CN221184880U - Adjustable shearing device for slitting galvanized steel strips - Google Patents
Adjustable shearing device for slitting galvanized steel strips Download PDFInfo
- Publication number
- CN221184880U CN221184880U CN202323133797.6U CN202323133797U CN221184880U CN 221184880 U CN221184880 U CN 221184880U CN 202323133797 U CN202323133797 U CN 202323133797U CN 221184880 U CN221184880 U CN 221184880U
- Authority
- CN
- China
- Prior art keywords
- galvanized steel
- steel strip
- slitting
- thick bamboo
- section
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Active
Links
- 229910001335 Galvanized steel Inorganic materials 0.000 title claims abstract description 76
- 239000008397 galvanized steel Substances 0.000 title claims abstract description 76
- 238000010008 shearing Methods 0.000 title claims abstract description 38
- 238000005520 cutting process Methods 0.000 claims abstract description 51
- 230000007246 mechanism Effects 0.000 claims abstract description 28
- 235000017166 Bambusa arundinacea Nutrition 0.000 claims abstract description 15
- 235000017491 Bambusa tulda Nutrition 0.000 claims abstract description 15
- 241001330002 Bambuseae Species 0.000 claims abstract description 15
- 235000015334 Phyllostachys viridis Nutrition 0.000 claims abstract description 15
- 239000011425 bamboo Substances 0.000 claims abstract description 15
- 230000002457 bidirectional effect Effects 0.000 claims description 21
- 230000005540 biological transmission Effects 0.000 claims description 15
- 230000000149 penetrating effect Effects 0.000 claims description 3
- 230000002093 peripheral effect Effects 0.000 claims description 3
- 229910000831 Steel Inorganic materials 0.000 abstract description 4
- 239000010959 steel Substances 0.000 abstract description 4
- 238000005457 optimization Methods 0.000 description 12
- 238000004519 manufacturing process Methods 0.000 description 7
- 239000000463 material Substances 0.000 description 4
- 238000000926 separation method Methods 0.000 description 2
- 230000001360 synchronised effect Effects 0.000 description 2
- 238000004804 winding Methods 0.000 description 2
- 241000587161 Gomphocarpus Species 0.000 description 1
- 230000009286 beneficial effect Effects 0.000 description 1
- 230000001276 controlling effect Effects 0.000 description 1
- 230000005489 elastic deformation Effects 0.000 description 1
- 238000000034 method Methods 0.000 description 1
- 238000012986 modification Methods 0.000 description 1
- 230000004048 modification Effects 0.000 description 1
- 239000004033 plastic Substances 0.000 description 1
- 239000002994 raw material Substances 0.000 description 1
- 230000001105 regulatory effect Effects 0.000 description 1
- 230000003746 surface roughness Effects 0.000 description 1
Landscapes
- Shearing Machines (AREA)
Abstract
The utility model provides a galvanized steel strip divides strip with adjustable shearing mechanism, relates to steel strip processing technology field, including rotating a section of thick bamboo, be used for supporting a section of thick bamboo pivoted carrier and a plurality of sliding connection and cut apart the blade disc at a section of thick bamboo periphery and be used for shearing and cut apart galvanized steel strip, be equipped with clutch mechanism in the section of thick bamboo, clutch mechanism is used for will cutting apart the blade disc and joint on a section of thick bamboo, or will cut apart the blade disc and separate in order to adjust the interval between a plurality of sections of blade discs with a section of thick bamboo, clutch mechanism includes concentric rotation and establishes a plurality of two-way spiral shell barrels on rotating a section of thick bamboo along the longitudinal sliding, control shaft one end is worn out and is rotated the inside control rotation of being convenient for of a section of thick bamboo. The positions of the plurality of cutter heads are adjusted by avoiding repeated rotation of the fastening bolts, so that the distance between the plurality of cutter heads is convenient for a worker to adjust, namely, the worker is assisted to efficiently cut the galvanized steel strip into strips with the target width.
Description
Technical Field
The utility model relates to the technical field of steel strip processing, in particular to an adjustable shearing device for slitting galvanized steel strips.
Background
Galvanized steel strip is mostly delivered in rolls after being processed and formed, but coiled galvanized steel strip cannot meet the production requirements of galvanized strip pipes and photovoltaic bracket production and processing in downstream industries. In order to meet the requirements before production and processing of downstream galvanized strip pipes and photovoltaic brackets, the rolled galvanized strip raw materials are sheared and striped according to the size of a target product, so that a striped strip coil with a target width is formed for subsequent processing and production.
