CN210586465U - Anti-drop coiling mechanism is rolled up to steel band for packing - Google Patents
Anti-drop coiling mechanism is rolled up to steel band for packing Download PDFInfo
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- CN210586465U CN210586465U CN201921263906.7U CN201921263906U CN210586465U CN 210586465 U CN210586465 U CN 210586465U CN 201921263906 U CN201921263906 U CN 201921263906U CN 210586465 U CN210586465 U CN 210586465U
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- 229910000831 Steel Inorganic materials 0.000 title claims abstract description 107
- 239000010959 steel Substances 0.000 title claims abstract description 107
- 238000012856 packing Methods 0.000 title claims abstract description 22
- 230000007246 mechanism Effects 0.000 title claims abstract description 15
- 238000004804 winding Methods 0.000 claims description 20
- 238000004806 packaging method and process Methods 0.000 claims description 11
- 230000002093 peripheral effect Effects 0.000 claims description 8
- 238000004519 manufacturing process Methods 0.000 abstract description 5
- 238000005096 rolling process Methods 0.000 abstract description 5
- 238000012858 packaging process Methods 0.000 abstract description 3
- 238000000034 method Methods 0.000 description 5
- 230000008569 process Effects 0.000 description 5
- 230000009471 action Effects 0.000 description 4
- 230000005484 gravity Effects 0.000 description 4
- 230000000149 penetrating effect Effects 0.000 description 4
- 230000035515 penetration Effects 0.000 description 4
- 238000003860 storage Methods 0.000 description 3
- 241000826860 Trapezium Species 0.000 description 1
- 230000008878 coupling Effects 0.000 description 1
- 238000010168 coupling process Methods 0.000 description 1
- 238000005859 coupling reaction Methods 0.000 description 1
- 238000010586 diagram Methods 0.000 description 1
- 230000000694 effects Effects 0.000 description 1
- 238000000926 separation method Methods 0.000 description 1
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Abstract
The utility model relates to a packing steel band production field especially relates to a packing is with steel band book anti-drop coiling mechanism, including the anti-drop tep reel and the pivot of both sides, the anti-drop tep reel is including sheltering from disc and roller, and the roller is located the one side of sheltering from the disc, and the pivot is passed the center of sheltering from disc and roller, and the axial direction of sheltering from one side that the disc has the roller and roller periphery is provided with one or more and ties the groove, and the tie groove position of both sides is corresponding. The utility model discloses can prevent effectively that the steel band roll from droing or loosing the book, improve the efficiency of steel band roll in rolling and packaging process, the orderly steel band batching article of uninstallation that the manual work can relax moreover.
Description
Technical Field
The utility model relates to a packing steel band production field especially relates to an anti-drop coiling mechanism is rolled up to steel band for packing.
Background
At present, in the production of steel belts, because the packaging steel belt is in a narrow and long belt shape, the steel belt needs to be wound into a disc-shaped steel belt coil during production and processing and finished products leave a factory. The diameter of the steel strip coil is generally more than 1m, but the width of the steel strip is relatively narrow, so that the steel strip coil is easy to fall off or scatter from the steel strip coil in the coiling and uncoiling processes. And after the steel strip coil is coiled, the steel strip coil needs to be carefully taken off manually with great effort, and then the steel strip coil is bound by a binding band to obtain a finished product of the steel strip coil. Therefore, the efficiency is very low in the process of rolling and packaging the steel strip coil, and the production requirement is difficult to meet.
SUMMERY OF THE UTILITY MODEL
Utility model purpose: for avoiding the problem among the prior art, provide a steel band is rolled up anti-drop coiling mechanism for packing, prevent effectively that the steel band rolls up the drop or the loose roll of rolling in rolling and packaging process, the orderly steel band of uninstallation that the manual work can be convenient is rolled up the article moreover.
The technical scheme is as follows:
the utility model provides a packing is with steel band book anti-drop coiling mechanism, includes the anti-drop tep reel and the pivot of both sides, and the anti-drop tep reel is including sheltering from disc and roller, and the roller is located the one side of sheltering from the disc, and the pivot passes the center of sheltering from disc and roller, and the axial direction of sheltering from one side that the disc has the roller and roller periphery is provided with one or more and ties the trough of belt, and the tie trough of belt position of both sides is corresponding. Forming a through and complete groove for facilitating the penetration of the binding belt.
When two anti-drop tep areas were detachable structure, the pivot passes through bearing horizontal connection on the fixed bolster, and the fixed bolster includes supporting part and accepting part, and the supporting part is equipped with the bearing housing, is equipped with the bearing of connecting the pivot in the bearing housing, and accepting part connects on the supporting part to be located the below of anti-drop tep areas.
