WO2022062975A1 - Mécanisme de transmission de moteur de type à poussée latérale - Google Patents

Mécanisme de transmission de moteur de type à poussée latérale Download PDF

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Publication number
WO2022062975A1
WO2022062975A1 PCT/CN2021/118349 CN2021118349W WO2022062975A1 WO 2022062975 A1 WO2022062975 A1 WO 2022062975A1 CN 2021118349 W CN2021118349 W CN 2021118349W WO 2022062975 A1 WO2022062975 A1 WO 2022062975A1
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WO
WIPO (PCT)
Prior art keywords
motor
transmission mechanism
sliding block
push type
motor transmission
Prior art date
Application number
PCT/CN2021/118349
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English (en)
Chinese (zh)
Inventor
马戎
Original Assignee
深圳市巡域科技有限公司
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Filing date
Publication date
Application filed by 深圳市巡域科技有限公司 filed Critical 深圳市巡域科技有限公司
Publication of WO2022062975A1 publication Critical patent/WO2022062975A1/fr

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Classifications

    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61HPHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
    • A61H23/00Percussion or vibration massage, e.g. using supersonic vibration; Suction-vibration massage; Massage with moving diaphragms
    • A61H23/02Percussion or vibration massage, e.g. using supersonic vibration; Suction-vibration massage; Massage with moving diaphragms with electric or magnetic drive
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61HPHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
    • A61H7/00Devices for suction-kneading massage; Devices for massaging the skin by rubbing or brushing not otherwise provided for
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16HGEARING
    • F16H37/00Combinations of mechanical gearings, not provided for in groups F16H1/00 - F16H35/00
    • F16H37/12Gearings comprising primarily toothed or friction gearing, links or levers, and cams, or members of at least two of these types
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02KDYNAMO-ELECTRIC MACHINES
    • H02K7/00Arrangements for handling mechanical energy structurally associated with dynamo-electric machines, e.g. structural association with mechanical driving motors or auxiliary dynamo-electric machines
    • H02K7/10Structural association with clutches, brakes, gears, pulleys or mechanical starters
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02KDYNAMO-ELECTRIC MACHINES
    • H02K7/00Arrangements for handling mechanical energy structurally associated with dynamo-electric machines, e.g. structural association with mechanical driving motors or auxiliary dynamo-electric machines
    • H02K7/10Structural association with clutches, brakes, gears, pulleys or mechanical starters
    • H02K7/116Structural association with clutches, brakes, gears, pulleys or mechanical starters with gears

Definitions

  • the invention relates to the technical field of motor transmission devices, in particular to a side-push type motor transmission mechanism with high power transmission efficiency, low transmission resistance and easy to hold.
  • Products with telescopic motion output function include a telescopic power structure composed of power supply and transmission mechanisms such as motors, deceleration devices, and reversing devices.
  • the synergistic action of each component realizes the telescopic and push-pull functions required for product work.
  • the telescopic end of the telescopic power structure is often connected with an actuating device that acts on the product object (such as human body, sanitary ware, etc.).
  • the actuating device can be fascia.
  • the spherical rubber-coated gun head of the gun can also be the brush head of an electric cleaning brush.
  • the above-mentioned telescopic power structure and the actuating device usually adopt a linear arrangement, that is, the telescopic path of the telescopic power structure and the motion path of the actuating device are located on the same straight line or approximately on the same straight line.
  • the size of the product in the length direction is relatively large, which causes the power transmitted from the telescopic power structure to the actuating device to drop, reducing the power transmission efficiency; in addition, when the above-mentioned linear arrangement is adopted, during the power transmission process, the vertical telescopic power There will be a certain resistance in the direction of the structure telescopic path and the movement path of the actuating device, which further affects the efficiency of power transmission; in addition, the center of gravity of the product is far away from the actuating device, especially the motor in the telescopic power structure or the battery used for power supply When the weight is large, a lever effect will be generated at the actuating device during the working process of the telescopic power structure. The user needs to use a large wrist force to overcome the torque of the lever effect, which will easily cause the user's wrist fatigue and affect the user's experience.
