Production forming device for metal smelting rolled products
By designing a combination of support table and positioning roller in the metal smelting calender product production and forming device, the problem of bending the edge of the calender product is solved and higher forming flatness is achieved.
Patent Information
- Application Number
- CN202421758957.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-24
- Publication Date
- 2025-05-30
- Estimated Expiration
- 2034-07-24
AI Technical Summary
During the calendering process of the existing metal smelting calender product production and forming device, the edges of the calender product are easily bent and raised due to the positioning of the side positioning rollers, which affects the flatness after forming.
A metal smelting calendering product production and forming device is designed. By placing calendering raw materials on the support table, the rear part is connected to the upper raw material driving block, the upper raw material positioning roller is in contact with the calendering raw materials, and the calendering molding is carried out through a hydraulic cylinder and a driving motor to drive the calendering roller. At the same time, the side positioning roller locates the side of the plate, and the upper positioning roller limits the surface of the calendered product to avoid bending the edges.
It effectively avoids bending and lifting of the edges of the calendered product during the forming process, and improves the flatness of the metal smelting calendered product after forming.
Smart Images

Figure CN222919327U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of metal smelting, in particular to a production and forming device for metal smelting rolled products. Background Art
[0002] The existing patent (publication number: CN215697192U) proposes a production and forming device for metal smelting rolled products, including a flat plate. The center of the top of the flat plate is fixedly connected with a mounting frame, and the center of the inner top of the mounting frame is fixedly connected with a hydraulic rod. A third threaded rod, a guide block, a rectangular block and two stop blocks are arranged on the top of the flat plate. However, for this device, "by arranging a third threaded rod, a guide block, a rectangular block and two stop blocks on the top of the flat plate, it is convenient to limit the two sides of the rolled metal block by inserting the two stop blocks between the upper and lower rollers". The stop blocks only position the side surface of the rolled product. When the pressure between the side surface of the rolled product and the stop blocks increases, it may cause the edges of the rolled product to bend and warp during the forward movement, affecting the flatness of the metal smelting rolled product after forming. Summary of the Invention
[0003] In view of the above deficiencies of the prior art, the utility model provides a production and forming device for metal smelting rolled products. During the production and forming process of metal smelting rolled products, the rolled raw material is placed on a support table, and the rear part of the rolled raw material is connected with an upper raw material driving block. The upper raw material positioning plate is driven downward to make the upper raw material positioning roller contact the rolled raw material. The rolled raw material is driven forward by a driving hydraulic cylinder, and the rolling drive motor drives the rolling rollers to perform rolling forming operations on the raw material. The rolled product after rolling forming is positioned on the side surface of the plate by side positioning rollers, and at the same time, the upper positioning roller limits the surface of the rolled product, avoiding the edges of the rolled product from bending and warping when being positioned by the side positioning rollers, and further improving the flatness of the metal smelting rolled product after forming.
[0004] The purpose of the utility model is achieved through the following technical solutions:
[0005] A metal smelting and rolling product production and forming device, comprising a support table, an upper auxiliary pressing block, a lifting adjustment screw, a rolling roll, a rolling drive motor, a side positioning screw, an upper raw material positioning plate, an upper raw material positioning roll, a driven block, a driving hydraulic cylinder, a positioning adjustment block, a bidirectional driving screw, a side positioning roll, and an upper positioning roll. The bottom of the support table has support legs, and both sides of the support table have rolling roll connection platforms. The rolling roll connection platforms are rotatably connected to the rolling rolls. One side of the rolling roll connection platform has a motor connection platform, and the side of the motor connection platform is fixedly connected to the rolling drive motor. The transmission shaft of the rolling drive motor is fixedly connected to the rolling roll. The bottom of the rolling roll connection platform has a bidirectional screw mounting platform, and the inside of the bidirectional screw mounting platform has a bidirectional screw connection groove. The bidirectional driving screw is rotatably connected to the bidirectional screw connection groove. One side of the bidirectional driving screw has an adjustment handle. The bottom of the positioning adjustment block has a bidirectional screw connection platform, and the bidirectional screw connection platform is threadedly connected to the bidirectional driving screw. One side of the positioning adjustment block has a front positioning platform, and the other side of the positioning adjustment block has a rear positioning platform. The rear positioning platform and the front positioning platform are distributed on both sides of the rolling roll connection platform. The rear positioning platform and the front positioning platform both slide on the surface of the support table. Both sides of the rear positioning platform and the front positioning platform have side positioning roll connection shafts, and the side positioning roll connection shafts are rotatably connected to the side positioning rolls.