A galvanized steel strip shearing device is present for shearing the galvanized steel strip into strips of a target width. But most of the cutting heads cannot be convenient for workers to efficiently adjust the spacing between the cutting heads, so that the steel strips with different widths are cut. The distance between the first shearing part and the second shearing part can be adjusted by the cooperation of the telescopic rod, the rectangular column and the fastening bolt, so that the plastic expanding nail head shearing equipment with adjustable shearing cutter distance is convenient for shearing expanding nails with different types.
It can be seen from this that the patent adjusts the spacing between the two shearing knives in the patent, i.e. the spacing between the two cutter heads, by means of the telescopic rod and the rectangular column. However, when the spacing between the cutter heads needs to be adjusted, the worker needs to release the locking of the fastening bolts in sequence to adjust the spacing between the cutter heads, and then the worker needs to separate and reset the fastening bolts for a long time to adjust the spacing between the cutter heads. That is, a long time of adjustment is required to run the strip dividing the galvanized steel strip into a plurality of divided strips of the same or different target widths. Therefore, the steel strip with the corresponding width cannot be produced efficiently to meet the production requirements of galvanized strip pipes, photovoltaic brackets and other products, thereby completing the production plan. Therefore, the efficiency of cutting and dividing galvanized steel strips by workers is reduced, and the efficiency of producing qualified galvanized strip pipes and photovoltaic brackets is also reduced.
Disclosure of utility model
The utility model aims to provide an adjustable shearing device for slitting galvanized steel strips, which is convenient for a worker to adjust the intervals among a plurality of cutter heads, namely, the adjustable shearing device assists the worker to efficiently cut the galvanized steel strips into the slitting with the target width, thereby achieving the purpose of meeting the production requirements of products such as galvanized steel strip pipes, photovoltaic brackets and the like.
In order to solve the technical problems, the utility model adopts the following specific scheme: the utility model provides a galvanized steel strip divides strip to use adjustable shearing mechanism, includes the rotary drum, is used for supporting rotary drum pivoted carriage and a plurality of sliding connection and is used for shearing the cut apart cutterhead of cutting apart the galvanized steel strip at the rotary drum periphery, be equipped with clutch mechanism in the rotary drum, clutch mechanism is used for will cutting apart the cutterhead and joint on the rotary drum, or will cut apart the separation of cutterhead and rotary drum in order to adjust the interval between a plurality of cutterheads, clutch mechanism includes concentric rotation and establishes the control axle in the rotary drum and along the longitudinal sliding establishes a plurality of two-way spiral shell barrels on the rotary drum, control axle one end is worn out the rotary drum inside and is convenient for control rotation, two both ends screw thread direction of two-way spiral shell opposite and all cooperate and be connected with the adjustment spiral shell piece, be located same be equipped with the link between two adjustment spiral shell pieces on the two-way spiral shell barrel, the link is worn out and is linked to each other with cutting apart the cutterhead after the intercommunication groove on the rotary drum, any adjustment spiral shell piece is last all to articulate and is followed the follower, follow-up the end articulated of follow-up member in adjustment spiral shell is followed up piece is followed closely to be established in the locking piece, and is rotated the inner wall that the control axle corresponds to the position and is used for cutting apart the rotary drum and is rotated by the inner wall and is rotated the rotary drum and is provided with the inner wall.
As a further optimization of the adjustable shearing device for slitting galvanized steel strips, the inner wall of the bidirectional screw cylinder is provided with the linkage convex blocks, and the control shaft is provided with the transmission groove for sliding fit of the linkage convex blocks.
As a further optimization of the adjustable shearing device for slitting galvanized steel strips, a limiting chute is arranged on the connecting frame at a position corresponding to the sliding of the locking block, and the limiting chute is used for sliding connection of a limiting slide block arranged on the locking block.
As a further optimization of the adjustable shearing device for slitting galvanized steel strips, one end of the control shaft penetrating through the inside of the rotating cylinder is provided with an adjusting rotary disc.
As a further optimization of the adjustable shearing device for slitting galvanized steel strips, the outer circumferential surface of the rotating cylinder is provided with auxiliary scales, and the auxiliary scales are communicated with the grooves at intervals.
