WO2016033783A1 - Appareil de test de résistance d'atomiseur - Google Patents

Appareil de test de résistance d'atomiseur Download PDF

Info

Publication number
WO2016033783A1
WO2016033783A1 PCT/CN2014/085942 CN2014085942W WO2016033783A1 WO 2016033783 A1 WO2016033783 A1 WO 2016033783A1 CN 2014085942 W CN2014085942 W CN 2014085942W WO 2016033783 A1 WO2016033783 A1 WO 2016033783A1
Authority
WO
WIPO (PCT)
Prior art keywords
atomizer
plate
movable
fixing
component
Prior art date
Application number
PCT/CN2014/085942
Other languages
English (en)
Chinese (zh)
Inventor
刘秋明
Original Assignee
惠州市吉瑞科技有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 惠州市吉瑞科技有限公司 filed Critical 惠州市吉瑞科技有限公司
Priority to CN201490000187.9U priority Critical patent/CN205910261U/zh
Priority to PCT/CN2014/085942 priority patent/WO2016033783A1/fr
Publication of WO2016033783A1 publication Critical patent/WO2016033783A1/fr

Links

Images

Classifications

    • GPHYSICS
    • G01MEASURING; TESTING
    • G01RMEASURING ELECTRIC VARIABLES; MEASURING MAGNETIC VARIABLES
    • G01R27/00Arrangements for measuring resistance, reactance, impedance, or electric characteristics derived therefrom
    • G01R27/02Measuring real or complex resistance, reactance, impedance, or other two-pole characteristics derived therefrom, e.g. time constant