  • a side-push type motor transmission mechanism the side-push type motor transmission mechanism comprises:
  • the inner cavity of the housing accommodates a power supply, a motor electrically connected to the power supply, and an electric control board that is electrically connected to the power supply and the motor to control the operation of the motor, the middle of the inner cavity of the housing is provided with a reduction gear connected to the output shaft of the motor, and the output end of the reduction gear passes through the top of the casing;
  • the sliding limit assembly includes two sliding rails extending along the length direction of the casing and respectively fixed on both sides of the casing, a main sliding block slidably matched with the two sliding rails respectively, and a main sliding block installed on the main sliding rail.
  • a reversing device comprising a crankshaft that rotates synchronously with the output end of the reduction gear, and a connecting rod that is rotatably connected to the crankshaft and the main slider respectively;
  • the speed reduction device drives the crankshaft to rotate, and pulls or pushes the main slider through the connecting rod, so that the main slider drives the moving bracket to slide along the slide rail.
  • the deceleration device includes a worm drivingly connected with the motor output shaft and a gear meshing with the worm.
  • the output shaft of the motor is perpendicular or parallel to the output shaft of the gear.
  • the sliding limit assembly further includes an auxiliary sliding block sleeved on the sliding rail and fixedly connected with the moving bracket, and the auxiliary sliding block is driven by the lower edge of the moving bracket.
  • the slide rail slides.
  • a pair of guide holes extending in the length direction of the casing are opened parallel to the top of the casing, and the top of the main slider and the top of the auxiliary slider are respectively protruded to form a latch, The plug penetrates the guide hole and is fixedly connected with the moving bracket.
  • limit stops are respectively provided on both ends of the slide rail on the housing.
  • an MCU chip is provided on the electronic control board, and the side-push motor transmission mechanism further includes a power compensation detection component, and the dynamic compensation detection component includes a power detection unit electrically connected to the MCU chip and A rotation speed detection unit, the MCU chip receives and analyzes the detection values sent by the power detection unit and the rotation speed detection unit to calculate motor compensation parameters, and adjust the output voltage of the motor according to the motor compensation parameters.
  • the electronic control board is further provided with a driving MOS transistor electrically connected to the signal output end of the MCU chip, and the power detection unit is a sampling resistor connected in series with the driving MOS transistor.
  • the rotational speed detection unit is a photoelectric encoder arranged at the output end of the motor or the reduction gear.
  • the rotational speed detection unit includes a pointer member fixedly installed at the bottom of the gear of the reduction gear, the end of the pointer member is provided with a magnetic member, the electric control board is located below the pointer member, and The electronic control board is provided with a Hall sensor electrically connected to the MCU chip and used for detecting the magnetic field strength.
  • the side-push type motor transmission mechanism of the present invention is implemented, and the motor and the deceleration device for driving the sliding of the moving bracket are arranged at the bottom of the moving bracket, that is, the side-push type or parallel layout is adopted, which reduces the length and dimension of the product.
  • the distance between the center of gravity and the actuating device set on the motion bracket is small, thereby reducing the moment caused by the lever effect and the resistance value generated in the sliding direction of the vertical motion bracket, improving the power transmission efficiency and improving the product quality.
  • the energy consumption ratio enables the product to obtain greater power output or less power consumption, which improves the reliability of the product; in addition, it also reduces the impact on the user's wrist when the user is holding the product.
  • the side-push or side-by-side layout makes the product structure more compact, reduces the amount of structural parts, reduces product processing costs and facilitates Design the shape of the product.
  • FIG. 1 is a schematic structural diagram of a side-push motor transmission mechanism in an embodiment of the present invention
  • FIG. 2 is a schematic structural diagram of the side-push motor transmission mechanism after removing the casing in the embodiment shown in FIG. 1;
  • FIG. 3 is a schematic cross-sectional structural diagram of a side-push motor transmission mechanism in an embodiment of the present invention.
  • FIG. 4 is a schematic diagram of a partial structure of a side-push motor transmission mechanism after a transmission device is loaded in an embodiment of the present invention
  • FIG. 5 is a block diagram of a side-push motor transmission mechanism in an embodiment of the present invention.
