CN203644893U - Rotor-type alkaline battery diaphragm paper ironing-head insertion mechanism - Google Patents
Rotor-type alkaline battery diaphragm paper ironing-head insertion mechanism Download PDFInfo
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- CN203644893U CN203644893U CN201320774039.XU CN201320774039U CN203644893U CN 203644893 U CN203644893 U CN 203644893U CN 201320774039 U CN201320774039 U CN 201320774039U CN 203644893 U CN203644893 U CN 203644893U
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- hoisting gear
- lowering
- guide rail
- diaphragm
- perming
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02E—REDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
- Y02E60/00—Enabling technologies; Technologies with a potential or indirect contribution to GHG emissions mitigation
- Y02E60/10—Energy storage using batteries
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02P—CLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
- Y02P70/00—Climate change mitigation technologies in the production process for final industrial or consumer products
- Y02P70/50—Manufacturing or production processes characterised by the final manufactured product
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Abstract
The utility model discloses a rotor-type alkaline battery diaphragm paper ironing-head insertion mechanism which is an automatic insertion mechanism for rapidly and reliably inserting a diaphragm pipe into a battery positive ring in the production device of an alkaline battery. The rotor-type alkaline battery diaphragm paper ironing-head insertion mechanism mainly consists of a stander, a main shaft, an upper cam, a lower cam, a middle worktable, a diaphragm pipe lifting device, an ironing-head lifting device and a coil for sensing and heating an ironing head, wherein an ejector rod drive device is additionally arranged above the diaphragm pipe lifting device, and the diaphragm pipe and a rotating bar can be better and efficiently separated from each other by virtue of the ejector rod drive device. Meanwhile, the coil is supplied with high-frequency current to sense and heat the ironing head, so that the quality of a hot-ironed closed diaphragm pipe opening end can be improved; moreover, the coil heating structure is unlikely to damage, the size of the entire insertion mechanism is smaller, a multi-head multi-station structure can be conveniently formed, a rotor continuous revolving working way can be adopted, the high diaphragm pipe insertion capacity and the high capacity for hot-ironing sealing the opening end of the diaphragm pipe can be realized, and the production efficiency can be further improved.
Description
Technical field
The utility model relates to the automatic insertion machine structure in a kind of alkaline battery production equipment, refer in particular to rotator type diaphragm paper of alkaline cell perm insert mechanism.
Background technology
In alkaline battery production process, conventionally can relate to diaphragm tube is inserted to the production technology in anode ring; this production technology is in the inserted mode of diaphragm tube; mostly adopt at present diaphragm tube and anode ring to implement tight fit; thereby make transfer rod depart from diaphragm tube, as this case applicant earlier application " for the boiling hot panel assembly of alkaline dry battery diaphragm paper former " that also disclosed China Patent No. is 200720303173.6.Insert in the production process in anode ring at diaphragm tube, because anode ring internal diameter error is excessive, often easily cause the cooperation of diaphragm tube and anode ring too tight or too loose, thus cause diaphragm tube to be frayed by anode ring or diaphragm tube can not effectively accomplish with transfer rod depart from and be not inserted in anode ring.In addition; it is all to adopt electrothermal tube heating that the existing diaphragm paper that inserts mechanism is permed; its shortcoming is to perm parts due to volume restrictions; can not adopt the electrothermal tube that volume and power are larger; do not reach higher temperature thereby make to perm, the quality that impact is carried out blanching sealing to diaphragm tube openend, and electrothermal tube often will damage; make that this insertion mechanism maintenance cost increases, downtime is long, affect production efficiency.
Summary of the invention
Technical problem to be solved in the utility model is to overcome the defect of prior art, a kind of quality that can improve diaphragm tube openend and carry out blanching sealing is provided, again can be fast, diaphragm tube is inserted to rotator type diaphragm paper of alkaline cell in anode ring reliably and perm and insert mechanism, this insertion mechanism volume is little, owing to adopting the mode of rotor continuous rotary, therefore can be designed to the structure of bull multistation, effectively improve production efficiency, also can reduce maintenance cost.
