Flotation machine motor mounting seat

By designing a multi-plate structure mounting plate and a flotation motor mount with a rotating mechanism, the problems of large size, heavy weight, difficult installation and maintenance, and lack of adjustment belt tensioning mechanism in the prior art are solved, and the stable fixation and flexible adjustment of the motor are achieved, and the flexibility and adaptability of the equipment are improved.

CN222981347UActive Publication Date: 2025-06-13XICHANG CHENGYI MINE MASCH FACTORY
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Patent Information

Application Number
CN202421963911.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-14
Publication Date
2025-06-13
Estimated Expiration
2034-08-14

AI Technical Summary

Technical Problem

The existing flotation motor mounts are made of cast parts, which are large in size and heavy in weight, are difficult to install and maintain, are not very practical and reliable, and lack a mechanism to flexibly adjust belt tension, making it difficult to adapt to different working speeds and load requirements.

Method used

A flotation machine motor mount is designed, using a multi-plate structure mounting plate and rotary mechanism, which enables stable fixation and flexible adjustment of the motor through fastening screws and bar holes. The rotary mechanism allows precise adjustment of the motor position and angle to adjust belt tension.

Benefits of technology

It improves the stability and installation convenience of the motor, simplifies the disassembly and replacement of the motor, enhances the flexibility and adaptability of the equipment, and ensures the normal operation of the belt under different production conditions.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of flotation machine motor mounting bases, in particular to a flotation machine motor mounting base which comprises a rack, supporting bases are welded to the left side and the right side of the top of the rack, transverse frames are welded to the two sides of the tops of the supporting bases, and a connecting support is welded to one side of the top of each transverse frame. The front side of the top end of the connecting support is rotationally connected with a rotating plate, the tail end of the rotating plate is rotationally connected with one side of a mounting plate, the other side of the mounting plate is rotationally connected with a rotating mechanism, and the rear side of the mounting plate is in threaded connection with a motor. According to the improved mounting base, mounting of the motor is completed through the mounting plate, the stability of the motor in the running process is improved, fastening screws penetrate through strip-shaped holes, the mounting process is simplified, daily inspection or replacement is facilitated, and the rotating mechanism allows a user to accurately adjust the position and angle of the motor to adjust the tensioning degree of a belt mechanism; therefore, different working speed and load requirements are met, and the flexibility and adaptability of the equipment are improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of a flotation machine motor mounting seat, in particular to a flotation machine motor mounting seat. Background Technique

[0002] The flotation machine is applicable to the separation of ferrous and non-ferrous metals, and can also be used for the separation of non-metals such as coal, fluorite, and talc. The flotation machine is driven by a motor through a V-belt to drive the impeller to rotate, generating a centrifugal force to form a negative pressure. On the one hand, sufficient air is inhaled to mix with the pulp, on the other hand, the pulp is stirred to mix with the drug, and at the same time, the foam is refined, so that the minerals adhere to the foam, float to the pulp surface and then form mineralized foam. The height of the gate plate is adjusted to control the liquid level, so that the useful foam is scraped out by the scraper.

[0003] The flotation machine motor mounting seat is used to fix the motor in a proper position and ensure that the motor remains stable during operation. It provides a solid support structure for the motor so that the motor can effectively transmit power or perform its intended function. The design and material selection of the flotation machine motor mounting seat depend on the type, size, weight of the motor, and the application environment.

[0004] The inventor found the following problems in the process of implementing the utility model in the prior art: 1. The early flotation machine motor mounting seats were all made of castings, which were large in volume, heavy in weight, extremely difficult to install and maintain, and had low practicality and reliability. At the same time, they were not convenient for assembly and disassembly; 2. In actual production, many different working speeds and load requirements will be faced, and its traditional flotation machine motor mounting seat lacks a mechanism that can flexibly adjust the belt tension. Content of the Utility Model

[0005] The purpose of the utility model is to provide a flotation machine motor mounting seat to solve the problems in the above-mentioned background technique that the early flotation machine motor mounting seats were all made of castings, which were large in volume, heavy in weight, extremely difficult to install and maintain, and had low practicality and reliability. At the same time, they were not convenient for assembly and disassembly and in actual production, many different working speeds and load requirements will be faced, and its traditional flotation machine motor mounting seat lacks a mechanism that can flexibly adjust the belt tension. To achieve the above purpose, the utility model provides the following technical solution: A flotation machine motor mounting seat, including a frame, support bases are welded on the left and right sides of the top of the frame, cross frames are welded on both sides of the top of the support bases, a connection bracket is welded on one side of the top of the cross frame, a rotating plate is rotatably connected to the front side of the top end of the connection bracket, the tail end of the rotating plate is rotatably connected to one side of a mounting plate, a rotating mechanism is rotatably connected to the other side of the mounting plate, a motor is threadedly connected to the rear side of the mounting plate, a belt mechanism is sleeved on the output end of the motor, and the other end of the belt mechanism is sleeved on a support rod.