When two anti-drop tep reels are detachable structure, the pivot is passed two anti-drop tep reels, and anti-drop tep reel is two homoenergetic structures of dismantling from the pivot, and anti-drop tep reel is left and right mirror symmetry's disc structure, and the roller is provided with arch or sunken with pivot complex internal week, and the internal phase-match of pivot periphery and roller to axle head fixing device axial fixity anti-drop tep reel through the pivot.
When two anti-drop tep areas were detachable structure, be provided with the packing ring between two anti-drop tep areas, the packing ring also overlaps in the pivot, and the outline of packing ring axle section is trapezoidal, and the interior structure of circle of structure and the roller of one side is unanimous in the interior structure of circle, and the outer circle structure of packing ring is unanimous with the roller outer circle structure of this side. When the maximum diameter position of the gasket can shield the binding belt groove of the roll shaft, the periphery of the gasket is provided with a recess matched with the binding belt groove of the roll shaft; the outer circumference of the washer is smooth when the largest diameter of the washer cannot block the band groove of the roll shaft.
When two anti-drop teps areas were detachable structure, the packing ring sets up to one or more, when setting gradually a plurality ofly, the outer profile of the axle section of a plurality of packing rings still is the trapezium structure. The packing ring is used for controlling the distance of two anti-drop tep reels, and when taking off the anti-drop tep reel of one side, the coil of strip finished product that has rolled up can slide down along the packing ring tread, conveniently lift the coil of strip off, and is laborsaving. The distance between the two anti-falling tape reels can be adjusted.
When one anti-falling tape reel is fixed on the fixed bracket and the other anti-falling tape reel is of a detachable structure,
two discs that shelter from link together through the roller, its one side is for fixing the first disc that shelters from on the pivot tip, its opposite side shelters from the disc for the second that can shelter from the disc separation with first, first disc that shelters from is provided with the flexible through-hole of two or more roller, first disc roller that shelters from of first disc is a plurality of roller pieces that stretch out from the flexible through-hole of roller, it is big that first disc roller that shelters from keeps away from one side that the second sheltered from the disc and is fixed with a both sides diameter, the annular groove that the intermediate diameter is little, there is a lever structure that enables first disc roller axial motion that shelters from at annular groove connection.
When a slice anti-drop tep reel is fixed on the fixed bolster, another slice anti-drop tep reel is when dismantling the structure for can adopting two kinds of structures, another slice anti-drop tep reel that can dismantle:
the first structure is as follows:
as shown in fig. 8-9, the second shielding disc roller shaft of the second shielding disc is a fixed roller shaft piece, the first shielding disc roller shaft can pass through the second shielding disc through the gap between the second shielding disc roller shafts, and the second shielding disc is axially fixed by the shaft end fixing device of the first shielding disc roller shaft.
The second structure is as follows:
as shown in fig. 10-11, the second shielding disc roller shaft of the second shielding disc can be sleeved on the roller shaft of the first shielding disc roller shaft, a protrusion is arranged inside the second shielding disc roller shaft, the first shielding disc roller shaft can penetrate through the second shielding disc through a gap between the protrusions inside the second shielding disc roller shaft, and the second shielding disc is axially fixed by the shaft end fixing device of the first shielding disc roller shaft.
Fix on the fixed bolster when a slice anti-drop tep reel, when another slice anti-drop tep reel is for dismantling the structure, lever connection structure includes L type connecting piece and montant, and the pedal is connected with the one end of L type connecting piece, for convenient trampling to can also be laborsaving, the right angle department of L type connecting piece is articulated with the supporting part, and the upper end of L type connecting piece is articulated with the lower extreme of montant, and lower part is articulated with the supporting part in the montant, and the lower extreme coupling spring's of right angle department one end is kept away from to L type connecting piece, and the other end of.
When one anti-falling tape reel is fixed on the fixed support and the other anti-falling tape reel is of a detachable structure, preferably, as shown in fig. 14, the top end of the vertical rod is of an arc-shaped structure and is positioned in the annular groove and attached to the small diameter part in the middle of the annular groove. When trampling the pedal, L type connecting piece drives the lower extreme of montant and removes to a direction, and the montant upper end is then removed to opposite direction, drives the annular groove and removes to the direction of keeping away from anti-drop tep reel, withdraws first disc roller that shelters from promptly, and the steel band coil of strip that rolls up falls into steel band according to the action of gravity and rolls up in adapting groove of receiving device. After the foot leaves the pedal, the resilience force of the spring enables the mechanism to be restored to the original state.
When one anti-drop tep reel is fixed on the fixed bolster, another anti-drop tep reel is when dismantling the structure, it has the gliding steel band book supporting device along the arc slide to articulate in the accepting portion.