Definitions

  • the utility model relates to the technical field of electronic cigarettes, in particular to an atomizer resistance testing device.
  • E-cigarettes are a new type of electronic product that has the same appearance as ordinary cigarettes and the same taste as cigarettes, but e-cigarettes are healthier and more environmentally friendly than traditional cigarettes.
  • the electronic cigarette atomizes the smoke liquid containing nicotine and essence into a particle output through an atomizer. E-cigarettes do not contain tar and other harmful components in ordinary cigarettes, nor do they produce second-hand smoke.
  • the existing electronic cigarette includes an atomizer for atomizing the smoke oil and a battery rod for powering the atomizer.
  • the atomizer usually includes an atomization sleeve 1 and is disposed at the The heating wire 2 in the atomizing sleeve 1 and the atomizer electrode 3 inserted in one end of the atomizer and electrically connected to the heating wire 2 are described.
  • the atomizer electrode includes a first electrode 31 and a second electrode 32 which are separated from each other.
  • One end of the first electrode 31 extends outside the atomization sleeve 1 and the other end is inserted into the atomization sleeve 1 and One end of the heating wire 2 is electrically connected; one end of the second electrode 32 extends outside the atomizing sleeve 1 , and the other end is inserted into the atomizing sleeve 1 and electrically connected to the other end of the heating wire 2
  • the battery rod can supply power to the heating wire 2 through the atomizer electrode 3 when the atomizer is connected to the battery rod.
  • the output power of the electronic cigarette needs to be tested when producing the electronic cigarette, and the resistance of the atomizer is electronic.
  • the important parameter of the smoke output power therefore, in the production process of the electronic cigarette, after the atomizer of the electronic cigarette is produced, the resistance value in the atomizer needs to be tested to determine whether the atomizer is qualified or not.
  • the existing test device for the atomizer is usually an ohmmeter. During the test, the operator directly tests the two electrodes of the atomizer with the two test leads of the ohmmeter, which is not only low in efficiency but also easy to shake. The electrodes are not easy to be aligned with the atomizer due to other reasons, and the test is inaccurate, resulting in a high defect rate of the product.
  • the utility model provides a nebulizer resistance testing device, which is not only convenient for testing and testing, but also can avoid the test probe of the atomizer resistance can not be aligned with the atomizer electrode. condition.
  • the utility model provides a nebulizer resistance testing device, which comprises:
  • each of the recessed holes is for positioning an atomizer at the recessed hole, and the recessed hole has a depth smaller than a length of the atomizer, so that When the atomizer is inserted into the recessed hole, one end of the atomizer provided with the atomizer electrode extends outside the recessed hole;
  • a fixing assembly for fixing the atomizer in each of the recessed holes at a preset position
  • test assembly for testing at least one of the atomizers on the positioning assembly
  • a movable component disposed above the recessed hole and capable of moving up and down under the action of an external force, the movable component being provided with an electrical connection with the test component and capable of being atomized when the movable component moves downward a test probe that abuts the electrode;
  • a power assembly coupled to the movable assembly and configured to push and pull the movable assembly to move a probe on the movable assembly toward or away from the atomizer.
  • the atomizer resistance testing device wherein the positioning assembly comprises a movable plate and a fixed plate, the movable plate and the fixed plate each comprise a first surface, and the first surface of the movable plate and the fixed plate The first surface is opposite;
  • the first surface of the fixing plate and the first surface of the movable plate are respectively provided with at least one groove, and each groove on the first surface of the fixing plate and the first surface of the movable plate One-to-one correspondence of the grooves, such that when the first surface of the fixing plate and the first surface of the movable plate are adjacent or adjacent to each other, the corresponding two on the fixing plate and the movable plate
  • the groove forms one of the recessed holes
  • the fixing assembly is configured to adjust a position of the movable plate so that the atomizer can be fixed at the preset position when the atomizer is positioned in the concave hole.
  • the atomizer resistance testing device wherein the fixing assembly includes a power assembly connected to the movable plate, the power assembly for adjusting the movable plate to be back and forth in a direction perpendicular to the fixed plate mobile.
  • the atomizer resistance testing device wherein the power component is a cylinder
  • the fixing component further includes:
  • a sliding cylinder that vertically passes through the fixing plate and is movable in the fixing plate, and the sliding cylinder avoids a position of the groove on the fixing plate, one end of the sliding cylinder abuts against the movable plate, and the other
  • One end cover is provided with a push plate connected to the cylinder, and the slide cylinder is used to move the movable plate away from the cylinder The direction of the fixing plate is pushed away;
  • the atomizer resistance testing device wherein the fixing component comprises at least one spring column, and the spring column in the fixing component corresponds to a concave hole in the positioning component, and the spring column is disposed on The inner side wall of the recessed hole, and the direction of the bullet column is perpendicular to the direction of the atomizer inserted into the recessed hole, such that the bullet column abuts the mist when the atomizer is inserted into the recessed hole
  • the side of the chemist is configured to fix the atomizer in the recessed hole.
  • the atomizer resistance testing device wherein the fixing assembly further comprises a spring corresponding to the spring column, the spring is sleeved on the spring column and used to apply the spring to the spring column The elastic force of the atomizer.
  • the atomizer resistance testing device wherein the atomizer resistance testing device further comprises a controller;
  • the positioning assembly further includes a sensor for transmitting a first trigger signal to the controller when detecting that the at least one atomizer is respectively fixed on the at least one recessed hole;
  • the controller is configured to control the power component to move the movable component when the first trigger signal is received, such that a test probe on the movable component is pressed against an electrode of the atomizer to Test component electrical connection;
  • the test assembly is specifically configured to test the atomizer when the test probe is pressed against the atomizer electrode.
  • the atomizer resistance testing device wherein the sensor is a proximity switch or a fiber sensor;
  • One of the proximity switches or fiber optic sensors is disposed in each of the recessed holes, and the proximity switch or fiber optic sensor in each recessed hole is used to generate when the atomizer is detected to be fixed in the recessed hole The first trigger signal.
  • the atomizer resistance testing device wherein the atomizer resistance testing device further comprises a picking device, the picking device comprising:
  • a robot comprising a base, a movable plate and a fixed plate, wherein the movable plate is fixedly disposed perpendicular to the At least one partition of the movable panel, each of the partitions being spaced apart from the movable panel;