As a further optimization of the adjustable shearing device for slitting the galvanized steel strip, one side of the bearing frame is provided with the bearing rotating roller for the galvanized steel strip to pass through for auxiliary shearing and splitting, two ends of the bearing rotating roller are arranged on the connecting sliding blocks, and the connecting sliding blocks are arranged in the extending frame on the bearing frame in a sliding connection manner.
As a further optimization of the adjustable shearing device for slitting galvanized steel strips, the adjustable shearing device is characterized in that an adjusting stud is arranged in the extension frame for adjusting and positioning of the connecting slide block.
As a further optimization of the adjustable shearing device for slitting galvanized steel strips, the shape of the connecting frame is a herringbone with a round center.
As a further optimization of the adjustable shearing device for slitting galvanized steel strips, the locking block is made of elastic rubber with rough outer surface.
As a further optimization of the adjustable shearing device for slitting galvanized steel strips, the rotating cylinder penetrates through one end of the bearing frame and is matched with the belt transmission mechanism.
Compared with the prior art, the utility model has the beneficial effects that: according to the utility model, the bidirectional screw cylinder is driven to rotate positively by the positive rotation of the control shaft which is provided with the clutch mechanism, so that the locking block is separated from the inner wall of the rotating cylinder, even if the plurality of cutter heads slide relative to the rotating cylinder, the spacing between the plurality of cutter heads is adjusted as required. After the adjustment is finished, the control shaft can be reversely rotated, so that the locking blocks are engaged with the inner wall of the rotary cylinder to lock the plurality of adjusted cutter heads at the corresponding positions of the rotary cylinder. Therefore, the forward and reverse rotation process of fastening screws for many times is avoided when the plurality of cutting cutterheads are regulated, namely, the wider galvanized steel strip can be efficiently cut through the cutting cutterheads with corresponding intervals, and then the galvanized steel strip is divided into a plurality of galvanized steel strips with standard widths for use, so that the efficiency of cutting the galvanized steel strip is improved, and the efficiency of producing qualified galvanized steel strip pipes, photovoltaic brackets and other products is also improved.
As further optimization of the utility model, the peripheral surface of the rotary cylinder is provided with auxiliary scales, so that workers are assisted in more efficiently adjusting the distance between every two cutter heads. Setting up the locking piece into the elastic rubber material of surface roughness can improve and rotate the connection stability of section of thick bamboo inner wall, can also be when the vertical locking piece that drives of follower is connected with rotating a section of thick bamboo inner wall simultaneously, self forms certain elastic deformation, and then avoids causing deformation to influence its rotation stability to a rotation section of thick bamboo.
As a further optimization of the utility model, the transmission mechanism of the transmission belt of the rotating cylinder can enable the rotating cylinder to stably drive the plurality of cutter heads to rotate for cutting galvanized steel strips, and meanwhile, the relative position of the rotating cylinder during adjustment can be limited, so that the function loss of the clutch mechanism caused by the rotation of the rotating cylinder along with the bidirectional screw cylinder is avoided. The control shaft is provided with the adjusting rotary table, so that the control rotation of a worker can be facilitated, and a plurality of clutch mechanisms are controlled.
As a further optimization of the utility model. The bearing rotating roller is arranged on one side of the bearing frame, so that the stability of the galvanized steel strip can be improved when the cutting cutterhead rotates to cut the galvanized steel strip, the stability and the high quality of the galvanized steel strip are improved when the galvanized steel strip is cut, and meanwhile, the movement of the galvanized steel strip can be guided to assist the subsequent winding. The extension frame is arranged on the bearing frame, and then the connection sliding block and the adjusting stud arranged in the extension frame are matched to position the bearing roller, so that the distance between the bearing frame and the cutting cutterhead can be adjusted, and the galvanized steel strip with different thickness can be used.
Drawings
FIG. 1 is a schematic cross-sectional view of the present utility model;
FIG. 2 is a schematic perspective view of a clutch mechanism according to the present utility model;
FIG. 3 is a schematic perspective view of a carrier according to the present utility model;
FIG. 4 is a schematic perspective view of a control shaft according to the present utility model;
fig. 5 is a schematic perspective view of a rotary drum according to the present utility model.
Reference numerals: 1. the device comprises a bearing frame, 2, a rotating cylinder, 3, an extending frame, 4, a cutting cutterhead, 5 clutch mechanisms, 51, a connecting frame, 52, a limiting sliding block, 53, a limiting sliding groove, 54, a locking block, 55, a bidirectional screw cylinder, 56, an adjusting screw block, 57, a follower plate, 58, a control shaft, 6 transmission grooves, 7 linkage convex blocks, 8, auxiliary scales, 9, an adjusting turntable, 10, a communicating groove, 11, an adjusting stud, 12, a bearing rotating roller, 13 and a connecting sliding block.