  • FIG. 6 is a schematic diagram of a sampling circuit of a side-push motor transmission mechanism in an embodiment of the present invention.
  • the present invention discloses a side-push type motor transmission mechanism 10 with high power transmission efficiency, low transmission resistance and easy to hold.
  • the side-push type motor transmission mechanism 10 is used to provide The driving part of the power and the receiving part for receiving the actuating device 240 are parallel to each other, that is, a parallel structure is adopted.
  • the driving part provides power from the side of the receiving part, which shortens the overall length of the product. Similarly, The power transmission path is also shortened, the power loss in the transmission process is reduced, and the transmission efficiency is improved.
  • the force arm from the center of gravity of the driving part to the receiving part is shortened, thereby weakening the leverage effect between the two and reducing the non-sliding direction of the receiving part during the sliding process of the receiving part. resistance, further reducing power loss.
  • the weakening of the leverage effect also reduces the wrist strength required by the user to reduce the shaking of the product when holding the product, and the user can easily hold the product, which is beneficial to improve the user's experience.
  • the side-push motor transmission mechanism 10 includes a housing 100, a sliding limit assembly 200 and a reversing device 300.
  • the housing 100 is used to support the sliding limiting assembly 200 and the reversing device 300, and is used during the use of the product.
  • a grip is provided.
  • the inner cavity of the housing 100 accommodates a power supply 110, a motor 120 electrically connected to the power supply 110, and an electronic control board 130 electrically connected to the power supply 110 and the motor 120 to control the operation of the motor 120, respectively.
  • the output shaft of the motor 120 is connected to the reduction gear 140 , and the output end of the reduction gear 140 penetrates the top of the housing 100 and is matched with the commutation device 300 .
  • the power source 110 is an ordinary dry battery or a rechargeable battery
  • a battery slot is provided in the casing 100
  • a battery cover that can open and close the battery slot is arranged at the bottom of the casing 100
  • the motor 120 adopts a forward and reverse rotation.
  • Servo motor in this way, when the motor 120 rotates forward for a predetermined number of times, it rotates reversely, so that the external actuating device 240 reciprocates relative to the casing 100 to meet the needs of the user.
  • the sliding limit assembly 200 includes two sliding rails 210 extending along the length direction of the casing 100 and respectively fixed on both sides of the casing 100 , a main sliding block 220 slidably matched with the two sliding rails 210 respectively, and a main sliding block 220 installed on the main sliding block.
  • the top of the block 220 is used to install the movement bracket 230 of the external actuating device 240;
  • the reversing device 300 includes a crankshaft 310 that rotates synchronously with the output end of the reduction gear 140 and a connecting rod 320 that is rotatably connected to the crankshaft 310 and the main slider 220 respectively.
  • the deceleration device 140 drives the crankshaft 310 to rotate, and pulls or pushes the main slider 220 through the connecting rod 320, so that the main slider 220 drives the moving bracket 230 to slide along the slide rail 210.
  • two sliding rails 210 are arranged on both sides of the casing 100 in the longitudinal direction of the casing 100, so that the mating area between the main slider 220 and the casing 100 is increased.
  • the sliding limit assembly 200 further includes an auxiliary sliding block 250 sleeved on the sliding rail 210 and fixedly connected with the moving bracket 230 .
  • main slider 220 and the auxiliary slider 250 are jointly used to support the moving bracket 230, so that the force of the moving bracket 230 is more uniform, and it is avoided that when only the main slider 220 is used to support the moving bracket 230, on the moving bracket 230
  • One end or one side away from the main slider 220 swings relative to the position of the connection between the main slider 220 and the moving bracket 230 , so as to ensure the reliability of the sliding operation of the moving bracket 230 and reduce the friction perpendicular to the sliding direction of the moving bracket 230 . resistance, thereby reducing kinetic energy losses.
  • the casing 100 is used to encapsulate and protect the power supply 110 , the motor 120 and the electric control board 130 .