[0006] The top of the front positioning platform has an upper screw mounting seat and an auxiliary block positioning rod. The upper screw mounting seat is in the middle position, and the auxiliary block positioning rods are distributed on both sides of the upper screw mounting seat. The surface of the upper auxiliary pressing block has an upper screw connection groove and auxiliary block positioning grooves. The upper screw connection groove is in the middle position, and the auxiliary block positioning grooves are distributed on both sides of the upper screw connection groove. The auxiliary block positioning grooves are adapted to the auxiliary block positioning rods. The auxiliary block positioning grooves are connected to the auxiliary block positioning rods, and the auxiliary block positioning grooves slide on the outside of the auxiliary block positioning rods. The lifting adjustment screw is threadedly connected to the upper screw connection groove. The bottom of the lifting adjustment screw has an adjustment screw mounting groove, and the adjustment screw mounting groove is rotatably connected to the upper screw mounting seat. One side of the upper auxiliary pressing block facing the middle of the support table has an upper positioning connection plate, and the bottom of the upper positioning connection plate has an upper positioning roll connection shaft, and the upper positioning roll connection shaft is rotatably connected to the upper positioning roll.
[0007] One side of the support table corresponding to the rear positioning platform has a driving block connection groove. The top of the driven block has a driving block positioning column, and the top of the driving block positioning column has an upper raw material driving block. The driving block positioning column is adapted to the driving block connection groove. The driving block positioning column is connected to the driving block connection groove, and the driving block positioning column slides inside the driving block connection groove. The bottom of the support table is fixedly connected to the driving hydraulic cylinder, and the hydraulic rod of the driving hydraulic cylinder is fixedly connected to the driven block. Both sides of the support table have positioning plate mounting seats, and the positioning plate mounting seats correspond to the positions of the driving block connection grooves.
[0008] The interior of the positioning plate mounting seat has a height adjustment groove. The bottom of the upper raw material positioning plate has a height adjustment rod, which is adapted to the height adjustment groove. The height adjustment rod is connected to the height adjustment groove and slides inside the height adjustment groove. The side of the positioning plate mounting seat has an adjustment screw mounting groove.
[0009] Beneficial effects: 1. During the production and forming process of metal smelting rolled products, the rolled raw materials are placed on the support table, and the rear part of the rolled raw materials is connected to the upper raw material driving block. The upper raw material positioning plate is driven downward to make the upper raw material positioning roller contact the rolled raw materials. The rolled raw materials are driven forward by the driving hydraulic cylinder, and the rolling driving motor drives the rolling roller to perform rolling forming operations on the raw materials. The rolled products after rolling forming are positioned on the side by the side positioning rollers, and at the same time, the upper positioning roller limits the surface of the rolled products, avoiding bending and warping of the edges of the rolled products when being positioned by the side positioning rollers, and further improving the flatness of the metal smelting rolled products after forming.
[0010] 2. When the rolled raw materials are placed on the support table, the upper raw material positioning roller can be pressed tightly on the upper part of the rolled raw materials to position the rolled raw materials in the upward direction, and the rear positioning table positions the rolled raw materials in the side direction, ensuring the stable forward movement of the rolled raw materials during the production process and having strong anti-interference ability.