When an anti-drop tep reel is fixed on the fixed bolster, when another anti-drop tep reel is for dismantling the structure, steel band book receiving arrangement for including accepting the groove, concave plate and supplementary integrative structure of unloading the support plate, accept the groove and be fixed in one side of concave plate, the both sides of accepting the groove are higher than the centre, prevent to roll up the good steel band book landing, the concave plate both sides are provided with the sliding end, the sliding end is located the arc slide, the sliding end can slide along the arc slide, supplementary unloading support plate is to keeping away from the lopsidedness of accepting the groove, supplementary unloading support plate and concave plate are the obtuse angle, when steel band book receiving arrangement moves to level along the arc slide, can easily unload the steel band book along supplementary unloading plate and lift the steel band book.
The end, far away from the circle center of the anti-drop belt reel, of the groove is provided with a strip-shaped through hole penetrating through the shielding disc, the binding belt penetrates through the corresponding groove in front of the steel belt winding, and the redundant binding belt penetrates through the strip-shaped through hole, so that when the device rotates, the redundant binding belt does not affect winding and unwinding of the steel belt winding.
The shaft end fixing device can be any shaft end check ring, shaft end clamp or shaft end nut and other structures in the existing shaft end fixing device equipment.
The advantages and effects are as follows:
the utility model discloses can prevent effectively that the steel band roll from droing or loosing the book, improve the efficiency of steel band roll in rolling and packaging process, the orderly steel band batching article of uninstallation that the manual work can relax moreover.
Drawings
FIG. 1 is a schematic view of a single-piece symmetrical anti-drop tape reel structure;
FIG. 2 is a side view of a symmetrically configured anti-drop tape reel;
FIG. 3 is a schematic view of a gasket;
FIG. 4 is a side view of the gasket;
FIG. 5 is a schematic view of a structure of the anti-falling tape reel with a washer;
FIG. 6 is a schematic view of the first shutter disk and the first shutter disk roll shaft;
FIG. 7 is a side view of the first shutter disk and the first shutter disk roller arrangement;
FIG. 8 is a schematic view of a first configuration of a second shutter disk and a second shutter disk roller shaft;
FIG. 9 is a side view of the second shutter disk and a first configuration of the second shutter disk roller shaft;
FIG. 10 is a schematic view of a second shutter disk and a second configuration of a second shutter disk roller shaft;
FIG. 11 is a side view of the second shutter disk and the second shutter disk roller shaft in a second configuration;
FIG. 12 is a schematic view of a fixing bracket;
FIG. 13 is a schematic diagram of a lever structure;
FIG. 14 is a schematic view of the arcuate configuration of the lever structure;
FIG. 15 is a schematic view of the receiving device;
fig. 16 is a side view of the receiving device.
Description of reference numerals:
1. the anti-falling device comprises an anti-falling belt disc, 2-1 parts of a shielding disc, 2-2 parts of a first shielding disc, 3 parts of a roller shaft, 3-1 parts of a first shielding disc roller shaft, 3-2 parts of a second shielding disc roller shaft, 4 parts of a belt bundling groove, 5 parts of strip-shaped through holes, 6 parts of a roller shaft telescopic through hole, 11 parts of a gasket, 12 parts of a first gasket, 13 parts of a second gasket, 14 parts of a third gasket, 21 parts of a supporting part, 22 parts of a bearing part, 23 parts of a rotating shaft, 24 parts of an arc-shaped slideway, 25 parts of a bearing sleeve, 31 parts of a pedal, 32 parts of an L-shaped connecting piece, 33 parts of a vertical rod, 34 parts of an arc-shaped structure, 35 parts of an annular groove, 36 parts of a spring, 41 parts of a bearing groove, 42 parts of a concave plate.
Detailed Description
The present invention will be further described with reference to the accompanying drawings.
Example 1:
the utility model provides a packing is with steel band book anti-drop coiling mechanism, includes anti-drop tep reel 1 and pivot 23 of both sides, and anti-drop tep reel 1 is including sheltering from disc 2 and roller 3, and roller 3 locates the one side of sheltering from disc 2, and pivot 23 passes the center of sheltering from disc 2 and roller 3, and the axial direction of sheltering from disc 2 one side that has roller 3 and roller 3 periphery is provided with one or more and ties groove 4, and the tie groove 4 positions of both sides are corresponding. Forming a through and complete groove for facilitating the penetration of the binding belt.
As shown in fig. 1 and 2, the rotating shaft 23 penetrates through two anti-falling tape reels 1, the anti-falling tape reels 1 are two structures which can be detached from the rotating shaft 23, the anti-falling tape reels 1 are of a disc-shaped structure with mirror symmetry at left and right, the inner peripheries of the roller shaft 3 and the rotating shaft 23 are provided with protrusions or recesses, and the outer periphery of the rotating shaft 23 is matched with the inner periphery of the roller shaft 3.