  • a pair of guide holes 150 extending in the longitudinal direction of the housing 100 are formed parallel to the top of the housing 100 , and the top of the main slider 220 and the top of the auxiliary slider 250 are respectively convex
  • the pin 221 is formed through the guide hole 150 and is fixedly connected with the motion bracket 230. For example, insert the screw through the motion bracket 230 into the pin 221, and then tighten the screw to fix the motion bracket 230 on the main slide. Block 220 and auxiliary slider 250 on purpose.
  • the guide hole 150 by opening a guide hole 150 on the top of the housing 100 , the guide hole 150 provides a connection channel between the moving bracket 230 and the main slider 220 and the auxiliary slider 250 on the one hand, and on the other hand, the guide hole 150
  • the sliding path of the moving bracket 230 is also limited. Specifically, the edge of the guide hole 150 restricts the pin 221 to prevent the pin 221 from shaking in the guide hole 150 , thereby achieving the purpose of limiting the sliding path of the moving bracket 230 .
  • the housing 100 includes a tile-shaped lower cover 160 and an upper cover 170 , which is disposed on the lower cover 160 and has a guide hole 150 .
  • the opening edge of the top of the lower cover 160 is provided with a slot, and the slot is along the lower cover 160 .
  • the upper cover 170 is inserted into the card slot and snap-fitted with the lower cover 160 .
  • the upper cover 170 and the lower cover 160 may also be screwed together, and the detachable connection between the upper cover 170 and the lower cover 160 facilitates disassembly and assembly of various components in the housing 100 .
  • a top cover 400 is also installed on the top of the upper cover 170 , and a through hole 410 is formed on the top cover 400 on one side corresponding to the sliding direction of the moving bracket 230 .
  • the actuating end provides an active channel, and the casing 100 and the top cover 400 are used to encapsulate the various components of the side-push motor transmission mechanism 10, thereby realizing the protection of the various components.
  • the side of the top cover 400 away from the through hole is open.
  • the same side of the bottom cover 160 that is located at the opening of the top cover 400 is also open.
  • the side push motor transmission mechanism 10 also includes an end cover 500.
  • the cover 500 covers the opening of the top cover 400 and the opening of the lower cover 160 and abuts against the top cover 400 and the lower cover 160 respectively.
  • the casing 100 , the top cover 400 and the end cover 500 may be collectively referred to as By setting the end cover 500 in the outer casing, when the internal components of the side-push motor transmission mechanism 10 are damaged, only the end cover 500 can be opened to take out the damaged components or directly repair the damaged components, which reduces the difficulty of product maintenance.
  • the motor 120 and the power supply 110 are located on two sides of the deceleration device 140 respectively, and the electric control board 130 is installed at the bottom of the power supply 110 and is electrically connected to the motor 120 .
  • the distance between the motors 120 avoids the influence of the heat generated by the motors 120 on the operation of the electronic control board 130 .
  • the reduction gear 140 includes a worm 141 that is drivingly connected to the motor output shaft and a gear 142 that meshes with the worm 141 .
  • the central portion of the gear 142 is fixedly mounted with a transmission shaft 143 that cooperates with the crankshaft 310 , and the transmission shaft 143 is remote from the crankshaft.
  • One end of the 310 is rotatably inserted on the plug-in board 144 fixedly connected with the lower cover 160 .
  • the reduction gear 140 may include only one gear 142 , or may include multiple gears 142 .
  • the reduction gear 140 includes a plurality of gears 142
  • the number of teeth of each gear 142 is different, and each gear 142 meshes with the worm 141 step by step.
  • the transmission ratio of the reduction gear 140 can be adjusted, and then the moving bracket can be adjusted. 230 sliding speed to meet user needs.
  • the set reduction gear 140 includes three gears: a first gear C1, a second gear C2 and a third gear C3, wherein the first gear C1 meshes with the worm 141, and the second gear C2 meshes with the first gear C1.
  • the third gear C3 meshes with the second gear C2, and the gear 142 farthest from the worm 141 is provided with a transmission shaft 143, that is, the third gear C3 in this embodiment is provided with a transmission shaft 143 matched with the crankshaft 310.
  • the tooth pattern of the worm 141 may be a helical tooth pattern or a straight tooth pattern, and the tooth pattern of the gear 142 meshing with the worm screw 141 is adapted to the tooth pattern of the worm screw 141 .