[0011] 3. The positioning adjustment blocks on both sides of the present invention are synchronously driven by the same bidirectional driving screw, enabling the operator to complete the simultaneous adjustment of the positioning adjustment blocks on both sides by rotating the bidirectional driving screw. The adjustment process is efficient and convenient.
[0012] 4. The lifting adjustment screw of the present invention is threadedly connected to the upper screw connection groove. When performing maintenance and replacement operations on the upper positioning roller and the side positioning roller, by rotating the lifting adjustment screw, the upper auxiliary pressing block is lifted, causing the upper positioning roller and the side positioning roller to move away from each other. At this time, the operator has a large operating space to replace and maintain the upper positioning roller and the side positioning roller, increasing the convenience of maintaining this device. Description of the Drawings
[0013] Figure 1 is a schematic structural diagram of a device for producing and forming metal smelting rolled products according to the present invention Figure 1 。
[0014] Figure 2 is a schematic structural diagram of a device for producing and forming metal smelting rolled products according to the present invention Figure 2 。
[0015] Figure 3 is a partial enlarged view of a device for producing and forming metal smelting rolled products according to the present invention.
[0016] Figure 4This is a partial sectional view of a production and forming device for metal smelting rolled products according to the present utility model.
[0017] Figure 5 This is a schematic structural view of the support table according to the present utility model.
[0018] Figure 6 This is a schematic structural view of the positioning and adjusting block according to the present utility model. Specific embodiments
[0019] The following further describes the present utility model in detail with reference to the drawings and embodiments:
[0020] Embodiment 1:
[0021] A production and forming device for metal smelting rolled products includes a support table 1, an upper auxiliary pressing block 3, a lifting adjustment screw 6, a rolling roller 10, a rolling drive motor 12, a side positioning screw 19, an upper raw material positioning plate 23, an upper raw material positioning roller 25, a driven block 28, a driving hydraulic cylinder 29, a positioning adjustment block 30, a bidirectional drive screw 32, a side positioning roller 34, and an upper positioning roller 35. The bottom of the support table 1 has support legs 2, and both sides of the support table 1 have rolling roller connection platforms 9. The rolling roller connection platforms 9 are rotatably connected to the rolling roller 10. One side of the rolling roller connection platform 9 has a motor connection platform 11, and the side of the motor connection platform 11 is fixedly connected to the rolling drive motor 12. The transmission shaft of the rolling drive motor 12 is fixedly connected to the rolling roller 10. The bottom of the rolling roller connection platform 9 has a bidirectional screw mounting platform 15, and the inside of the bidirectional screw mounting platform 15 has a bidirectional screw connection groove 14. The bidirectional drive screw 32 is rotatably connected to the bidirectional screw connection groove 14. One side of the bidirectional drive screw 32 has an adjustment handle 13. The bottom of the positioning adjustment block 30 has a bidirectional screw connection platform 31. The positioning adjustment blocks 30 on both sides are synchronously driven by the same bidirectional drive screw 32, enabling the operator to complete the simultaneous adjustment of the positioning adjustment blocks 30 on both sides by rotating the bidirectional drive screw 32. The adjustment process is efficient and convenient. The bidirectional screw connection platform 31 is threadedly connected to the bidirectional drive screw 32. One side of the positioning adjustment block 30 has a front positioning platform 27, and the other side of the positioning adjustment block 30 has a rear positioning platform 26. The rear positioning platform 26 and the front positioning platform 27 are distributed on both sides of the rolling roller connection platform 9. The rear positioning platform 26 and the front positioning platform 27 both slide on the surface of the support table 1. The sides of the rear positioning platform 26 and the front positioning platform 27 both have side positioning roller connection shafts 33, and the side positioning roller connection shafts 33 are rotatably connected to the side positioning rollers 34.