Technical problem of the present utility model is achieved through the following technical solutions:
A kind of rotator type diaphragm paper of alkaline cell is permed and is inserted mechanism, comprise frame and be arranged in frame by the rotating main shaft of outer power drive, on this main shaft, be provided with successively the overhead cam of concentric connection, middle workbench and lower cam, and make synchronous revolving between middle workbench and main shaft; Described overhead cam, middle workbench and lower cam are arranged with the insertion mechanism of multiple concentric installations outward, and each insertion mechanism includes the guide rail that is fixed on middle workbench periphery; Described guide rail middle part is provided with the reel being fixed on guide rail, be arranged on the diaphragm tube lowering or hoisting gear on guide rail being provided with slippage above reel, in described reel, be provided with the transfer rod that coordinates package diaphragm paper to form diaphragm tube, between described diaphragm tube lowering or hoisting gear and overhead cam, be provided with middle roller, in this, roller one end is connected on diaphragm tube lowering or hoisting gear, the other end is engaged in the convexity race of overhead cam with bearing element, and makes the gyration of middle workbench be converted into the elevating movement of diaphragm tube lowering or hoisting gear on guide rail; Described guide rail bottom is provided with slippage and is arranged on the lowering or hoisting gear of perming on guide rail, above the lowering or hoisting gear of perming, be provided with the die shoe frame being fixedly mounted on guide rail, described perming is provided with lower roller between lowering or hoisting gear and lower cam, this lower roller one end is connected to perms on lowering or hoisting gear, the other end is engaged in the lower cam path of lower cam with bearing element, and makes the gyration of middle workbench be converted into the elevating movement of lowering or hoisting gear on guide rail of perming; Described transfer rod upper end is provided with the crop rotation of transfer rod band and drives rotation, and transfer rod lower end contacts cooperation with the lowering or hoisting gear of perming, and the openend of blanching sealing diaphragm tube; Described diaphragm tube lowering or hoisting gear top is provided with top rod driving device, this top rod driving device comprises that slippage is arranged on the top shoe on guide rail and is fixedly installed on the installation sleeve on top shoe, between described top shoe and overhead cam, be provided with roller, on this, roller one end is connected on top shoe, the other end is engaged in the epirelief race of overhead cam with bearing element, and makes the gyration of middle workbench be converted into the elevating movement of top shoe on guide rail; In described installation sleeve, be provided with bearing and make the push rod that supporting is rotated, this push rod lower end is movable to be stretched in transfer rod through diaphragm tube lowering or hoisting gear, is also provided with transfer rod bottom forms the jacking block that sphere coordinates in push rod bottom.
The described lowering or hoisting gear of perming comprises that slippage is arranged on the sliding block on guide rail and is fixedly installed on the bar of perming on sliding block, this bar upper end of perming is provided with perms, in frame, be also provided with the coil that connection high-frequency current induction heating are permed, described lower roller one end is connected on the sliding block of the lowering or hoisting gear of perming.
Described diaphragm tube lowering or hoisting gear comprises that slippage is arranged on the middle slide block on guide rail and is fixedly installed on the coupling sleeve on middle slide block, in this coupling sleeve, be provided with bearing rotate supporting axle sleeve, described axle sleeve lower end is connected with transfer rod, axle sleeve upper end is provided with transfer rod belt wheel, described push rod is movable to be stretched in transfer rod through axle sleeve, and described middle roller one end is connected on the middle slide block of diaphragm tube lowering or hoisting gear.
The insertion mechanism that described overhead cam, middle workbench and lower cam are arranged with 2 ~ 50 circumference uniform distributions outward and install with one heart.
Described die shoe frame is provided with the die shoe of installing with diaphragm tube concentric, and the battery steel shell that is embedded with anode ring is set in this die shoe.
The sphere fit structure of described jacking block and transfer rod bottom is that jacking block bottom is provided with hemisphere, is correspondingly provided with the installing hole equipped with described hemisphere in transfer rod bottom.
Described spindle top is provided with top board, and this top board bottom surface is provided with connecting plate, and described overhead cam is fixedly connected on this connecting plate.
Described middle workbench is arranged with supporting bracket outward, and described guide rail is fixedly connected in this supporting bracket.
