Intelligent disc casting machine for lead anode

By introducing a power unit, support mechanism, lifting mechanism, and lubrication system into the lead anode casting machine, the problems of unstable rotation of the heavy-duty disc and unreliable demolding were solved, realizing stable operation and intelligent control of the lead anode casting machine, and improving production safety and environmental protection.

CN116274957BActive Publication Date: 2026-01-09ZHUZHOU YUANDONG GENERAL MASCH MFG CO LTD +1
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Patent Information

Application Number
CN202310316941.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-03-29
Publication Date
2026-01-09
Estimated Expiration
2043-03-29

AI Technical Summary

Technical Problem

Existing lead anode casting machines have shortcomings in terms of heavy-duty disc rotation stability, lead anode demolding reliability, effective lubrication of the transmission system, overall machine intelligence, and on-site safety and cleanliness.

Method used

The rotating mechanism is driven by a power unit, combined with a support mechanism, a lifting mechanism, a lubrication system, and a control device to achieve rotational movement and automatic lubrication. The support mechanism compensates for uneven ground foundations, the lubrication system automatically adds oil, and the control device controls the water level to ensure the stability and safety of the entire machine.

Benefits of technology

It improves the rotational stability of the heavy-duty disc, ensures reliable demolding of the lead anode, achieves effective lubrication of the transmission system, enhances the overall intelligence of the machine, and maintains a safe and clean production site.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application provides a lead anode intelligent disc casting machine, which specifically comprises a power device, a rotating mechanism, a supporting mechanism, a pouring system, a jacking mechanism, a supporting track, a jacking track, a lubricating system and a control device; the control device controls the power device to drive the rotating mechanism to perform rotating movement, the pouring system pours lead liquid into a mold, and the jacking mechanism moves on the jacking track and then pushes out the cooled and shaped lead plate; during the movement of the supporting mechanism along with the power device, the compression spring effectively compensates for the manufacturing process tolerance and the uneven ground foundation, so that the rotating mechanism runs stably; the lubricating system automatically pumps oil, so that the power device can achieve the lubricating effect without stopping, the excess lubricating grease is stored in an oil receiving disc, and the small gear is further lubricated; the water storage disc is provided with cooling water, and a water level parameter controller controls the water level, so that the cooling water cannot overflow the guide sleeve. The application can realize automatic leveling, automatic lubrication and automatic water level control, and is safe and efficient in production.
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Description

TECHNICAL FIELD

[0001] The present application relates to a lead anode casting machine, in particular to an intelligent disc casting machine for lead anode. BACKGROUND

[0002] The lead anode casting machine is the key equipment in the lead electrolysis production process, which is composed of a quantitative pouring device, a disc casting machine, a plate taking device, a plate arranging device, a hydraulic system, an electrical control system, etc., to realize the functions of quantitative pouring, disc casting, plate taking, and equidistant plate arranging. The disc casting machine is the core of the whole machine set, which determines the production quality, production efficiency, and reliability of the lead anode.

[0003] In order to meet the above technical needs, domestic and foreign scholars have carried out research and development of lead anode casting machines. The paper "Design and Application of Lead Anode Disc Casting Machine Set, Hunan Nonferrous Metals, 2004, 20(1): 54-56" and "Design of Lead Anode Casting Machine Set in Chengyuan Smelting Plant, Nonferrous Equipment, 2004(1): 12-13, 46" have developed a lead anode disc casting machine set, especially for the disc casting machine, which adopts three measures, i.e., increasing the liquid flow area of the pouring chute pouring port, reducing the distance between the pouring chute and the anode mold to achieve rapid pouring; adding cooling ribs at the bottom of the anode mold to increase the cooling area; improving the structure of the cooling water tank at the bottom of the anode mold to facilitate heat exchange and achieve rapid cooling. These works have good effects on rapid pouring, rapid cooling to prevent the formation of supersaturated lead-antimony alloy. However, the stability of the heavy-duty disc rotation, the reliability of the lead anode demolding, the effective lubrication of the transmission system, the intelligence of the whole machine, and the safety and cleanliness of the site need to be further improved and optimized.

