CN215356133U - Vibration shakeout machine with adjustable structure - Google Patents
Vibration shakeout machine with adjustable structure Download PDFInfo
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- CN215356133U CN215356133U CN202121758041.9U CN202121758041U CN215356133U CN 215356133 U CN215356133 U CN 215356133U CN 202121758041 U CN202121758041 U CN 202121758041U CN 215356133 U CN215356133 U CN 215356133U
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Abstract
The utility model relates to the technical field of forging production equipment, in particular to a vibration shakeout machine with an adjustable structure. According to the vibrating shakeout machine with the adjustable structure, the horizontal storage barrel is arranged above the bottom support frame, the horizontal storage barrel is driven to rotate by the driving motor, and meanwhile, the vibrating motor fixed on the outer side is matched for separation, so that the separation and filtration efficiency of the whole shakeout machine is greatly improved; the lifting motor drives the arc-shaped first support frame to lift so as to adjust the installation angle of the whole horizontal type storage barrel, so that the direction and the mode of vibration can be conveniently adjusted, and the operation range is wider; the top loading and unloading opening with the built-in turnover type filtering sieve plate is formed in the upper end of the horizontal storage barrel, and loading and unloading can be greatly facilitated through matching with a lifting motor.
Description
Technical Field
The utility model relates to the technical field of forging production equipment, in particular to a vibration shakeout machine with an adjustable structure.
Background
Shakeout machines are casting devices that use vibration and shock to separate the sand from the casting in a mold. The vibration source of the shakeout machine is divided into 3 types of machinery, electromagnetism and pneumatics, and the inertia shakeout machine with machinery is widely applied.
At present, the shakeout method generally applied in casting production is a vibration method, namely, the shakeout method and the shakeout machine are divided into a mechanical vibration type and an electromagnetic vibration type according to the method for generating vibration by utilizing the collision between a casting mold and the shakeout machine. The mechanical vibration type shakers are classified into an eccentric vibration type and an inertial vibration type, and the latter is commonly used. The electromagnetic vibration type shakeout machine is the first initiative in China, is adopted in many factories, and on some high-productivity vertical parting flaskless shooting and pressing molding machine production lines, a roller shakeout machine is adopted for shakeout of a casting mold, and the boxed casting mold is firstly poked out by a poking and box making machine and then shakeout by the roller shakeout machine.
The traditional vibration shakeout machine is simple in structure and cannot be adjusted, so that the application range is very limited, and the feeding and discharging modes are also single.
SUMMERY OF THE UTILITY MODEL
The technical problem to be solved by the utility model is as follows: in order to solve the problems existing in the background technology, the improved structure-adjustable vibration shakeout machine is provided, and the problems that the traditional vibration shakeout machine is simple in structure and cannot be adjusted, so that the application range is very limited, and the feeding and discharging modes are also single are solved.
The technical scheme adopted by the utility model for solving the technical problems is as follows: a vibration shakeout machine with an adjustable structure comprises a bottom support frame, a horizontal storage barrel, a driving motor, a vibration motor and a lifting motor, the left side of the upper end of the bottom supporting frame is fixedly connected with a left supporting frame, the right side of the upper end of the bottom supporting frame is fixedly connected with a right supporting frame, the upper end of the left support frame is provided with an arc-shaped first support frame which is internally provided with a main driving wheel and a first lateral support wheel through a lifting rod at the upper end of a lifting motor, the upper end of the right support frame is elastically assembled with an arc-shaped second support frame with a built-in second lateral support wheel through a support spring, annular transmission tooth sockets are formed in two ends of the outer side arc face of the horizontal storage cylinder, a bottom assembly frame used for mounting a driving motor is fixed to the lower end of the arc-shaped first support frame through bolts, and the vibration motor is fixed to the right side of the horizontal storage cylinder through fixing frame bolts.
The outer rotating shaft of the driving motor is connected with the outer rotating shaft of the main driving wheel through a lateral belt pulley transmission mechanism.
The horizontal storage barrel is sleeved at the upper ends of the main driving wheel, the first lateral supporting wheel and the second lateral supporting wheel through annular transmission tooth grooves on two sides and is movably connected with the bottom supporting frame.
The upper end of the horizontal storage barrel is provided with a top loading and unloading opening internally provided with a turnover type filtering sieve plate.
Horizontal containing barrel lateral surface be located top assembly opening both sides welded fastening and be used for installing the convertible top movable support that filters the sieve, convertible filter the sieve insert the inside and horizontal containing barrel outside movable assembly of top movable support through both sides activity pivot.