Compared with prior art, the utility model is mainly to perm above inserting the diaphragm tube lowering or hoisting gear of mechanism and have additional top rod driving device at traditional diaphragm paper of alkaline cell, can better realize diaphragm tube and the effective of transfer rod separates by top rod driving device.Simultaneously, also adopt high-frequency current closing coil to realize the induction heating of perming, can better blanching seal diaphragm tube openend, and coil heats has also been avoided easy damage that electrothermal tube heating exists, has been affected the defects such as production efficiency, in the situation that keeping heating power higher, it is less that the whole volume that inserts mechanism also can do, facilitate complete machine to form the structure of bull multistation, and can adopt the working method of rotor continuous rotary, reach the ability that higher diaphragm tube inserts ability and diaphragm tube openend enforcement blanching sealing, also further improved production efficiency.
Brief description of the drawings
Fig. 1 is sectional structure schematic diagram of the present utility model.
Fig. 2 is the vertical view of Fig. 1.
Fig. 3 is the cutaway view Amplified image of diaphragm tube lowering or hoisting gear.
Fig. 4 is the cutaway view Amplified image of lowering or hoisting gear of perming.
Fig. 5 is the cutaway view Amplified image of top rod driving device.
The E place enlarged drawing that Fig. 6 is Fig. 1.
Embodiment
To elaborate again to the utility model embodiment by above-mentioned accompanying drawing below.
As shown in Fig. 1 ~ Fig. 6, 1. main shaft, 2. top board, 3. connecting plate, 4. overhead cam, 5. guide rail, 6. top rod driving device, 61. push rods, 62. installation sleeves, 63. top shoes, 64. epirelief races, roller on 65., 66. jacking blocks, 7. diaphragm tube lowering or hoisting gear, 71. coupling sleeves, 72. axle sleeves, 73. transfer rod belt wheels, 74. convexity races, roller in 75., slide block in 76., 8. workbench in, 9. the lowering or hoisting gear of perming, 91. sliding blocks, 92. bars of perming, 93. perm, 94. times cam paths, 95. lower rollers, 10. die shoe frame, 11. coils, 12. times cams, 13. frames, 14. transfer rods, 15. diaphragm tubes, 16. supporting brackets, 17. reels, 18. anode rings, 19. battery steel shells, 20. die shoes.
Rotator type diaphragm paper of alkaline cell is permed and is inserted mechanism, and as shown in Figure 1, it is for diaphragm tube 15 is inserted to the automatic insertion machine structure in anode ring 18 fast, reliably in a kind of alkaline battery production equipment.
Described insertion mechanism comprises the frame 13 and the rack-mounted main shaft 1 that are positioned at complete machine bottom, and main shaft is by outer power drive and do gyration; On described main shaft 1, be provided with successively overhead cam 4, middle workbench 8 and the lower cam 12 of concentric connection according to San Ge position, upper, middle and lower, and make synchronous revolving between middle workbench 8 and main shaft 1; Described overhead cam 4 is identical with the external diameter of lower cam 12, the external diameter of middle workbench 8 is slightly larger than the external diameter of upper and lower cam, overhead cam 4 end faces are provided with the connecting plate 3 that screw is connected and fixed, this connecting plate is connected by screw on the top board 2 that is fixed on main shaft 1 top again, therefore the relative main shaft 1 of overhead cam 4 is static, be that main shaft rotation can not drive overhead cam 4 to turn round, and the relative main shaft 1 of lower cam 12 is also static; The described outer insertion mechanism that is arranged with 2 ~ 50 circumference uniform distributions and installs with one heart of overhead cam 4, middle workbench 8 and lower cam 12, the all corresponding work station of each insertion mechanism, multiple mechanisms that insert just can make complete machine form the structure of bull multistation, and can adopt the mode of production of the rotor continuous rotary that operating efficiency is higher.