[0006] Further preferably, the mounting plate is composed of a top plate, a pressing plate and a fixing plate, wherein the top plate is arranged at the upper and lower ends of the fixing plate, and the pressing plate is arranged on the opposite side of the upper top plate.

[0007] Further preferably, the rotating plate is composed of a plate body, a rotating shaft A and a rotating shaft B. The bottom end of the rotating shaft A vertically penetrates the overlapping surface of the plate body and the connecting bracket, and the rotating shaft A is rotationally connected to the plate body. The bottom end of the rotating shaft B vertically penetrates the overlapping surface of the plate body and the top plate, and the rotating shaft B is rotationally connected to the plate body.

[0008] Further preferably, the rotating mechanism is composed of a connecting collar, a rotating shaft C, a locking nut and a fixing ring. The fixing ring is welded to one side of the top of the connecting bracket. One end of the connecting collar is screwed to the inner wall of the fixing ring, and the other end is rotationally connected to the outer wall of the rotating shaft C. The upper and lower ends of the rotating shaft C are rotationally connected to one side of the pressing plate, and the locking nut is screwed to the outer wall of the rotating shaft C.

[0009] Further preferably, strip-shaped holes are provided at the four corners of the mounting plate, and the inner walls of the strip-shaped holes are threadedly connected to the motor through fastening screws.

[0010] Further preferably, the belt mechanism is composed of a driving wheel, a driven wheel and a belt. The driving wheel is sleeved on the output end, the driven wheel is sleeved on the top end of the support rod, and the belt is sleeved on the outer walls of the driving wheel and the driven wheel.

[0011] Further preferably, a support frame is attached to the bottom of the motor.

[0012] Compared with the prior art, the beneficial effects of the present utility model are:

[0013] In the present utility model, an operator can connect the motor to the connecting bracket through the mounting plate. The multi-plate structure design of the mounting plate increases the overall rigidity of the mounting plate and improves the stability of the motor during operation. By passing the fastening screws through the strip-shaped holes, the motor can be easily fixed to the mounting plate, simplifying the installation process. The design of the strip-shaped holes makes the disassembly and replacement of the motor simpler, facilitating maintenance personnel to perform daily inspections or replace components. The setting of the strip-shaped holes can provide an accurate installation position, ensuring the centering and stability of the motor during installation. The design of the mounting plate provides additional stability to the motor, helping to reduce vibration and displacement during operation.

[0014] In the present utility model, the rotating mechanism allows the user to precisely adjust the position and angle of the motor by rotating the connecting collar to meet the required tension of the belt mechanism. The design of the locking nut enables the rotating mechanism to quickly fix the positions of the mounting plate and the motor after adjustment, ensuring the stability and accuracy of the motor. Adjusting the tension of the belt through the rotating mechanism helps maintain the normal operation state of the belt under different production conditions and effectively prevents problems such as a decrease in transmission efficiency or damage caused by the belt being too loose or too tight. Moreover, according to different production requirements, adjusting the length of the belt can adapt to different working speeds and load requirements, thereby improving the flexibility and adaptability of the equipment. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 is a schematic three-dimensional structure diagram of the present utility model;

[0016] Figure 2 is a schematic structure diagram of the mounting plate of the present utility model;

[0017] Figure 3 is a schematic structure diagram of the rotating mechanism of the present utility model;

[0018] Figure 4 is a schematic structure diagram of the belt mechanism of the present utility model.

[0019] In the figure: 1, frame; 2, support base; 3, cross frame; 4, connecting bracket; 5, rotating plate; 501, plate body; 502, rotating shaft A; 503, rotating shaft B; 6, mounting plate; 601, top plate; 602, abutting plate; 603, fixing plate; 604, strip hole; 7, rotating mechanism; 701, connecting collar; 702, rotating shaft C; 703, locking nut; 704, fixing ring; 8, motor; 801, support frame; 9, belt mechanism; 901, driving wheel; 902, driven wheel; 903, belt; 10, support rod. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0020] The technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the protection scope of the present utility model.

