Non-ferrous metal smelting calendering device
By designing adjustment and guiding components, the problems of inflexible adjustment range of calender rolls and single-motor drive were solved, realizing flexible adjustment of calender roll spacing and single-motor drive, reducing costs and safety hazards.
Patent Information
- Application Number
- CN202422988654.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-05
- Publication Date
- 2025-10-17
- Estimated Expiration
- 2034-12-05
AI Technical Summary
The existing calendering rollers cannot flexibly adjust the range during calendering and cannot be driven by a single set of motors, and cannot adapt to different needs, which increases the work pressure and safety hazards of the staff.
A non-ferrous metal smelting rolling device was designed, comprising an adjustment component and a guide component. The adjustment component adjusts the spacing of the rolling rollers through a hydraulic rod and a fixed motor, while the guide component clamps the non-ferrous metal through a stepper motor and a telescopic push rod, realizing single-motor drive and flexible adjustment.
It enables flexible adjustment of the calendering roll spacing, reduces costs, and decreases the workload and safety hazards for workers.
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Figure CN223440705U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to non ferrous metal processing technical field, concretely is a non ferrous metal smelting calendering device. BACKGROUND
[0002] Non ferrous metal usually utilizes respective processing industry field, and when processing, often needs to smelt and calendering treatment to non ferrous metal, and after heating, calendering can be carried out subsequently, convenient transportation, and when calendering, needs to adopt calendering roller to gradually calender thin treatment to non ferrous metal.
[0003] In prior art, when using, the existing calendering roller cannot guarantee that two groups of calendering rollers are driven by a single motor at the same time while flexibly adjusting the interval when calendering, and cannot adapt to different requirements. UTILITY MODEL CONTENTS
[0004] The utility model discloses a non ferrous metal smelting calendering device to solve the above background art, and the existing calendering roller cannot guarantee that two groups of calendering rollers are driven by a single motor at the same time while flexibly adjusting the interval when calendering, and cannot adapt to different requirements, and the interval can be flexibly adjusted and a single motor is driven to reduce the cost by setting the adjusting assembly.
[0005] In order to solve the above technical problem, the utility model provides the following technical scheme:
[0006] A non ferrous metal smelting calendering device, including three groups of main support, the both ends of main support are provided with adjusting assembly, and adjusting assembly is used for flexibly adjusting the distance between calendering structure to adapt to different requirements, and the guide assembly is arranged between the main support, and the guide assembly is used for guiding non ferrous metal to the inside of next group of calendering structure and carries out;
[0007] The adjusting assembly includes two groups of driving gear, and the middle part of driving gear is installed with rotating shaft, the outside of both ends of rotating shaft is provided with limit sliding block, and the top of inside limit sliding block is installed with hydraulic rod, the back of driving gear is engaged with two groups of transmission gear, and the middle part of transmission gear is installed with movable sleeve, the outside of movable sleeve is provided with inclined limit ring, and the inside of movable sleeve is provided with limit shaft, the back of limit shaft is installed with limit guide rod, and the outside of limit guide rod is provided with sliding block limit sleeve, the inside between sliding block limit sleeve is provided with bidirectional screw rod, and the middle part of bidirectional screw rod is installed with fixed motor;
[0008] The guiding assembly comprises two sets of fixed frames, a stepping lead screw is arranged at the middle part of the fixed frame, a stepping motor is arranged at the outer side of the stepping lead screw, a guiding sliding block is arranged at the outer side of the stepping motor, the guiding sliding block is arranged at the inner side of the fixed frame, two sets of connecting plates are arranged between the guiding sliding blocks, telescopic push rods are arranged at the top and bottom of the connecting plate, and clamping blocks are arranged at the output end of the telescopic push rod.
[0009] Preferably, the bottom of the main support is provided with a supporting seat, the outer side of the main support is provided with a limiting frame, and the inner side of the limiting frame is provided with two sets of limiting sliding grooves.
[0010] Preferably, the outer side of the driving gear is provided with a gear box, and the gear box is arranged between the main support and the limiting frame.
[0011] Preferably, the two sides of the gear box are provided with two sets of movable grooves, and the movable grooves are arranged at the outer side of the rotating shaft.
[0012] Preferably, the input end of the rotating shaft is provided with a driving motor, and the driving motor is arranged at the right side of the limiting sliding block at the upper right.
[0013] Preferably, the outer side of the bidirectional screw rod is provided with a welding frame, and the welding frame is arranged at the inner side of the gear box.
[0014] Preferably, the top and bottom of the inner side of the fixed frame are provided with limiting sliding rails, and the limiting sliding rails are arranged at the top and bottom of the guiding sliding block.