Described each insertion mechanism includes the guide rail 5 that is fixed on middle workbench 8 peripheries, and this guide rail is first connected by screw in supporting bracket 16, then supporting bracket is connected by screw and is fixed on middle workbench 8 peripheries; Described guide rail 5 is the line slideway of vertically installing, be provided with the reel 17 being fixedly mounted on guide rail at guide rail 5 middle parts, in this reel, be provided with transfer rod 14, between reel and transfer rod, reserve the working clearance, be mainly used in paper advance mechanism point a slice diaphragm paper cutting is sent into, be then rotatably assorted and diaphragm paper package can be become to the diaphragm tube 15 of column type tubulose with respect to reel 17 by transfer rod 14.
Described reel 17 tops are provided with diaphragm tube lowering or hoisting gear 7, and as shown in Figure 3, it comprises that slippage is arranged on the middle slide block 76 on guide rail 5 and is fixedly installed on the coupling sleeve 71 on middle slide block to this diaphragm tube lowering or hoisting gear; Between described middle slide block 76 and overhead cam 4, be provided with middle roller 75, in this, roller one end is connected on middle slide block 76, the other end is engaged in bearing element in the convexity race 74 of overhead cam 4, and convexity race 74 is a design of the lifting travel according to diaphragm tube lowering or hoisting gear 7 groove shape stroke curves at overhead cam 4 outer surfaces, therefore can make the gyration of middle workbench 8 be converted into the elevating movement of middle slide block 76 on guide rail 5; In described coupling sleeve 71, be provided with upper and lower bearings at both ends rotate supporting axle sleeve 72, this axle sleeve lower end is connected with transfer rod 14 upper ends, axle sleeve upper end is exposed and transfer rod belt wheel 73 is installed, therefore can drive axle sleeve 72 and transfer rod 14 to do synchronous rotation by the power input of transfer rod belt wheel.
Described diaphragm tube lowering or hoisting gear 7 tops, guide rail 5 tops are provided with top rod driving device 6, and as shown in Figure 5, it comprises that slippage is arranged on the top shoe 63 on guide rail 5 and is fixedly installed on the installation sleeve 62 on top shoe to this top rod driving device; Between described top shoe 63 and overhead cam 4, be provided with roller 65, on this, roller one end is connected on top shoe 63, the other end is engaged in bearing element in the epirelief race 64 of overhead cam 4, and epirelief race 64 is a design of the lifting travel according to top rod driving device 6 groove shape stroke curves at overhead cam 4 outer surfaces, therefore can make the gyration of middle workbench 8 be converted into the elevating movement of top shoe 63 on guide rail 5; In described installation sleeve 62, be provided with bearing and make the push rod 61 that supporting is rotated, the movable axle sleeve 72 through diaphragm tube lowering or hoisting gear 7 in this push rod lower end stretches in transfer rod 14, also be provided with the jacking block 66 being threaded in push rod 61 bottoms, this jacking block bottom is provided with hemisphere, the installing hole of what it was set with transfer rod 14 bottoms be hemisphere shape forms sphere and coordinates, push rod 61 is for inserting diaphragm tube 15 after anode ring 18, push down diaphragm tube 15 by jacking block 66, thereby diaphragm tube is separated with the transfer rod 14 of rising.
Described guide rail 5 bottoms are provided with the lowering or hoisting gear 9 of perming, and this lowering or hoisting gear top of perming is provided with the die shoe frame 10 being fixedly mounted on guide rail 5.
Described perms lowering or hoisting gear 9 as shown in Figure 4, it comprises that slippage is arranged on the sliding block 91 on guide rail 5 and is fixedly installed on the bar 92 of perming on sliding block, this bar upper end of perming is provided with perms 93, and perming is to connect high-frequency current and produce high frequency magnetic field and carry out induction heating by being fixed on coil 11 in frame 13,93 enters in coil 11 and can realize induction heating therefore drive to perm by the lowering or hoisting gear 9 of perming; Perming after heating 93 drives by the lowering or hoisting gear 9 of perming the 93 disengaging coils 11 of perming again, now can form and contact cooperation with transfer rod 14 lower ends, seals diaphragm tube 15 openends for blanching.On described 93 end faces of perming, be also provided with the hemisphere shape hole matching with the hemisphere of jacking block 66; Between described sliding block 91 and lower cam 12, be provided with lower roller 95, this lower roller one end is connected on sliding block 91, the other end is engaged in bearing element in the lower cam path 94 of lower cam, and the lifting travel design of lower cam path 94 to be bases perm lowering or hoisting gear 9 is at the groove shape stroke curve of lower cam 12 outer surfaces, therefore can make the gyration of middle workbench 8 be converted into the elevating movement of sliding block 91 on guide rail 5.