  • the number of the fixing plates is consistent with and corresponding to the number of the partition plates on the movable plate, and the fixing plates are vertically fixed to the base, and each of the fixing plates is connected to the base.
  • a notch is disposed on one end, such that the movable plate passes through the notch of each of the fixing plates, is stacked on a side of the base on which the fixing plate is disposed, and the partition plate and the fixing plate on the movable plate Staggered
  • a sliding guide rail wherein one end of the sliding rail is disposed at one side of the atomizer, and the other end is disposed at a side of the preset position;
  • a moving assembly disposed on the sliding rail for controlling movement of the robot to a side of the atomizer such that each atomizer is located between a corresponding one of the partition and the fixed plate;
  • the moving assembly is further configured to move the movable panel such that the partition plate on the movable panel and the fixing plate corresponding thereto move the atomizer to move along the sliding guide to the preset position .
  • the atomizer resistance testing device wherein the moving component comprises:
  • each atomizer is aligned with a pair of the base Corresponding between the fixed plate and the partition;
  • a second cylinder for translating the robot into the atomizer direction after the first cylinder moves the robot to a side of the atomizer placement, such that each atomizer is located at the a pair of corresponding fixed plates and partitions on the base;
  • a third cylinder for moving the movable plate after each atomizer is located between the pair of corresponding fixing plates and the partition plate on the base, so that the corresponding fixed plates and the partitions on the base The plate clamps the atomizer between the fixed plate and the partition;
  • the second cylinder is further configured to move the robot away from the atomizer after the corresponding fixing plate and the partition plate on the base clamp the atomizer between the fixed plate and the partition plate The direction in which the atomizer is placed moves.
  • the moving component further comprises:
  • a fourth cylinder for adjusting a height of the robot after the first cylinder moves the robot to a side of the atomizer placement such that the height of the robot and the height of the atomizer Leveling so that after the second cylinder is translated in the direction of the atomizer, each atomizer is located between a pair of corresponding fixed plates and partitions on the base.
  • the surface of the mechanical hand that is in contact with the atomizer and the fixing plate are respectively provided with a pattern for increasing friction.
  • the utility model has the following advantages:
  • the atomizer is automatically tested by the atomizer resistance testing device, the labor cost of the atomizer is reduced, and the efficiency of the atomizer production is improved; and the atomization is ensured by the setting of the fixing component.
  • the device is fixed while being fixed at the recessed hole in the positioning assembly, thereby avoiding the situation that the test probe for testing the resistance of the atomizer electrode cannot be aligned with the atomizer electrode.
  • FIG. 1 is a schematic structural view of an atomizer in the prior art
  • FIG. 2 is a schematic structural view of an embodiment of an atomizer resistance testing device of the present invention
  • FIG. 3 is a schematic structural view of a positioning component, a fixing component, a movable component, and a power component of the atomizer resistance testing device of the present invention
  • FIG. 4 is a partial cross-sectional view showing the atomizer resistance testing device shown in FIG. 3;
  • FIG. 5 is another schematic structural view of a positioning component, a fixing component, a movable component, and a power component of the atomizer resistance testing device of the present invention
  • Figure 6 is a partial cross-sectional view showing the atomizer resistance testing device shown in Figure 5;
  • FIG. 7 is a schematic structural view of an embodiment of a pick-up device in a nebulizer resistance testing device of the present invention.
  • Figure 8 is a schematic structural view of a robot in the picking device shown in Figure 7;
  • Figure 9 is an exploded view of the robot shown in Figure 8.
  • Figure 10 is a plan view of one of the working states of the picking device shown in Figure 7;
  • Figure 11 is a plan view showing another working state of the picking device shown in Figure 7;
  • Figure 12 is a schematic view showing the structure of another working state of the pickup device shown in Figure 7.
  • the utility model provides a nebulizer resistance testing device, which can improve the efficiency of the atomizer production and ensure that the atomizer remains stationary during the test.
  • FIG. 2 is a schematic structural view of an embodiment of the atomizer resistance testing device of the present invention.
  • the atomizer resistance testing device includes a positioning assembly 21, a fixing assembly 22, a test assembly (not shown), a movable assembly 23, and a power assembly 24.
  • the positioning assembly 21 is provided with at least one recessed hole 211, wherein each of the recessed holes 211 is for positioning an atomizer at the recessed hole 211.
  • the depth of each of the recessed holes 211 is smaller than the length of the atomizer so that one end of the atomizer provided with the atomizer electrode extends to the recessed hole when the atomizer is inserted into the recessed hole 211 outer.
  • the fixing assembly 22 is used to fix the atomizer in each of the recessed holes 211 at a preset position to prevent the atomizer from moving in the recessed holes 211.
  • the movable assembly 23 is disposed directly above each of the recessed holes 211 of the positioning assembly 21, and is movable up and down by the power assembly 24, that is, moving away from the recessed holes 211 or toward the respective recessed holes 211.
  • the movable component 23 is provided with at least one test probe 231, wherein each test probe 231 on the movable component and each recessed hole 211 on the positioning component 21 are in one-to-one correspondence, and each test probe 231 and the test component are electrically connected.
  • each of the test probes 231 is provided with a conductive column (not shown) corresponding to the first electrode 31 and the second electrode 32 of the atomizer electrode and electrically isolated from each other.
  • the conductive post is electrically connected to the test component.
  • each test probe 231 on the movable assembly 23 can abut against the atomizer electrode of the atomizer fixed at the corresponding recess 211.
  • each test probe 231 on the movable assembly 23 exits its corresponding atomizer electrode so that the tested atomizer is removed.
  • test probe 231 on the test component and the movable component 23 is electrically connected to an atomizer of the atomizer disposed on each recess 211 of the positioning component 21 when each test probe 231 and each atomizer electrode abut each other.
  • the electrodes were tested.
  • the test circuit in the test component can use an existing test circuit, which is not specifically limited herein.
  • a power assembly 24 is coupled to the movable assembly 23 for pushing and pulling the movable assembly 23 to move the probe on the movable assembly 23 toward or away from the atomizer.
  • the atomizer is automatically tested by the atomizer resistance test device, the labor cost of the atomizer is reduced, and the efficiency of the atomizer production is improved; and the atomization is ensured by the setting of the fixed component.
  • the device is fixed while being fixed at the recessed hole in the positioning assembly, thereby avoiding the situation that the test probe for testing the resistance of the atomizer electrode cannot be aligned with the atomizer electrode.