  • the output shaft of the motor is perpendicular or parallel to the output shaft of the gear 142.
  • the output shaft of the gear 142 is the transmission shaft 143 described in the foregoing embodiments.
  • the motor 120 When the output shaft of the motor is perpendicular to the output shaft of the gear 142, the motor 120 is arranged horizontally, that is, the output shaft of the motor 120 extends in the horizontal direction, and the tooth pattern of the worm 141 cooperates with the gear 142 during rotation to drive the gear 142 to rotate, thereby making the gear 142 rotate.
  • the crankshaft 310 to which the transmission shaft 143 is connected rotates.
  • the motor 120 is arranged longitudinally, that is, the output shaft of the motor 120 extends in the vertical direction, and a driving gear matched with the gear 142 is installed on the output shaft of the motor.
  • the gear 142 and the worm 141 can also be omitted, and the crankshaft 310 is directly driven to rotate by the output shaft of the motor 120, which will not be repeated here.
  • the reversing device 300 is used to convert the rotation of the motor output shaft into linear motion.
  • the crankshaft 310 fixed to the transmission shaft 143 drives the connecting rod 320 to perform linear telescopic or push-pull motion, thereby driving the moving bracket 230 to slide on the slide rail 210 .
  • the crankshaft 310 and the connecting rod 320 are rotatably connected by means of bearings or pin holes. When the crankshaft 310 and the connecting rod 320 are rotated through bearings, since the crankshaft 310 is fixed on the transmission shaft 143, the crankshaft 310 will rotate synchronously with the transmission shaft 143 driven by the transmission shaft 143, and the crankshaft 310 is far from the transmission shaft 143.
  • One end takes the length of the crankshaft 310 as the radius, and makes a circular motion of equal angular velocity around the end of the crankshaft 310 that cooperates with the transmission shaft 143;
  • the end of the rod 320 away from the crankshaft 310 rotates relative to the connecting portion where the crankshaft 310 is connected.
  • a guide groove is formed on the end of the crankshaft 310 that is matched with the connecting rod 320, so that the connecting rod 320 can slide in the guide groove through the pin, and the connecting rod 320 is away from the crankshaft 310.
  • One end of the crankshaft 310 is still in rotational motion relative to the connecting portion where the crankshaft 310 is connected.
  • the housing 100 is provided with limiting stoppers 260 on both ends of the slide rail 210 , respectively.
  • the limiting block 260 is screwed to the upper cover 170 and covers the end of the slide rail 210 .
  • the limit stopper 260 By setting the limit stopper 260, the sliding range of the main slider 220 and the auxiliary slider 250 on the slide rail 210 is limited, and the one-way sliding distance of the moving bracket 230 is less than or equal to the distance between the two limit stopper 260 and the main block 260.
  • the distance between the sliding block 220 and the auxiliary sliding block 250 is different to prevent the main sliding block 220 and the auxiliary sliding block 250 from falling off the sliding rail 210 , thereby ensuring the reliability of the sliding operation of the moving bracket 230 .
  • the actuating device 240 is mounted on the moving bracket 230, and is driven by the moving bracket 230 to reciprocate relative to the external acting object to realize the function of the product.
  • the actuating device 240 may be a sanitary ware or a brush head for cleaning, or may be a massage device or the like.
  • the actuating device 240 is a massage head. Specifically, please refer to FIG.
  • an installation ring 231 is fixedly arranged in the middle of the movement bracket 230
  • an anti-slip rubber ring 232 is arranged on the inner surface of the installation ring 231
  • the massage head wears the anti-slip rubber ring 232 and is locked by the anti-slip rubber ring 232
  • two opposite sides of the movement bracket 230 are warped laterally close to the center of the movement bracket 230, thereby forming an arc-shaped limit portion to adapt to the shape of the massage head.
  • the motor speed is usually adjusted by adjusting the motor power (voltage regulation or current regulation), thereby reducing or increasing the system output proportionally.
  • the decrease of the motor speed will also lead to the decrease of the motor torque, which in turn causes the motion torque of the system output end to decrease proportionally, thereby affecting the working effect of the actuating device 240 .
