Stainless steel plate processing cutting device convenient for limiting
Patent Information
- Application Number
- CN202522414850.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-14
- Publication Date
- 2026-10-09
- Estimated Expiration
- 2035-11-14
AI Technical Summary
这些装置在对钢卷进行限位固定时,操作步骤较为繁琐,操作人员需要进行多道复杂的操作才能完成钢卷的安装与固定
[0013]1.本实用新型中,限位组件通过将钢卷套接在第三固定杆上,配合第一U型支架、第二U型支架,并利用第一卡块、第二卡块与弹簧的相互作用实现对钢卷的夹持固定,该组件可便捷地完成钢卷的安装与限位,简化了操作步骤,避免了因限位步骤繁琐导致的效率低下与操作失误,确保钢卷在加工过程中保持稳定,为后续的输送和裁剪提供了可靠的前提,提升了整体加工的便利性与稳定性。
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Figure CN224824705U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of steel coil processing technology, specifically relating to a cutting device for stainless steel coil processing that facilitates positioning. Background Technology
[0002] Stainless steel coils, due to their excellent corrosion resistance, mechanical properties, and machinability, are widely used in numerous industries such as construction and decoration, chemical equipment, food machinery, and automobile manufacturing. From components of large industrial equipment to parts for everyday consumer goods, the processing and utilization of stainless steel coils are indispensable. In actual production, rolled stainless steel sheets need to be cut into specifications and dimensions to meet the requirements of different working conditions. Therefore, the cutting process of stainless steel coils is an indispensable link in the production chain. Its efficiency and precision directly affect the quality and production progress of downstream products, and are of great significance to the efficient operation of the entire industry.
[0003] In practical applications of stainless steel coil cutting devices, the existing technology has significant shortcomings in the steel coil limiting components of some devices. These devices involve cumbersome operation steps when limiting and fixing the steel coil, requiring operators to perform multiple complex operations to complete the installation and fixation. This not only consumes a great deal of manpower and time, reducing overall processing efficiency, but also makes it easy for human error to cause the steel coil to become loosely limited during the cumbersome operation. This can lead to the steel coil shifting during subsequent conveying and cutting, affecting cutting accuracy, producing defective products, and potentially causing unnecessary wear and tear on the equipment, increasing potential risks in the production process. These devices are ill-suited to the modern enterprise's requirements for efficient, precise, and stable processing. Therefore, a stainless steel coil cutting device with convenient limiting is needed. Utility Model Content
[0004] The purpose of this utility model is to provide a simple and reasonably designed cutting device for processing stainless steel coils that is easy to limit the movement, in order to solve the above problems.
[0005] This utility model achieves the above objectives through the following technical solutions:
[0006] A cutting device for processing stainless steel coils with easy positioning includes a device housing, a cutting assembly on the device housing, two guide plates fixed inside the device housing, a storage plate fixed inside the device housing, a second fixing rod fixed to the front end of the device housing, a roller passing through the second fixing rod and disposed inside the front end of the device housing, a storage basket placed on the lower front end of the device housing, a worktable at the rear end of the device housing, a positioning assembly on the upper side of the worktable, and a conveying assembly on the upper side of the worktable.
[0007] As a further optimization of this utility model, the cutting assembly includes a first servo motor disposed on the outside of the device housing and a first fixed rod that rotates through one side of the device housing. The output end of the first servo motor passes through both sides of the device housing and is fixed with a first main gear. The end of the first fixed rod that passes through the device housing is fixed with a first driven gear that meshes with the first main gear. The output shaft of the first servo motor and the surface of the first fixed rod that pass through one side of the device housing are both fixedly fitted with eccentric wheels. A connecting ring is fixed to the outside of each eccentric wheel. A cutting head is fixed to the surface of each connecting ring near the front end of the device housing. A cutting blade fixed by bolts is provided on the inner side of each cutting head.
[0008] As a further optimization of this utility model, clamping plates are fixed on both sides of the surface of each connecting ring away from the cutting head, and first sliding grooves are provided on the upper and lower sides of the rear end of the device housing. A lifting rod that passes through the guide plate is slidably connected to the inner side of each first sliding groove, and two clamping blocks are fixedly provided on the upper and lower sides of the clamping plate on the surface of each lifting rod.
