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A device for picking the outer diameter of bearings
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A technology of outer diameter size and bearing, applied in the field of bearing outer diameter size picking device, can solve the problems of restricting the development of enterprises, high labor intensity, low measurement accuracy, etc., to achieve automation, promote the improvement of production efficiency, and high measurement accuracy Effect
Active Publication Date: 2015-09-16
TAIZHOU HONGXIANG POWER MACHINERY
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Problems solved by technology
This detection method relies on manual selection, which not only has low efficiency and low precision, but also indirectly introduces human error.
The traditional mechanical detection methods are far from meeting the needs of industrial production. The constant online detection required by modern technology has put forward higher requirements for the real-time precision detection of bearings.
At present, the labor intensity of manual measurement and selection is high, and the measurement accuracy is low, which restricts the further development of the enterprise
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[0010] A device for picking the outer diameter of bearings, which consists of a sorting bracket 1, a sorting rib 2, an edge baffle 3, a conveyor belt 4, a cylinder 5, an ultrasonic distance sensor 6, a sensor mounting plate 7, a bearing clamping plate 8, a detection The head transmitter 9, the cylinder 10, the probe head receiver 11, the total fixed frame 12, the vertical mounting plate 13, the motor 14, the shaft coupling 15, the belt 16 and the pulley 17 are characterized in that: the classification bracket 1 is welded on The rear end of the total fixed frame 12, the middle part of the total fixed frame 12 is welded with a vertical mounting plate 13, the two ends of the total fixed frame 12 are equipped with a drum 10, the outer side of the drum 10 is provided with a conveyor belt 4, and one side of the drum 10 is connected with a pulley 17, and the pulley 17 There is a belt 16 on the outside, the motor 14 is connected with the coupling 15, the coupling 15 is connected with t...
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Abstract
The invention relates to a device for picking an outside diameter dimension of a bearing, and belongs to the mechanical manufacturing field. The device consists of a classification support, a classification ribbed plate, edge baffles, a conveyer belt, air cylinders, ultrasonic distance sensors, sensor mounting plates, bearing clamping plates, detection head emitters, rollers, detection head receivers, a main fixing frame, vertical mounting plates, a motor, a coupler, a belt and belt pulleys, wherein the classification support is welded on the rear end of the fixing frame; the vertical mounting plates are welded on the middle part of the main fixing frame; the rollers are installed on the both ends of the main fixing frame, the conveyer belt is arranged outside the rollers, one side of one roller is connected with one belt pulley, and the belt is arranged outside the belt pulleys; the motor is connected with the coupler, which is connected with the other belt pulley. The device has the advantages of being simple in design and easy to operate, combining the mechanical structure and modernized control, realizing automatic production, improving production efficiency and saving time and effort.
Description
technical field [0001] The invention relates to the field of mechanical manufacturing, in particular to a device for picking the outer diameter of bearings. Background technique [0002] At present, bearing manufacturers are still on the basis of using mechanical or optical instruments in the measurement of the inner and outer diameters of bearings. Bearings inevitably cause errors in the production process, and they must be sorted according to the errors. This detection method relies on manual selection, which not only has low efficiency and low precision, but also indirectly introduces human error. The traditional mechanical detection methods are far from meeting the needs of industrial production. The constant online detection required by modern technology has put forward higher requirements for the real-time precision detection of bearings. At present, the labor intensity of manual measurement and selection is high, and the measurement accuracy is low, which restricts t...
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Application Information
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