Detailed Description
As shown in fig. 1 and 2, before the galvanized steel strip is cut into a plurality of strips with the same or different widths, a clutch mechanism 5 arranged in a rotating cylinder 2 is utilized to separate a plurality of cutting cutterheads 4 arranged on the periphery of the rotating cylinder 2 from the rotating cylinder 2, then the distance between the cutting cutterheads 4 is adjusted, then the clutch mechanism 5 is reversely controlled to enable the cutting cutterheads 4 to be re-jointed with the rotating cylinder 2, and then the adjusted cutting cutterheads 4 are positioned, and then the rotating cylinder 2 can be rotated to drive the cutting cutterheads 4 to rotate to cut the galvanized steel strip, so that the cutting work of the galvanized steel strip is more efficiently completed.
The clutch mechanism 5 includes a control shaft 58, a link 51, and a bidirectional screw 55 provided at the center of the link 51. One end of the control shaft 58 penetrates out of the rotary cylinder 2, so that a user can rotate the control shaft 58 according to needs to synchronously rotate the plurality of bidirectional screw cylinders 55 in transmission connection with the control shaft 58, and the forward and reverse rotation of the plurality of bidirectional screw cylinders 55 can be controlled through the forward and reverse rotation of the control shaft 58. One end of the control shaft 58 passing through the rotary cylinder 2 is provided with an adjusting rotary disk 9, thereby assisting the staff to rotate the control shaft 58 positively and negatively to control the positive and negative rotation of the bidirectional screw cylinder 55.
The screw thread directions of the two ends of the bidirectional screw cylinder 55 are opposite, the two ends of the bidirectional screw cylinder are respectively in threaded connection with an adjusting screw block 56, the two adjusting screw blocks 56 are hinged with one ends of three follow-up plates 57, the other ends of the follow-up plates 57 are hinged with locking blocks 54, the locking blocks 54 are slidably connected at corresponding positions of the connecting frame 51, and the locking blocks 54 are combined or separated with the inner wall of the rotating cylinder 2 along with the vertical or inclined of the follow-up plates 57, so that the cutter head 4 can slide or cannot integrally move relative to the rotating cylinder 2. The outer end of the connecting frame 51 passes through the communicating groove 10 formed in the outer peripheral surface of the rotary cylinder 2 and is connected with the cutter head 4, and then the position of the cutter head 4 is limited through the connecting frame 51, namely, the two adjusting screw blocks 56 are assisted and limited, so that the two adjusting screw blocks 56 can be mutually close to or far away from each other when the bidirectional screw cylinder 55 rotates positively and negatively. Meanwhile, the connecting frame 51 is matched with the communicating groove 10 to link the rotation of the rotation cylinder 2 and the cutting cutterhead 4, so that the purpose of rotating the rotation cylinder 2 to drive the plurality of cutting cutterheads 4 to rotate and cut galvanized steel strips is achieved.
When the adjusting screw blocks 56 are far away from or close to each other, the corresponding follow-up plates 57 are driven to incline or vertically, so that the corresponding locking blocks 54 are driven to be engaged with or separated from the inner wall of the rotary cylinder 2, namely, the cutter head 4 is relatively engaged with or separated from and slid on the periphery of the rotary cylinder 2 through the connecting frame 51. When the cutting cutterhead 4 slides relative to the periphery of the rotary cylinder 2, the position of the cutting cutterhead 4 can be conveniently adjusted by a worker, and the galvanized steel strip can be efficiently cut by the worker according to the requirement to form a plurality of strips with corresponding widths. When the cutting cutterhead 4 is positioned relative to the periphery of the rotating cylinder 2, the rotating cylinder 2 can be controlled to link the plurality of adjusted cutting cutterheads 4 to rotate so as to cut the galvanized steel strip. The locking block 54 is provided with a limiting slide block 52, and the limiting slide block 52 is slidably connected in a limiting slide groove 53 formed in the connecting frame 51, so that the limiting adjusting screw block 56 is driven to be far away from or close to each other when the bidirectional screw cylinder 55 rotates positively and negatively.