[0004] The invention patent "Water-cooled vertical lead anode casting mold" with publication number "CN103658606 A" and the utility model patent "Water-cooled vertical lead anode casting mold" with publication number "CN203649317 U" (both have the same application date, applicant, and inventor, and basically the same claim) relate to a water-cooled vertical lead anode casting mold, which is composed of a static mold and a dynamic mold. The static mold and the dynamic mold each include an outer panel, a rib panel, an inner panel, a cooling water inlet pipe, and a cooling water outlet pipe. The cooling cavity is formed between the outer panel and the inner panel, and two cooling water inlet pipes are symmetrically arranged at the lower part of the cooling cavity. The outer panel is provided with a rib panel. The invention has the advantages of good heat dissipation, no cracking and water leakage, corrosion resistance, high temperature resistance, and long service life. However, this patent mainly focuses on the improvement of the casting mold, and rarely involves the structure of the lead anode casting machine. SUMMARY

[0005] To solve the existing problems, the application provides a lead anode intelligent disc casting machine, which is used for solving the problems of heavy load disc rotation stability, lead anode demolding reliability, transmission system effective lubricity, whole machine intelligence and on-site safety and tidiness in the lead anode casting process. The control device controls the power device to drive the rotating mechanism to rotate, the pouring system pours lead liquid into the mold, and the jacking mechanism moves on the jacking track to reliably eject the cooled and shaped lead plate; the supporting mechanism moves with the power device, the compression spring effectively compensates for the manufacturing process tolerance and the uneven ground foundation, so that the rotating mechanism runs stably; the lubricating system automatically pumps oil to achieve the lubricating effect without stopping the power device, and the excess lubricating grease is stored in the oil pan to further lubricate the pinion; the water storage disc is provided with cooling water, and the water level parameter controller controls the water level to prevent the cooling water from overflowing the guide sleeve, so that the whole machine works intelligently and safely and efficiently.

[0006] In order to achieve the above purpose, a lead anode intelligent disc casting machine is characterized in that the device comprises a power device, a rotating mechanism, a supporting mechanism, a pouring system, a jacking mechanism, a supporting track, a jacking track, a lubricating system and a control device; the supporting mechanism and the jacking mechanism have multiple sets and are evenly arranged on the rotating mechanism, the lubricating system is arranged on the fixed base of the rotating mechanism, and the power device, the pouring system and the control device are arranged on the ground foundation.

[0007] The power device comprises a base, a motor mounting plate, a motor, a shaft coupling and a pinion; the motor mounting plate is connected with the base, the motor is mounted on the motor mounting plate, the motor and the pinion are connected through the shaft coupling, and the motor drives the pinion through the shaft coupling to drive the rotating mechanism to move.

[0008] The rotating mechanism comprises a fixed base, a rotary support, a support seat, a support beam, a cooling water disc and an anode mold; the support beam is fixed on the support seat, the cooling water disc is fixed on the support beam, and the anode mold is fixed in the cooling water disc; the support beam and the anode mold have multiple groups, and the number of groups of the two is equal; the power device drives the rotating mechanism to rotate.

[0009] The supporting mechanism comprises a guide rod, a compression spring, a wheel seat, a wheel set one and a pressing plate one; the guide rod connects the wheel seat with the support beam, and the wheel set one is mounted on the wheel seat through the pressing plate one; the compression spring is mounted between the wheel seat and the support beam and is constrained by the guide rod; due to the unevenness of the ground foundation and the supporting track itself, there is often a large height difference on the working surface of the supporting track, and when the power device drives the rotating mechanism to rotate on the uneven supporting track, the supporting mechanism can ensure that the wheel set one is always in adaptive contact with the supporting track and bears the load of the lead anode casting device.

[0010] The pouring system comprises a pump station, a pipeline and a bracket; the pipeline is connected with the pump station and fixed on the bracket, and used for pouring lead liquid into the anode mold.