[0022] Embodiment 2:
[0023] At the top of the front positioning table 27 of the present utility model, there are an upper screw mounting seat 8 and an auxiliary block positioning rod 4. The upper screw mounting seat 8 is in the central position, and the auxiliary block positioning rods 4 are distributed on both sides of the upper screw mounting seat 8. On the surface of the upper auxiliary pressing block 3, there are an upper screw connection groove 7 and an auxiliary block positioning groove 5. The upper screw connection groove 7 is in the central position, and the auxiliary block positioning grooves 5 are distributed on both sides of the upper screw connection groove 7. The auxiliary block positioning grooves 5 are adapted to the auxiliary block positioning rods 4. The auxiliary block positioning grooves 5 are connected to the auxiliary block positioning rods 4, and the auxiliary block positioning grooves 5 slide on the outside of the auxiliary block positioning rods 4. The lifting and adjusting screw 6 is threadedly connected to the upper screw connection groove 7. When performing maintenance and replacement operations on the upper positioning roller 35 and the side positioning roller 34, by rotating the lifting and adjusting screw 6, the upper auxiliary pressing block 3 is lifted, so that the upper positioning roller 35 and the side positioning roller 34 are separated from each other. At this time, the operator has a larger operating space to replace and maintain the upper positioning roller 35 and the side positioning roller 34, increasing the convenience of maintaining this device. At the bottom of the lifting and adjusting screw 6, there is an adjusting screw mounting groove 38, and the adjusting screw mounting groove 38 is rotatably connected to the upper screw mounting seat 8. On the side of the upper auxiliary pressing block 3 facing the middle of the support table 1, there is an upper positioning connecting plate 36. At the bottom of the upper positioning connecting plate 36, there is an upper positioning roller connecting shaft 37, and the upper positioning roller connecting shaft 37 is rotatably connected to the upper positioning roller 35.
[0024] Embodiment 3:
[0025] On one side of the support table 1 of the present utility model corresponding to the rear positioning table 26, there is a driving block connection groove 20. At the top of the driven block 28, there is a driving block positioning post 21. At the top of the driving block positioning post 21, there is an upper raw material driving block 22. During the production and forming process of metal smelting and rolling products, the rolling raw material is placed on the support table 1 so that the rear part of the rolling raw material is connected to the upper raw material driving block 22. The upper raw material positioning plate 23 is driven downward so that the upper raw material positioning roller 25 contacts the rolling raw material. The rolling raw material is driven forward by the driving hydraulic cylinder 29, and the rolling driving motor 12 drives the rolling roller 10 to perform rolling forming operations on the raw material. The rolled product after rolling forming is positioned on the side by the side positioning roller 34, and at the same time, the upper positioning roller 35 limits the surface of the rolled product, preventing the edges of the rolled product from bending and warping when being positioned by the side positioning roller 34, further improving the flatness of the metal smelting and rolling product after forming. The driving block positioning post 21 is adapted to the driving block connection groove 20. The driving block positioning post 21 is connected to the driving block connection groove 20, and the driving block positioning post 21 slides inside the driving block connection groove 20. The bottom of the support table 1 is fixedly connected to the driving hydraulic cylinder 29, and the hydraulic rod of the driving hydraulic cylinder 29 is fixedly connected to the driven block 28. On both sides of the support table 1, there are positioning plate mounting seats 16, and the positioning plate mounting seats 16 correspond to the positions of the driving block connection grooves 20.
[0026] Embodiment 4:
[0027] Inside the positioning plate mounting seat 16 of the present utility model, there is a height adjustment groove 17. At the bottom of the upper raw material positioning plate 23, there is a height adjustment rod 18. The height adjustment rod 18 is adapted to the height adjustment groove 17. The height adjustment rod 18 is connected to the height adjustment groove 17 and slides inside the height adjustment groove 17. On the side of the positioning plate mounting seat 16, there is an adjusting screw mounting groove 38.
[0028] Embodiment 5:
[0029] The side positioning screw 19 of the present utility model is threadedly connected to the adjusting screw mounting groove 38. The side positioning screw 19 presses against the side of the height adjustment rod 18. Inside the upper raw material positioning plate 23, there is an upper positioning roller connection groove 24, which is rotatably connected to the upper raw material positioning roller 25. When the calendered raw material is placed on the support table 1, the upper raw material positioning roller 25 can press against the upper part of the calendered raw material to position the calendered raw material in the upward direction, and the rear positioning table 26 positions the calendered raw material in the side direction, ensuring that the calendered raw material moves forward stably during the production process and has strong anti-interference ability.