  • an MCU chip 131 is disposed on the electronic control board 130 , the side-push motor transmission mechanism 10 further includes a dynamic compensation detection component 600 , and the dynamic compensation detection component 600 includes a power that is electrically connected to the MCU chip 131 .
  • the detection unit 700, the rotational speed detection unit 800, and the MCU chip 131 receive and analyze the detection values sent by the power detection unit 700 and the rotational speed detection unit 800 to calculate the compensation parameters of the motor 120, and adjust the output voltage of the motor 120 according to the motor compensation parameters.
  • the motor load power will increase accordingly, so the real-time electric power index can reflect the motion load characteristics at the corresponding moment; the rotational speed of its related moving components will also decrease correspondingly, so the real-time component rotational speed can also reflect the corresponding moment.
  • Motion load characteristics In this embodiment, by setting the power detection unit 700 and the rotational speed detection unit 800, the real-time power of the motor and the rotational speed of the relevant moving parts can be collected in real time, and the real-time power and rotational speed can reflect the real-time motion state of the mechanism. It is collected to reflect the real motion characteristics of the mechanism.
  • the program and algorithm preset in the MCU chip 131 can calculate and evaluate the comprehensive motion state of the mechanism, and the state data and the current input to the control of the motor 120 can be calculated and evaluated. By comparing the indicators, you can know whether the current output of the mechanism meets the control expectations, and calculate the output that needs to be compensated. For example, the user adjusts the product to a certain fixed motion gear by means of key control, etc., but the product encounters severe resistance during the movement process, which leads to a decrease in the movement rate of the mechanism.
  • the MCU chip 131 obtains the resistance factor by monitoring and calculating the real-time power and real-time rotation speed. occurs, and the corresponding motor compensation parameters are calculated.
  • the MCU chip 131 instantly increases the torque of the mechanism by instantaneously increasing the motor voltage to compensate for the resistance encountered by the mechanism.
  • the resistance is overcome, the movement rate of the mechanism increases rapidly.
  • the mechanism evaluates the characterization in real time, it adjusts accordingly. Motor voltage to stabilize the system movement rate.
  • the input index of the motor 120 is feedback-adjusted through real-time data.
  • the output of the mechanism often cannot meet the control expectations through one-time feedback adjustment. Therefore, it is necessary to pass the power detection unit 700 and The rotational speed detection unit 800 collects motion data in real time, and performs multiple feedback adjustments until the mechanism output reaches the control expectation.
  • the electronic control board 130 is further provided with a driving MOS transistor electrically connected to the signal output end of the MCU chip 131 , and the power detection unit 700 is a sampling resistor connected in series with the driving MOS transistor.
  • the motor voltage is adjusted by a PWM (pulse width modulation) signal.
  • the MOT_CTRL signal in the circuit schematic diagram is the PWM signal output by the MCU chip 131, and the driving MOS tube includes two DP2060 N-channel driven in parallel.
  • the enhanced MOS tube realizes the power collection by connecting a sampling resistor in series between the two MOS tubes.
  • the sampling resistor is the alloy resistor R8 with a resistance of 0.03 ohm and a power of 1w in the circuit schematic diagram. Invention of the sampling circuit.
  • the real-time voltage state of the sampling resistor ie the Vdet signal voltage
  • the motor current I Vdet / R8
  • the two electrodes of the motor 120 are respectively connected to the M+ pin and M-pin, M+ pin is regulated power output or battery direct output.
  • the rotational speed detection of the rotational speed detection unit 800 includes the following two schemes.
  • the rotational speed detection unit 800 is a photoelectric encoder arranged at the output end of the motor 120 or the deceleration device 140, and the photoelectric encoder is used for each rotation of the output end of the motor 120 or the deceleration device 140.
  • the MCU generates a pulse signal once, and the MCU chip 131 calculates the real-time rotational speed of the motor 120 or the deceleration device 140 according to the received pulse signal.
  • the rotational speed detection unit 800 includes a pointer member fixedly installed at the bottom of the gear 142 of the deceleration device 140, the end of the pointer member is provided with a magnetic member, the electric control board 130 is located below the pointer member, and the electric control board 130 is provided with a
  • the MCU chip 131 is electrically connected to a Hall sensor for detecting the magnetic field strength.