[0015] Compared with the prior art, the present application has the following advantages:
[0016] 1. The adjusting assembly is installed, the limiting sliding block can be pushed to slide along the limiting sliding groove by the hydraulic rod, in the adjusting process, the driving gear is pushed to move to the middle part along the movable groove to adjust the interval of the calender roller, the fixed motor needs to control the rotation of the bidirectional screw rod synchronously during the adjustment, the rotation drives the sliding block limiting sleeve to slide along the inner side of the welding frame, in the sliding process, the height of the limiting shaft is lifted, the limiting shaft drives the movable sleeve to slide along the inner side of the limiting ring, in the sliding process, the limiting guide rod slides along the inner side of the sliding block limiting sleeve due to the limitation of the limiting ring, the height of the sliding block limiting sleeve is fixed, so that the limiting shaft can only correspond to the height position at the inner side of the limiting ring, therefore, the position of the transmission gear can be controlled by the fixed motor, the interval of the calender roller can be adjusted flexibly by the adjusting assembly, and single motor driving can be guaranteed, so that the cost is reduced.
[0017] 2, the utility model discloses a guide assembly is installed, and the existing calendering roll needs multiple calendering structures to carry out calendering treatment to non -ferrous metal, because there is distance between, so staff needs to utilize clamping structure to control the end of non -ferrous metal and move to another group of calendering roll between, increase the work pressure and the security risk of staff, the fixed frame can be installed to the structure of inside position through the installation, the connecting plate can be driven along the step -screw rod and moves and adjusts under the control of telescopic push rod, can drive the clamping block to the middle and carry out clamping to non -ferrous metal, after clamping, drive non -ferrous metal to enter another group of calendering roll inside and carry out processing treatment, effectively reduce the work pressure and the security risk. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 It is main body structure schematic diagram of the utility model;
[0019] Figure 2 It is calendering roll structure schematic diagram of the utility model;
[0020] Figure 3 It is driving gear section schematic diagram of the utility model;
[0021] Figure 4 It is spacing guide rod section schematic diagram of the utility model;
[0022] Figure 5 It is clamping block structure schematic diagram of the utility model.
[0023] Wherein: 1, main support, 101, support seat, 102, spacing frame, 103, spacing sliding slot, 2, transmission gear, 201, gear box, 202, movable slot, 203, spacing ring, 204, movable sleeve, 3, calendering roll, 301, spacing sliding block, 302, rotating shaft, 303, drive motor, 304, driving gear, 305, hydraulic rod, 4, spacing shaft, 401, welded frame, 402, bidirectional screw rod, 403, fixed motor, 404, sliding block spacing sleeve, 405, spacing guide rod, 406, spacing disc, 5, clamping block, 501, fixed frame, 502, spacing sliding rail, 503, step screw rod, 504, step motor, 505, guide sliding block, 506, connecting plate, 507, fitting groove, 508, telescopic push rod. DETAILED DESCRIPTION
[0024] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model and not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the utility model.
[0025] Please refer to Figures 1-5 The non-ferrous metal smelting and rolling device comprises three groups of main supports 1, two ends of the main support 1 are provided with an adjusting assembly, and the adjusting assembly is used for flexibly adjusting the distance between the rolling structures to adapt to different requirements, guide assemblies are arranged between the main supports 1, and the guide assemblies are used for guiding the non-ferrous metal to the inside of the next group of rolling structures for rolling;
[0026] The adjusting assembly comprises two groups of driving gears 304, rotating shafts 302 are arranged at the middle portions of the driving gears 304, limit sliding blocks 301 are arranged at the outer sides of the two ends of the rotating shaft 302, hydraulic rods 305 are arranged at the top portions of the inner sides of the limit sliding blocks 301, two groups of transmission gears 2 are arranged in meshing mode at the back surfaces of the driving gears 304, movable sleeves 204 are arranged at the middle portions of the transmission gears 2, inclined limit rings 203 are arranged at the outer sides of the movable sleeves 204, limit shafts 4 are arranged in the interiors of the movable sleeves 204, limit guide rods 405 are arranged at the back surfaces of the limit shafts 4, sliding block limit sleeves 404 are arranged at the outer sides of the limit guide rods 405, bidirectional screw rods 402 are arranged at the inner sides between the sliding block limit sleeves 404, and fixed motors 403 are arranged at the middle portions of the bidirectional screw rods 402.
[0027] The guide assembly comprises two groups of fixed frames 501, step lead screws 503 are arranged at the middle portions of the fixed frames 501, step motors 504 are arranged at the outer sides of the step lead screws 503, guide sliding blocks 505 are arranged at the outer sides of the step motors 504, the guide sliding blocks 505 are located at the inner sides of the fixed frames 501, two groups of connecting plates 506 are arranged between the guide sliding blocks 505, telescopic push rods 508 are arranged at the top portions and the bottom portions of the connecting plates 506, and clamping blocks 5 are arranged at the output ends of the telescopic push rods 508.