As shown in fig. 2, the shape of the connecting frame 51 is a chevron shape with a circular center, so that the connecting frame 51 is rotatably connected with the bidirectional screw 55 at the center, even if the bidirectional screw 55 is stable in position during forward and reverse rotation. The purpose of penetrating through the communicating groove 10 and fixing the cutting cutterhead 4 can be achieved, the cutting cutterhead 4 can stably slide on the rotating cylinder 2, and the galvanized steel strip can be cut along with the synchronous rotation of the rotating cylinder 2 when the cutting cutterhead is locked. The locking piece 54 is the rough elastic rubber material of surface, and then makes the locking piece 54 can improve the performance that the locking piece 54 stabilized on the inner wall of a rotary drum 2 when being connected with the inner wall of a rotary drum 2, can also avoid giving the too strong jacking force of inner wall of a rotary drum 2 through self elasticity simultaneously, and then avoid the rotation instability that the rotary drum 2 consequently deforms and leads to. The rotating drum 2 is limited by the bearing frame 1 for supporting the rotating drum 2 when rotating, so that the rotating drum 2 can stably rotate to divide the galvanized steel strip.
As shown in fig. 4, the bidirectional screw cylinders 55 are provided therein with a linking protrusion 7, and the linking protrusion 7 slides in a transmission groove 6 formed on the control shaft 58, so that the control shaft 58 can control the rotation of the bidirectional screw cylinders 55 through the forward and reverse rotation of the control shaft, i.e. can control the combination of the plurality of cutter heads 4 and the rotary cylinder 2 to be integrated therewith or to be separated from the rotary cylinder 2 to slide therewith. The stable removal of cutting apart blade disc 4 can be assisted to transmission recess 6 and interlock lug 7 is set up, simultaneously when the rotation section of thick bamboo 2 rotates and drives cutting apart blade disc 4 rotatory cutting galvanized steel strip, drive control shaft 58 synchronous rotation and avoid control shaft 58 to lead to the self-passing because of atress is inhomogeneous, avoid control shaft 58 self-passing promptly to lead to separation and reunion mechanism 5 to relax the blade disc 4 position offset of cutting apart that arouses to the stability of cutting apart blade disc 4 self position when cutting apart the galvanized steel strip in the rotation has also improved the stability of cutting apart target width galvanized steel strip simultaneously.
Meanwhile, when the positions of the cutter heads 4 are adjusted, the cutter heads 4 can be adjusted in a sliding mode by being matched with the connecting frame 51 to assist workers in guiding the cutter heads 4. One end of the control shaft 58 penetrates through the rotating cylinder 2 and is fixedly connected with the adjusting rotary table 9, the adjusting rotary table 9 can assist workers in controlling the rotating control shaft 58, and then the purpose of assisting the workers in efficiently adjusting the distance between the plurality of cutting cutterheads 4 is achieved, and the relative positions of the cutting cutterheads 4 can be efficiently adjusted relatively to efficiently cut galvanized steel strips to form target strips. As shown in fig. 5, an auxiliary scale 8 is arranged on the outer circumferential surface of the rotary drum 2, so that when a worker adjusts the relative positions of the cutting cutterheads 4, the auxiliary worker accurately adjusts the distance between every two cutting cutterheads 4 to a target value, namely, the high-quality cut galvanized steel strip is used for subsequent processing.
The elastic rubber with the rough outer surface arranged in the embodiment can be replaced by other materials, so that the use materials can be ensured to meet the use requirements.
As shown in fig. 3, a bearing roller 12 is arranged on the outer side of the bearing frame 1, the bearing roller 12 enables the galvanized steel strip to pass through, and then the corresponding galvanized steel strip winding mechanism is matched to maintain a certain stability of tensioning the galvanized steel strip, so that the cutting cutterhead 4 convenient to rotate cuts the galvanized steel strip, namely, the phenomenon that the galvanized steel strip moves downwards after being stressed is avoided, and the cutting cutterhead 4 is caused to cut the galvanized steel strip in a rotating way, so that the phenomenon that the galvanized steel strip cannot be cut in high quality and high efficiency is caused. The two ends of the bearing roller 12 are respectively arranged on opposite surfaces of the two connecting sliding blocks 13, and the connecting sliding blocks 13 are arranged in the extension frame 3 arranged on the bearing frame 1, so that the relative position of the bearing roller 12 is limited, namely, the auxiliary guiding function of the bearing roller 12 is ensured. The connecting slide blocks 13 are in threaded connection with the adjusting studs 11 arranged in the extension frames 3, so that workers can conveniently rotate the adjusting studs 11 according to the width of the galvanized steel strip, and then the positions of the two connecting slide blocks 13 in the two extension frames 3 are adjusted, so that the position adjustment of the bearing rotating roller 12 is suitable for the galvanized steel strip with different thickness to carry out auxiliary guiding, and the use universality of the bearing rotating roller 12 is improved.
