WO2022170858A1 - 液量识别装置、储液弹及液量识别系统 - Google Patents

液量识别装置、储液弹及液量识别系统 Download PDF

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Publication number
WO2022170858A1
WO2022170858A1 PCT/CN2021/139806 CN2021139806W WO2022170858A1 WO 2022170858 A1 WO2022170858 A1 WO 2022170858A1 CN 2021139806 W CN2021139806 W CN 2021139806W WO 2022170858 A1 WO2022170858 A1 WO 2022170858A1
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WO
WIPO (PCT)
Prior art keywords
conductive sheet
moving member
connector
liquid
liquid storage
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PCT/CN2021/139806
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English (en)
French (fr)
Inventor
徐升阳
李偌峰
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深圳雾芯科技有限公司
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Application filed by 深圳雾芯科技有限公司 filed Critical 深圳雾芯科技有限公司
Publication of WO2022170858A1 publication Critical patent/WO2022170858A1/zh

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    • GPHYSICS
    • G01MEASURING; TESTING
    • G01FMEASURING VOLUME, VOLUME FLOW, MASS FLOW OR LIQUID LEVEL; METERING BY VOLUME
    • G01F23/00Indicating or measuring liquid level or level of fluent solid material, e.g. indicating in terms of volume or indicating by means of an alarm
    • G01F23/22Indicating or measuring liquid level or level of fluent solid material, e.g. indicating in terms of volume or indicating by means of an alarm by measuring physical variables, other than linear dimensions, pressure or weight, dependent on the level to be measured, e.g. by difference of heat transfer of steam or water

Definitions

  • the present application relates to the technical field of electronic atomization equipment, and in particular, to a liquid quantity identification device, a liquid storage bomb and a liquid quantity identification system.
  • the liquid storage bomb of the atomization device can be replaced at any time, the liquid storage volume in the liquid storage bomb cannot be directly displayed, and the user cannot know the current liquid storage volume in the liquid storage bomb after changing different liquid storage bombs.
  • an object of the present application is to provide a liquid amount identification device, which can be used to identify the liquid amount in the liquid storage bomb, and is convenient and compact in structure for detecting the liquid amount in the liquid storage bomb.
  • the present application also proposes a liquid storage bomb.
  • the present application also proposes a liquid amount identification system having the above-mentioned liquid amount identification device and a liquid storage bomb.
  • the liquid amount identification device comprises: a support; a moving part, the moving part is movably arranged on the support, and the moving part is provided with a first conductive sheet and a second conductive sheet arranged at intervals; a control element, the control element is connected to the first conductive sheet and the second conductive sheet, respectively; a driving device, the driving device is connected to the control element, the driving device is configured to obtain the moving piece The driving device cooperates with the moving member to drive the moving member to move; wherein, the moving member moves so that the first conductive sheet and the second conductive sheet are respectively connected to the identified liquid storage When the third conductive sheet on the bomb is in contact, the control element receives a signal to control the driving device to stop driving the moving member to move.
  • the liquid amount identification device of the present application by arranging the first conductive sheet and the second conductive sheet on the moving member, and using the driving device to drive the moving member to move, after the moving member moves to contact with the third conductive sheet of the liquid storage bomb , the driving device is used to output the distance moved by the moving piece to the control element, so as to identify the liquid volume in the liquid storage bomb, and realize the automatic identification of the liquid volume in the liquid storage bomb.
  • the liquid volume identification device works stably and reliably, and can quickly identify The liquid volume in the current liquid storage bomb, and the liquid volume identification device has a compact structure and occupies a small volume.
  • the liquid amount identification device further includes a first connector and a second connector, the first connector is provided on the bracket and is in contact with the first conductive sheet, and the second connector A connector is provided on the bracket and is in contact with the second conductive sheet, and the first connector and the second connector are respectively connected with the control element.
  • the liquid volume identification device further includes a fixing seat, the fixing seat is fixed on the bracket, and the first connector and the second connector are respectively provided on the fixing seat.
  • an assembly through hole is formed on the fixing base, and the first connector and the second connector respectively pass through the assembly through hole.
  • the driving device includes a driving module and an identification module, the identification module acquires the moving distance of the moving member, and the driving module includes: a driving motor; and a conversion member, the conversion member is respectively connected with The driving motor is connected to the moving member, and the converting member is configured to convert the rotation of the motor into the movement of the moving member.
  • the conversion member is a nut screw assembly, and the moving member is provided on the nut.
  • the driving motor is a stepping motor
  • the identification module is used to identify the number of steps of the stepping motor.
  • a guide rod is further provided on the bracket, and the guide rod cooperates with the moving member to guide the moving direction of the moving member.