[0030] Embodiment 6:
[0031] Installation steps of the present utility model: Rotationally connect the calender roller 10 with the calender roller connection platform 9 on the support table 1. Fix the side of the motor connection platform 11 on the support table 1 to the calender drive motor 12. Fix the transmission shaft of the calender drive motor 12 to the calender roller 10. Rotationally connect the bidirectional drive screw 32 with the bidirectional screw connection groove 14 on the support table 1. Threadedly connect the bidirectional screw connection platform 31 on the positioning adjustment block 30 to the bidirectional drive screw 32, so that the rear positioning table 26 and the front positioning table 27 on the positioning adjustment block 30 are both placed on the upper part of the support table 1. Rotationally connect the side positioning roller connection shafts 33 on the rear positioning table 26 and the front positioning table 27 to the side positioning rollers 34 respectively. Rotationally connect the adjusting screw mounting groove 38 on the lifting adjustment screw 6 to the upper screw mounting seat 8 on the front positioning table 27. Set the auxiliary block positioning groove 5 on the upper auxiliary pressing block 3 outside the auxiliary block positioning rod 4 on the front positioning table 27, and threadedly connect the upper screw connection groove 7 on the upper auxiliary pressing block 3 to the lifting adjustment screw 6. Insert the drive block positioning column 21 on the driven block 28 into the drive block connection groove 20 on the support table 1. Fix the bottom of the support table 1 to the drive hydraulic cylinder 29. Fix the hydraulic rod of the drive hydraulic cylinder 29 to the driven block 28. Rotationally connect the upper positioning roller connection groove 24 on the upper raw material positioning plate 23 to the upper raw material positioning roller 25. Insert the height adjustment rod 18 on the upper raw material positioning plate 23 into the height adjustment groove 17 on the support table 1. Threadedly connect the side positioning screw 19 to the adjusting screw mounting groove 38 on the support table 1, so that the side positioning screw 19 presses against the side of the height adjustment rod 18. This device is installed.
[0032] The above are only the preferred embodiments of the present utility model and are not intended to limit the present utility model. It should be noted that for those of ordinary skill in the art, without departing from the technical principle of the present utility model, several improvements and modifications can be made, and these improvements and modifications should also be regarded as the protection scope of the present utility model.
Claims
1. A metal smelting rolled product production and forming device, characterized in that The invention comprises a support platform (1), an upper auxiliary pressure block (3), a lifting adjustment screw (6), a calendering roller (10), a calendering drive motor (12), a side positioning screw (19), an upper raw material positioning plate (23), an upper raw material positioning roller (25), a driven block (28), a driving hydraulic cylinder (29), a positioning adjustment block (30), a bidirectional driving screw (32), a side positioning roller (34), and an upper positioning roller (35). The support platform (1) has a support leg (2) at the bottom, and the support platform (1) has a calendering roller connecting platform (9) on both sides. The calendering roller connecting platform (9) is rotatably connected to the calendering roller (10). One side of the calendering roller connecting platform (9) has a motor connecting platform (11). The motor connecting platform (11) is fixedly connected to the calendering drive motor (12) on the side. The calendering drive motor (12) has a transmission shaft fixedly connected to the calendering roller (10). The calendering roller connecting platform (9) has a bidirectional screw mounting platform (11) at the bottom. 5), a bidirectional screw mounting platform (15) has a bidirectional screw connecting groove (14) inside, a bidirectional driving screw (32) is rotatably connected to the bidirectional screw connecting groove (14), one side of the bidirectional driving screw (32) has an adjustment handle (13), a bottom of the positioning adjustment block (30) has a bidirectional screw connecting platform (31), the bidirectional screw connecting platform (31) is threadedly connected to the bidirectional driving screw (32), one side of the positioning adjustment block (30) has a front positioning platform (27), and the other side of the positioning adjustment block (30) has a rear positioning platform (26), the rear positioning platform (26) and the front positioning platform (27) are distributed on both sides of the calendering roller connecting platform (9), the rear positioning platform (26) and the front positioning platform (27) both slide on the surface of the support platform (1), and the sides of the rear positioning platform (26) and the front positioning platform (27) both have side positioning roller connecting shafts (33), and the side positioning roller connecting shafts (33) are rotatably connected to the side positioning rollers (34).