As shown in fig. 1 and 4, the rotating drum 2 passes through one end of the bearing frame 1 to be matched with a belt transmission mechanism, the belt transmission mechanism comprises a motor, two belt pulleys and a transmission belt, when a galvanized steel belt needs to be cut, the motor can be used for driving the corresponding belt pulleys to operate, then the transmission belt and the other belt pulley drive the rotating drum 2 to rotate, then the adjusted cutter disc 4 can be driven to rotate, and then the corresponding galvanized steel belt can be segmented. When the spacing between the plurality of cutter heads 4 needs to be adjusted, the belt transmission mechanism can limit the rotating cylinder 2 to avoid easy rotation of the rotating cylinder to limit the rotation of the adjusting screw blocks 56, so that the two adjusting screw blocks 56 can be mutually close to or far away from each other when the bidirectional screw cylinder 55 rotates positively and negatively.
The foregoing describes specific embodiments of the present utility model. It is to be understood that the utility model is not limited to the particular embodiments described above, and that various changes and modifications may be made by one skilled in the art within the scope of the claims without affecting the spirit of the utility model.
Claims (10)
1. The utility model provides a galvanized steel strip divides strip with adjustable shearing mechanism, includes a section of thick bamboo (2), is used for supporting a section of thick bamboo (2) pivoted carriage (1) and a plurality of sliding connection cut apart blade disc (4) at a section of thick bamboo (2) periphery and are used for cutting to cut apart galvanized steel strip, its characterized in that: the clutch mechanism (5) is arranged in the rotating cylinder (2), the clutch mechanism (5) is used for connecting the cutting cutterhead (4) on the rotating cylinder (2) or separating the cutting cutterhead (4) from the rotating cylinder (2) to adjust the distance between the cutting cutterhead (4), the clutch mechanism (5) comprises a control shaft (58) concentrically arranged in the rotating cylinder (2) and a plurality of bidirectional screw cylinders (55) longitudinally sliding on the rotating cylinder (2), one end of the control shaft (58) penetrates through the rotating cylinder (2) to facilitate control rotation, two ends of the bidirectional screw cylinders (55) are opposite in thread direction and are respectively connected with an adjusting screw block (56), a connecting frame (51) is arranged between two adjusting screw blocks (56) positioned on the same bidirectional screw cylinder (55), the connecting frame (51) penetrates through a communicating groove (10) arranged on the rotating cylinder (2) and is connected with the cutting cutterhead (4), one end of each adjusting screw block (56) is hinged with a follower plate (57), the opposite end of each follower plate (57) is correspondingly locked by the corresponding sliding frame (54), the outer edge of the locking block (54) is used for being tightly attached to the inner wall of the rotary cylinder (2) along with the forward and backward rotation of the control shaft (58) so as to provide friction force for connecting the cutter head (4) and the rotary cylinder (2), or separating the cutter head (4) from the rotary cylinder (2) by separating from the inner wall of the rotary cylinder (2).
2. An adjustable shearing apparatus for slitting galvanized steel strip as set forth in claim 1 wherein: the inner wall of the bidirectional screw cylinder (55) is provided with a linkage lug (7), and the control shaft (58) is provided with a transmission groove (6) for sliding fit of the linkage lug (7).
3. An adjustable shearing apparatus for slitting galvanized steel strip as set forth in claim 1 wherein: a limiting chute (53) is arranged on the connecting frame (51) at a position corresponding to the sliding position of the locking block (54), and the limiting chute (53) is used for sliding connection of a limiting slide block (52) arranged on the locking block (54).
4. An adjustable shearing apparatus for slitting galvanized steel strip as set forth in claim 1 wherein: one end of the control shaft (58) penetrating through the inside of the rotary cylinder (2) is provided with an adjusting rotary disc (9).
5. An adjustable shearing apparatus for slitting galvanized steel strip as set forth in claim 1 wherein: the outer peripheral surface of the rotary cylinder (2) is provided with auxiliary scales (8), and the auxiliary scales (8) are communicated with the grooves (10) at intervals.