  • the liquid amount identification device further includes a position sensor for detecting whether the moving member moves to an initial position.
  • the liquid storage bomb according to the present application includes a liquid storage shell and a piston base, the piston base is movably arranged in the liquid storage shell, and a third conductive sheet is provided on the piston base, and the third conductive sheet is used for any of the above-mentioned embodiments.
  • the first conductive sheet and the second conductive sheet of the liquid amount identification device described in item are in contact.
  • a third conductive sheet is arranged on the piston base to be suitable for the liquid amount identification device to recognize the liquid amount stored in the liquid storage bomb, so that the control element can obtain the current liquid amount in the liquid storage bomb, The user can easily know the liquid volume in the liquid storage bomb.
  • liquid quantity identification system according to another embodiment of the present application is briefly described below.
  • the liquid amount identification system according to the present application includes the liquid amount identification device and the liquid storage bomb of the above-mentioned embodiment. Since the liquid amount identification system according to the present application is provided with the liquid amount identification device and the liquid storage bomb of the above-mentioned embodiment, the liquid amount The identification device can make the user know the liquid amount in the current liquid storage bomb more conveniently, the liquid amount identification system is convenient to use, and the user experience is good.
  • FIG. 1 is a schematic structural diagram of a liquid quantity identification device according to an embodiment of the present application.
  • FIG. 2 is a front view of a liquid quantity identification system according to an embodiment of the present application
  • FIG. 3 is a side view of a liquid amount identification system according to an embodiment of the present application.
  • the bracket 11 The bracket 11, the first connector 111, the second connector 112, the fixing seat 113, the assembly through hole 1131,
  • the moving part 12 The moving part 12, the drive motor 141, the lead screw 142, the nut 143, the guide rod 144,
  • the liquid amount identification device 1 according to the embodiment of the present application will be described below with reference to FIGS. 1 to 3 .
  • the liquid amount identification device 1 includes a bracket 11 , a moving part 12 , a control element and a driving device.
  • the first conductive sheet 101 and the second conductive sheet 102, the control element is connected to the first conductive sheet 101 and the second conductive sheet 102 respectively
  • the driving device is connected to the control element, and the driving device is configured to obtain the moving distance of the moving member 12,
  • the driving device cooperates with the moving member 12 to drive the moving member 12 to move; when the moving member 12 moves until the first conductive sheet 101 and the second conductive sheet 102 respectively contact the third conductive sheet 103 on the identified liquid storage bomb 2,
  • the control element receives the signal to control the driving device to stop driving the moving member 12 to move.
  • the liquid storage bomb of the atomization device can be replaced at any time, the liquid storage volume in the liquid storage bomb cannot be directly displayed, and the user cannot know the current liquid storage volume in the liquid storage bomb after changing different liquid storage bombs.
  • the bracket 11 of the liquid amount identification device 1 is used as the skeleton structure of the liquid amount identification device 1 and can be used as the installation basis for other components.
  • a first conductive sheet 101 and a second conductive sheet 102 are provided on the side, and at least part of the first conductive sheet 101 and the second conductive sheet 102 are located at the free end of the moving member 12, but the first conductive sheet 101 and the second conductive sheet 102 are not Connection, the interior of the liquid storage bomb 2 is provided with a piston base 22 suitable for promoting the flow of the internal liquid, the distance between the piston base 22 and the top of the liquid storage bomb 2 can indicate the liquid storage volume in the liquid storage bomb 2, and the third
  • the conductive sheet 103 may be disposed on the bottom of the piston base 22 .
  • both the first conductive sheet 101 and the second conductive sheet 102 are in contact with the bottom of the piston base 22, and the third conductive sheet 103 can connect the first conductive sheet to the bottom of the piston base 22.
  • 101 is connected to the second conductive sheet 102. Since the first conductive sheet 101 and the second conductive sheet 102 are respectively connected to the control element, after the moving member 12 stops against the bottom wall of the piston base 22, the third conductive sheet 103 is used.
  • the first conductive sheet 101 and the second conductive sheet 102 can be connected to each other, and the pins corresponding to the first conductive sheet 101 and the second conductive sheet 102 can be short-circuited, so that the control element can recognize this signal and control the driving device. Stop continuing to drive the moving member 12 .
  • the driving device is configured to obtain the moving distance of the moving part 12, and after the moving part 12 stops moving, transmit the distance moved by the moving part 12 to the control element, and the control element can judge the liquid storage bomb according to the moving distance of the moving part 12. 2 in the liquid volume.