[0011] The jacking mechanism comprises a jacking rod, a bearing seat, a guide key, an axle seat, and a wheel set II; the jacking rod is installed on the anode mold; the guide key is installed on the axle seat, and the jacking mechanism is fixed on the cooling water disc; the jacking mechanism is driven by the power device to rotate and move up and down to achieve the action of ejecting the lead anode; the jacking rod of the jacking mechanism passes through the guide hole on the anode mold, and then passes through the guide sleeve and the cooling water disc.

[0012] The support rail is fixed on the ground reference, and the support mechanism moves on the support rail.

[0013] The jacking rail is fixed on the ground reference and is in a wavy shape; the jacking mechanism moves on the wavy jacking rail, and the jacking rod moves up and down regularly to achieve the demolding of the lead anode and the self-resetting.

[0014] The lubricating system comprises an oil pump, an oil pipe, and an oil receiving disc; the oil pump is connected with the oil pipe and is fixed on the outer ring of the fixed base, and the oil receiving disc is fixed on the inner ring of the fixed base; the oil pump pumps lubricating grease to the slewing bearing and the pinion gear in a set period, and the excess lubricating grease is stored in the oil receiving disc to further lubricate the meshing area of the pinion gear and the slewing bearing.

[0015] The control device comprises a control box, a touch screen, and a control system; the control system transmits signals to the sensor through the touch screen to control the working parameters of the power device, the pump station of the casting system, and the cooling water disc.

[0016] The cooling water disc comprises a water storage disc and a guide sleeve; the guide sleeve is welded on the water storage disc; the water storage disc contains cooling water, and the water level of the cooling water is always lower than the height of the guide sleeve; the water level parameter is controlled by the control system, so that the cooling water does not overflow the guide sleeve, thereby preventing the jacking mechanism and the jacking rail from rusting prematurely and maintaining the safety and tidiness of the working site.

[0017] The power device drives the rotating mechanism to rotate, and the jacking mechanism moves on the jacking rail to eject the cooled anode plate in the anode mold; the anode molds are evenly installed on the rotating mechanism; the support beams and the anode molds have multiple groups, which means eight to twenty-four groups; the support mechanisms and the jacking mechanisms have multiple sets, which means eight to twenty-four sets.

[0018] The support mechanism compensates for the tolerance of the manufacturing process and the unevenness of the ground foundation through the compression spring, so that the rotating mechanism can run smoothly; the rotating mechanism, the support mechanism, and the anode mold are welded using structural components.

[0019] The lubricating system can realize automatic oiling, solves the difficulty of manual oiling, and the oil seeping out during the movement process falls into the oil receiving disc to lubricate the pinion gear and protect the production environment.

[0020] The water storage disc adds cooling water, and is waterproofed by a waterproof base plate, and especially cooperates with the height of the guide sleeve and the water level controller to control the water depth to prevent water seepage, thereby ensuring production safety.

[0021] Compared with the prior art, the lead anode intelligent disc casting machine has the beneficial effects that.

[0022] ①The heavy load disc has good stability. The working surface of the support rail often has a large height difference due to uneven ground foundation and the support rail itself. The wheel set one and the support rail are always in self-adaptive contact through the guide rod and the compression spring coupling between the wheel seat and the support beam, and the compression spring of the support mechanism can uniformly bear the load of the lead anode casting device when the rotating mechanism rotates on the uneven support rail, which ensures that the heavy load disc does not vibrate greatly when rotating and has good stability.

[0023] ②The lead anode has high reliability in demolding. The jacking rail is fixed on the ground reference and is in a wavy shape. The jacking mechanism moves on the wavy jacking rail, and the jacking rod moves up and down along the guide hole of the anode mold in a regular manner to realize demolding of the lead anode at the appropriate time, and can be reset itself to ensure reliable demolding of the lead anode.