[0009] As a further optimization of this utility model, the limiting component includes a first U-shaped bracket disposed on the upper side of the workbench, a third fixing rod fixed on the surface of the first U-shaped bracket, a steel coil passing through the surface of the third fixing rod, and a second U-shaped bracket slidably passing through the steel coil at the end of the third fixing rod away from the first U-shaped bracket, the second U-shaped bracket being disposed on the upper side of the workbench.
[0010] As a further optimization of this utility model, a first locking block is provided on the upper side of the steel coil, which slides between the first U-shaped bracket and the second U-shaped bracket. A second sliding groove is provided inside the first locking block. A second locking block that slides on the surface of the second U-shaped bracket is slidably connected to the inner side of the second sliding groove. A spring is provided between the sliding groove surface of the first locking block and the second locking block. The two ends of the spring are respectively fixed to the inner side of the first locking block and the surface of the second locking block.
[0011] As a further optimization of this utility model, the conveying assembly includes two sets of support plates disposed on the upper side of the workbench. A second servo motor is disposed on the outer side of one of the support plates. A fourth fixing rod is fixedly passed through the surfaces of the two sets of support plates. The output shaft of the second servo motor passes through one set of support plates and then passes through a first conveying wheel. The fourth fixing rod passes through one set of support plates and then passes through a second conveying wheel. The output shaft of the second servo motor passes through both sets of support plates and then is fixedly passed through a second main gear. A second driven gear that meshes with the second main gear is fixedly passed through one end of the fourth fixing rod on the same side as the second main gear.
[0012] The beneficial effects of this utility model are as follows:
[0013] 1. In this utility model, the limiting component clamps and fixes the steel coil by attaching it to the third fixing rod, cooperating with the first U-shaped bracket and the second U-shaped bracket, and utilizing the interaction between the first and second locking blocks and the spring. This component can conveniently complete the installation and limiting of the steel coil, simplifying the operation steps, avoiding inefficiency and operational errors caused by cumbersome limiting steps, ensuring the stability of the steel coil during processing, providing a reliable premise for subsequent conveying and cutting, and improving the convenience and stability of the overall processing.
[0014] 2. In this utility model, the cutting assembly drives the first main gear and the first driven gear to rotate via the first servo motor, causing the eccentric wheel to drive the connecting ring to perform eccentric motion. At the same time, with the cooperation of the lifting rod and the guide plate, the cutting head performs a reciprocating motion of lifting and lowering, thereby realizing the extrusion and cutting of the steel coil by the cutting blade. This method of cutting through eccentric motion makes the movement trajectory of the cutting head stable and regular, ensuring the accuracy of the cutting action. It can cut stainless steel coils into plates of uniform specifications, improving the processing quality of the product. Moreover, the power transmission is stable throughout the cutting process, and it can operate efficiently for a long time, meeting the batch processing needs of enterprises. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the overall structure of this utility model;
[0016] Figure 2 This is the utility model Figure 1 A schematic diagram of the rear structure;
[0017] Figure 3 This is a schematic diagram of the cutting component of this utility model;
[0018] Figure 4 This is a view showing the first and second locking blocks and the spring in conjunction with the present invention;
[0019] Figure 5 This is a utility model Figure 3 Enlarged view of point A in the middle.
[0020] In the diagram: 1. Device housing; 2. Cutting assembly; 201. First servo motor; 202. First main gear; 203. First fixed rod; 204. First driven gear; 205. Eccentric wheel; 206. Connecting ring; 207. Cutting head; 208. Cutting blade; 209. Clamping plate; 210. Lifting rod; 211. Clamping block; 3. Guide plate; 4. Storage plate; 5. Second fixed rod; 6. Roller; 7. Worktable; 8. Limiting assembly Components; 801, First U-shaped bracket; 802, Third fixing rod; 803, Second U-shaped bracket; 804, Steel coil; 805, First locking block; 806, Second locking block; 807, Spring; 9, Conveying assembly; 901, Support plate; 902, Second servo motor; 903, First conveying wheel; 904, Second main gear; 905, Fourth fixing rod; 906, Second driven gear; 907, Second conveying wheel; 10, Storage basket. Detailed Implementation
[0021] The present application will now be described in further detail with reference to the accompanying drawings. It should be noted that the following specific embodiments are only used to further illustrate the present application and should not be construed as limiting the scope of protection of the present application. Those skilled in the art can make some non-essential improvements and adjustments to the present application based on the above application content.