  • the liquid amount identification device 1 of the present application by arranging the first conductive sheet 101 and the second conductive sheet 102 on the moving member 12, and using the driving device to drive the moving member 12 to move, the moving member 12 moves to the same position as the liquid storage bomb 2. After the third conductive sheet 103 is in contact, the driving device is used to output the distance moved by the moving member 12 to the control element, so as to recognize the liquid amount in the liquid storage bomb 2, and realize the automatic identification of the liquid amount in the liquid storage bomb 2.
  • the liquid amount identification device 1 works stably and reliably, can quickly identify the liquid amount in the current liquid storage bomb 2, and the liquid amount identification device 1 has a compact structure and occupies a small volume.
  • the liquid amount identification device 1 further includes a first connector 111 and a second connector 112 .
  • the first connector 111 is provided on the bracket 11 and is in contact with the first conductive sheet 101
  • the second connector 112 is provided on the bracket 11 and is in contact with the second conductive sheet 102
  • the first connector 111 and the second connector 112 are respectively connected with the control element.
  • the first connector 111 and the second connector 112 are used to contact the first conductive sheet 101 and the second conductive sheet 102, and the control element can be connected to the first conductive sheet 101 and the second conductive sheet 101 through the first connector 111 and the second connector 112, respectively.
  • the second conductive sheet 102 is connected, and the first connector 111 and the second connector 112 can be used to transmit the current between the first conductive sheet 101 and the second conductive sheet 102 to connect the first conductive sheet 101 and the second conductive sheet
  • the control element can recognize that the first conductive sheet 101 and the second conductive sheet 102 are short-circuited.
  • Both the first connector 111 and the second connector 112 are arranged on the bracket 11 and can maintain good contact with the first conductive sheet 101 and the second conductive sheet 102 to ensure control during the movement of the moving part 12
  • the liquid volume identification device 1 further includes a fixing base 113 , the fixing base 113 is fixed on the bracket 11 , and the first connector 111 and the second connector 112 are respectively provided on the fixing base 113, the fixing seat 113 can be arranged in the bracket 11 toward the end of the liquid storage bomb 2, and the first connector 111 and the second connector 112 are arranged in the fixing bracket 11, so as to ensure the connection between the first connector 111 and the second connector 112.
  • the position of the connector 112 relative to the bracket 11 is stable and reliable, preventing the first connector 111 and the second connector 112 from moving.
  • the first connector 111 and the second connector 112 are kept in good contact with the first conductive sheet 101 and the second conductive sheet 102 respectively.
  • the fixing seat 113 is provided with an assembly through hole 1131 , and the first connector 111 and the second connector 112 respectively pass through the assembly through hole 1131 .
  • the fixed seat 113 can be configured in a "U" shape and surround the outer periphery of the moving member 12.
  • the two wall surfaces of the fixed seat 113 are respectively disposed opposite to the first conductive sheet 101 and the second conductive sheet 102.
  • the assembly through hole 1131 can be configured as two.
  • the first connector 111 and the second connector 112 are respectively arranged in the corresponding assembly through holes 1131, so that the first connector 111
  • the first connector 112 is facing and in contact with the first conductive sheet 101, and the second connector 112 is facing and in contact with the second conductive sheet 102.
  • the assembly through holes 1131 can limit the positions of the first connector 111 and the second connector 112, improve the first The reliability of the connector 111 and the second connector 112 in contact with the first conductive sheet 101 and the second conductive sheet 102 .
  • the driving device includes a driving module and an identification module
  • the identification module acquires the moving distance of the moving member 12
  • the driving module includes: a driving motor 141 and a conversion member, and the conversion member is respectively connected to the driving motor 141 and the moving member 12 .
  • the conversion member is configured to convert the movement of the motor into the movement of the moving member 12 .
  • the drive motor 141 may be configured as a stepper motor
  • the identification module is used to identify the number of steps of the stepper motor
  • the identification module may be connected to the drive motor 141
  • the identification module may drive the stepper motor to rotate by identifying
  • the pulse signal of the stepper motor is obtained to determine the number of steps of the stepper motor
  • the rotation angle of the output shaft of the stepper motor can be obtained according to the number of pulse signals.
  • the rotation angle can be converted into movement according to the converter According to the transmission ratio of the moving distance of the moving element 12, the moving distance of the moving element 12 is calculated, so that the control element can calculate the liquid volume of the corresponding liquid storage bomb 2 according to the moving distance.
  • the conversion member is a nut-screw assembly
  • the moving member 12 is provided on the nut 143
  • the output shaft of the driving motor 141 can be connected with the lead screw 142
  • the output shaft drives the lead screw 142 to rotate through the output torque
  • the nut 143 cooperates with the lead screw 142
  • the nut 143 moves relative to the lead screw 142 under the rotation of the lead screw 142, thereby converting the rotation of the output shaft of the drive motor 141 into the movement of the nut 143
  • the moving part 12 is arranged on the nut 143 and follows the nut 143 moves, and drives the first conductive sheet 101 and the second conductive sheet 102 to move toward the third conductive sheet 103 on the liquid storage bomb 2 .