[0024] ③The transmission system can be effectively lubricated. The oil pump pumps lubricating grease to the rotary support and the pinion gear at a set period to lubricate the meshing area. The excess lubricating grease flows into and is stored in the oil pan, which can continuously lubricate the meshing area, reduce the friction and wear of the meshing area, and improve the gear transmission efficiency.

[0025] ④The whole machine has high intelligence. The control device can automatically control the working parameters of the power device speed, the pump station flow of the pouring system, and the water level of the cooling water disc. Based on the wavy structure of the jacking rail, the jacking mechanism can jack out the lead anode in real time. The compression spring can ensure that the wheel set one and the support rail are always in self-adaptive contact. This series of innovative structures improves the intelligence of the whole machine.

[0026] ⑤The site is safe and clean. The control system ensures that the water level of the cooling water is always lower than the height of the guide sleeve, so that the cooling water does not overflow the guide sleeve. The waterproof base plate cooperates with the waterproofing to effectively prevent the jacking mechanism and the jacking rail from rusting too early, and to maintain the safety and cleanliness of the work site. BRIEF DESCRIPTION OF DRAWINGS

[0027] Figure 1 is a whole structure schematic diagram of the present application.

[0028] Figure 2 is Figure 1 a power device structure schematic diagram in

[0029] Figure 3 isFigure 1 Rotary mechanism structure schematic view in

[0030] Figure 4 Figure 1 Support mechanism structure schematic view in

[0031] Figure 5 Figure 1 Pouring system structure schematic view in

[0032] Figure 6 Figure 1 Jacking mechanism structure schematic view in

[0033] Figure 7 Figure 1 Jacking track structure schematic view in

[0034] Figure 8 Figure 1 Lubricating system structure schematic view in

[0035] Figure 9 Figure 1 Control device structure schematic view in

[0036] Figure 10 Figure 1 Cooling water disc structure schematic view in

[0037] Above Figures 1 to 10 1, power device, 1-1, machine base, 1-2, motor mounting plate, 1-3, motor, 1-4, coupling, 1-5, pinion; 2, rotary mechanism, 2-1, fixed base, 2-2, rotary support, 2-3, support seat, 2-4, support beam, 2-5, cooling water disc, 2-5-1, water storage disc, 2-5-2, guide sleeve, 2-6, anode mold; 3, support mechanism, 3-1, guide rod, 3-2, compression spring, 3-3, wheel seat, 3-4, wheel group one, 3-5, pressing plate one; 4, pouring system, 4-1, pump station, 4-2, pipeline, 4-3 support; 5, jacking mechanism, 5-1, jacking rod, 5-2, bearing seat, 5-3, guide key, 5-4, wheel shaft seat, 5-5, wheel group two; 6, support track; 7, jacking track; 8, lubricating system, 8-1, oil pump, 8-2, oil pipe, 8-3, oil receiving disc; 9, control device, 9-1, control box, 9-2, touch screen, 9-3, control system. DETAILED DESCRIPTION

[0038] The technical solutions of the present application will be further described below with reference to the drawings.

[0039] ​​​​​​​The application relates to a lead anode intelligent disc casting machine, characterized by comprising a power device 1, a rotating mechanism 2, a supporting mechanism 3, a pouring system 4, a jacking mechanism 5, a supporting track 6, a jacking track 7, a lubricating system 8 and a control device 9; the supporting mechanism 3 and the jacking mechanism 5 are 12 sets and are uniformly arranged on the rotating mechanism 2, the lubricating system 8 is arranged on a fixed base 2-1 of the rotating mechanism 2, and the power device 1, the pouring system 4 and the control device 9 are arranged on a ground base.

[0040] The power device 1 comprises a base 1-1, a motor mounting plate 1-2, a motor 1-3, a shaft coupling 1-4 and a pinion 1-5; the motor mounting plate 1-2 is connected with the base 1-1, the motor 1-3 is arranged on the motor mounting plate 1-2, the motor 1-3 and the pinion 1-5 are coupled through the shaft coupling 1-4, and the motor 1-3 drives the pinion 1-5 through the shaft coupling 1-4, so as to drive the rotating mechanism 2 to move.