[0021] Please refer to Figures 1 to 4, the present utility model provides a technical solution: a flotation machine motor mounting seat, including a frame 1, two support bases 2 are welded to the left and right sides of the top of the frame 1, cross frames 3 are welded to both sides of the top of the support bases 2, a connecting bracket 4 is welded to one side of the top of the cross frame 3, the front side of the top end of the connecting bracket 4 is rotatably connected to a rotating plate 5, the tail end of the rotating plate 5 is rotatably connected to one side of a mounting plate 6, the other side of the mounting plate 6 is rotatably connected to a rotating mechanism 7, the rear side of the mounting plate 6 is threadedly connected to a motor 8, the output end of the motor 8 is sleeved with a belt mechanism 9, and the other end of the belt mechanism 9 is sleeved with a support rod 10.

[0022] In this embodiment, as Figure 2 and Figure 3 shown, the mounting plate 6 is composed of a top plate 601, a pressing plate 602 and a fixing plate 603. Among them, the top plate 601 is arranged at the upper and lower ends of the fixing plate 603, and the pressing plate 602 is arranged on the opposite side of the upper top plate 601; it should be noted that the operator can form a connection between the motor 8 and the connecting bracket 4 through the mounting plate 6, and the top plate 601 and the pressing plate 602 can successively form connections with the rotating plate 5 and the rotating mechanism 7. In actual use, the operator can realize the rotation of the entire mounting plate 6 through the rotating shafts B503 and C702 rotatably connected inside the top plate 601 and the pressing plate 602, so as to drive the motor 8 screwed thereto to rotate and adjust at the same time, thereby realizing the adjustment of the tension of the belt mechanism 9. At the same time, the design of the fixing plate 603 can provide stable support for the motor 8, ensure the safety of the motor 8 during use, and at the same time, the design of the multi-plate structure of the fixing plate 603 also increases the overall rigidity of the mounting plate 6 and improves the stability of the motor 8 during operation.

[0023] In this embodiment, as Figure 2 and Figure 3As shown in the figure, the rotating plate 5 is composed of a plate body 501, a rotating shaft A502, and a rotating shaft B503. The bottom end of the rotating shaft A502 vertically penetrates the overlapping surface of the plate body 501 and the connecting bracket 4. The rotating shaft A502 is rotatably connected to the plate body 501. The bottom end of the rotating shaft B503 vertically penetrates the overlapping surface of the plate body 501 and the top plate 601. The rotating shaft B503 is rotatably connected to the plate body 501. It should be noted that when the operator pushes the rotating mechanism 7, the entire mounting plate 6 will rotate around the rotating shaft C702 as the center. At the same time, the plate body 501 rotatably connected to the rotating shaft A502 and the rotating shaft B503 will also be driven to rotate synchronously, thereby driving the entire motor 8 to rotate. During this period, the design of the rotating plate 5 makes the adjustment of the motor 8 simple. The operator can drive the rotation adjustment of the entire motor 8 through the rotating mechanism 7. And through the precise rotation of the rotating shaft A502 and the rotating shaft B503, the fine adjustment of the rotation position of the motor 8 can be realized to meet the required mechanical cooperation or performance requirements. At the same time, the plate body 501 is rotatably connected to the mounting plate 6 and the connecting bracket 4 through the rotating shaft A502 and the rotating shaft B503, which increases the integrity of the installation of the motor 8 and improves the stability of the motor 8 during rotation.

[0024] In this embodiment, as Figure 2 and Figure 3 shown, the rotating mechanism 7 is composed of a connecting collar 701, a rotating shaft C702, a locking nut 703, and a fixing ring 704. The fixing ring 704 is welded to one side of the top of the connecting bracket 4. One end of the connecting collar 701 is screwed to the inner wall of the fixing ring 704, and the other end is rotatably connected to the outer wall of the rotating shaft C702. The upper and lower ends of the rotating shaft C702 are rotatably connected to one side of the abutting plate 602. The locking nut 703 is screwed to the outer wall of the rotating shaft C702. It should be noted that when the operator needs to adjust the degree of the belt mechanism 9, the locking nut 703 can be loosened first so that the connecting collar 701 can rotate on the rotating shaft C702, and then the entire mounting plate 6 is pushed to rotate around the rotating shaft C702 as the center. At the same time, the motor 8 will be driven to rotate together. Then the locking nut 703 is tightened again to fix the rotating position of the entire motor 8, thereby realizing the adjustment of the tension of the belt mechanism 9 at the output end of the motor 8. During this period, the rotating mechanism 7 allows the user to precisely adjust the position and angle of the motor 8 by rotating the connecting collar 701 to meet the required tension requirements of the belt mechanism 9. The design of the locking nut 703 enables the rotating mechanism 7 to quickly fix the positions of the mounting plate 6 and the motor 8 after adjustment, ensuring the stability and accuracy of the motor 8. The rotating mechanism 7 provides flexible adjustment capabilities, enabling the motor 8 and the mounting plate 6 to adapt to various angle and position adjustments.