  • the bracket 11 is provided with a guide rod 144 , and the guide rod 144 is movably matched with the moving member 12 to guide the moving direction of the moving member 12 .
  • the guide rod 144 may be disposed in parallel with the output shaft of the driving motor 141 and the lead screw 142
  • the nut 143 may be provided with a guide hole suitable for the guide rod 144 to pass through
  • the guide rod 144 may be used to limit the movement direction of the nut 143 And limit the rotation of the nut 143, so as to ensure that the nut 143 can accurately convert the rotation of the lead screw 142 into the translation of the nut 143 during the process of matching with the lead screw 142, so as to make the movement of the moving part 12 more stable and reliable, reducing the drive motor 141
  • the error generated in converting the rotation angle into the translation distance of the moving member 12 improves the accuracy of the calculation of the moving distance of the moving member 12, so as to obtain the liquid volume in the liquid storage bomb 2 more accurately.
  • the liquid amount identification device 1 further includes a position sensor 104, and the position sensor 104 is used to detect whether the moving member 12 moves to the initial position. Because the liquid storage bomb 2 can be used in the atomizing device, and the liquid storage bomb 2 can be replaced at any time, and the liquid volume identification device 111 can be installed inside the atomization device, after replacing the liquid storage bomb 2, it needs to be replaced When the moving part 12 is reset, whether the moving part 12 is reset can be determined by setting the position sensor 104 to ensure that the initial position of the moving part 12 is consistent in each measurement process, and the liquid quantity identification device 1 is further improved.
  • the liquid volume identification device 1 may be configured as a Hall element, the Hall element may be arranged at the bottom of the bracket 11 , and the position of the Hall element may be used as a reset identification position. After the moving member 12 is reset, it moves A trigger device can be provided at the position corresponding to the Hall element on the part 12, so that the Hall element can sense the reset of the moving part 12, so as to send a reset signal to the control element, so that the liquid quantity identification device 1 can perform the next measurement.
  • the liquid storage bomb 2 according to another embodiment of the present application is briefly described below.
  • the liquid storage bomb 2 includes a liquid storage shell 21 and a piston base 22, the piston base 22 is movably arranged in the liquid storage shell 21, and a third conductive sheet 103 is provided on the piston base 22.
  • the third conductive sheet 103 is used for in contact with the first conductive sheet 101 and the second conductive sheet 102 of the liquid amount identification device 1 described in any one of the above embodiments.
  • the third conductive sheet 103 is provided on the piston base 22 to be suitable for the liquid amount recognition device 1 to recognize the liquid amount stored in the liquid storage bomb 2, so that the control element can obtain the current liquid storage bomb 2, the user can easily know the liquid volume in the liquid storage bomb 2.
  • the liquid amount identification system 3 according to another embodiment of the present application is briefly described below.
  • the liquid amount identification system 3 according to the present application includes the liquid amount identification device 1 and the liquid storage bomb 2 of the above-mentioned embodiment, because the liquid amount identification system 3 according to the present application is provided with the liquid amount identification device 1 and the liquid storage bomb of the above-mentioned embodiment. 2. Therefore, the liquid amount identification device 1 can make the user know the liquid amount in the current liquid storage bomb 2 more conveniently.
  • the liquid amount identification system 3 is easy to use and has a good user experience.
  • first feature and “second feature” may include one or more of the features.
  • a first feature being "above” or “under” a second feature may include that the first and second features are in direct contact, or that the first and second features are not in direct contact but through them Additional feature contacts between.
  • the first feature "above”, “over” and “above” the second feature includes that the first feature is directly above and obliquely above the second feature, or simply means that the first feature is level higher than Second feature.