[0041] The rotating mechanism 2 comprises a fixed base 2-1, a rotary support 2-2, a supporting seat 2-3, a supporting beam 2-4, a cooling water disc 2-5 and an anode mould 2-6; the supporting beam 2-4 is fixed on the supporting seat 2-3, the cooling water disc 2-5 is fixed on the supporting beam 2-4, and the anode mould 2-6 is fixed in the cooling water disc 2-5; the supporting beam 2-4 and the anode mould 2-6 are each 12 groups; the power device 1 drives the rotating mechanism 2 to rotate.

[0042] The supporting mechanism 3 comprises a guide rod 3-1, a compression spring 3-2, a wheel seat 3-3, a wheel group 3-4 and a pressing plate 3-5; the guide rod 3-1 connects the wheel seat 3-3 with the supporting beam 2-4, the wheel group 3-4 is arranged on the wheel seat 3-3 through the pressing plate 3-5, and the compression spring 3-2 is arranged between the wheel seat 3-3 and the supporting beam 2-4 and is constrained by the guide rod 3-1; because the ground base and the supporting track 6 are not flat, the working surface of the supporting track 6 often has a large height difference, when the power device 1 drives the rotating mechanism 2 to rotate on the uneven supporting track 6, the supporting mechanism 3 can ensure that the wheel group 3-4 is always in adaptive contact with the supporting track 6 and bears the load of the lead anode casting device, so that the stability of the heavy load disc is good.

[0043] The pouring system 4 comprises a pump station 4-1, a pipeline 4-2 and a support 4-3; the pipeline 4-2 is connected with the pump station 4-1 and is fixed on the support 4-3 and used for pouring lead liquid into the anode mould 2-6.

[0044] The jacking mechanism 5 comprises a jacking rod 5-1, a bearing seat 5-2, a guide key 5-3, an axle seat 5-4, and a wheel set 5-5; the jacking rod 5-1 is installed on the anode mold 2-6; the guide key 5-3 is installed on the axle seat 5-4, and the jacking mechanism 5 is fixed on the cooling water disc 2-5; the jacking mechanism 5 is driven to move up and down by the rotating mechanism 2 driven by the power device 1 to achieve the action of jacking out the lead anode; the jacking rod 5-1 of the jacking mechanism 5 passes through the guide hole on the anode mold 2-6, and then passes through the guide sleeve 2-5-2 and the cooling water disc 2-5.

[0045] The support rail 6 is fixed on the ground reference, and the support mechanism 3 moves on the support rail 6.

[0046] The jacking rail 7 is fixed on the ground reference and is in a wavy shape; the jacking mechanism 5 moves on the wavy jacking rail 7, and the regular up-and-down movement of the jacking rod 5-1 can achieve the demolding of the lead anode at the right time and reset itself, thereby ensuring the reliable demolding of the lead anode.

[0047] The lubricating system 8 comprises an oil pump 8-1, an oil pipe 8-2, and an oil receiving disc 8-3; the oil pump 8-1 is connected with the oil pipe 8-2 and is fixed on the outer ring of the fixed base 2-1; the oil receiving disc 8-3 is fixed on the inner ring of the fixed base 2-1; the oil pump 8-1 pumps lubricating grease to the slewing bearing 2-2 and the pinion 1-5 in a set period, and the excess lubricating grease is stored in the oil receiving disc 8-3; the lubricating grease can continuously lubricate the meshing area of the pinion 1-5 and the slewing bearing 2-2, thereby reducing the friction and wear of the meshing area and improving the gear transmission efficiency.

[0048] The control device 9 comprises a control box 9-1, a touch screen 9-2, and a control system 9-3; the control system 9-3 transmits signals to the sensors through the touch screen 9-2, thereby controlling the working parameters of the power device 1, the pump station 4-1 of the casting system 4, and the cooling water disc 2-5.