  • the positioning component and the fixing component there are various configurations of the positioning component and the fixing component.
  • the positioning component and the fixing component will be described in detail below with reference to FIGS. 3 and 4.
  • FIG. 3 is a schematic structural view of a positioning component, a fixing component, a movable component and a power component of the atomizer resistance testing device of the present invention
  • FIG. 4 is an atomization shown in FIG. A partial cross-sectional view of the device for testing resistance.
  • the positioning assembly 21 includes a movable plate 212 and a fixed plate 213.
  • the movable plate 212 and the fixed plate 213 each include a first surface, and the first surface 2121 of the movable plate 212 is opposite to the first surface 2131 of the fixed plate 213.
  • the first surface of the fixing plate 213 and the first surface of the movable plate 212 are respectively provided with at least one groove, and each groove 2132 on the first surface of the fixing plate 213 and the movable plate 212
  • the grooves 2122 on the first surface are in one-to-one correspondence such that when the first surface of the fixing plate 213 and the first surface of the movable plate 212 are attached, the fixing plate 213 and the movable plate 212
  • the two corresponding grooves on the upper side form one of the recessed holes.
  • the fixing assembly is configured to adjust a position of the movable plate 212 such that the atomizer can be fixedly fixed at the preset position when positioned in the concave hole.
  • the first surface of the fixing plate 213 and the movable plate 212 are A surface may not be attached but adjacent, as long as the atomizer can be sandwiched in the recess formed by the two grooves.
  • the fixing assembly 22 includes a power assembly 221 coupled to the movable panel 212, wherein the power assembly 221 is configured to adjust the movable panel 212 to move back and forth in a direction perpendicular to the fixed panel. Specifically, when it is required to fix the atomizer at the recessed hole on the positioning assembly, the power assembly 221 pulls the movable plate 212 to move toward the fixed plate 213, so that the movable plate 212 and the fixed plate 213 clamp the atomizer. When the nebulizer needs to be removed, the power assembly 221 pushes the movable plate 212 away from the fixed plate 213 to take the atomizer out.
  • the force component 221 is a cylinder, and the moving direction of the cylinder 221 is perpendicular to the fixing plate 213.
  • the fixing plate 213 is further provided with a sliding cylinder 31 vertically passing through the fixing plate 213, wherein the sliding cylinder 31 can move in the fixing plate 213, and the sliding cylinder 31 avoids the The position of the groove on the fixing plate 213 is described.
  • One end of the sliding cylinder 31 abuts against the first surface of the movable plate 212, and the other end cover is provided with a push plate 32 connected to the cylinder 221 .
  • the length of the sliding cylinder 31 is greater than the thickness of the fixing plate 213, so that one end of the sliding cylinder 31 provided with the pushing plate 32 can extend beyond the side of the fixing plate 213 facing away from the movable plate 212.
  • the cylinder 221 pushes the push plate 32 to push the slide 31, so that the end at which the slide 31 abuts against the movable plate 212 pushes the movable case away from the fixed plate 213.
  • the fixing plate 213 is further provided with studs 33 which are sequentially passed through the movable plate 212, the hollow portion of the sliding cylinder 31, and the push plate 32, and are connected to the cylinder 221 .
  • the stud 33 is provided with a nut at one end of the movable plate 212, and the stud 33 is slidable within the slide 31.
  • one end of the stud 33 and the push plate 32 near the cylinder 221 is fixedly connected to one push rod, and the other end of the push rod is fixedly connected with the cylinder 221 so that the stud 33 and the push plate 32 are fixed. They are respectively fixedly coupled to the cylinder 221 such that the cylinder 221 pushes the slider 31 and pulls the stud 33 through the push rod.
  • FIG. 5 is another structural diagram of the positioning component, the fixing component, the movable component and the power component of the atomizer resistance testing device of the present invention
  • FIG. 6 is the atomization shown in FIG. A partial cross-sectional view of the device for testing resistance.
  • the fixing assembly includes at least one elastic column 1001, and the elastic column 1001 in the fixing assembly has a one-to-one correspondence with the concave holes in the positioning assembly 21.
  • Each of the column 1001 of the fixing assembly is disposed on an inner side wall of the recess corresponding to the column 1001, and the direction of the column 1001 is perpendicular to the direction of the atomizer 101 inserted into the hole.
  • the bomb The column 1001 abuts against the side of the atomizer 101 to fix the atomizer 101 in the pocket.
  • the fixing component further includes a spring 1002 corresponding to each of the columns 1001, wherein each spring 1002 is sleeved on the corresponding column 1001 and used to give the column 1001 The elastic force toward the atomizer 101 is applied.
  • the atomizer resistance testing device of the present invention further includes a controller (not shown), and the positioning component 21 further includes a sensor (not shown).
  • the sensor is specifically configured to send a first trigger signal to the controller when an atomizer is respectively fixed on each of the recessed holes 211.
  • the senor in this embodiment may be a proximity switch.
  • the proximity switch may be disposed at any position within the recess 211, such as the bottom or inner sidewall of the recess 211.
  • the proximity switch generates a first trigger signal when the proximity switch detects that the atomizer is fixed within the recess 211.
  • the sensor can also be a fiber optic sensor.
  • the atomizer When the atomizer is placed in the concave hole 211, the atomizer blocks the light beam irradiated to the fiber sensor, so the fiber sensor can determine whether the concave hole 211 is fixed in the fog by detecting the light intensity of the received light beam. Chemist.
  • the above is only an example of the sensor, and is not limited.
  • the controller When the controller receives the first trigger signal from the positioning component 21, the controller controls the power component 24 to move the movable component 23 such that each test probe 231 on the movable component respectively presses against the corresponding mist
  • the electrodes are on the electrodes such that the respective atomizer electrodes are electrically connected to the test assembly.
  • the test assembly is specifically configured to test the atomizer when the test probe 231 is pressed against the atomizer electrode.
  • the atomizer resistance testing device of the present invention further includes a picking device 10.
  • the test component sends the test results to the controller. If the test result is that all the atomizers are qualified, the controller is further configured to control the pick-up device 10 to transfer each atomizer on each of the recessed holes 211 to a predetermined position. If the test result is that part of the atomizer is qualified and part of the atomizer is unqualified, the controller is also used to control the atomizer resistance test device to stop running.
  • a reset switch (not shown) is also provided on the atomizer resistance test device.
  • the staff will test the unqualified nebulizer and take the restart switch.
  • the controller detects that the restart switch is pressed
  • the controller is also used to control the atomizer resistance test device to continue to operate. Specifically, the controller is configured to control the pick-up device 10 to transfer the remaining atomizers on each of the recessed holes to a predetermined position.