The turnover type filtering sieve plate comprises a turnover external frame with movable rotating shafts at two sides and a metal filter screen fixed inside the turnover external frame.
The utility model has the beneficial effects that:
(1) according to the vibrating shakeout machine with the adjustable structure, the horizontal storage barrel is arranged above the bottom support frame, the horizontal storage barrel is driven to rotate by the driving motor, and meanwhile, the vibrating motor fixed on the outer side is matched for separation, so that the separation and filtration efficiency of the whole shakeout machine is greatly improved;
(2) the lifting motor drives the arc-shaped first support frame to lift so as to adjust the installation angle of the whole horizontal type storage barrel, so that the direction and the mode of vibration can be conveniently adjusted, and the operation range is wider;
(3) the top loading and unloading opening with the built-in turnover type filtering sieve plate is formed in the upper end of the horizontal storage barrel, and loading and unloading can be greatly facilitated through matching with a lifting motor.
Drawings
The utility model is further illustrated with reference to the following figures and examples.
Fig. 1 is a schematic structural view of the present invention.
Fig. 2 is an internal sectional view of the present invention.
Detailed Description
The present invention will now be described in further detail with reference to the accompanying drawings. These drawings are simplified schematic views illustrating only the basic structure of the present invention in a schematic manner, and thus show only the constitution related to the present invention.
The vibrating shakeout machine with the adjustable structure shown in fig. 1 and 2 comprises a bottom support frame 1 and a horizontal storage barrel 2, driving motor 3, shock dynamo 4 and elevator motor 5, support frame 6 is put on a left side to 1 upper end left side fixedly connected with of bottom sprag frame, support frame 7 is put on the right side to 1 upper end right side fixedly connected with of bottom sprag frame, the first support frame 10 of arc that 6 upper ends of left side support frame were equipped with built-in main drive wheel 8 and first lateral supporting wheel 9 through elevator motor 5 upper end lifter, the right side is put 7 upper ends of support frame and is equipped with the second support frame 13 of arc of built-in second lateral supporting wheel 12 through supporting spring 11 elasticity, annular transmission tooth's socket 14 has been seted up at 2 outside arcwall both ends of horizontal storage cylinder, the bolt fastening has the bottom assembly frame that is used for installing driving motor 3 under the first support frame 10 of arc, shock dynamo 4 passes through the fixed frame bolt fastening on 2 right sides of horizontal storage cylinder. The driving motor 3, the vibration motor 4 and the lifting motor 5 are powered by an external power supply, and are controlled to be turned on or off and run by an external switch.
The bottom collecting box for blanking is arranged on the bottom surface in the bottom supporting frame 1 and is used for loading materials.
For the convenience of control and transmission, the vibration motor 4 can be arranged on the arc-shaped second support frame 13.
Further, for the purpose of driving, the outer rotating shaft of the driving motor 3 and the outer rotating shaft of the main driving wheel 8 are connected through a lateral belt pulley transmission mechanism 16.
Further, for cooperation movable assembly, the horizontal storage cylinder 2 is movably connected with the bottom support frame 1 through the upper ends of the main driving wheels 8, the first lateral supporting wheels 9 and the second lateral supporting wheels 12 sleeved with the annular transmission tooth sockets 14 on two sides, and further, for cooperation of top loading and bottom shakeout discharging, the upper end of the horizontal storage cylinder 2 is provided with a top loading and unloading port 18 internally provided with a turnover type filtering sieve plate 17.
Further, for cooperation movable assembly, the lateral surface of the horizontal storage barrel 2 is positioned on the two sides of the top assembly port 18 and is welded and fixed with a top movable support 19 for installing the turnover type filtering sieve plate 17, the turnover type filtering sieve plate 17 is inserted into the top movable support 19 through movable rotating shafts on the two sides and is movably assembled with the lateral surface of the horizontal storage barrel 2, and further, for cooperation of bottom shakeout filtering and turnover adjustment, the turnover type filtering sieve plate 17 comprises a turnover outer frame 20 with movable rotating shafts on the two sides and a metal filter screen 21 fixed inside the turnover outer frame 20.
The working principle is as follows: in order to facilitate filling, the horizontal storage barrel 2 is driven to rotate through the driving motor 3, then the top loading and unloading port 18 is adjusted to the upper end, then the lifting motor 5 is controlled to descend, the left side of the horizontal storage barrel 2 is adjusted to descend, the turnover type filtering sieve plate 17 is opened to carry out filling, then the turnover type filtering sieve plate 17 is closed, the lifting motor 5 is started, the horizontal storage barrel 2 is controlled to be turned left and right to adjust, meanwhile, the driving motor 3 and the vibrating motor 4 are started, and the operation of the shakeout machine is controlled.