[0028] Through the above technical scheme, the limit sliding block 301 can be pushed to slide and adjust along the limit sliding groove 103 by the hydraulic rod 305, in the adjusting process, the driving gear 304 is pushed to move to the middle along the movable groove 202 to adjust the interval of the rolling roller 3, the fixed motor 403 needs to synchronously control the bidirectional screw rod 402 to rotate during the adjusting, the rotation drives the sliding block limit sleeve 404 to slide along the inner side of the welded frame 401, in the sliding process, the height of the limit shaft 4 is lifted, the limit shaft 4 drives the movable sleeve 204 to slide along the inner side of the limit ring 203, at the same time, the limit guide rod 405 slides along the inner side of the sliding block limit sleeve 404 due to the limitation of the limit ring 203, the height of the sliding block limit sleeve 404 is fixed, so that the limit shaft 4 can only correspond to the height position in the inner side of the limit ring 203, so the position of the transmission gear 2 can be controlled by the fixed motor 403, the interval of the rolling roller 3 can be flexibly adjusted by the adjusting assembly, and the single motor driving can be guaranteed, and the cost is reduced.
[0029] Through the technical scheme, the fixing frame 501 can provide a mounting position for the structure on the inner side, the stepping motor 504 can drive the connecting plate 506 to move along the stepping lead screw 503 for adjustment, and the clamping block 5 can be driven to move to the middle under the control of the telescopic push rod 508 to clamp the non-ferrous metal, and after clamping, the non-ferrous metal can be driven to enter the inner side of another set of calender rolls 3 for processing, thereby effectively reducing the work pressure and safety hazards.
[0030] Specifically, the bottom of the main support 1 is provided with a supporting seat 101, and the outer side of the main support 1 is provided with a limiting frame 102, and two sets of limiting sliding grooves 103 are formed in the inner side of the limiting frame 102, and the limiting sliding grooves 103 are located on the outer side of the limiting sliding block 301.
[0031] Through the technical scheme, the supporting seat 101 can provide support for the structure on the top, the limiting frame 102 can provide limitation for the structure on the inner side, and the limiting sliding grooves 103 can keep the stability of the sliding of the limiting sliding block 301.
[0032] Specifically, the outer side of the driving gear 304 is provided with a gear box 201, and the gear box 201 is located between the main support 1 and the limiting frame 102.
[0033] Through the technical scheme, the gear box 201 can provide a mounting position for the structure on the inner side.
[0034] Specifically, two sets of movable grooves 202 are formed in the two sides of the gear box 201, and the movable grooves 202 are located on the outer side of the rotating shaft 302, and the limiting ring 203 is located on the two sides inside the gear box 201.
[0035] Through the technical scheme, the movable grooves 202 can limit the rotating shaft 302.
[0036] Specifically, the input end of the rotating shaft 302 is provided with a driving motor 303, and the driving motor 303 is located on the right side of the limiting sliding block 301 on the upper right, and the calender roll 3 is installed in the middle of the rotating shaft 302.
[0037] Through the technical scheme, the driving motor 303 is electrified to drive the rotating shaft 302 to rotate and adjust, and the calender roll 3 can calender the non-ferrous metal.
[0038] Specifically, the outer side of the bidirectional screw rod 402 is provided with a welding frame 401, and the welding frame 401 is located on the inner side of the gear box 201, the back of the limiting guide rod 405 is provided with a limiting disc 406, and the fixed motor 403 is located on the inner side of the welding frame 401.
[0039] Through the technical scheme, the welding frame 401 can provide limitation for the bidirectional screw rod 402 and the fixed motor 403 on the inner side, and the limiting guide rod 405 is located on the inner side of the main body support 1 and the limiting frame 102.
[0040] Specifically, the top and bottom of the inner side of the fixed frame 501 are provided with limiting sliding rails 502, the top and bottom of the limiting sliding rails 502 are provided with guide sliding blocks 505, the inner side of the connecting plate 506 is provided with a matching groove 507, and the matching groove 507 is located on the outer side of the clamping block 5.
[0041] Through the technical scheme, the limiting sliding rail 502 can provide limitation for the guide sliding block 505, and the matching groove 507 can provide a storage position for the clamping block 5.
