ELECTRIC GRINDER WITH SWITCHED RELUCTANCE MOTOR
20180085884 ยท 2018-03-29
Inventors
Cpc classification
B25F5/02
PERFORMING OPERATIONS; TRANSPORTING
B24B23/02
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
An electric grinder with a switched reluctance motor comprises a body, a transmission assembly, a grinding wheel, and a dust-proof assembly. The body includes a first casing and a second casing. The transmission assembly includes a switched reluctance motor disposed in the first casing, a driving module disposed in the second casing, a transmission shaft connected with the switched reluctance motor, and an assemblage seat disposed in the transmission shaft. The assemblage seat includes an assemblage member for assembling the grinding wheel. The dust-proof assembly includes a dust-proof hood disposed in the first casing. Because of being driven by the switched reluctance motor, the electric grinder of the present invention adapts to the cases of phase failure, frequent start-stop operations, and phase inversion.
Claims
1. An electric grinder with a switched reluctance motor, comprising a body, including a first casing and a second casing, wherein the first casing includes a chamber thereinside, and wherein the second casing is disposed corresponding to the first casing and includes an accommodation room interconnecting with the chamber; a transmission assembly, including a switched reluctance motor disposed inside the chamber; a driving module disposed inside the accommodation room and electrically connected with the switched reluctance motor to output a control signal to the switched reluctance motor; a transmission shaft connected with the switched reluctance motor; and an assemblage seat disposed at one end of the transmission shaft, which is far away from the switched reluctance motor, wherein the assemblage seat includes an assemblage member joined with the transmission shaft and an airflow guiding member having a level drop with respect to the assemblage member, deviated from the axis of the transmission shaft, rotating together with the transmission shaft to generate a heat-dissipation airflow; and a grinding wheel and a dust-proof assembly, wherein the grinding wheel is assembled to the assemblage member and rotates together with the transmission shaft, and wherein the dust-proof assembly includes a dust-proof hood disposed in the first casing with a gap existing between the dust-proof hood and the grinding wheel and a dust-exhaust pipe disposed corresponding to the second casing, connected with the dust-proof hood, receiving a sucking airflow from a suction device, and including an opening corresponding to the accommodation room and allowing the sucking airflow to dissipate heat from the driving module.
2. The electric grinder with a switched reluctance motor according to claim 1, wherein the driving module includes a microcontroller generating the control signal and a driver electrically connected with the microcontroller and the switched reluctance motor and transmitting the control signal to the switched reluctance motor.
3. The electric grinder with a switched reluctance motor according to claim 2, wherein the switched reluctance motor is a three-phase switched reluctance motor; the driver is a three-phase half-bridge driver or a three-phase full-bridge driver.
4. The electric grinder with a switched reluctance motor according to claim 2, wherein the switched reluctance motor includes an outer stator and an inner rotator, and wherein the transmission assembly includes a plurality of photoelectric switches disposed in the first casing, facing the inner rotator, detecting the position of the inner rotator and outputting a monitoring signal to the driving module.
5. The electric grinder with a switched reluctance motor according to claim 4, wherein the photoelectric switches are arranged circumferentially with the transmission shaft being the center, and the adjacent photoelectric switches are separated by a step angle.
6. The electric grinder with a switched reluctance motor according to claim 5, wherein the driving module includes a variable-angle control mechanism and a voltage pulse width modulation control mechanism, and wherein the driving module determines whether the variable-angle control mechanism or the voltage pulse width modulation control mechanism generates the control signal according to the monitoring signal of each photoelectric switch.
7. The electric grinder with a switched reluctance motor according to claim 5, wherein the first casing includes at least one air inlet hole interconnecting with the chamber and allowing external air to enter the chamber.
8. The electric grinder with a switched reluctance motor according to claim 7, wherein the transmission assembly includes an elastic press button, which is disposed in the first casing and pressed to trigger the driving module; and a press plate, which is pivotally coupled to the second casing and extended to the upper region of the elastic press button, and actuated to press the elastic press button.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0021] The technical contents of the present invention will be described in cooperation with drawings below.
[0022] Refer to
[0023] Refer to
[0024] Succeeding to the above description, the relationship between the operations of the switched reluctance motor 21 and the driving module 22 will be described in detail below. The driving module 22 includes a variable-angle control (ASR) mechanism and a voltage pulse width modulation (PWM) control mechanism. The driving module 22 will regulate the proportion of the outputs of the variable-angle control mechanism and the voltage PWM control mechanism according to the speed of the switched reluctance motor 21. The slower the speed of the switched reluctance motor 21, the higher the proportion of the output of the variable-angle control mechanism. The faster the speed of the switched reluctance motor 21, the higher the proportion of the output of the voltage pulse width modulation control mechanism. Refer to
[0025] In one embodiment, the transmission assembly 2 includes a plurality of photoelectric witches 27 disposed in the first casing 11 and facing the inner rotator 212, whereby to enable the driving module 22 to detect the rotation speed of the switched reluctance motor 21. The photoelectric switches 27 are used to determine the position and speed of the inner rotator 212 according to the position and frequency at which the inner rotator 212 shields the light beams According to the position and speed of the inner rotator 212, a monitoring signal is transmitted to the driving module 22. According to the monitoring signal of each photoelectric switch 27, the driving module 22 determines the proportion of the outputs of the variable-angle control mechanism and the voltage pulse width modulation control mechanism. In one embodiment, the photoelectric switches 27 are arranged circumferentially with the transmission shaft 23 being the center, and the adjacent photoelectric switches 27 are separated by a step angle. In other words, an included angle, such as an included angle of 30 degrees, exist among the transmission shaft 23 and any two photoelectric switches 27. In addition to using the monitoring signals provided by the photoelectric switches 27 to determine the position and speed of the inner rotator 212, the microcontroller 221 also uses the driver 222 to detect the current of the switched reluctance motor 21 in one embodiment. While the current of the switched reluctance motor 21 exceeds the rated current, the driver 222 interrupts the current input to the switched reluctance motor 21 lest the overcurrent burn out the switched reluctance motor 21. In other words, the electric grinder of the present invention has an overcurrent protection function. Further, the microcontroller 221 can also switch the value of the current input to the switched reluctance motor 21 at any time according to the value of the current of the switched reluctance motor 21. While the grinding wheel 3 is retarded (such as by the surface of an object) and has a current variation, the microcontroller 221 can regulate the current input to the switched reluctance motor 21 according to the feedback of the driver 222. Hence, the switched reluctance motor 21 can always maintain a given rotation speed no matter whether the grinding wheel 3 is retarded.
[0026] Furthermore, while the electric grinder of the present invention undertakes a grinding operation, the airflow guiding member 242 is driven by the transmission shaft 23 to rotate and generate a heat-dissipation airflow to exhaust heat from the switched reluctance motor 21 to the exterior of the chamber 110. Besides, the dust-exhaust pipe 42 is connected with a suction device (not shown in the drawings), and the driving module 22 is disposed corresponding to the opening 420. While the sucking airflow generated by the suction device flows through the dust-exhaust pipe 42, the sucking airflow will take the heat and dust generated in operation out of the dust-exhaust pipe 42 simultaneously. Therefore, the electric grinder of the present invention uses the airflow guiding member 242 to exhaust heat from the chamber 110 and uses the sucking airflow to take away heat and dust from the driving module 22 simultaneously. Thus, the electric grinder of the present invention can efficiently dissipate heat from the switched reluctance motor 21 and the driving module 22.