  • the atomizer resistance test device may not be provided with a restart switch.
  • the controller controls the nebulizer resistance test device to stop running, when the sensor detects that the failed atomizer leaves the recess 211, the sensor is further configured to send a second trigger signal to the controller.
  • the controller receives the second trigger signal, it is also used to control the atomizer resistance test device to continue to operate.
  • the controller is for controlling the pickup device 10 to transfer the remaining atomizers on the respective recessed holes 211 to a predetermined position.
  • the controller may not control the atomizer resistance test device to stop running, but first control the pick-up device 10 to test the unqualified atomization.
  • the device is transferred to a pre-set place where the unqualified atomizer is placed; after being placed, the pick-up device 10 is controlled to transfer the qualified atomizer to a predetermined position.
  • the pick-up device in the atomizer resistance test device will be described in detail below.
  • FIG. 7 is a schematic structural view of an embodiment of a pick-up device in the atomizer resistance testing device of the present invention.
  • the pick-up device 10 includes a robot 11, a slide rail 12, and a moving assembly 13.
  • FIG. 8 is a schematic structural view of a robot in the pickup device shown in FIG. 7, and FIG. 9 is an exploded view of the robot shown in FIG.
  • the robot 11 includes a base 111, a movable plate 112, and a fixed plate 113. At least one partition 114 perpendicular to the movable panel 112 is fixedly disposed on the movable panel 112, and each of the partitions 114 is spaced apart from the movable panel 112.
  • the number of the fixing plates 113 is consistent with one-to-one correspondence with the number of the partition plates 114 on the movable plate 112, and the fixing plates 113 are vertically fixed to the base, and each of the fixing plates 113 and the A notch 1134 is disposed on one end of the base, such that the movable plate 112 passes through the notch 1134 of each of the fixing plates 113, and is stacked on a side of the base where the fixing plate 113 is disposed, and the movable plate 112
  • the upper partition plate 114 and the fixed plate 113 are alternately arranged.
  • one end of the slide rail 12 is disposed on the side of each of the recessed holes 211 on the positioning assembly 21.
  • a moving assembly 13 is disposed on the sliding guide 12 for moving the robot to the atomizer Placed such that each atomizer is located between a corresponding one of the partitions and the fixed plate.
  • the moving assembly 13 is also for moving the movable panel such that the partition on the movable panel and the corresponding fixed plate sandwich the atomizer and move to a preset position.
  • the pick-up device is provided with a sliding guide rail, and the moving component is moved along the sliding guide rail to move the robot to the atomizer placement, so that one atomizer is located at a corresponding partition and fixed.
  • the partition plate on the movable plate and the corresponding fixing plate sandwich the atomizer and move to the preset position, thus realizing the atomization test by the machine.
  • the device moves from the placement of the atomizer to the preset position, which improves the testing efficiency of the atomizer and reduces the time cost and labor cost of the atomizer test.
  • the moving component 13 includes a bracket 130 disposed on the sliding rail 12.
  • the bracket 130 is movably provided with a first cylinder 131, a second cylinder 132, and a fourth cylinder 134, and the robot 11 is fixed to the bracket 130.
  • the moving assembly 13 further includes a third cylinder 133 that is fixed at one end of the movable plate 112 of the robot 11 and whose moving direction is parallel to the direction of the robot 11 for controlling the movement of the movable plate 112, so that the moving member 112 is moved.
  • Each of the partition plates 114 on the movable panel 112 moves in the direction of its corresponding fixed plate or in a direction away from the corresponding fixed plate.
  • the moving direction of the first cylinder 131 and the slide rail 12 are parallel to each other.
  • the first cylinder 131 is used to control the bracket 130 to move back and forth along the slide rail 12 to move the robot 11 from the side of the preset position to the mist through the slide rail 12.
  • the side of the device is placed on the side, or the robot moves from the side of the atomizer to the side of the preset position.
  • the fourth cylinder 134 is configured to adjust the height of the robot 11 after the first cylinder 131 moves the robot 11 to the side where the atomizer is placed, such that the height of the robot 11 and the mist The height of the chemist is flat, so that after the second cylinder 132 translates the robot 11 toward the atomizer, each atomizer is located on the base and a pair of corresponding fixed plates and partitions between.
  • the fourth cylinder may not be required to adjust the height of the atomizer.
  • the third cylinder 133 is also used to control the activity when the first cylinder 131 controls the movement of the robot 11 to the side of the atomizer.
  • the partitions on the plate are moved away from the corresponding fixed plates so that a space for accommodating an atomizer is reserved between the corresponding partitions and the fixed plates.
  • Fig. 10 is a plan view showing one of the operating states of the pickup device shown in Fig. 7.
  • the positioning component 21 is provided with a row of recessed holes 211, wherein each of the recessed holes 211 is provided with an atomizer 101.
  • the running direction of the sliding guide 12 is parallel to the course of the row of recessed holes 211.
  • Fig. 11 is a plan view showing another working state of the pickup device shown in Fig. 7.
  • the moving direction of the second cylinder 132 is perpendicular to the moving direction of the first cylinder 131 for moving the robot 11 to the atomizer after the first cylinder 131 moves the robot 11 to the side where the atomizer is placed.
  • the directions are translated such that each atomizer 101 is located between a pair of corresponding partitions 114 and fixed plates 113 on the base.
  • the third cylinder 113 moves the movable plate 112 such that the respective partition plates 114 and the fixing plates 113 on the base clamp the atomizer 101 between the partition plate 114 and the fixed plate 113.
  • Fig. 12 is a structural schematic view showing another working state of the pickup device shown in Fig. 7.
  • a fourth cylinder 134 in the moving assembly is used to adjust the height of the robot. After the respective partitions and fixing plates on the base clamp the atomizer between the fixed plate and the moving plate, the control robot 11 pulls up the atomizers from the respective recessed holes.
  • the second cylinder 132 is further configured to move the robot 11 in a direction away from the placement of the atomizer after the fourth cylinder 134 controls the robot 11 to pull up the atomizers.
  • the first cylinder 131 is further configured to push the robot 11 to move along the slide rail 12 to a preset position after the second cylinder 132 moves the robot 11 in a direction away from the atomizer.
  • the fourth cylinder can be used to control the robot to pull up the atomizer, and the second cylinder can be directly controlled.
  • the robot moves in a direction away from the placement of the atomizer to move each atomizer away from the atomizer.
  • the side of each pair of corresponding partitions and fixing plates of the manipulator that is in contact with the atomizer is provided with a pattern for increasing friction.
  • the robot can clamp the atomizer by applying a small pressure to the atomizer when the atomizer is clamped, thereby preventing the atomizer from being crushed during the process of clamping the atomizer.