6. An adjustable shearing apparatus for slitting galvanized steel strip as set forth in claim 1 wherein: the galvanized steel strip cutting machine is characterized in that a bearing rotating roller (12) is arranged on one side of the bearing frame (1) and used for allowing the galvanized steel strip to pass through auxiliary cutting and cutting, two ends of the bearing rotating roller (12) are arranged on a connecting sliding block (13), and the connecting sliding block (13) is slidably connected in an extending frame (3) on the bearing frame (1).
7. An adjustable shearing apparatus for slitting galvanized steel strip as defined in claim 6 wherein: an adjusting stud (11) is arranged in the extension frame (3) for adjusting and positioning of the connecting sliding block (13).
8. An adjustable shearing apparatus for slitting galvanized steel strip as set forth in claim 1 wherein: the shape of the connecting frame (51) is a herringbone with a round center.
9. An adjustable shearing apparatus for slitting galvanized steel strip as set forth in claim 1 wherein: the locking block (54) is made of elastic rubber with rough outer surface.
10. An adjustable shearing apparatus for slitting galvanized steel strip as set forth in claim 1 wherein: one end of the rotating cylinder (2) penetrates through the bearing frame (1) to be matched with the belt transmission mechanism.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202323133797.6U CN221184880U (en) | 2023-11-21 | 2023-11-21 | Adjustable shearing device for slitting galvanized steel strips |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202323133797.6U CN221184880U (en) | 2023-11-21 | 2023-11-21 | Adjustable shearing device for slitting galvanized steel strips |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN221184880U true CN221184880U (en) | 2024-06-21 |
Family
ID=91523620
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202323133797.6U Active CN221184880U (en) | 2023-11-21 | 2023-11-21 | Adjustable shearing device for slitting galvanized steel strips |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN221184880U (en) |
Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN119973211A (en) * | 2025-03-01 | 2025-05-13 | 唐山市丰丰冷轧带钢有限公司 | A strip steel shearing machine with quality detection function and quality detection method |
-
2023
- 2023-11-21 CN CN202323133797.6U patent/CN221184880U/en active Active
Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN119973211A (en) * | 2025-03-01 | 2025-05-13 | 唐山市丰丰冷轧带钢有限公司 | A strip steel shearing machine with quality detection function and quality detection method |
Similar Documents
| Publication | Publication Date | Title |
|---|---|---|
| CN110281412B (en) | Open mill | |
| CN221184880U (en) | Adjustable shearing device for slitting galvanized steel strips | |
| CN201800080U (en) | Slab cutting and adjusting device | |
| CN207386685U (en) | Capacitor connection sheet cutter | |
| CN119734099B (en) | A steel strip trimming device for cold rolling stainless steel strip | |
| CN111036990B (en) | Automatic profile modeling router | |
| CN208575683U (en) | A kind of aluminium-plastic panel trimming equipment | |
| CN221336497U (en) | Material returning preventing device of cold header | |
| CN209111223U (en) | A rubber slitting machine | |
| CN119284623A (en) | A release paper cutting device capable of automatically cutting materials | |
| CN215478740U (en) | Slitting machine cutter interval adjustment mechanism | |
| CN211965526U (en) | Twisting forming machine for cutter bar of grass rolling cutter | |
| CN203265760U (en) | High precision circle shear for thin strip continuous processing set | |
| CN221518049U (en) | Cutting device is used in magnetic stripe production | |
| CN222174616U (en) | Gap adjustment structure of upper and lower rollers of coating head | |
| CN221475714U (en) | Rubber open mill | |
| CN208930372U (en) | A sheet slitting machine | |
| CN209080353U (en) | The roller cutting apparatus of suction pipe packaging film | |
| CN223455610U (en) | A high-efficiency steel strip cutting machine | |
| CN204844240U (en) | TPU sheet cutting machine | |
| CN222612450U (en) | Pneumatic swing arm type winding mechanism of dividing and cutting machine | |
| CN214639095U (en) | A rolling mill for steel fiber production | |
| CN205733225U (en) | A kind of steel plate edge is sheared and the plate shearing machine of broken limit institutional operation | |
| CN223998655U (en) | An adjustable blade drum for a chipper | |
| CN221211947U (en) | Slitter of slitting width adjustable |
Legal Events
| Date | Code | Title | Description |
|---|---|---|---|
| GR01 | Patent grant | ||
| GR01 | Patent grant |