing the base frame body 201 in the frame body assembly 20 in an electrolytic aluminum anode piece assembly area through a chemical anchor bolt;
2. Adjusting the position of the tool 30 on the frame assembly 20 in each group of adjustable anode assembly work tables according to the length of the electrolytic aluminum anode piece to be assembled, namely manually screwing a sliding table locking bolt 3034 to enable the lower end of the sliding table locking bolt to be far away from the top wall of the I-shaped guide rail 204, moving and adjusting the position of the sliding table 303 of the adjacent tool 30 on the I-shaped guide rail 204, driving a bottom plate 3031 to slide along the top of the frame assembly 20 by a guide wheel 3032, changing the distance between adjacent roller assembly distance adjusting mechanisms 302 to enable the distance to meet the length of the electrolytic aluminum anode piece to be assembled, and manually screwing the sliding table locking bolt 3034 to enable the lower end of the sliding table locking bolt 3034 to be abutted against the top wall 303 of the I-shaped guide rail 204 after the adjustment is in place;
3. After the step 2 is completed, the double-threaded lead screw 3023 is driven to rotate by the hand wheel 3024, so as to drive the sliding seat 3022 sleeved on the sliding seat 3022 to linearly move in opposite directions with the aid of the dovetail-table slide rail 3021, and after the adjustment is in place, the lower end of the wheel locking bolt 3015 passing through the bracket 3011 and the sliding seat 3022 abuts against the double-threaded lead screw 3023, so that the adjustment of the distance between the two nylon wheels 3012 is realized;
4. Then manually screwing the quincunx hand-screwed bolt 3013 to enable the brake pad 3014 fixed on the bolt to be pressed on the side wall of the nylon wheel 3012, so as to realize locking of the nylon wheel 3012 and avoid the influence of the rotation of the electrolytic aluminum anode piece to be assembled on the assembly of the mounting joint;
5. Placing a first section of the electrolytic aluminum anode piece to be assembled on the anode support roller assembly 301 in the step 4, assembling an installation joint at the end part of the first section (the specific structure of the installation joint, and the connection and fixation mode and structure of the electrolytic aluminum anode piece and the installation joint are prior art in the field, and therefore detailed description is not provided), adjusting the adjacent tooling 30 according to the diameter of the second section of the electrolytic aluminum anode piece to be assembled, namely repeating the step 3, so as to adjust the distance between two nylon wheels 3012 in the adjacent tooling 30, realize the centering adjustment between the adjacent electrolytic aluminum anode pieces to be assembled, so as to ensure the assembly quality between the electrolytic aluminum anode pieces, and then placing the second section of the electrolytic aluminum anode piece to be assembled on the tooling 30 which completes the centering adjustment;
6. Repeating the step 5 to complete the assembly of the whole electrolytic aluminum anode piece to be assembled;
7. Hoisting the hoisting clamp 10 placed on the wrist support 203 through a hoisting bolt 103 by using existing hoisting equipment such as a crown block and the like, moving and descending to the upper part of the finished electrolytic aluminum anode piece, adjusting the included angle between the two groups of cross rings 1023 by loosening the bolts fixed between the two groups of cross rings 1023, screwing the bolts after adjusting in place, then loosening the bolts fixed between the lifting hooks 1024 and the cross rings 1023, adjusting the included angle between the lifting hooks 1024 and the cross rings 1023, finally screwing the bolts after adjusting in place so as to enable the two groups of lifting hooks 1024 to be matched and tightly held on the side wall of the finished electrolytic aluminum anode piece, starting the crown block to hoist the hoisting clamp 10 clamping the finished electrolytic aluminum anode piece, and moving the hoisting clamp to the wrist support 203;
8. The channel steel support 101 is placed on the wrist support 203, the bolts fixed between the lifting hooks 1024 and the cross ring 1023 are unscrewed, the two lifting hooks 1024 are far away from each other, and the finished electrolytic aluminum anode piece is placed on the transfer channel steel below the finished electrolytic aluminum anode piece (the specific structure of the transfer channel steel and the transfer mode are the prior art in the field, so that detailed description is omitted), so that the finished electrolytic aluminum anode piece is clamped by the hoisting clamp 10, the subsequent assembly of the electrolytic aluminum anode piece is facilitated, and the continuity of the production process is guaranteed;
9. Repeating the steps 5-8 to realize the assembly of the electrolytic aluminum anode pieces in the same batch;
10. and (4) repeating the steps 1-9 to realize the assembly of the electrolytic aluminum anode pieces of different batches.
The embodiments of the present invention have been described in detail, but the description is only for the preferred embodiments of the present invention and should not be construed as limiting the scope of the present invention. All equivalent changes and modifications made within the scope of the present invention should be covered by the present patent.

Claims (8)