Abstract

L'invention concerne un appareil de test de résistance d'atomiseur. L'appareil de test de résistance d'atomiseur comprend : un composant de positionnement (21), muni de plusieurs alésages (211) utilisés pour positionner des atomiseurs ; un composant de fixation (22) utilisé pour maintenir les atomiseurs dans les alésages (211) fixés au niveau de positions prédéfinies ; un composant de test utilisé pour tester au moins un atomiseur sur le composant de positionnement (21) ; un composant mobile (23) agencé au-dessus des alésages (211) et susceptible de se déplacer vers le haut et vers le bas sous l'effet d'une force externe, une sonde de test (231) étant agencée sur le composant mobile (23), connectée électriquement au composant de test et susceptible de venir en butée avec une électrode d'atomiseur lorsque le composant mobile (23) se déplace vers le bas ; et un composant de puissance (24) connecté avec le composant mobile (23) et utilisé pour pousser/tirer le composant mobile (23) afin de permettre à la sonde (231) sur le composant mobile (23) de s'approcher ou de s'éloigner des atomiseurs. Non seulement l'appareil de test de résistance d'atomiseur facilite les tests et assure des tests d'une grande efficacité, mais il est également susceptible d'empêcher les cas dans lesquels la sonde de test destinée à tester la résistance de l'électrode d'atomiseur ne peut pas être alignée avec l'électrode d'atomiseur.
PCT/CN2014/085942 2014-09-04 2014-09-04 Appareil de test de résistance d'atomiseur WO2016033783A1 (fr)

Priority Applications (2)

Application Number Priority Date Filing Date Title
CN201490000187.9U CN205910261U (zh) 2014-09-04 2014-09-04 雾化器电阻测试装置
PCT/CN2014/085942 WO2016033783A1 (fr) 2014-09-04 2014-09-04 Appareil de test de résistance d'atomiseur

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PCT/CN2014/085942 WO2016033783A1 (fr) 2014-09-04 2014-09-04 Appareil de test de résistance d'atomiseur

Publications (1)

Publication Number Publication Date
WO2016033783A1 true WO2016033783A1 (fr) 2016-03-10

Family

ID=55439030

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2014/085942 WO2016033783A1 (fr) 2014-09-04 2014-09-04 Appareil de test de résistance d'atomiseur

Country Status (2)

Country Link
CN (1) CN205910261U (fr)
WO (1) WO2016033783A1 (fr)