[0025] In this embodiment, as Figure 2 andFigure 3 As shown in the figure, strip-shaped holes 604 are provided at the four corners of the mounting plate 6, and the inner wall of the strip-shaped hole 604 is threadedly connected to the motor 8 through fastening screws; it should be noted that in actual use, the operator needs to first complete the threaded connection between the motor 8 and the mounting plate 6 by passing the fastening screws through the overlapping strip-shaped holes 604 of the two, so that the mounting plate 6 and the motor 8 are assembled into a whole. During this period, by passing the fastening screws through the strip-shaped holes 604, the motor 8 can be easily fixed to the mounting plate 6, simplifying the installation process. Moreover, the design of the strip-shaped holes 604 makes the disassembly and replacement of the motor 8 simpler, facilitating maintenance personnel to conduct daily inspections or replace components. The setting of the strip-shaped holes 604 can provide an accurate installation position, ensuring the centering and stability of the motor 8 during the installation process, helping to ensure the accuracy of the motor 8 installation, reducing installation errors. The combination of the strip-shaped holes 604 and the fastening screws provides additional stability, helping to reduce vibration and displacement when the motor 8 is running.

[0026] In this embodiment, as Figure 1 and Figure 4 shown, the belt mechanism 9 consists of a driving wheel 901, a driven wheel 902 and a belt 903. Among them, the driving wheel 901 is sleeved on the output end of the support rod 10, the driven wheel 902 is sleeved on the top end of the support rod 10, and the belt 903 is sleeved on the outer walls of the driving wheel 901 and the driven wheel 902; it should be noted that in actual operation, the operator can adjust the length of the belt 903 according to different production requirements. Specifically, by rotating the rotating mechanism 7, the entire mounting plate 6 and the motor 8 are driven to rotate simultaneously, thereby changing the position distance between the motor 8 and the connecting bracket 4. Furthermore, the driving wheel 901 sleeved on the output end of the motor 8 can adjust its position relative to the driven wheel 902, so that the belt 903 sleeved on the outer walls of the driving wheel 901 and the driven wheel 902 can expand and contract accordingly, realizing the adjustment of the tension of the belt 903. During this period, adjusting the tension of the belt 903 through the rotating mechanism 7 helps to maintain the normal operating state of the belt 903 under different production conditions, and effectively prevents problems such as a decrease in transmission efficiency or damage caused by the belt 903 being too loose or too tight. Moreover, according to different production requirements, adjusting the length of the belt 903 can adapt to different working speeds and load requirements, thereby improving the flexibility and adaptability of the equipment. At the same time, an appropriate belt 903 tension can reduce the wear between the belt 903 and the driving wheel 901 and the driven wheel 902, extend the service life of the belt mechanism 9, and reduce maintenance costs.

[0027] In this embodiment, as Figure 1 and Figure 3As shown, a support frame 801 is attached to the bottom of the motor 8. It should be noted that in the present utility model, a support frame 801 is attached to the bottom of the motor 8, and this support frame 801 is engaged with the frame 1, which can provide a stable support for the entire motor 8 during operation. In actual use, the support frame 801 can be in contact with the motor 8, so it can directly bear the vibration generated by the motor 8 itself. Under the combined action with the mounting plate 6, the stability of the motor 8 during operation is improved. At the same time, when the rotating mechanism 7 is used to drive the motor 8 to rotate, it also helps the motor 8 to rotate and adjust more smoothly and accurately. Moreover, the support frame 801 is engaged with the frame 1. In addition to stable support, it can be disassembled at any time for replacement or repair. At the same time, compared with solid steel, its lightweight steel is more practical and portable.