[0022] Example: Figure 1 , Figure 2 As shown, a cutting device for processing stainless steel coils with convenient positioning includes a device housing 1, which is used to install various components and provide processing space. Two guide plates 3 are fixed inside the device housing 1, which are used to guide other components to move vertically in a fixed position. A placement plate 4 is fixed inside the device housing 1, which is used to place the conveyed raw materials. A second fixing rod 5 is fixed at the front end of the device housing 1. A roller 6 is installed on the inner side of the front end of the device housing 1 through the second fixing rod 5. The roller 6 is used to guide the formed product to slide into other components. A storage basket 10 is placed on the lower side of the front end of the device housing 1, which is used to store the formed product. A worktable 7 is provided at the rear end of the device housing 1, which is used to install other components.
[0023] like Figure 1 , Figure 2 and Figure 4As shown, a limiting component 8 is provided on the upper side of the workbench 7. The limiting component 8 is used to limit the raw material. The limiting component 8 includes a first U-shaped bracket 801 provided on the upper side of the workbench 7. A third fixing rod 802 is fixed on the surface of the first U-shaped bracket 801. The third fixing rod 802 is used to fit the raw material. A steel coil 804 is a stainless steel coil raw material to be processed. The end of the third fixing rod 802 away from the first U-shaped bracket 801 passes through the steel coil 804 and then slides through a second U-shaped bracket 803. The first U-shaped bracket 801 and the second U-shaped bracket 803 are used to cooperate to fix the third fixing rod 802. The second U-shaped bracket 803 is provided on the upper side of the workbench 7. A sliding third U-shaped bracket 802 is provided on the upper side of the steel coil 804. A first locking block 805 is provided between a U-shaped bracket 801 and a second U-shaped bracket 803. The first locking block 805 has a second sliding groove inside. A second locking block 806 is slidably connected to the inner side of the second sliding groove and slides on the surface of the second U-shaped bracket 803. A spring 807 is provided between the surface of the sliding groove of the first locking block 805 and the surface of the second locking block 806. The two ends of the spring 807 are respectively fixed to the inner side of the first locking block 805 and the surface of the second locking block 806. The first locking block 805 is used to open the second sliding groove and install the spring 807. The second sliding groove is used to allow the second locking block 806 to slide. The second locking block 806 is used to cooperate with the first locking block 805 to clamp the first U-shaped bracket 801 and the second U-shaped bracket 803. The spring 807 is used to provide elastic force to reset the second locking block 806.
[0024] like Figure 1 , Figure 2 and Figure 5As shown, a conveying assembly 9 is provided on the upper side of the workbench 7. The conveying assembly 9 is used to convey the steel coil 804. The conveying assembly 9 includes two sets of support plates 901 set on the upper side of the workbench 7. The support plates 901 are used to install other components. A second servo motor 902 is provided on the outer side of one of the support plates 901. The second servo motor 902 is used to provide rotational power. The model of the second servo motor 902 in this utility model is EC80750. A fourth fixing rod 905 is fixedly passed through the surfaces of the two sets of support plates 901. The fourth fixing rod 905 is used to install other components. The output shaft of the second servo motor 902 passes through one set of support plates 901 and then passes through a... The first conveyor wheel 903 and the fourth fixed rod 905 pass through a set of support plates 901 and then pass through the second conveyor wheel 907. The first conveyor wheel 903 and the second conveyor wheel 907 are used to cooperate to press and convey the steel coil 804. The output shaft of the second servo motor 902 passes through two sets of support plates 901 and then passes through the second main gear 904. The end of the fourth fixed rod 905 on the same side as the second main gear 904 is fixedly connected to the second driven gear 906, which meshes with the second main gear 904. The second main gear 904 is used to drive the second driven gear 906 to rotate, and the second driven gear 906 is used to drive the fourth fixed rod 905 and the second conveyor wheel 907 to rotate.