Cited By (20)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
USD825102S1 (en) 2016-07-28 2018-08-07 Juul Labs, Inc. Vaporizer device with cartridge
US10045567B2 (en) 2013-12-23 2018-08-14 Juul Labs, Inc. Vaporization device systems and methods
US10045568B2 (en) 2013-12-23 2018-08-14 Juul Labs, Inc. Vaporization device systems and methods
US10058130B2 (en) 2013-12-23 2018-08-28 Juul Labs, Inc. Cartridge for use with a vaporizer device
US10076139B2 (en) 2013-12-23 2018-09-18 Juul Labs, Inc. Vaporizer apparatus
US10104915B2 (en) 2013-12-23 2018-10-23 Juul Labs, Inc. Securely attaching cartridges for vaporizer devices
US10111470B2 (en) 2013-12-23 2018-10-30 Juul Labs, Inc. Vaporizer apparatus
USD836541S1 (en) 2016-06-23 2018-12-25 Pax Labs, Inc. Charging device
USD842536S1 (en) 2016-07-28 2019-03-05 Juul Labs, Inc. Vaporizer cartridge
US10244793B2 (en) 2005-07-19 2019-04-02 Juul Labs, Inc. Devices for vaporization of a substance
US10279934B2 (en) 2013-03-15 2019-05-07 Juul Labs, Inc. Fillable vaporizer cartridge and method of filling
USD849996S1 (en) 2016-06-16 2019-05-28 Pax Labs, Inc. Vaporizer cartridge
USD851830S1 (en) 2016-06-23 2019-06-18 Pax Labs, Inc. Combined vaporizer tamp and pick tool
US10405582B2 (en) 2016-03-10 2019-09-10 Pax Labs, Inc. Vaporization device with lip sensing
US10512282B2 (en) 2014-12-05 2019-12-24 Juul Labs, Inc. Calibrated dose control
USD887632S1 (en) 2017-09-14 2020-06-16 Pax Labs, Inc. Vaporizer cartridge
US10865001B2 (en) 2016-02-11 2020-12-15 Juul Labs, Inc. Fillable vaporizer cartridge and method of filling
CN113433399A (zh) * 2021-05-14 2021-09-24 格力大松(宿迁)生活电器有限公司 雾化板检测装置
US11383049B2 (en) 2018-11-05 2022-07-12 Juul Labs, Inc. Cartridges for vaporizer devices
CN117007867A (zh) * 2023-10-07 2023-11-07 金动力智能科技(深圳)有限公司 一种电感z值测试检测治具

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109164301A (zh) * 2018-10-26 2019-01-08 惠州市新泓威科技有限公司 电子烟雾化器的自动阻值检测装置及其检测方法

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5306510A (en) * 1988-01-14 1994-04-26 Cyberlab, Inc. Automated pipetting system
CN102385011A (zh) * 2011-08-17 2012-03-21 苏州美尔科自动化设备有限公司 一种自动化测试设备
CN202305669U (zh) * 2011-06-28 2012-07-04 苏州方林科技电子材料有限公司 一种检测物件电阻的装置
CN103675454A (zh) * 2013-10-31 2014-03-26 成都金采科技有限公司 电阻测试装置
CN203705553U (zh) * 2014-01-24 2014-07-09 苏州东南电碳科技有限公司 一种受电弓滑板电阻的检测装置

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5306510A (en) * 1988-01-14 1994-04-26 Cyberlab, Inc. Automated pipetting system
CN202305669U (zh) * 2011-06-28 2012-07-04 苏州方林科技电子材料有限公司 一种检测物件电阻的装置
CN102385011A (zh) * 2011-08-17 2012-03-21 苏州美尔科自动化设备有限公司 一种自动化测试设备
CN103675454A (zh) * 2013-10-31 2014-03-26 成都金采科技有限公司 电阻测试装置
CN203705553U (zh) * 2014-01-24 2014-07-09 苏州东南电碳科技有限公司 一种受电弓滑板电阻的检测装置