Described die shoe frame 10 is provided with as shown in Figure 6 the die shoe 20 of installing with diaphragm tube 15 concentrics, battery steel shell 19 is installed in this die shoe, in battery steel shell, be embedded with anode ring 18, in this anode ring, can insert fixing for the diaphragm tube 15 after openend blanching sealing.
The present embodiment with Fig. 1, Figure 2 shows that example does the operation principle of this insertion mechanism further dynamically to describe, shown in Fig. 2, it has adopted the mode of production of carrying out turning anticlockwise at A, B, C, tetra-points of D:
Diaphragm paper is sent into a slice diaphragm paper minute cutting between reel 17 and transfer rod 14 by paper advance mechanism from A point, and transfer rod is rolled into diaphragm paper by 73 transmissions of transfer rod belt wheel rotation the diaphragm tube 15 of column type tubulose.
When this insertion mechanism turns to B point along with main shaft 1, turn round and control lower roller 95 through lower cam 12 and drive the sliding block 91 of the lowering or hoisting gear 9 of perming to move upward as straight line on guide rail 5 by middle workbench 8, and make to perm and 93 enter in coil 11, coil produces high frequency magnetic field under the effect of high frequency transmitter, and 93 carries out induction heating to perming; Meanwhile, perming after this heating 93 contacts again diaphragm tube 15 openends of spooling transfer rod 14 lower ends again, and under 93 heating, diaphragm tube 15 openends implemented to blanchings sealing perming.
When then driving insertion mechanism, main shaft 1 turns to D point, the die shoe 20 that battery steel shell 19 and anode ring 18 are housed enters die shoe frame 10, and die shoe 20 and diaphragm tube 15 are on same axial line, turn round roller 75 in overhead cam 4 is controlled by middle workbench 8 and drive the middle slide block 76 of diaphragm tube lowering or hoisting gear 7 to move downward as straight line on guide rail 5, and make transfer rod 14 by the diaphragm tube 15 quick insertion anode rings 18 of blanching sealing.Meanwhile, top rod driving device 6 also makes to synchronize rectilinear motion downwards with transfer rod 14 under the drive of upper roller 65 and top shoe 63.
The utility model is a kind of processing mode that adopts bull multistation structure to carry out rotor continuous rotary, each insertion mechanism can carry out synchronous revolving work according to above-mentioned manufacturing procedure, inserts efficiency and diaphragm tube openend and implement the ability of blanching sealing therefore can reach higher diaphragm tube 15; 93 the principle of heating of perming is to adopt high-frequency current to produce in coil high frequency magnetic field to the 93 enforcement induction heating of perming, thereby has improved the blanching sealing quality of diaphragm tube openend; By push rod 61, diaphragm tube 15 is pushed down, made it to depart from transfer rod 14 and be installed to fast, reliably in anode ring 18; Turn round through overhead cam 4 and control and drive top rod driving device 6, the diaphragm tube lowering or hoisting gear 7 of lifting and turn round through lower cam 12 and control the lowering or hoisting gear 9 of perming that drives lifting by middle workbench 8 by middle workbench 8, also can adopt the modes such as cylinder, hydraulic cylinder or motor to drive.
The above is only preferred embodiments of the present utility model, and the equivalence of doing according to structure, feature and principle described in the utility model patent claim therefore all changes or modifies, and is included in the utility model patent claim.