[0049] The cooling water disc 2-5 comprises a water storage disc 2-5-1 and a guide sleeve 2-5-2; the guide sleeve 2-5-2 is welded on the water storage disc 2-5-1; the water storage disc 2-5-1 is filled with cooling water, and the water level of the cooling water is always lower than the height of the guide sleeve 2-5-2; the water level parameter is controlled by the control system 9-3, so that the cooling water does not overflow the guide sleeve 2-5-2, thereby preventing the jacking mechanism 5 and the jacking rail 7 from rusting too early and keeping the working site safe and clean.

[0050] The power device 1 drives the rotating mechanism 2 to move in rotation, and the jacking mechanism 5 moves on the jacking rail 7 to jack out the cooled anode plate in the anode mold 2-6; the anode mold 2-6 is evenly installed on the rotating mechanism 2.

[0051] The supporting mechanism 3 can compensate the tolerance of the manufacturing process and the uneven ground foundation by the compression spring 3-2, so that the rotating mechanism 2 can run smoothly; the rotating mechanism 2, the supporting mechanism 3 and the anode mold 2-6 are welded by structural members.

[0052] The lubricating system 8 can realize automatic oiling, solves the difficulty of manual oiling, and the oozed-out oil during the movement can fall into the oil receiving disc 8-3, lubricates the pinion 1-5, and protects the production environment.

[0053] The water storage disc 2-5-1 adds cooling water, uses the waterproof pad to prevent water, especially cooperates with the water level controller to control the water level depth and prevent water seepage by the height of the guide sleeve 2-5-2, and guarantees the production safety.

[0054] The above examples are only specific examples for further detailing the purposes, technical solutions and beneficial effects of the present application, and the present application is not limited to this. Any equivalent replacement, modification and the like within the disclosed range of the present application are included in the protection scope of the present application.