Preferably, as shown in fig. 3, a gasket 11 is arranged between the two anti-falling tape reels 1, and the wound steel tape roll finished product can slide down along the tread of the gasket, so that the steel tape roll is conveniently dismounted, and labor is saved. The washer 11 is also fitted over the rotating shaft 23, the outer contour of the axial section of the washer 11 is trapezoidal, the inner peripheral structure of the washer 11 coincides with the inner peripheral structure of the one roller shaft 3, and the outer peripheral structure of the washer 11 coincides with the outer peripheral structure of the one roller shaft 3. When the maximum diameter position of the gasket 11 can shield the binding groove 4 of the roll shaft 3, the periphery of the gasket 11 is provided with a recess matched with the binding groove 4 of the roll shaft 3; when the band groove 4 of the roller shaft 3 is not blocked at the maximum diameter of the washer 11, the outer circumference of the washer 11 is smooth.
As shown in fig. 4, the washers 11 may be provided in one or more for adjusting the distance between the two pieces of the anti-drop tape reel 1. The present embodiment is provided with three washers 11, namely a first washer 12, a second washer 13 and a third washer 14, and the outer profiles of the axial cross sections of the three washers are still in a trapezoidal structure.
As shown in fig. 2, preferably, a strip-shaped through hole 5 penetrating through the shielding disc 2 is arranged at one end of the bundling belt groove 4 away from the center of the anti-falling-off tape reel 1, the bundling belt penetrates through the corresponding bundling belt groove 4 before the steel belt is wound, and the redundant bundling belt penetrates through the strip-shaped through hole 5, so that when the device rotates, the redundant bundling belt does not affect the winding of the steel belt reel.
The two anti-falling belt reels 1 are fixed on the rotating shaft 23, the anti-falling belt reels 1 are fixed at the axial positions through the shaft end fixing device, the binding belt can be arranged in the belt bundling groove 4 firstly, the two ends of the binding belt penetrate through the strip-shaped through holes 5 to be fixed on one side, without the roller shaft 3, of the shielding disc 2, the redundant binding belt cannot influence the winding and unwinding of the steel belt coil in the steel belt winding and unwinding process, and can penetrate into the belt bundling groove 4 to be bundled after the steel belt coil is wound; and finishing winding of the steel strip coil, finishing bundling of all the binding tapes on the circumference of the steel strip coil, taking down the shaft end fixing device, namely taking down the anti-falling tape spool 1 on the outer side, and taking down the bundled steel strip coil to be used as a finished product to be put in storage. The packing ring 11 can be placed to preferred between two anti-drop tep reels 1, can adjust the distance between two anti-drop tep reels 1, and the coil of strip finished product that twines can slide down along the packing ring tread, conveniently lift the coil of strip off, and is laborsaving.
Example 2:
the utility model provides a packing is with steel band book anti-drop coiling mechanism, includes anti-drop tep reel 1 and pivot 23 of both sides, and anti-drop tep reel 1 is including sheltering from disc 2 and roller 3, and roller 3 locates the one side of sheltering from disc 2, and pivot 23 passes the center of sheltering from disc 2 and roller 3, and the axial direction of sheltering from disc 2 one side that has roller 3 and roller 3 periphery is provided with one or more and ties groove 4, and the tie groove 4 positions of both sides are corresponding. Forming a through and complete groove for facilitating the penetration of the binding belt.
As shown in fig. 12, the rotating shaft 23 is horizontally connected to a fixing bracket through a bearing, the fixing bracket includes a supporting portion 21 and a receiving portion 22, the supporting portion 21 is provided with a bearing sleeve 25, the bearing sleeve 25 is provided with a bearing connected to the rotating shaft 23, and the receiving portion 22 is connected to the supporting portion 21 and located below the anti-falling tape reel 1.
As shown in fig. 6 to 9, two shutter disks 2 are connected together by a roller shaft 3, one side of the first shielding disc 2-1 is fixed on the end part of the rotating shaft 23, the other side of the first shielding disc 2-1 is provided with a second shielding disc 2-2 which can be separated from the first shielding disc 2-1, the first shielding disc 2-1 is provided with two or more roller shaft telescopic through holes 6, a first shielding disc roller shaft 3-1 of the first shielding disc 2-1 is provided with a plurality of roller shaft sheets extending out of the roller shaft telescopic through holes 6, a second shielding disc roller shaft 3-2 of the second shielding disc 2-2 is provided with a fixed roller shaft sheet, the first shielding disc roller shaft 3-1 can penetrate through the second shielding disc 2-2 through a gap between the second shielding disc roller shafts 3-2, and the preferable roller shaft telescopic through holes 6 and the roller shaft sheets are set to be 8 sheets. An annular groove 35 with large diameter at two sides and small diameter at the middle is fixed at one side of the first shielding disc roller shaft 3-1 far away from the second shielding disc 2-2, and the annular groove 35 is connected with a lever structure which can enable the first shielding disc roller shaft 3-1 to move axially.