[0028] Usage method and advantages of the present utility model: For this flotation machine motor mounting seat, during use, the working process is as follows:

[0029] As Figure 1 , Figure 2 , Figure 3 and Figure 4 shown, first, the operator needs to first complete the threaded connection between the motor 8 and the mounting plate 6 through the fastening screws passing through the overlapping strip holes 604 of the two, so that the mounting plate 6 and the motor 8 are assembled into a whole. At this time, the bottom of the motor 8 is attached to the top of the support frame 801. In actual operation, the operator can adjust the length of the belt 903 according to different production requirements. Specifically, first loosen the lock nut 703 so that the connecting collar 701 can rotate on the rotating shaft C702, and then push the entire mounting plate 6 to rotate around the rotating shaft C702. At the same time, the plate body 501 that is rotationally connected to the rotating shafts A502 and B503 will also be driven to rotate synchronously, thereby driving the entire motor 8 to rotate. During this period, the position distance between the motor 8 and the connecting bracket 4 will change, so that the driving wheel 901 sleeved on the output end of the motor 8 can change its position relative to the driven wheel 902, and then the belt 903 sleeved on the outer walls of the driving wheel 901 and the driven wheel 902 can be stretched and contracted synchronously. Then, tighten the lock nut 703 again to fix the rotating position of the entire motor 8 and complete the adjustment of the tension of the belt 903. In actual use, the support frame 801 can be in contact with the motor 8, so it can directly bear the vibration generated by the motor 8 itself. Under the combined action with the mounting plate 6, the stability of the motor 8 during operation is improved.

[0030] The above has shown and described the basic principles, main features and advantages of the present utility model. Those skilled in the art should understand that the present utility model is not limited by the above embodiments. The above embodiments and the descriptions in the specification are only preferred examples of the present utility model and are not used to limit the present utility model. Without departing from the spirit and scope of the present utility model, the present utility model will have various changes and improvements, and these changes and improvements all fall within the scope of the present utility model claimed. The scope of protection claimed by the present utility model is defined by the appended claims and their equivalents.

Claims

1. A flotation machine motor mounting base, comprising a frame (1), characterized in that: The left and right sides of the top of the frame (1) are welded with support bases (2), the two sides of the top of the support base (2) are welded with cross frames (3), one side of the top of the cross frame (3) is welded with a connecting bracket (4), the front side of the top of the connecting bracket (4) is rotatably connected to a rotating plate (5), the rear end of the rotating plate (5) is rotatably connected to one side of a mounting plate (6), the other side of the mounting plate (6) is rotatably connected to a rotating mechanism (7), the rear side of the mounting plate (6) is threadedly connected to a motor (8), the output end of the motor (8) is sleeved with a belt mechanism (9), and the other end of the belt mechanism (9) is sleeved with a support rod (10).

2. A flotation machine motor mounting seat according to claim 1, characterized in that: The mounting plate (6) is composed of a top plate (601), a backing plate (602) and a fixing plate (603), wherein the top plate (601) is arranged at the upper and lower ends of the fixing plate (603), and the backing plate (602) is arranged at the opposite side of the upper top plate (601).

3. A flotation machine motor mounting seat according to claim 2, characterized in that: The rotating plate (5) is composed of a plate body (501), a rotating shaft A (502) and a rotating shaft B (503), wherein the bottom end of the rotating shaft A (502) vertically penetrates the overlapping surface of the plate body (501) and the connecting bracket (4), and the rotating shaft A (502) and the plate body (501) are rotatably connected, and the bottom end of the rotating shaft B (503) vertically penetrates the overlapping surface of the plate body (501) and the top plate (601), and the rotating shaft B (503) and the plate body (501) are rotatably connected.

4. A flotation machine motor mounting seat according to claim 2, characterized in that: The rotating mechanism (7) is composed of a connecting ring (701), a rotating shaft C (702), a locking nut (703) and a fixing ring (704), wherein the fixing ring (704) is welded to one side of the top of the connecting bracket (4), one end of the connecting ring (701) is screwed to the inner wall of the fixing ring (704), and the other end is rotatably connected to the outer wall of the rotating shaft C (702), the upper and lower ends of the rotating shaft C (702) are rotatably connected to one side of the abutment plate (602), and the locking nut (703) is screwed to the outer wall of the rotating shaft C (702).

5. The flotation machine motor mounting seat according to claim 1, characterized in that: Strip holes (604) are provided at the four corners of the mounting plate (6), and the inner walls of the strip holes (604) are threadedly connected to the motor (8) via fastening screws.

6. The flotation machine motor mounting seat according to claim 1, characterized in that: The belt mechanism (9) is composed of a driving wheel (901), a driven wheel (902) and a belt (903), wherein the driving wheel (901) is sleeved on the output end of the support rod (10), the driven wheel (902) is sleeved on the top end of the support rod (10), and the belt (903) is sleeved on the outer walls of the wheel bodies of the driving wheel (901) and the driven wheel (902).

7. The flotation machine motor mounting seat according to claim 1, characterized in that: A supporting frame (801) is fitted on the bottom of the motor (8).