[0042] In use, first, according to the requirement, the hydraulic rod 305 is adjusted by using the external control device, the adjustment drives the limiting sliding block 301 to move, and in the moving process, the rotating shaft 302 slides along the inner side of the movable groove 202, so that the effect of adjusting the interval of the calendering roller 3 is achieved, at the same time of adjusting, the fixed motor 403 drives the bidirectional screw rod 402 to rotate, the rotation drives the sliding block limiting sleeve 404 to move outward or inward to adjust the height, at the time of adjusting, the limiting shaft 4 synchronously adjusts the position of the transmission gear 2, ensures that the transmission gear 2 and the driving gear 304 are in meshing state, ensures that the driving motor 303 can drive the calendering roller 3 to carry out calendering treatment on the non-ferrous metal, after once calendering treatment, the two groups of telescopic push rods 508 drive the clamping block 5 to clamp the non-ferrous metal, then the clamping block 5 is controlled to move by using the stepping motor 504, finally, the end of the non-ferrous metal is guided to contact the inner side of the other group of calendering rollers 3 to carry out calendering processing.
[0043] Although the embodiments of the utility model have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to the embodiments without departing from the principles and spirits, the scope of the utility model is defined by the appended claims and their equivalents.
Claims
1. A non-ferrous metal smelting and rolling device, comprising three sets of main body supports (1), characterized in that: Adjustment components are provided at both ends of the main support (1), and the adjustment components are used to flexibly adjust the distance between the rolling structures to adapt to different needs. A guide component is provided between the main supports (1), and the guide component is used to guide the non-ferrous metal to the inner side of the next group of rolling structures for processing; The adjustment assembly includes two sets of driving gears (304), and a rotating shaft (302) is installed in the middle of the driving gear (304). The outer sides of the two ends of the rotating shaft (302) are provided with limit sliders (301), and the top of the inner limit slider (301) is provided with a hydraulic rod (305). The back of the driving gear (304) is meshed with two sets of transmission gears (2), and a movable sleeve (204) is installed in the middle of the transmission gear (2). An inclined limiting ring (203) is provided on the outer side of the movable sleeve (204), and a limiting shaft (4) is provided inside the movable sleeve (204). A limiting guide rod (405) is installed on the back side of the limiting shaft (4), and a slider limiting sleeve (404) is provided on the outer side of the limiting guide rod (405). A bidirectional screw (402) is provided on the inner side between the slider limiting sleeves (404), and a fixed motor (403) is installed in the middle of the bidirectional screw (402). The guide assembly comprises two groups of fixed frames (501), and a stepping screw (503) is installed in the middle of the fixed frame (501), a stepping motor (504) is arranged on the outside of the stepping screw (503), and a guide slider (505) is arranged on the outside of the stepping motor (504), the guide slider (505) is located on the inner side of the fixed frame (501), and two groups of connecting plates (506) are installed between the guide sliders (505), a telescopic push rod (508) is installed on the top and bottom of the connecting plate (506), and a clamping block (5) is installed on the output end of the telescopic push rod (508).
2. The non-ferrous metal smelting and rolling device according to claim 1, characterized in that: A support seat (101) is installed at the bottom of the main frame (1), and a limit frame (102) is installed on the outside of the main frame (1), and two groups of limit sliding grooves (103) are opened on the inside of the limit frame (102), and the limit sliding grooves (103) are located on the outside of the limit sliding block (301).
3. The non-ferrous metal smelting and rolling device according to claim 1, characterized in that: A gear box (201) is provided on the outside of the driving gear (304), and the gear box (201) is located between the main frame (1) and the limiting frame (102).
4. The non-ferrous metal smelting and rolling device according to claim 3, characterized in that: Two sets of movable grooves (202) are respectively provided on both sides of the gear box (201), and the movable grooves (202) are located outside the rotating shaft (302), and the limiting rings (203) are located on both sides inside the gear box (201).
5. The non-ferrous metal smelting and rolling device according to claim 1, characterized in that: The input end of the rotating shaft (302) is provided with a driving motor (303), and the driving motor (303) is located on the right side of the upper right limiting slider (301), and a calendering roller (3) is installed in the middle of the rotating shaft (302).
6. The non-ferrous metal smelting and rolling device according to claim 1, characterized in that: A welding frame (401) is provided on the outside of the bidirectional screw (402), and the welding frame (401) is located on the inside of the gear box (201). A limiting disk (406) is installed on the back of the limiting guide rod (405), and the fixed motor (403) is located on the inside of the welding frame (401).
7. The non-ferrous metal smelting and rolling device according to claim 1, characterized in that: Limiting rails (502) are installed on the top and bottom of the inner side of the fixed frame (501), and the limiting rails (502) are located at the top and bottom of the guide slider (505). An engaging groove (507) is opened on the inner side of the connecting plate (506), and the engaging groove (507) is located on the outer side of the clamping block (5).