Claims

1. A lead anode intelligent disc casting machine, comprising a power device (1), a rotating mechanism (2), a supporting mechanism (3), a pouring system (4), a jacking mechanism (5), a supporting rail (6) and a jacking rail (7), the supporting mechanism (3) and the jacking mechanism (5) have multiple sets and are evenly installed on the rotating mechanism (2); the supporting rail (6) is fixed on the ground reference, and the supporting mechanism (3) moves on the supporting rail (6); the jacking rail (7) is fixed on the ground reference and is in a wavy shape, and the jacking mechanism (5) moves on the wavy jacking rail (7), and the jacking rod (5-1) of the jacking mechanism (5) moves up and down regularly to realize lead anode demolding and self-resetting; characterized in that: The casting machine further comprises a lubricating system (8) and a control device (9), the lubricating system (8) is installed on the fixed base (2-1) of the rotating mechanism (2), the power device (1), the pouring system (4) and the control device (9) are installed on the ground base; The power device (1) comprises a base (1-1), a motor mounting plate (1-2), a motor (1-3), a shaft coupling (1-4) and a pinion (1-5); the motor mounting plate (1-2) is connected with the base (1-1), the motor (1-3) is installed on the motor mounting plate (1-2), the motor (1-3) and the pinion (1-5) are connected through the shaft coupling (1-4), the motor (1-3) drives the pinion (1-5) through the shaft coupling (1-4), thereby driving the rotating mechanism (2) to move; The rotating mechanism (2) comprises a fixed base (2-1), a rotary support (2-2), a support seat (2-3), a support beam (2-4), a cooling water disc (2-5) and an anode mold (2-6); the support beam (2-4) is fixed on the support seat (2-3), the cooling water disc (2-5) is fixed on the support beam (2-4), and the anode mold (2-6) is fixed in the cooling water disc (2-5); the support beam (2-4) and the anode mold (2-6) have multiple groups, and the number of groups of the two is equal; the power device (1) drives the rotating mechanism (2) to rotate; The support mechanism (3) comprises a guide rod (3-1), a compression spring (3-2), a wheel seat (3-3), a wheel set one (3-4) and a pressing plate one (3-5); the guide rod (3-1) connects the wheel seat (3-3) with the support beam (2-4), and the wheel set one (3-4) is installed on the wheel seat (3-3) through the pressing plate one (3-5); the compression spring (3-2) is installed between the wheel seat (3-3) and the support beam (2-4) and is constrained by the guide rod (3-1); due to the unevenness of the ground base and the support rail (6) itself, there is a large height difference on the working surface of the support rail (6), when the power device (1) drives the rotating mechanism (2) to rotate on the uneven support rail (6), the support mechanism (3) can ensure that the wheel set one (3-4) is always in adaptive contact with the support rail (6) and bears the load of the lead anode casting device under the elastic recovery action of the compression spring (3-2), thereby the tolerance of the manufacturing process and the unevenness of the ground base can be compensated, and the rotating mechanism (2) can run stably; The pouring system (4) comprises a pump station (4-1), a pipeline (4-2) and a support (4-3); the pipeline (4-2) is connected with the pump station (4-1) and fixed on the support (4-3), and is used for pouring lead liquid into the anode mold (2-6); The jacking mechanism (5) comprises a jacking rod (5-1), a bearing seat (5-2), a guide key (5-3), an axle seat (5-4), and a wheel set two (5-5); the jacking rod (5-1) is installed on the anode mold (2-6); the guide key (5-3) is installed on the axle seat (5-4), the jacking mechanism (5) is fixed on the cooling water disc (2-5), and the jacking mechanism (5) is driven to move up and down to achieve the action of jacking out the lead anode by driving the rotating mechanism (2) to rotate by the power device (1); the jacking rod (5-1) of the jacking mechanism (5) penetrates through the guide hole on the anode mold (2-6), and then penetrates through the cooling water disc (2-5) through the guide sleeve (2-5-2); The lubricating system (8) comprises an oil pump (8-1), an oil pipe (8-2), and an oil receiving disc (8-3); the oil pump (8-1) is connected with the oil pipe (8-2) and is fixed on the outer ring of the fixed base (2-1), and the oil receiving disc (8-3) is fixed on the inner ring of the fixed base (2-1); the oil pump (8-1) pumps the lubricating grease for the slewing bearing (2-2) and the pinion (1-5) in a set period, and can be set to automatically add grease, thereby solving the difficulty of manual oiling, and the exuded or excessive lubricating grease in the movement process can be stored in the oil receiving disc (8-3), the meshing area of the pinion (1-5) and the slewing bearing (2-2) can be continuously lubricated, and the production environment is protected; The control device (9) comprises a control box (9-1), a touch screen (9-2), and a control system (9-3); the control system (9-3) is connected with the touch screen (9-2) to transmit signals to the sensor, thereby controlling the working parameters of the power device (1), the pump station (4-1) of the pouring system (4), and the cooling water disc (2-5); The cooling water disc (2-5) comprises a water storage disc (2-5-1) and a guide sleeve (2-5-2); the guide sleeve (2-5-2) is welded on the water storage disc (2-5-1); the water storage disc (2-5-1) is provided with cooling water and is waterproofed by a waterproof pad; the water level of the cooling water is always lower than the height of the guide sleeve (2-5-2), the water level parameter is controlled by the control system (9-3), the height of the guide sleeve (2-5-2) and the water level controller are used to control the water level depth to prevent water seepage, so that the cooling water cannot overflow the guide sleeve (2-5-2), thereby preventing the jacking mechanism (5) and the jacking track (7) from being rusted too early, and keeping the working site safe and clean.

2. A lead anode intelligent round casting machine according to claim 1, characterized in that: The power device (1) drives the rotating mechanism (2) to rotate, the jacking mechanism (5) moves on the jacking track (7) to jack out the cooled anode plate in the anode mold (2-6); the anode molds (2-6) are evenly installed on the rotating mechanism (2); the support beams (2-4) and the anode molds (2-6) have multiple groups, which means eight to twenty-four groups; the support mechanisms (3) and the jacking mechanisms (5) have multiple sets, which means eight to twenty-four sets.

Citation Information

Patent Citations

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