As shown in fig. 13, the lever connection structure includes an L-shaped connection member 32 and a vertical rod 33, the pedal 31 is connected to one end of the L-shaped connection member 32 for convenient pedaling and saving labor, a right angle of the L-shaped connection member 32 is hinged to the support portion 21, an upper end of the L-shaped connection member 32 is hinged to a lower end of the vertical rod 33, a middle lower portion of the vertical rod 33 is hinged to the support portion 21, a lower end of the L-shaped connection member 32 away from the right angle is connected to one end of a spring 36, and the other end of the spring 36 is connected to the vertical rod 33, as shown in fig. 13, preferably, a top end of the vertical rod 33 is an arc-shaped structure 34 and is located. When the pedal 31 is stepped on, the L-shaped connecting member 32 drives the lower end of the vertical rod 33 to move in one direction, and the upper end of the vertical rod 33 moves in the opposite direction, so as to drive the annular groove 35 to move in the direction away from the anti-falling tape reel 1, i.e. to withdraw the first shielding disk roller shaft 3-1, and the coiled steel tape roll falls into the receiving groove 41 of the steel tape roll receiving device under the action of gravity. After the foot leaves the pedal 31, the resilience of the spring 36 enables the mechanism to return to its original shape.
The bearing part 22 is hinged with a steel strip coil bearing device which can slide along an arc-shaped slide way 34.
As shown in fig. 15-16, the steel strip coil receiving device is an integrated structure including a receiving groove 41, a concave plate 42 and an auxiliary unloading plate 43, the receiving groove 41 is fixed on one side of the concave plate 42, two sides of the receiving groove 41 are higher than the middle to prevent the rolled steel strip coil from sliding off, sliding ends 44 are arranged on two sides of the concave plate 42, the sliding ends 44 are located in the arc-shaped slide ways 34, the sliding ends 44 can slide along the arc-shaped slide ways 34, the auxiliary unloading plate 43 is inclined towards one side far away from the receiving groove 41, the auxiliary unloading plate 43 and the concave plate 42 form an obtuse angle, and when the steel strip coil receiving device moves to the horizontal along the arc-shaped slide ways 34, the steel strip coil can be easily unloaded along the auxiliary unloading plate 43.
In the embodiment, as in embodiment 1, a strip-shaped through hole 5 penetrating through the shielding disc 2 is formed in one end of the groove 4 away from the center of the anti-falling tape reel 1, before the steel tape is wound, the binding tape penetrates through the corresponding groove 4, and the redundant binding tape penetrates through the strip-shaped through hole 5, so that when the device rotates, the redundant binding tape does not affect winding of the steel tape reel.
When the steel strip is wound, a first shielding disc roller shaft 3-1 of an anti-falling tape reel 1 fixed on one side is in an extending state, the other anti-falling tape reel 1 can be fixedly arranged on the first shielding disc roller shaft 3-1 through a second shielding disc roller shaft 3-2, the second shielding disc 2-2 is fixed at the axial position through a shaft end fixing device, a binding tape can be arranged in a binding tape groove 4 firstly, two ends of the binding tape penetrate through strip-shaped through holes 5 to be fixed on one side, without the roller shaft 3, of the shielding disc 2, and redundant binding tape cannot influence the winding of the steel strip reel in the steel strip reeling and unreeling process, or can penetrate through the binding tape groove 4 to be bound after the steel strip reel is wound; when the steel strip coil is wound, all the binding tapes on the circumference of the steel strip coil are bound, the shaft end fixing device is taken down, the unloadable anti-falling tape coil 1 is taken down, the steel strip coil bearing device is pushed to move to a vertical state along the arc-shaped slide rail 34, the bearing groove 41 is arranged right below the steel strip coil, the pedal 31 is stepped on, the L-shaped connecting piece 32 drives the lower end of the vertical rod 33 to move towards one direction, the upper end of the vertical rod 33 moves towards the opposite direction, the annular groove 35 is driven to move towards the direction far away from the anti-falling tape coil 1, namely, the first shielding disc roller shaft 3-1 is withdrawn, and the wound steel strip coil falls into the bearing groove 41 of the steel strip coil bearing device according to the; after the foot leaves the pedal 31, the resilience of the spring 36 enables the mechanism to return to its original shape. When the steel strip coil supporting device moves to the horizontal along the arc-shaped slide way 34, the bundled steel strip coil can be easily unloaded along the auxiliary unloading plate 43, and finished products are put in storage.