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Abstract

一种液量识别装置(1)、储液弹(2)及液量识别系统(3),液量识别装置(1)包括:支架(11);移动件(12),移动件(12)可移动地设在支架(11)上,移动件(12)上设有间隔设置的第一导电片(101)和第二导电片(102);控制元件,控制元件分别与第一导电片(101)和第二导电片(102)相连;驱动装置,驱动装置与控制元件相连,驱动装置被构造成可获取移动件(12)的移动距离,驱动装置与移动件(12)配合以驱动移动件(12)移动;其中,移动件(12)移动至使第一导电片(101)和第二导电片(102)分别与被识别储液弹(2)上的第三导电片(103)接触时,控制元件接收信号以控制驱动装置停止驱动移动件(12)移动。

Description

液量识别装置、储液弹及液量识别系统
相关申请的交叉引用
本申请基于申请号为:2021203682794,申请日为2021年02月09日的中国专利申请提出,并要求该中国专利申请的优先权,该中国专利申请的全部内容在此引入本申请作为参考。
技术领域
本申请涉及电子雾化设备技术领域,尤其是涉及一种液量识别装置、储液弹及液量识别系统。
背景技术
相关技术中,雾化设备的储液弹可以随时进行更换,储液弹内的储液量无法直接显示,用户在更换不同的储液弹后无法了解到当前储液弹内的储液量。
申请内容
本申请旨在至少解决现有技术中存在的技术问题之一。为此,本申请的一个目的在于提出一种液量识别装置,该液量识别装置可以用于识别储液弹内的液量,对于储液弹内的液量检测方便、结构紧凑。
本申请还提出一种储液弹。
本申请还提出一种具有上述液量识别装置和储液弹的液量识别系统。
根据本申请的液量识别装置包括:支架;移动件,所述移动件可移动地设在所述支架上,所述移动件上设有间隔设置的第一导电片和第二导电片;控制元件,所述控制元件分别与所述第一导电片和所述第二导电片相连;驱动装置,所述驱动装置与所述控制元件相连,所述驱动装置被构造成可获取所述移动件的移动距离,所述驱动装置与所述移动件配合以驱动所述移动件移动;其中,所述移动件移动至使所述第一导电片和所述第二导电片分别与被识别储液弹上的第三导电片接触时,所述控制元件接收信号以控制所述驱动装置停止驱动所述移动件移动。
根据本申请的液量识别装置,通过在移动件上设置第一导电片和第二导电片,并利用驱动装置驱动移动件移动,在移动件移动至与储液弹的第三导电片接触后,利用驱动装置向控制元件输出移动件所移动的距离,从而识别到储液弹中的液量,实现了储液弹中液量的自动识别,该液量识别装置工作稳定可靠,能够快速识别当前储液弹内的液量,并且液量识别装置的结构紧凑占用体积小。
根据本申请的一些实施例,液量识别装置还包括第一连接器和第二连接器,所述第一连接器设在所述支架上且与所述第一导电片接触,所述第二连接器设在所述支架上且与所述第二导电片接触,所述第一连接器和所述第二连接器分别与所述控制元件相连。
根据本申请的一些实施例,液量识别装置还包括固定座,所述固定座固定在所述支架上,所述第一连接器和所述第二连接器分别设在所述固定座上。
根据本申请的一些实施例,所述固定座上设有装配通孔,所述第一连接器和所述第二连接器分别穿设在所述装配通孔内。
根据本申请的一些实施例,所述驱动装置包括驱动模块和识别模块,所述识别模块获取所述移动件的移动距离,所述驱动模块包括:驱动电机;转换件,所述转换件分别与所述驱动电机和所述移动件相连,所述转换件被构造成将所述电机的转动转换成所述移动件的移动。
根据本申请的一些实施例,所述转换件为螺母丝杆组件,所述移动件设在螺母上。
根据本申请的一些实施例,所述驱动电机为步进电机,所述识别模块用于识别所述步进电机的步数。
根据本申请的一些实施例,所述支架上还设有导向杆,所述导向杆与所述移动件移动配合以导引所述移动件的移动方向。
根据本申请的一些实施例,液量识别装置还包括位置传感器,所述位置传感器用于检测所述移动件是否移动至初始位置。
下面简单描述根据本申请另一方面实施例的储液弹。
根据本申请的储液弹包括储液壳和活塞底座,活塞底座可活动地设在储液壳内,活塞底座上设有第三导电片,第三导电片用于与上述实施例中任意一项所述的液量识别装置的第一导电片和第二导电片接触。根据本申请的储液弹在活塞底座上设置第三导电片以适于令液量识别装置识别到储液弹内所储存的液量,可以令控制元件获取当前储液弹内的液量,用户可以方便地了解到储液弹内的液量。
下面简单描述根据本申请另一方面实施例的液量识别系统。
根据本申请的液量识别系统包括上述实施例的液量识别装置和储液弹,由于根据本申请的液量识别系统设置有上述实施例的液量识别装置和储液弹,因此该液量识别装置可以令用户更加方便地了解到当前储液弹内的液量,该液量识别系统的使用方便,用户体验好。