2. A metal smelting rolled product production and forming device according to claim 1, characterized in that The front positioning platform (27) has an upper screw mounting seat (8) and an auxiliary block positioning rod (4) at the top, the upper screw mounting seat (8) is in a central position, the auxiliary block positioning rod (4) is distributed on both sides of the upper screw mounting seat (8), the upper auxiliary pressing block (3) has an upper screw connecting groove (7) and an auxiliary block positioning groove (5) on the surface, the upper screw connecting groove (7) is in a central position, the auxiliary block positioning groove (5) is distributed on both sides of the upper screw connecting groove (7), the auxiliary block positioning groove (5) is adapted to the auxiliary block positioning rod (4), and the auxiliary block positioning groove (5) is connected to the auxiliary block positioning rod (4), the auxiliary block positioning groove (5) slides on the outside of the auxiliary block positioning rod (4), the lifting adjustment screw (6) is threadedly connected to the upper screw connecting groove (7), the bottom of the lifting adjustment screw (6) has an adjustment screw mounting groove (38), the adjustment screw mounting groove (38) is rotatably connected to the upper screw mounting seat (8), the upper auxiliary pressing block (3) has an upper positioning connecting plate (36) on one side facing the middle of the support platform (1), the bottom of the upper positioning connecting plate (36) has an upper positioning roller connecting shaft (37), and the upper positioning roller connecting shaft (37) is rotatably connected to the upper positioning roller (35).
3. A metal smelting rolled product production and forming device according to claim 2, characterized in that The support platform (1) has a driving block connecting groove (20) on one side corresponding to the rear positioning platform (26), a driving block positioning column (21) on the top of the driven block (28), an upper raw material driving block (22) on the top of the driving block positioning column (21), the driving block positioning column (21) is adapted to the driving block connecting groove (20), the driving block positioning column (21) is connected to the driving block connecting groove (20), the driving block positioning column (21) slides inside the driving block connecting groove (20), the bottom of the support platform (1) is fixedly connected to a driving hydraulic cylinder (29), a hydraulic rod of the driving hydraulic cylinder (29) is fixedly connected to the driven block (28), and positioning plate mounting seats (16) are provided on both sides of the support platform (1), and the positioning plate mounting seats (16) correspond to the positions of the driving block connecting groove (20).
4. A metal smelting rolled product production and forming device according to claim 3, characterized in that The positioning plate mounting seat (16) has a height adjustment groove (17) inside, and the bottom of the upper raw material positioning plate (23) has a height adjustment rod (18), the height adjustment rod (18) is adapted to the height adjustment groove (17), the height adjustment rod (18) is connected to the height adjustment groove (17), the height adjustment rod (18) slides inside the height adjustment groove (17), and the side of the positioning plate mounting seat (16) has an adjustment screw mounting groove (38).
5. A metal smelting rolled product production and forming device according to claim 4, characterized in that The side positioning screw (19) is threadedly connected to the adjusting screw mounting groove (38), and the side positioning screw (19) is pressed against the side of the height adjustment rod (18). The upper raw material positioning plate (23) has an upper positioning roller connecting groove (24) inside, and the upper positioning roller connecting groove (24) is rotatably connected to the upper raw material positioning roller (25).
Citation Information
Patent Citations
Production forming device for metal smelting rolled products
CN215697192U