Cited By (36)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US10244793B2 (en) 2005-07-19 2019-04-02 Juul Labs, Inc. Devices for vaporization of a substance
US10638792B2 (en) 2013-03-15 2020-05-05 Juul Labs, Inc. Securely attaching cartridges for vaporizer devices
US10279934B2 (en) 2013-03-15 2019-05-07 Juul Labs, Inc. Fillable vaporizer cartridge and method of filling
US10111470B2 (en) 2013-12-23 2018-10-30 Juul Labs, Inc. Vaporizer apparatus
US10117465B2 (en) 2013-12-23 2018-11-06 Juul Labs, Inc. Vaporization device systems and methods
US10058129B2 (en) 2013-12-23 2018-08-28 Juul Labs, Inc. Vaporization device systems and methods
US11752283B2 (en) 2013-12-23 2023-09-12 Juul Labs, Inc. Vaporization device systems and methods
US10076139B2 (en) 2013-12-23 2018-09-18 Juul Labs, Inc. Vaporizer apparatus
US10104915B2 (en) 2013-12-23 2018-10-23 Juul Labs, Inc. Securely attaching cartridges for vaporizer devices
US10912331B2 (en) 2013-12-23 2021-02-09 Juul Labs, Inc. Vaporization device systems and methods
US10701975B2 (en) 2013-12-23 2020-07-07 Juul Labs, Inc. Vaporization device systems and methods
US10117466B2 (en) 2013-12-23 2018-11-06 Juul Labs, Inc. Vaporization device systems and methods
US10159282B2 (en) 2013-12-23 2018-12-25 Juul Labs, Inc. Cartridge for use with a vaporizer device
US10667560B2 (en) 2013-12-23 2020-06-02 Juul Labs, Inc. Vaporizer apparatus
US10201190B2 (en) 2013-12-23 2019-02-12 Juul Labs, Inc. Cartridge for use with a vaporizer device
US10045567B2 (en) 2013-12-23 2018-08-14 Juul Labs, Inc. Vaporization device systems and methods
US10058130B2 (en) 2013-12-23 2018-08-28 Juul Labs, Inc. Cartridge for use with a vaporizer device
US10264823B2 (en) 2013-12-23 2019-04-23 Juul Labs, Inc. Vaporization device systems and methods
US10045568B2 (en) 2013-12-23 2018-08-14 Juul Labs, Inc. Vaporization device systems and methods
US10070669B2 (en) 2013-12-23 2018-09-11 Juul Labs, Inc. Cartridge for use with a vaporizer device
US10058124B2 (en) 2013-12-23 2018-08-28 Juul Labs, Inc. Vaporization device systems and methods
US10512282B2 (en) 2014-12-05 2019-12-24 Juul Labs, Inc. Calibrated dose control
US10865001B2 (en) 2016-02-11 2020-12-15 Juul Labs, Inc. Fillable vaporizer cartridge and method of filling
US10405582B2 (en) 2016-03-10 2019-09-10 Pax Labs, Inc. Vaporization device with lip sensing
USD849996S1 (en) 2016-06-16 2019-05-28 Pax Labs, Inc. Vaporizer cartridge
USD929036S1 (en) 2016-06-16 2021-08-24 Pax Labs, Inc. Vaporizer cartridge and device assembly
USD913583S1 (en) 2016-06-16 2021-03-16 Pax Labs, Inc. Vaporizer device
USD851830S1 (en) 2016-06-23 2019-06-18 Pax Labs, Inc. Combined vaporizer tamp and pick tool
USD836541S1 (en) 2016-06-23 2018-12-25 Pax Labs, Inc. Charging device
USD825102S1 (en) 2016-07-28 2018-08-07 Juul Labs, Inc. Vaporizer device with cartridge
USD842536S1 (en) 2016-07-28 2019-03-05 Juul Labs, Inc. Vaporizer cartridge
USD887632S1 (en) 2017-09-14 2020-06-16 Pax Labs, Inc. Vaporizer cartridge
US11383049B2 (en) 2018-11-05 2022-07-12 Juul Labs, Inc. Cartridges for vaporizer devices
CN113433399A (zh) * 2021-05-14 2021-09-24 格力大松(宿迁)生活电器有限公司 雾化板检测装置
CN117007867A (zh) * 2023-10-07 2023-11-07 金动力智能科技(深圳)有限公司 一种电感z值测试检测治具
CN117007867B (zh) * 2023-10-07 2024-01-26 金动力智能科技(深圳)有限公司 一种电感z值测试检测治具

Also Published As

Publication number Publication date
CN205910261U (zh) 2017-01-25

Similar Documents

Publication Publication Date Title
WO2016033783A1 (fr) Appareil de test de résistance d'atomiseur
WO2016033782A1 (fr) Appareil de test de la résistance d'un atomiseur et procédé de test de la résistance d'un atomiseur
KR102176389B1 (ko) 초음파 무화기 및 전자 담배
WO2016127327A1 (fr) Dispositif de mesure utilisé pour mesurer des résistances d'atomiseurs de cigarettes électroniques
WO2016154896A1 (fr) Procédé d'atomisation de goudron de tabac pour cigarette électronique, et cigarette électronique
WO2015035592A1 (fr) Chargeur pour cigarette électronique
US10912338B2 (en) Electronic cigarette and using method to accurately determine an amount of a tobacco liquid in a liuid storage chamber
CN203424305U (zh) 电子烟
CN202075388U (zh) 一种ict测试治具
US20170020198A1 (en) E-cigarette actuator
WO2016033781A1 (fr) Appareil de récupération d'atomiseur et appareil d'essai de résistance d'un atomiseur
CN105433441A (zh) 发热组件、雾化器及电子烟
WO2016119144A1 (fr) Dispositif de détection de l'excédent d'huile de tabac dans une cigarette électronique, cigarette électronique et procédé de commande de cigarette électronique
WO2016033784A1 (fr) Appareil de test de résistance d'atomiseur
EP3556231A1 (fr) Cigarette électronique
CN108783612A (zh) 一种按压式低温烘烤烟具
CN104316878B (zh) 塑壳电池极柱与盖板间绝缘检测装置及其检测工装
CN206893547U (zh) 挡弧式拍合式继电器
CN212414725U (zh) 一种控温型超声波雾化片
CN104375273A (zh) 一种高功率半导体激光器光斑整形装置
CN209031255U (zh) 一种按压式低温烘烤烟具
CN109270157B (zh) 基于感应电喷雾的进样装置及质谱分析方法
CN204462325U (zh) Fpc同时点亮测试治具
CN205049618U (zh) 适于电子主板ict/fct测试的压合装置
CN104146354A (zh) 一种戒烟用电子香烟

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 14901057

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 14901057

Country of ref document: EP

Kind code of ref document: A1

32PN Ep: public notification in the ep bulletin as address of the adressee cannot be established

Free format text: NOTING OF LOSS OF RIGHTS PURSUANT TO RULE 112(1) EPC (EPO FORM 1205A DATED 04/09/2017)

122 Ep: pct application non-entry in european phase

Ref document number: 14901057

Country of ref document: EP

Kind code of ref document: A1