[0025] like Figures 1 to 3As shown, a cutting assembly 2 is provided on the outer casing 1 of the device. The cutting assembly 2 is used to cut steel coil 804 to form a shaped product. The cutting assembly 2 includes a first servo motor 201 disposed on the outside of the outer casing 1 and a first fixed rod 203 that rotates through one side of the outer casing 1. The first servo motor 201 is used to provide cutting power. The first servo motor 201 in this utility model is model MS-130ST-M15015B-22P3. The first fixed rod 203 is used to install other components. The output end of the first servo motor 201 passes through both sides of the outer casing 1 and is fixed with a first main gear 202. The end of the first fixed rod 203 that passes through the outer casing 1 is fixed with a first driven gear 204 that meshes with the first main gear 202. The first main gear 202 is used to drive the first driven gear 204 to rotate. The first driven gear 204 is used to drive the first fixed rod 203 and other components on the first fixed rod 203 to rotate. An eccentric wheel 2 is fixedly sleeved on the output shaft of the first servo motor 201 and the surface of the first fixed rod 203 after passing through one side of the outer casing 1. 05. Eccentric wheels 205 are used to drive other components to perform eccentric motion. A connecting ring 206 is fixed to the outer side of each eccentric wheel 205. The connecting ring 206 is used to install other components. A cutting head 207 is fixed to the surface of each connecting ring 206 near the front end of the device housing 1. A cutting blade 208, fixed by bolts, is provided on the inner side of each cutting head 207. The cutting head 207 is used to install the cutting blade 208, which is used to extrude and cut the steel coil 804. Both sides of the surface of each connecting ring 206 away from the cutting head 207 are... A clamping plate 209 is fixedly provided. The upper and lower sides of the rear end of the device housing 1 are provided with first sliding grooves. The first sliding grooves are used for other components to slide up and down. A lifting rod 210 that passes through the guide plate 3 is slidably connected to the inner side of each first sliding groove. The lifting rod 210 is used to prevent the connecting ring 206 from moving irregularly and to drive the cutting head 207 to rise and fall. Two clamping blocks 211 are fixedly provided on the upper and lower sides of the clamping plate 209 through the surface of each lifting rod 210. The clamping plate 209 and the clamping blocks 211 are used to cooperate with each other to limit the position of the lifting rod 210.
[0026] It should be noted that, in the use of this stainless steel coil cutting device for easy positioning, the operator can remove the second U-shaped bracket 803 from the third fixed rod 802, then rotate the steel coil 804 onto the third fixed rod 802, and then reattach the second U-shaped bracket 803 onto the third fixed rod 802. Next, the second locking block 806 is pulled out from the sliding groove in the first locking block 805, causing the spring 807, which is in its normally contracted state, to stretch. After this, the first locking block 805 and the second locking block 806 are fitted onto the U-shaped groove surfaces of the first U-shaped bracket 801 and the second U-shaped bracket 803. The spring 807 retracts and resets, thus clamping the first U-shaped bracket 801 and the second U-shaped bracket 803, thereby achieving the effect of limiting the position of the steel coil 804.
[0027] The operator pulls out one end of the steel coil 804 and places it between the first conveyor wheel 903 and the second conveyor wheel 907. Then, the operator controls the second servo motor 902 to drive the first conveyor wheel 903 and the second main gear 904 to rotate. The second main gear 904 drives the second driven gear 906 to rotate through meshing, which in turn causes the fourth fixed rod 905 passing through the second driven gear 906 and the second conveyor wheel 907 passing through the fourth fixed rod 905 to rotate. At this time, the first conveyor wheel 903 and the second conveyor wheel 907 squeeze the steel coil 804 and drive the steel coil 804 to be conveyed. Then, the steel coil 804 conveyed from the conveying assembly 9 is placed on the shelf 4 inside the device housing 1.
[0028] As the conveying assembly 9 continues to convey, the steel coil 804 slides from the placement plate 4 to the cutting assembly 2. The operator controls the first servo motor 201, which drives the first main gear 202, the first driven gear 204, and the first fixed rod 203 to rotate inside and outside the device housing 1. This causes the eccentric wheel 205, which is sleeved on the output shaft of the first servo motor 201 and the first fixed rod 203, to drive the connecting ring 206 to move eccentrically. To prevent the connecting ring 206 from moving irregularly under the drive of the eccentric wheel 205, the lifting rod 210, which is fixed through the clamping block 211, slides between the clamping plates 209 that fix the connecting ring 206. The lifting rod 210 moves up and down inside the first sliding groove inside the device housing 1. This achieves the reciprocating motion of the two sets of cutting heads 207 moving up and down at the same horizontal position. This causes the cutting blade 208 to squeeze and cut the steel coil 804 to form a shaped product. The shaped product slides down into the storage basket 10 guided by the roller 6.