Example 3:
the utility model provides a packing is with steel band book anti-drop coiling mechanism, includes anti-drop tep reel 1 and pivot 23 of both sides, and anti-drop tep reel 1 is including sheltering from disc 2 and roller 3, and roller 3 locates the one side of sheltering from disc 2, and pivot 23 passes the center of sheltering from disc 2 and roller 3, and the axial direction of sheltering from disc 2 one side that has roller 3 and roller 3 periphery is provided with one or more and ties groove 4, and the tie groove 4 positions of both sides are corresponding. Forming a through and complete groove for facilitating the penetration of the binding belt.
As shown in fig. 12, the rotating shaft 23 is horizontally connected to a fixing bracket through a bearing, the fixing bracket includes a supporting portion 21 and a receiving portion 22, the supporting portion 21 is provided with a bearing sleeve 25, the bearing sleeve 25 is provided with a bearing connected to the rotating shaft 23, and the receiving portion 22 is connected to the supporting portion 21 and located below the anti-falling tape reel 1.
As shown in fig. 6-7 and 10-11, the second shielding disc roller shaft 3-2 of the second shielding disc 2-2 can be fitted over the roller shaft of the first shielding disc roller shaft 3-1, a protrusion is provided inside the second shielding disc roller shaft 3-2, the first shielding disc roller shaft 3-1 can pass through the second shielding disc 2-2 through a gap in the protrusion inside the second shielding disc roller shaft 3-2, and the second shielding disc 2-2 is axially fixed by the shaft end fixing means of the first shielding disc roller shaft 3-1. Preferably, the number of the roller shaft pieces of the first shutter disk roller shaft 3-1 is 8, and the number of the protrusions inside the second shutter disk roller shaft 3-2 is 4. An annular groove 35 with large diameter at two sides and small diameter at the middle is fixed at one side of the first shielding disc roller shaft 3-1 far away from the second shielding disc 2-2, and the annular groove 35 is connected with a lever structure which can enable the first shielding disc roller shaft 3-1 to move axially.
As shown in fig. 13, the lever connection structure includes an L-shaped connection member 32 and a vertical rod 33, the pedal 31 is connected to one end of the L-shaped connection member 32 for convenient pedaling and saving labor, a right angle of the L-shaped connection member 32 is hinged to the support portion 21, an upper end of the L-shaped connection member 32 is hinged to a lower end of the vertical rod 33, a middle lower portion of the vertical rod 33 is hinged to the support portion 21, a lower end of the L-shaped connection member 32 away from the right angle is connected to one end of a spring 36, and the other end of the spring 36 is connected to the vertical rod 33, as shown in fig. 13, preferably, a top end of the vertical rod 33 is an arc-shaped structure 34 and is located. When the pedal 31 is stepped on, the L-shaped connecting member 32 drives the lower end of the vertical rod 33 to move in one direction, and the upper end of the vertical rod 33 moves in the opposite direction, so as to drive the annular groove 35 to move in the direction away from the anti-falling tape reel 1, i.e. to withdraw the first shielding disk roller shaft 3-1, and the coiled steel tape roll falls into the receiving groove 41 of the steel tape roll receiving device under the action of gravity. After the foot leaves the pedal 31, the resilience of the spring 36 enables the mechanism to return to its original shape.
The bearing part 22 is hinged with a steel strip coil bearing device which can slide along an arc-shaped slide way 34.
As shown in fig. 15-16, the steel strip coil receiving device is an integrated structure including a receiving groove 41, a concave plate 42 and an auxiliary unloading plate 43, the receiving groove 41 is fixed on one side of the concave plate 42, two sides of the receiving groove 41 are higher than the middle to prevent the rolled steel strip coil from sliding off, sliding ends 44 are arranged on two sides of the concave plate 42, the sliding ends 44 are located in the arc-shaped slide ways 34, the sliding ends 44 can slide along the arc-shaped slide ways 34, the auxiliary unloading plate 43 is inclined towards one side far away from the receiving groove 41, the auxiliary unloading plate 43 and the concave plate 42 form an obtuse angle, and when the steel strip coil receiving device moves to the horizontal along the arc-shaped slide ways 34, the steel strip coil can be easily unloaded along the auxiliary unloading plate 43.
In the embodiment, as in embodiment 1, a strip-shaped through hole 5 penetrating through the shielding disc 2 is formed in one end of the groove 4 away from the center of the anti-falling tape reel 1, before the steel tape is wound, the binding tape penetrates through the corresponding groove 4, and the redundant binding tape penetrates through the strip-shaped through hole 5, so that when the device rotates, the redundant binding tape does not affect winding of the steel tape reel.