According to the vibration shakeout machine with the adjustable structure, the horizontal storage barrel 2 is arranged above the bottom support frame 1, the driving motor 3 drives the horizontal storage barrel 2 to rotate, and meanwhile, the vibration motor 4 fixed on the outer side is matched for separation, so that the separation and filtration efficiency of the whole shakeout machine is greatly improved; the lifting motor 5 drives the arc-shaped first support frame 10 to lift to adjust the installation angle of the whole horizontal type storage barrel 2, so that the direction and the mode of vibration can be conveniently adjusted, and the operation range is wider; the top loading and unloading port 18 with the built-in turnover type filter sieve plate 17 is formed in the upper end of the horizontal storage barrel 2, and loading and unloading can be greatly facilitated through the cooperation of the lifting motor 5.
In light of the foregoing description of the preferred embodiment of the present invention, many modifications and variations can be made by the worker in the light of the above teachings without departing from the spirit of the utility model. The technical scope of the present invention is not limited to the content of the specification, and must be determined according to the scope of the claims.
Claims (6)
1. The utility model provides a vibrations shakeout machine with adjustable structure, includes bottom sprag frame (1), horizontal storage cylinder (2), driving motor (3), shock dynamo (4) and elevator motor (5), characterized by: the left side of the upper end of the bottom supporting frame (1) is fixedly connected with a left supporting frame (6), the right side of the upper end of the bottom supporting frame (1) is fixedly connected with a right supporting frame (7), the upper end of the left supporting frame (6) is provided with an arc-shaped first supporting frame (10) which is internally provided with a main driving wheel (8) and a first lateral supporting wheel (9) through a lifting rod at the upper end of a lifting motor (5), the upper end of the right supporting frame (7) is elastically assembled with an arc-shaped second supporting frame (13) which is internally provided with a second lateral supporting wheel (12) through a supporting spring (11), two ends of the arc-shaped surface of the outer side of the horizontal type storage barrel (2) are provided with annular transmission tooth sockets (14), a bottom assembly frame for installing a driving motor (3) is fixed at the lower end of the arc-shaped first support frame (10) through bolts, the vibration motor (4) is fixed on the right side of the horizontal type storage barrel (2) through a fixed frame bolt.
2. The structure-adjustable vibrating shakeout machine as claimed in claim 1, wherein: the outer rotating shaft of the driving motor (3) is connected with the outer rotating shaft of the main driving wheel (8) through a lateral belt wheel transmission mechanism (16).
3. The structure-adjustable vibrating shakeout machine as claimed in claim 1, wherein: the horizontal storage barrel (2) is sleeved at the upper ends of the main driving wheel (8), the first lateral supporting wheel (9) and the second lateral supporting wheel (12) through annular transmission tooth grooves (14) on two sides and is movably connected with the bottom supporting frame.
4. The structure-adjustable vibrating shakeout machine as claimed in claim 1, wherein: the upper end of the horizontal type storage barrel (2) is provided with a top loading and unloading opening (18) internally provided with a turnover type filtering sieve plate (17).
5. The structure-adjustable vibrating shakeout machine as claimed in claim 4, wherein: horizontal storage cylinder (2) lateral surface be located top loading and unloading mouth (18) both sides welded fastening and have top movable support (19) that are used for installing convertible filter sieve (17), convertible filter sieve (17) insert inside and horizontal storage cylinder (2) outside movable assembly of top movable support (19) through both sides activity pivot.
6. The structure-adjustable vibrating shakeout machine as claimed in claim 4, wherein: the turnover type filtering sieve plate (17) comprises a turnover external frame (20) with movable rotating shafts on two sides and a metal filter screen (21) fixed inside the turnover external frame (20).
Priority Applications (1)
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CN202121758041.9U CN215356133U (en) | 2021-07-29 | 2021-07-29 | Vibration shakeout machine with adjustable structure |
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CN202121758041.9U CN215356133U (en) | 2021-07-29 | 2021-07-29 | Vibration shakeout machine with adjustable structure |
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CN215356133U true CN215356133U (en) | 2021-12-31 |
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CN202121758041.9U Active CN215356133U (en) | 2021-07-29 | 2021-07-29 | Vibration shakeout machine with adjustable structure |
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2021
- 2021-07-29 CN CN202121758041.9U patent/CN215356133U/en active Active
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