1. The utility model provides a novel electrolytic aluminum positive pole equipment workstation which characterized in that: the novel electrolytic aluminum anode assembling workbench comprises an adjustable anode assembling line and a hoisting clamp (10), wherein the hoisting clamp (10) is arranged on one side of the adjustable anode assembling line, and the hoisting clamp (10) clamps and transfers a finished electrolytic aluminum anode piece on the adjustable anode assembling line;
The adjustable anode assembly line is arranged to comprise at least one group of adjustable anode assembly workbenches;
The adjustable anode assembly workbench comprises a frame body assembly (20) and at least one group of tools (30), wherein one side of the frame body assembly (20) is provided with a hoisting clamp (10), the tools (30) are arranged at the top of the frame body assembly (20) at intervals in a sliding manner, electrolytic aluminum anode pieces to be assembled are placed on the tools (30), and centering adjustment between the electrolytic aluminum anode pieces to be assembled can be performed;
Frock (30) set up to including positive pole support roller subassembly (301), roller subassembly interval guiding mechanism (302) and slip table (303), positive pole support roller subassembly (301) corresponding slip sets up on roller subassembly interval guiding mechanism (302), roller subassembly interval guiding mechanism (302) set up on slip table (303), slip table (303) slide and set up in support body assembly (20) top.
2. The novel electrolytic aluminum anode assembly station of claim 1, wherein: anodal support roller subassembly (301) set up to including bracket (3011), nylon wheel (3012), plum blossom hand screw bolt (3013) and stop pad (3014), bracket (3011) is locked on roller subassembly interval guiding mechanism (302) through wheel locking bolt (3015), and rotates through pivot (3016) on this bracket (3011) and erect nylon wheel (3012), place on nylon wheel (3012) and treat the assembly electrolytic aluminum positive pole, plum blossom hand screw bolt (3013) are worn to locate on bracket (3011), and this plum blossom hand screw bolt (3013) pass on the part of bracket (3011) set up on stopping pad (3014), it is used for locking nylon wheel (3012) to stop pad (3014).
3. the new electrolytic aluminum anode assembly station of claim 2, wherein: roller subassembly interval guiding mechanism (302) sets up to including dovetail platform slide rail (3021), slide (3022), two screw thread lead screw (3023) and hand wheel (3024), the cooperation is slided and is set up slide (3022) on dovetail platform slide rail (3021), pass wheel locking bolt (3015) on slide (3022) and lock on two screw thread lead screw (3023), two screw thread lead screw (3023) coaxial line is worn to locate on dovetail platform slide rail (3021), and the lower extreme of slide (3022) is established to the cooperation cover on this two screw thread lead screw (3023), hand wheel (3024) are fixed in the input of two screw thread lead screw (3023), and this hand wheel (3024) rotate two slides (3022) on the drive two screw thread lead screw (3023) and move in opposite directions.
4. the novel electrolytic aluminum anode assembly station of claim 1, wherein: the sliding table (303) comprises a base plate (3031), guide wheels (3032), fixing bolts (3033) and sliding table locking bolts (3034), wherein a roller assembly distance adjusting mechanism (302) is arranged on the base plate (3031), four groups of guide wheels (3032) are arranged on the base plate (3031) at equal intervals along the circumferential direction of the base plate, the guide wheels (3032) are fastened on the base plate (3031) through the fixing bolts (3033), the guide wheels (3032) are matched and arranged on two sides of the top of the frame body assembly (20) in a rolling mode, and the sliding table locking bolts (3034) penetrate through the base plate (3031) to lock the sliding table (303) on the top of the frame body assembly (20).
5. The new electrolytic aluminum anode assembly bench of claim 1 or 4, characterized in that: the frame body assembly (20) comprises a base frame body (201), a supporting frame body (202), a wrist support (203), an I-shaped guide rail (204) and a blocking block (205), the bottom of the base frame body (201) is fixed in an electrolytic aluminum anode assembly area through a chemical anchor bolt, and the top of the base frame body (201) is provided with a plurality of groups of supporting frame bodies (202) at intervals, the top of each supporting frame body (202) is fixedly connected with an I-shaped guide rail (204) through a bolt, and the side wall of the support frame body (202) is penetrated with a wrist support (203) through a support sleeve, the upper end of a hoisting clamp (10) is placed on the wrist support (203), the top of the I-shaped guide rail (204) is matched with a sliding table (303) in a sliding manner, and two ends of the top of the I-shaped guide rail (204) are fixedly connected with a stop block (205) through bolts, the blocking block (205) can prevent the sliding table (303) from falling off the I-shaped guide rail (204).
6. The novel electrolytic aluminum anode assembly station of claim 1, wherein: the hoisting clamp (10) is arranged to comprise a channel steel support (101), a lifting appliance (102) and lifting screws (103), the channel steel support (101) is erected on one side of the frame body assembly (20), a plurality of groups of lifting appliances (102) are arranged on the channel steel support (101) at intervals along the axis direction of the channel steel support (101), and the lifting screws (103) are arranged on the channel steel support (101) through mounting plates.
7. The novel electrolytic aluminum anode assembly station of claim 6, wherein: hoist (102) set up to including jib (1021), lug (1022), cross ring (1023), lifting hook (1024) and holder (1025), jib (1021) wear to establish and are fixed in the logical groove that channel-section steel supported (101), and the fixed lifting hook (1022) of lower extreme of this jib (1021), the upper end of corresponding fixed two sets of cross ring (1023) and holder (1025) through the bolt on lifting hook (1022), two sets of the lower extreme of crossing ring (1023) all passes through the upper end of a bolt fastening lifting hook (1024), and is two sets of lifting hook (1024) cross arrangement, and the lower extreme that the intersection of two sets of lifting hook (1024) passes through bolt and holder (1025) cooperatees fixedly.
8. The novel electrolytic aluminum anode assembly station of claim 7, wherein: retainer (1025) set up to establish the portion including fixed part, clamping part and supplementary, fixed part, clamping part and supplementary portion integrated into one piece of establishing that colludes, the fixed part is fixed in on lug (1022) through the bolt, the clamping part is held tightly on the lateral wall of lug (1022), wear to establish the bolt of two sets of lifting hook (1024) intersection in supplementary establishing portion.
CN201920128851.2U 2019-01-23 2019-01-23 Novel electrolytic aluminum anode assembling workbench Active CN209741283U (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114384455A (en) * 2021-12-09 2022-04-22 贵州电网有限责任公司 Electric field sensor calibration system

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114384455A (en) * 2021-12-09 2022-04-22 贵州电网有限责任公司 Electric field sensor calibration system

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