Claims (8)
1. a rotator type diaphragm paper of alkaline cell is permed and is inserted mechanism, comprise frame (13) and be arranged in frame by the rotating main shaft of outer power drive (1), on this main shaft, be provided with successively the overhead cam (4) of concentric connection, middle workbench (8) and lower cam (12), and make synchronous revolving between middle workbench (8) and main shaft (1);
The outer insertion mechanism that is arranged with multiple concentric installations of described overhead cam (4), middle workbench (8) and lower cam (12), each insertion mechanism includes and is fixed on the peripheral guide rail (5) of middle workbench (8);
Described guide rail (5) middle part is provided with the reel (17) being fixed on guide rail, be arranged on the diaphragm tube lowering or hoisting gear (7) on guide rail (5) being provided with slippage above reel, in described reel (17), be provided with the transfer rod (14) that coordinates package diaphragm paper to form diaphragm tube (15), between described diaphragm tube lowering or hoisting gear (7) and overhead cam (4), be provided with middle roller (75), in this, roller one end is connected on diaphragm tube lowering or hoisting gear (7), the other end is engaged in bearing element in the convexity race (74) of overhead cam (4), and the gyration that makes middle workbench (8) is converted into the elevating movement of diaphragm tube lowering or hoisting gear (7) on guide rail (5),
Described guide rail (5) bottom is provided with slippage and is arranged on the lowering or hoisting gear of perming (9) on guide rail, above the lowering or hoisting gear of perming, be provided with the die shoe frame (10) being fixedly mounted on guide rail (5), between the described lowering or hoisting gear of perming (9) and lower cam (12), be provided with lower roller (95), this lower roller one end is connected on the lowering or hoisting gear of perming (9), the other end is engaged in the lower cam path (94) of lower cam (12) with bearing element, and makes the gyration of middle workbench (8) be converted into the elevating movement of the lowering or hoisting gear of perming (9) on guide rail (5);
Described transfer rod (14) upper end is provided with transfer rod belt wheel (73) and does to drive rotation, and transfer rod (14) lower end contacts cooperation with the lowering or hoisting gear of perming (9), and the openend of blanching sealing diaphragm tube (15),
It is characterized in that described diaphragm tube lowering or hoisting gear (7) top is provided with top rod driving device (6), this top rod driving device comprises that slippage is arranged on the top shoe (63) on guide rail (5) and is fixedly installed on the installation sleeve (62) on top shoe, between described top shoe (63) and overhead cam (4), be provided with roller (65), on this, roller one end is connected on top shoe (63), the other end is engaged in bearing element in the epirelief race (64) of overhead cam (4), and the gyration that makes middle workbench (8) is converted into the elevating movement of top shoe (63) on guide rail (5), in described installation sleeve (62), be provided with bearing and make the push rod (61) that supporting is rotated, this push rod lower end is movable to be stretched in transfer rod (14) through diaphragm tube lowering or hoisting gear (7), is also provided with transfer rod (14) bottom forms the jacking block (66) that sphere coordinates in push rod (61) bottom.
2. rotator type diaphragm paper of alkaline cell according to claim 1 is permed and is inserted mechanism, it is characterized in that the described lowering or hoisting gear of perming (9) comprises that slippage is arranged on the sliding block (91) on guide rail (5) and is fixedly installed on the bar of perming (92) on sliding block, this bar upper end of perming is provided with perm (93), in frame (13), be also provided with and connect the perm coil (11) of (93) of high-frequency current induction heating, described lower roller (95) one end is connected on the sliding block (91) of the lowering or hoisting gear of perming (9).
3. rotator type diaphragm paper of alkaline cell according to claim 1 and 2 is permed and is inserted mechanism, it is characterized in that described diaphragm tube lowering or hoisting gear (7) comprises that slippage is arranged on the middle slide block (76) on guide rail (5) and is fixedly installed on the coupling sleeve (71) on middle slide block, in this coupling sleeve, be provided with bearing rotate supporting axle sleeve (72), described axle sleeve lower end is connected with transfer rod (14), axle sleeve (72) upper end is provided with transfer rod belt wheel (73), described push rod (61) is movable to be stretched in transfer rod (14) through axle sleeve (72), described middle roller (75) one end is connected on the middle slide block (76) of diaphragm tube lowering or hoisting gear (7).
4. rotator type diaphragm paper of alkaline cell according to claim 1 and 2 is permed and is inserted mechanism, it is characterized in that the outer insertion mechanism that is arranged with 2 ~ 50 circumference uniform distributions and installs with one heart of described overhead cam (4), middle workbench (8) and lower cam (12).
