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Integrated numerically controlled fountain device

A fountain device and housing technology, applied in the direction of liquid injection devices, injection devices, etc., can solve the problems of cost increase, signal interference, power loss, etc., achieve the effects of reducing cable length, solving signal attenuation, and convenient installation and maintenance

Inactive Publication Date: 2016-05-04
刘洪斌
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] In the existing CNC fountain technology, the distance between the CNC motor and the controller is relatively long, and the cable connecting the motor and the controller is too long, which will cause a large loss of electric energy. In order to ensure the normal operation of the motor, on the one hand, a larger power is used. The driver is used to compensate the power loss caused by long cables. On the other hand, the resistance value of the cable itself is reduced by increasing the cable diameter to reduce energy consumption. However, no matter which method is used, the cost will be greatly increased; in addition, due to the Multiple drivers and frequency converters are installed in the control cabinet. When these components work, they often cause mutual interference of signals, affect the stability of signal transmission, cause the motor to be out of control, and affect the performance of the fountain.

Method used

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Embodiment Construction

[0015] The present invention will be described in detail below in conjunction with the accompanying drawings and embodiments.

[0016] Such as figure 1 As shown, the present invention includes a motor 1, the motor 1 is connected to the first port 21 of a reducer 2 housing, and the second port 22 of the reducer 2 housing is connected to the first port 31 of an adapter plate 3, so The second port 32 of the adapter plate 3 is connected to the first port 41 of a tee 4, the second port 22 of the reducer 2 contains an output shaft 23, and the output shaft 23 is connected to a The input end of the transmission shaft 6, the output end of the transmission shaft 6 is fixedly welded to a first end surface 71 of the water passing flower plate 7, and the second end surface 72 of the water passing flower plate 7 is fixedly welded to an elbow 9 with a nozzle 8. The third end surface 73 of the faceplate 7 is sealed and rotatably connected to the second port 42 of the tee 4, and a sliding sea...

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Abstract

The invention provides an integrated numerically controlled fountain device, comprising a motor; the motor is connected with a speed reducer; a shell of the speed reducer is connected with an adapter disc that is connected with a T-joint; a second port of the speed reducer is provided with an output shaft that is connected with an input end of a transmission shaft by means of a coupling; a first end face of a water passing faceplate is fixed and welded on an output end of the transmission shaft, an elbow with a sprayer is fixed and welded on a second end face of the water passing faceplate and a third end face of the water passing faceplate is in hermetical rotational connection with a second port of the T-joint, and a sliding sealing bearing is arranged between the second port of the T-joint and the third end face of the water passing faceplate; a sealing housing is arranged outside the motor and the speed reducer and also hermetically connected with the T-joint; an underwater sealing box is fixedly connected outside the sealing housing. A controller is fixedly mounted in the underwater sealing box. The integrated numerically controlled fountain device is low in cost and reliable in signal, and such a structure can be widely applied to the numerically controlled fountain devices.

Description

technical field [0001] The invention relates to a fountain device, in particular to an integrated digitally controlled fountain device. Background technique [0002] In the existing CNC fountain technology, the distance between the CNC motor and the controller is relatively long, and the cable connecting the motor and the controller is too long, which will cause a large loss of electric energy. In order to ensure the normal operation of the motor, on the one hand, a larger power is used. The driver is used to compensate the power loss caused by the long cable. On the other hand, the resistance value of the cable itself is reduced by increasing the cable diameter to reduce energy consumption. However, no matter which method is used, the cost will be greatly increased; in addition, due to the Multiple drives and frequency converters are installed in the control cabinet. When these components work, they often cause mutual interference of signals, affect the stability of signal ...

Claims

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Application Information

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IPC IPC(8): B05B17/08
CPCB05B17/08
Inventor 刘洪斌
Owner 刘洪斌