本申请的附加方面和优点将在下面的描述中部分给出,部分将从下面的描述中变得明显,或通过本申请的实践了解到。
附图说明
本申请的上述和/或附加的方面和优点从结合下面附图对实施例的描述中将变得明显和容易理解,其中:
图1是根据本申请实施例的液量识别装置的结构示意图;
图2是根据本申请实施例的液量识别系统的主视图;
图3是根据本申请实施例的液量识别系统的侧视图。
附图标记:
液量识别设备1,
支架11,第一连接器111,第二连接器112,固定座113,装配通孔1131,
移动件12,驱动电机141,丝杠142,螺母143,导向杆144,
第一导电片101,第二导电片102,位置传感器104,
储液弹2,
储液壳21,活塞底座22,第三导电片103,
液量识别系统3。
具体实施方式
下面详细描述本申请的实施例,所述实施例的示例在附图中示出,其中自始至终相同或类似的标号表示相同或类似的元件或具有相同或类似功能的元件。下面通过参考附图描述的实施例是示例性的,仅用于解释本申请,而不能理解为对本申请的限制。
下面参考图1-图3描述根据本申请实施例的液量识别装置1。
如图1所示,根据本申请的液量识别装置1包括支架11、移动件12、控制元件和驱动装置,移动件12可移动地设在支架11上,移动件12上设置有间隔设置的第一导 电片101和第二导电片102,控制元件分别与第一导电片101和第二导电片102相连,驱动装置与控制元件相连,驱动装置被构造为可获取移动件12的移动距离,驱动装置与移动件12配合以驱动移动件12移动;其中移动件12移动至使第一导电片101和第二导电片102分别与被识别储液弹2上的第三导电片103接触时,控制元件接收信号以控制驱动装置停止驱动移动件12移动。
相关技术中,雾化设备的储液弹可以随时进行更换,储液弹内的储液量无法直接显示,用户在更换不同的储液弹后无法了解到当前储液弹内的储液量。
根据本申请的液量识别装置1的支架11作为液量识别装置1的骨架结构,可以作为其他零部件的安装基础,移动件12可移动地设置在支架11上,并在移动件12的两侧设置第一导电片101和第二导电片102,第一导电片101和第二导电片102的至少部分位于移动件12的自由端,但第一导电片101和第二导电片102并不连接,储液弹2的内部设置有适于推动内部液体流动的活塞底座22,活塞底座22与储液弹2顶端之间的距离可以表示储液弹2内的储液量大小,而第三导电片103可以设置于活塞底座22的底部。移动件12在移动至自由端与储液弹2的底部接触时,第一导电片101与第二导电片102均与活塞底座22的底部接触,且第三导电片103可以将第一导电片101与第二导电片102导通,由于第一导电片101与第二导电片102分别与控制元件连接,在移动件12至与活塞底座22的底壁止抵后,利用第三导电片103可以令第一导电片101与第二导电片102之间连通,可以使与第一导电片101和第二导电片102对应的引脚发生短路,从而令控制元件识别这一信号并控制驱动装置停止继续驱动移动件12。
驱动装置通过被构造为可获取移动件12的移动距离,在移动件12停止移动后,将移动件12所移动的距离传递至控制元件,控制元件可以根据移动件12移动的距离判断储液弹2中的液量。
根据本申请的液量识别装置1,通过在移动件12上设置第一导电片101和第二导电片102,并利用驱动装置驱动移动件12移动,在移动件12移动至与储液弹2的第三导电片103接触后,利用驱动装置向控制元件输出移动件12所移动的距离,从而识别到储液弹2中的液量,实现了储液弹2中液量的自动识别,该液量识别装置1工作稳定可靠,能够快速识别当前储液弹2内的液量,并且液量识别装置1的结构紧凑占用体积小。
根据本申请的一些实施例,液量识别装置1还包括第一连接器111和第二连接器112,第一连接器111设在支架11上且与第一导电片101接触,第二连接器112设在支架11上且与第二导电片102接触,第一连接器111和第二连接器112分别与控制元 件相连。
第一连接器111和第二连接器112用于与第一导电片101和第二导电片102接触,控制元件可以通过第一连接器111和第二连接器112分别与第一导电片101和第二导电片102连接,第一连接器111和第二连接器112可以用于传输第一导电片101与第二导电片102之间的电流,以在第一导电片101与第二导电片102接通后能够令控制元件识别到第一导电片101与第二导电片102发生短接。
第一连接器111和第二连接器112均设置在支架11上,可以保持与第一导电片101与第二导电片102之间的良好接触,以确保在移动件12移动的过程中保证控制元件分别与第一导电片101和第二导电片102之间的电连接。