5. rotator type diaphragm paper of alkaline cell according to claim 1 and 2 is permed and is inserted mechanism, it is characterized in that described die shoe frame (10) is provided with the die shoe (20) of installing with diaphragm tube (15) concentric, the battery steel shell (19) that is embedded with anode ring (18) is set in this die shoe.
6. rotator type diaphragm paper of alkaline cell according to claim 1 and 2 is permed and is inserted mechanism, it is characterized in that described jacking block (66) and the sphere fit structure of transfer rod (14) bottom are that jacking block (66) bottom is provided with hemisphere, be correspondingly provided with the installing hole equipped with described hemisphere in transfer rod (14) bottom.
7. rotator type diaphragm paper of alkaline cell according to claim 1 and 2 is permed and is inserted mechanism, it is characterized in that described main shaft (1) top is provided with top board (2), this top board bottom surface is provided with connecting plate (3), and described overhead cam (4) is fixedly connected on this connecting plate (3).
8. rotator type diaphragm paper of alkaline cell according to claim 1 and 2 is permed and is inserted mechanism, it is characterized in that being arranged with supporting bracket (16) outside described middle workbench (8), and described guide rail (5) is fixedly connected in this supporting bracket (16).
Priority Applications (1)
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CN201320774039.XU CN203644893U (en) | 2013-12-02 | 2013-12-02 | Rotor-type alkaline battery diaphragm paper ironing-head insertion mechanism |
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CN201320774039.XU CN203644893U (en) | 2013-12-02 | 2013-12-02 | Rotor-type alkaline battery diaphragm paper ironing-head insertion mechanism |
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Cited By (5)
Publication number | Priority date | Publication date | Assignee | Title |
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CN104795590A (en) * | 2015-02-12 | 2015-07-22 | 深圳市赢合科技股份有限公司 | Electrical core processing device |
CN105098262A (en) * | 2014-05-15 | 2015-11-25 | 丹阳琦瑞机械有限公司 | Diaphragm sleeve winding and inserting machine |
CN107275545A (en) * | 2017-06-05 | 2017-10-20 | 丹阳琦瑞机械有限公司 | Battery separator paper shaped device |
CN110474007A (en) * | 2019-08-08 | 2019-11-19 | 浙江长虹飞狮电器工业有限公司 | Diaphragm tube preparation facilities |
CN111313075A (en) * | 2020-02-24 | 2020-06-19 | 宁波倍特瑞能源科技有限公司 | Diaphragm paper ejector rod and assembling device |
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2013
- 2013-12-02 CN CN201320774039.XU patent/CN203644893U/en not_active Expired - Fee Related
Cited By (9)
Publication number | Priority date | Publication date | Assignee | Title |
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CN105098262A (en) * | 2014-05-15 | 2015-11-25 | 丹阳琦瑞机械有限公司 | Diaphragm sleeve winding and inserting machine |
CN105098262B (en) * | 2014-05-15 | 2017-06-30 | 丹阳琦瑞机械有限公司 | Volume inserts diaphragm case machine |
CN104795590A (en) * | 2015-02-12 | 2015-07-22 | 深圳市赢合科技股份有限公司 | Electrical core processing device |
CN104795590B (en) * | 2015-02-12 | 2017-05-03 | 深圳市赢合科技股份有限公司 | Electrical core processing device |
CN107275545A (en) * | 2017-06-05 | 2017-10-20 | 丹阳琦瑞机械有限公司 | Battery separator paper shaped device |
CN110474007A (en) * | 2019-08-08 | 2019-11-19 | 浙江长虹飞狮电器工业有限公司 | Diaphragm tube preparation facilities |
CN110474007B (en) * | 2019-08-08 | 2024-04-05 | 浙江长虹飞狮电器工业有限公司 | Diaphragm tube preparation device |
CN111313075A (en) * | 2020-02-24 | 2020-06-19 | 宁波倍特瑞能源科技有限公司 | Diaphragm paper ejector rod and assembling device |
CN111313075B (en) * | 2020-02-24 | 2021-08-17 | 宁波倍特瑞能源科技有限公司 | Diaphragm paper ejector rod and assembling device |
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