  • the pointer actually rotates synchronously with the transmission shaft 143.
  • the magnetic field intensity detected by the Hall sensor changes periodically.
  • the MCU chip 131 calculates the number of cycles of the changing magnetic field intensity sent by the Hall sensor, that is, The number of rotations of the pointer member can be judged, and then the rotational speed of the transmission shaft 143 can be judged.
  • the motor 120 and the deceleration device 140 for driving the movement bracket 230 to slide are arranged at the bottom of the movement bracket 230, that is, a side-push type or a parallel layout is adopted, which reduces the product cost.
  • Length dimension the distance between the center of gravity of the product and the actuating device 240 set on the motion bracket 230 is small, thereby reducing the moment caused by the lever effect and the resistance value generated in the sliding direction of the vertical motion bracket 230, improving the
  • the power transmission efficiency improves the energy consumption ratio of the product, enables the product to obtain greater power output or less power consumption, and improves the reliability of the product;
  • the reaction force generated by the actuating device 240 on the user's wrist during the movement makes the product more comfortable to hold and improves the user's experience; in addition, the side-push or side-by-side layout makes the structure of the product more compact and reduces the number of structural parts The dosage is reduced, the product processing cost is reduced and the shape design of the product is facilitated.

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  • Health & Medical Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Rehabilitation Therapy (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • General Engineering & Computer Science (AREA)
  • Epidemiology (AREA)
  • Pain & Pain Management (AREA)
  • Physical Education & Sports Medicine (AREA)
  • Power Engineering (AREA)
  • Veterinary Medicine (AREA)
  • Animal Behavior & Ethology (AREA)
  • General Health & Medical Sciences (AREA)
  • Public Health (AREA)
  • Mechanical Engineering (AREA)
  • Dermatology (AREA)
  • Connection Of Motors, Electrical Generators, Mechanical Devices, And The Like (AREA)
  • Massaging Devices (AREA)

Abstract

La présente invention concerne un mécanisme de transmission de moteur de type à poussée latérale (10) qui comprend un boîtier (100), un ensemble de limitation de coulissement (200) et un dispositif de changement de direction (300). Le boîtier contient une source d'alimentation (110), un moteur (120) connecté électriquement à l'alimentation électrique et une carte de commande électronique (130) respectivement connectée électriquement à la source d'alimentation et au moteur. Une partie centrale du boîtier est pourvue d'un dispositif de décélération (140) qui a une extrémité de sortie traversant la partie supérieure du boîtier et qui est relié à un arbre de sortie du moteur. L'ensemble de limitation de coulissement comprend deux rails de coulissement (210) qui s'étendent dans la direction longitudinale du boîtier et qui sont fixés sur deux côtés du boîtier, un bloc coulissant principal (220) qui coopère en coulissement avec chacun des deux rails de coulissement et un cadre de support de mouvement (230) qui est monté sur la partie supérieure du bloc coulissant principal et sur lequel est monté un dispositif d'actionnement externe. Le dispositif de changement de direction comprend un vilebrequin (310) qui tourne de manière synchrone avec l'extrémité de sortie du dispositif de décélération et une bielle (320) respectivement reliée au vilebrequin et au bloc coulissant principal. Lorsque le moteur fonctionne, le dispositif de décélération amène le vilebrequin à tourner et tire ou pousse le bloc coulissant principal au moyen de la bielle, de telle sorte que le bloc coulissant principal amène le support de mouvement à coulisser le long des rails de coulissement. Le mécanisme de transmission de moteur de type à poussée latérale présente les avantages d'une efficacité de transmission de puissance élevée, d'une faible résistance de transmission et d'être facile à maintenir.
PCT/CN2021/118349 2020-09-22 2021-09-14 Mécanisme de transmission de moteur de type à poussée latérale WO2022062975A1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN202022087866.4 2020-09-22
CN202022087866.4U CN213711781U (zh) 2020-09-22 2020-09-22 一种侧推式电机传动机构

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