如图1所示,根据本申请的一些实施例,液量识别装置1还包括固定座113,固定座113固定在支架11上,第一连接器111和第二连接器112分别设在固定座113上,固定座113可以设置在支架11中朝向储液弹2的端部,第一连接器111和第二连接器112设置在固定支架11内,从而确保第一连接器111和第二连接器112相对支架11的位置稳定可靠,避免第一连接器111和第二连接器112发生移动。在移动件12带动第一导电片101和第二导电片102移动的过程中,保持第一连接器111和第二连接器112分别与第一导电片101和第二导电片102的良好接触。
根据本申请的一些实施例,固定座113上设置有装配通孔1131,第一连接器111和第二连接器112分别穿设在装配通孔1131内。固定座113可以构造“U”形且环绕在移动件12的外周,固定座113的两个壁面分别与第一导电片101和第二导电片102正对设置,装配通孔1131可以构造为两个,且对应贯通与第一导电片101和第二导电片102对应的壁面,第一连接器111和第二连接器112分别设置在相应的装配通孔1131中,从而使第一连接器111与第一导电片101正对并接触,第二连接器112与第二导电片102正对并接触,装配通孔1131可以限制第一连接器111和第二连接器112的位置,提高第一连接器111、第二连接器112与第一导电片101和第二导电片102接触的可靠性。
根据本申请的一些实施例,驱动装置包括驱动模块和识别模块,识别模块获取移动件12的移动距离,驱动模块包括:驱动电机141和转换件,转换件分别与驱动电机141和移动件12相连,转换件被构造成将电机的转换成移动件12的移动。
根据本申请的一些实施例,驱动电机141可以构造为步进电机,识别模块用于识别步进电机的步数,识别模块可以与该驱动电机141相连,识别模块可以通过识别驱动步进电机转动的脉冲信号,从而确定步进电机的步数,并根据脉冲信号的数量得知步 进电机输出轴的转动角度,在获取步进电机的转动角度后,可以根据转换件将转动角度转换为移动件12移动距离的传动比,计算出移动件12的移动距离,从而使控制元件根据移动距离计算出相应储液弹2的液量。
根据本申请的一些实施例,转换件为螺母丝杠组件,移动件12设在螺母143上,驱动电机141的输出轴可以与丝杠142相连,输出轴通过输出转矩以驱动丝杠142转动,螺母143与丝杠142配合,螺母143在丝杠142的转动下相对丝杠142移动,从而将驱动电机141输出轴的转动转换为螺母143的移动,移动件12设置在螺母143上随螺母143的移动而移动,并带动第一导电片101和第二导电片102朝向储液弹2上的第三导电片103移动。
根据本申请的一些实施例,支架11上设置有导向杆144,导向杆144与移动件12移动配合以导引移动件12的移动方向。具体地,导向杆144可以与驱动电机141的输出轴以及丝杠142平行设置,螺母143上可以设置有适于导向杆144穿过的导向孔,导向杆144可以用于限制螺母143的移动方向并且限制螺母143的转动,从而确保螺母143在与丝杠142配合的过程中能够准确地将丝杠142的转动转化为螺母143的平移,以使移动件12的移动更加稳定可靠,减少驱动电机141在将转动角度转化为移动件12平移距离中产生的误差,提高对移动件12移动距离计算的准确性,以更准确地获得储液弹2内液量。
根据本申请的一些实施例,液量识别装置1还包括位置传感器104,位置传感器104用于检测移动件12是否移动至初始位置。由于,储液弹2可以用于雾化设备中,而储液弹2可以随时更换,而液量识别装置111装置可以设置于作为雾化设备的内部,在更换储液弹2后,需要重新将移动件12复位,通过设置位置传感器104可以确定移动件12是否复位,保证移动件12在每次的测量过程中初始位置一致,进一步完善了液量识别装置1。
根据本申请的一些实施例,液量识别装置1可以构造为霍尔元件,霍尔元件可以设置于支架11的底部,霍尔元件的位置可以作为复位识别位置,在移动件12复位后,移动件12上与霍尔元件对应的位置可以设置触发装置,以使霍尔元件可以感应到移动件12复位,从而向控制元件发出复位信号,以便于液量识别装置1进行下一次测量。
下面简单描述根据本申请另一方面实施例的储液弹2。
根据本申请的储液弹2包括储液壳21和活塞底座22,活塞底座22可活动地设在储液壳21内,活塞底座22上设有第三导电片103,第三导电片103用于与上述实施例中任意一项所述的液量识别装置1的第一导电片101和第二导电片102接触。根据本 申请的储液弹2在活塞底座22上设置第三导电片103以适于令液量识别装置1识别到储液弹2内所储存的液量,可以令控制元件获取当前储液弹2内的液量,用户可以方便地了解到储液弹2内的液量。
下面简单描述根据本申请另一方面实施例的液量识别系统3。