When the steel strip is wound, a first shielding disc roller shaft 3-1 of an anti-falling tape reel 1 fixed on one side is in an extending state, the other anti-falling tape reel 1 can be fixedly arranged on the first shielding disc roller shaft 3-1 through a second shielding disc roller shaft 3-2, the second shielding disc 2-2 is fixed at the axial position through a shaft end fixing device, a binding tape can be arranged in a binding tape groove 4 firstly, two ends of the binding tape penetrate through strip-shaped through holes 5 to be fixed on one side, without the roller shaft 3, of the shielding disc 2, and redundant binding tape cannot influence the winding of the steel strip reel in the steel strip reeling and unreeling process, or can penetrate through the binding tape groove 4 to be bound after the steel strip reel is wound; when the steel strip coil is wound, all the binding tapes on the circumference of the steel strip coil are bound, the shaft end fixing device is taken down, the steel strip coil bearing device is pushed to move to a vertical state along the arc-shaped slide rail 34, the bearing groove 41 is arranged under the steel strip coil, the pedal 31 is stepped on, the L-shaped connecting piece 32 drives the lower end of the vertical rod 33 to move towards one direction, the upper end of the vertical rod 33 moves towards the opposite direction, the annular groove 35 is driven to move towards the direction far away from the anti-falling tape coil 1, namely, the first shielding disc roller shaft 3-1 is withdrawn, and the detachable anti-falling tape coil 1 and the bound steel strip coil fall into the bearing groove 41 of the steel strip coil bearing device under the action of gravity; after the foot leaves the pedal 31, the resilience of the spring 36 enables the mechanism to return to its original shape. When the steel strip coil receiving device moves to the horizontal along the arc-shaped slide way 34, the unloadable anti-drop coil reel 1 and the bundled steel strip coil can be easily unloaded along the auxiliary unloading plate 43, and the bundled steel strip coil is taken down and put in storage.
Claims (10)
1. The utility model provides a packing is with steel band book anti-drop coiling mechanism, includes anti-drop tep reel (1) and pivot (23) of both sides, and anti-drop tep reel (1) is including sheltering from disc (2) and roller (3), and one side of sheltering from disc (2) is located in roller (3), and center, its characterized in that of sheltering from disc (2) and roller (3) are passed in pivot (23): one side of the shielding disc (2) with the roll shaft (3) and the axial direction of the periphery of the roll shaft (3) are provided with one or more bundling belt grooves (4), and the positions of the bundling belt grooves (4) on the two sides are corresponding.
2. The anti-drop winding device for the steel strip coil for packaging as claimed in claim 1, wherein: the rotating shaft (23) is horizontally connected onto the fixing support through the bearing, the fixing support comprises a supporting portion (21) and a bearing portion (22), the supporting portion (21) is provided with a bearing sleeve (25), a bearing for connecting the rotating shaft (23) is arranged in the bearing sleeve (25), and the bearing portion (22) is connected onto the supporting portion (21) and located below the anti-falling belt disc (1).
3. The anti-drop winding device for the steel strip coil for packaging as claimed in claim 1, wherein: pivot (23) are passed two anti-drop tep reel (1), and anti-drop tep reel (1) is the structure that pivot (23) were dismantled from two homoenergetic, and anti-drop tep reel (1) is left right mirror symmetry's disc structure, and roller (3) are provided with arch or sunken with pivot (23) complex internal week, and pivot (23) periphery and roller (3) internal week phase-match to axle head fixing device axial fixity anti-drop tep reel (1) through pivot (23).
4. The anti-drop winding device for the steel strip coil for packaging as claimed in claim 3, wherein: a gasket (11) is arranged between the two anti-falling belt discs (1), the gasket (11) is also sleeved on the rotating shaft (23), the outer contour of the axial section of the gasket (11) is trapezoidal, the inner peripheral structure of the gasket (11) is consistent with the inner peripheral structure of the roller shaft (3) on one side, and the outer peripheral structure of the gasket (11) is consistent with the outer peripheral structure of the roller shaft (3) on the side; when the largest diameter position of the gasket (11) can shield the belt bundling groove (4) of the roll shaft (3), the periphery of the gasket (11) is provided with a recess matched with the belt bundling groove (4) of the roll shaft (3); when the maximum diameter of the gasket (11) can not shield the binding belt groove (4) of the roll shaft (3), the periphery of the gasket (11) is smooth, the gaskets (11) are arranged into one or more, and when the gaskets are arranged into a plurality of gaskets in sequence, the outer contour of the shaft section of the plurality of gaskets is still in a trapezoidal structure.