[0029] The embodiments described above are merely examples of several implementations of this utility model, and while the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of this utility model patent. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this utility model, and these modifications and improvements all fall within the protection scope of this utility model.
Claims
1. A cutting device for processing stainless steel coils with convenient positioning, comprising a device housing (1), characterized in that, A cutting assembly (2) is provided on the outer shell (1) of the device. Two guide plates (3) are fixed inside the outer shell (1). A storage plate (4) is fixed inside the outer shell (1). A second fixing rod (5) is fixed at the front end of the outer shell (1). A roller (6) is provided inside the front end of the second fixing rod (5). A storage basket (10) is placed on the lower side of the front end of the outer shell (1). A workbench (7) is provided at the rear end of the outer shell (1). A limit assembly (8) is provided on the upper side of the workbench (7). A conveying assembly (9) is provided on the upper side of the workbench (7).
2. The cutting device for processing stainless steel coils with convenient positioning as described in claim 1, characterized in that: The cutting assembly (2) includes a first servo motor (201) disposed on the outside of the device housing (1) and a first fixed rod (203) that rotates through one side of the device housing (1). The output end of the first servo motor (201) passes through both sides of the device housing (1) and is fixed with a first main gear (202). The end of the first fixed rod (203) that passes through the device housing (1) is fixed with a first driven gear (204) that meshes with the first main gear (202). The output shaft of the first servo motor (201) and the surface of the first fixed rod (203) pass through one side of the device housing (1) and are both fixedly sleeved with eccentric wheels (205). A connecting ring (206) is fixed on the outside of each eccentric wheel (205). A cutting head (207) is fixed on the surface of each connecting ring (206) near the front end of the device housing (1). A cutting blade (208) fixed by bolts is provided on the inner side of each cutting head (207).
3. The cutting device for processing stainless steel coils with convenient positioning as described in claim 2, characterized in that: Each of the connecting rings (206) has clamps (209) fixed on both sides of the surface away from the cutting head (207). The upper and lower sides of the rear end of the device housing (1) are provided with first sliding grooves. Each first sliding groove is slidably connected to a lifting rod (210) that passes through the guide plate (3). Each lifting rod (210) has two clamping blocks (211) fixedly passing through its surface on the upper and lower sides of the clamps (209).
4. The cutting device for processing stainless steel coils with convenient positioning as described in claim 1, characterized in that: The limiting component (8) includes a first U-shaped bracket (801) disposed on the upper side of the workbench (7), a third fixing rod (802) fixed on the surface of the first U-shaped bracket (801), a steel coil (804) passing through the surface of the third fixing rod (802), and a second U-shaped bracket (803) slidingly passing through the steel coil (804) at one end of the third fixing rod (802) away from the first U-shaped bracket (801), and the second U-shaped bracket (803) disposed on the upper side of the workbench (7).
5. A cutting device for processing stainless steel coils with convenient positioning as described in claim 4, characterized in that: The upper side of the steel coil (804) is provided with a first locking block (805) that slides between the first U-shaped bracket (801) and the second U-shaped bracket (803). The first locking block (805) has a second sliding groove inside. The inner side of the second sliding groove is slidably connected to a second locking block (806) that slides on the surface of the second U-shaped bracket (803). A spring (807) is provided between the surface of the sliding groove of the first locking block (805) and the surface of the second locking block (806). The two ends of the spring (807) are respectively fixed to the inner side of the first locking block (805) and the surface of the second locking block (806).
6. The cutting device for processing stainless steel coils with convenient positioning as described in claim 1, characterized in that: The conveying assembly (9) includes two sets of support plates (901) disposed on the upper side of the workbench (7). A second servo motor (902) is disposed on the outer side of one of the support plates (901). A fourth fixing rod (905) is fixedly inserted through the surfaces of the two sets of support plates (901). The output shaft of the second servo motor (902) passes through one set of support plates (901) and then passes through a first conveying wheel (903). The fourth fixing rod (905) passes through one set of support plates (901) and then passes through a second conveying wheel (907). The output shaft of the second servo motor (902) passes through both sets of support plates (901) and then passes through a second main gear (904). A second driven gear (906) meshing with the second main gear (904) is fixedly inserted through one end of the fourth fixing rod (905) on the same side as the second main gear (904).