根据本申请的液量识别系统3包括上述实施例的液量识别装置1和储液弹2,由于根据本申请的液量识别系统3设置有上述实施例的液量识别装置1和储液弹2,因此该液量识别装置1可以令用户更加方便地了解到当前储液弹2内的液量,该液量识别系统3的使用方便,用户体验好。
在本申请的描述中,需要理解的是,术语“中心”、“纵向”、“横向”、“长度”、“宽度”、“厚度”、“上”、“下”、“前”、“后”、“左”、“右”、“竖直”、“水平”、“顶”、“底”、“内”、“外”、“顺时针”、“逆时针”、“轴向”、“径向”、“周向”等指示的方位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述本申请和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本申请的限制。
在本申请的描述中,“第一特征”、“第二特征”可以包括一个或者更多个该特征。
在本申请的描述中,“多个”的含义是两个或两个以上。
在本申请的描述中,第一特征在第二特征“之上”或“之下”可以包括第一和第二特征直接接触,也可以包括第一和第二特征不是直接接触而是通过它们之间的另外的特征接触。
在本申请的描述中,第一特征在第二特征“之上”、“上方”和“上面”包括第一特征在第二特征正上方和斜上方,或仅仅表示第一特征水平高度高于第二特征。
在本说明书的描述中,参考术语“一些实施例”、“一些实施例”、“示意性实施例”、“示例”、“具体示例”、或“一些示例”等的描述意指结合该实施例或示例描述的具体特征、结构、材料或者特点包含于本申请的至少一些实施例或示例中。在本说明书中,对上述术语的示意性表述不一定指的是相同的实施例或示例。而且,描述的具体特征、结构、材料或者特点可以在任何的一个或多个实施例或示例中以合适的方式结合。
尽管已经示出和描述了本申请的实施例,本领域的普通技术人员可以理解:在不脱离本申请的原理和宗旨的情况下可以对这些实施例进行多种变化、修改、替换和变型,本申请的范围由权利要求及其等同物限定。

Claims (11)

  1. 一种液量识别装置,其特征在于,包括:
    支架;
    移动件,所述移动件可移动地设在所述支架上,所述移动件上设有间隔设置的第一导电片和第二导电片;
    控制元件,所述控制元件分别与所述第一导电片和所述第二导电片相连;
    驱动装置,所述驱动装置与所述控制元件相连,所述驱动装置被构造成可获取所述移动件的移动距离,所述驱动装置与所述移动件配合以驱动所述移动件移动;其中,所述移动件移动至使所述第一导电片和所述第二导电片分别与被识别储液弹上的第三导电片接触时,所述控制元件接收信号以控制所述驱动装置停止驱动所述移动件移动。
  2. 根据权利要求1所述的液量识别装置,其特征在于,还包括第一连接器和第二连接器,所述第一连接器设在所述支架上且与所述第一导电片接触,所述第二连接器设在所述支架上且与所述第二导电片接触,所述第一连接器和所述第二连接器分别与所述控制元件相连。
  3. 根据权利要求2所述的液量识别装置,其特征在于,还包括固定座,所述固定座固定在所述支架上,所述第一连接器和所述第二连接器分别设在所述固定座上。
  4. 根据权利要求3所述的液量识别装置,其特征在于,所述固定座上设有装配通孔,所述第一连接器和所述第二连接器分别穿设在所述装配通孔内。
  5. 根据权利要求1-4中任一项所述的液量识别装置,其特征在于,所述驱动装置包括驱动模块和识别模块,所述识别模块获取所述移动件的移动距离,所述驱动模块包括:
    驱动电机;
    转换件,所述转换件分别与所述驱动电机和所述移动件相连,所述转换件被构造成将所述电机的转动转换成所述移动件的移动。
  6. 根据权利要求5所述的液量识别装置,其特征在于,所述转换件为螺母丝杆组件,所述移动件设在螺母上。
  7. 根据权利要求5或6所述的液量识别装置,其特征在于,所述驱动电机为步进电机,所述识别模块用于识别所述步进电机的步数。
  8. 根据权利要求1-7中任一项所述的液量识别装置,其特征在于,所述支架上还 设有导向杆,所述导向杆与所述移动件移动配合以导引所述移动件的移动方向。
  9. 根据权利要求1-8中任一项所述的液量识别装置,其特征在于,还包括位置传感器,所述位置传感器用于检测所述移动件是否移动至初始位置。
  10. 一种储液弹,其特征在于,包括储液壳和活塞底座,所述活塞底座可活动地设在所述储液壳内,所述活塞底座上设有第三导电片,所述第三导电片用于与权利要求1-9中任一项所述的液量识别装置的第一导电片和第二导电片接触。
  11. 一种液量识别系统,其特征在于,包括:权利要求1-9中任一项所述的液量识别装置和权利要求10所述的储液弹。
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