5. The anti-drop winding device for the steel strip coil for packaging as claimed in claim 2, wherein: the two shielding discs (2) are connected together through a roll shaft (3), one side of the shielding discs is a first shielding disc (2-1) fixed on the end part of the rotating shaft (23), the other side of the first shielding disc is provided with a second shielding disc (2-2) which can be separated from the first shielding disc (2-1), the first shielding disc (2-1) is provided with two or more roll shaft telescopic through holes (6), the first shielding disc roll shaft (3-1) of the first shielding disc (2-1) is provided with a plurality of roll shaft sheets extending out of the roll shaft telescopic through holes (6), one side of the first shielding disc roll shaft (3-1) far away from the second shielding disc (2-2) is fixedly provided with an annular groove (35) with large diameter at two sides and small diameter at the middle part, the annular groove (35) is connected with a lever structure which can enable the first shielding disc roller shaft (3-1) to move axially.
6. The anti-drop winding device for the steel strip coil for packaging as claimed in claim 5, wherein: the second shielding disc roll shaft (3-2) of the second shielding disc (2-2) is a fixed roll shaft piece, the first shielding disc roll shaft (3-1) can penetrate through the second shielding disc (2-2) through a gap between the second shielding disc roll shaft (3-2), and the second shielding disc (2-2) is axially fixed through a shaft end fixing device of the first shielding disc roll shaft (3-1).
7. The anti-drop winding device for the steel strip coil for packaging as claimed in claim 5, wherein: the second shielding disc roller shaft (3-2) of the second shielding disc (2-2) can be sleeved on the roller shaft of the first shielding disc roller shaft (3-1), a bulge is arranged inside the second shielding disc roller shaft (3-2), the first shielding disc roller shaft (3-1) can penetrate through the second shielding disc (2-2) through a gap between the bulge inside the second shielding disc roller shaft (3-2), and the second shielding disc (2-2) is axially fixed through a shaft end fixing device of the first shielding disc roller shaft (3-1).
8. The anti-drop winding device for the steel strip coil for packaging as claimed in claim 6 or 7, wherein: the lever connection structure comprises an L-shaped connecting piece (32) and a vertical rod (33), wherein the right angle of the L-shaped connecting piece (32) is hinged to a supporting part (21), the upper end of the L-shaped connecting piece (32) is hinged to the lower end of the vertical rod (33), the middle lower part of the vertical rod (33) is hinged to the supporting part (21), the L-shaped connecting piece (32) is far away from one end of a lower end connecting spring (36) at the right angle, and the other end of the spring (36) is connected to the vertical rod (33).
9. The anti-drop winding device for the steel strip coil for packaging as claimed in claim 8, wherein: articulated on the accepting part (22) have can be along gliding steel band book receiving arrangement of arc slide (34), steel band book receiving arrangement be including accepting groove (41), concave plate (42) and supplementary integrative structure who unloads support plate (43), accept one side that groove (41) are fixed in concave plate (42), the both sides of accepting groove (41) are higher than in the middle of, concave plate (42) both sides are provided with sliding end (44), sliding end (44) are located arc slide (34), sliding end (44) can slide along arc slide (34), supplementary support plate (43) of unloading are to keeping away from one side slope of accepting groove (41), supplementary support plate (43) and concave plate (42) of unloading are the obtuse angle.
10. The anti-drop winding device for the steel strip coil for packaging as claimed in claim 1, wherein: one end of the belt bundling groove (4) far away from the circle center of the anti-falling belt disc (1) is provided with a strip-shaped through hole (5) which penetrates through the shielding disc (2).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201921263906.7U CN210586465U (en) | 2019-08-06 | 2019-08-06 | Anti-drop coiling mechanism is rolled up to steel band for packing |
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CN201921263906.7U CN210586465U (en) | 2019-08-06 | 2019-08-06 | Anti-drop coiling mechanism is rolled up to steel band for packing |
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CN201921263906.7U Withdrawn - After Issue CN210586465U (en) | 2019-08-06 | 2019-08-06 | Anti-drop coiling mechanism is rolled up to steel band for packing |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN110449485A (en) * | 2019-08-06 | 2019-11-15 | 沈阳工业大学 | A kind of steel belt for packages volume anti-dropout wrap-up |
-
2019
- 2019-08-06 CN CN201921263906.7U patent/CN210586465U/en not_active Withdrawn - After Issue
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN110449485A (en) * | 2019-08-06 | 2019-11-15 | 沈阳工业大学 | A kind of steel belt for packages volume anti-dropout wrap-up |
CN110449485B (en) * | 2019-08-06 | 2024-04-26 | 沈阳工业大学 | Anti-drop coiling mechanism is rolled up with steel band to packing |
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