WO2019233026A1 - 一种手机触摸屏用一体化质量检测装置 - Google Patents

一种手机触摸屏用一体化质量检测装置 Download PDF

Info

Publication number
WO2019233026A1
WO2019233026A1 PCT/CN2018/113356 CN2018113356W WO2019233026A1 WO 2019233026 A1 WO2019233026 A1 WO 2019233026A1 CN 2018113356 W CN2018113356 W CN 2018113356W WO 2019233026 A1 WO2019233026 A1 WO 2019233026A1
Authority
WO
WIPO (PCT)
Prior art keywords
plate
threaded
baffle
threaded rod
ball bearing
Prior art date
Application number
PCT/CN2018/113356
Other languages
English (en)
French (fr)
Inventor
肖建军
Original Assignee
江苏赛博宇华科技有限公司
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 江苏赛博宇华科技有限公司 filed Critical 江苏赛博宇华科技有限公司
Publication of WO2019233026A1 publication Critical patent/WO2019233026A1/zh

Links

Classifications

    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N3/00Investigating strength properties of solid materials by application of mechanical stress
    • G01N3/32Investigating strength properties of solid materials by application of mechanical stress by applying repeated or pulsating forces
    • G01N3/34Investigating strength properties of solid materials by application of mechanical stress by applying repeated or pulsating forces generated by mechanical means, e.g. hammer blows
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N3/00Investigating strength properties of solid materials by application of mechanical stress
    • G01N3/32Investigating strength properties of solid materials by application of mechanical stress by applying repeated or pulsating forces
    • G01N3/38Investigating strength properties of solid materials by application of mechanical stress by applying repeated or pulsating forces generated by electromagnetic means
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N2203/00Investigating strength properties of solid materials by application of mechanical stress
    • G01N2203/0001Type of application of the stress
    • G01N2203/0005Repeated or cyclic
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N2203/00Investigating strength properties of solid materials by application of mechanical stress
    • G01N2203/0014Type of force applied
    • G01N2203/0021Torsional
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N2203/00Investigating strength properties of solid materials by application of mechanical stress
    • G01N2203/003Generation of the force
    • G01N2203/0032Generation of the force using mechanical means
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N2203/00Investigating strength properties of solid materials by application of mechanical stress
    • G01N2203/003Generation of the force
    • G01N2203/005Electromagnetic means
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N2203/00Investigating strength properties of solid materials by application of mechanical stress
    • G01N2203/0058Kind of property studied
    • G01N2203/0069Fatigue, creep, strain-stress relations or elastic constants
    • G01N2203/0073Fatigue

Definitions

  • the utility model relates to the technical field of mobile phone accessory devices, in particular to an integrated quality detection device for a mobile phone touch screen.
  • the integrated quality detection device for mobile phone touch screen is an auxiliary device used in the production process of mobile phone touch screen to perform the click test and torsional fatigue test in order to better analyze the durability of the quality of the mobile phone touch screen. It has been widely used in the field; the existing integrated quality testing device for mobile phone touch screens includes a testing box, four sets of legs, a cylinder, a striking head, and a testing table. A testing chamber is set inside the testing box, and the front end of the testing box A detection window is provided. The detection window communicates with the inside of the detection chamber.
  • the tops of the four sets of legs are connected to the left front side, left rear side, right front side, and right rear side of the bottom of the detection box, and the top of the cylinder is connected to the top inner wall of the detection chamber.
  • the top of the striking head is connected to the bottom output end of the cylinder.
  • An air pump is provided at the top of the detection box, and the air pump is connected to the cylinder through an air pipe.
  • the bottom of the detection table is provided with four sets of struts, and the bottom ends of the four sets of struts are connected to all
  • the left front side, left rear side, right front side, and right rear side of the inner wall of the bottom end of the detection chamber are connected, and the top of the detection platform is provided with a left Board and right card board; when the existing integrated quality testing device for mobile phone touch screen is used, first place the touch screen of the mobile phone to be tested on the test bench, then clamp the mobile phone touch screen through the left and right card boards, and then open Cylinder, you can use the cylinder to drive the tapping head on the mobile phone touch screen and click continuously.
  • the present invention provides a method for continuously clicking on a mobile phone touch screen, and changing the click position, reducing the use limitation; at the same time, improving the clamping and pressing effect of the mobile phone touch screen on the testing table and improving the use. Reliability; and can perform torsional fatigue testing, improve test diversity, and improve practicality of the integrated quality testing device for mobile phone touch screens.
  • the utility model relates to an integrated quality detection device for a mobile phone touch screen, which includes a detection box, four sets of legs, a striking head and a detection table.
  • a detection cavity is provided inside the detection box, and a detection window is provided at the front end of the detection box.
  • the window communicates with the interior of the detection chamber.
  • the tops of the four sets of legs are connected to the left front, left rear, right front, and right rear of the bottom of the test box.
  • the bottom of the test platform is provided with four groups of rods, and The bottom end is connected to the left front side, left rear side, right front side, and right rear side of the inner wall of the bottom end of the detection cavity; including adjusting screw, partition, gear motor, moving block, slide, eccentric motor, eccentric rod, telescopic A partition, a left side plate, a right side plate, a bottom plate, and a placing plate; the partition is longitudinally disposed inside the detection cavity; the top end of the partition is connected to the top inner wall of the detection cavity; the bottom end of the partition is connected to the bottom end of the detection cavity; The inner wall is connected, the right end of the placement plate is connected to the upper side of the right end of the partition, and the left end of the placement plate is provided with a placement groove, and an adjustment ball bearing is disposed inside the placement groove, and the right end of the adjustment screw is inserted And is fixedly installed inside the adjusting ball bearing, and the left end of the adjusting screw passes through the left inner wall of the detection cavity and extends to the outside
  • the left end of the adjusting screw is provided with a driven gear, and the gear motor is installed
  • a driving gear is provided on the outer wall of the left end of the detection box, and the left output end of the gear motor is engaged with the driven gear.
  • a first slider is provided at the top of the moving block, and the detection cavity
  • a first chute is laterally provided on the inner wall of the top end, the first slider is disposed inside the first chute, and the first slider is slidably engaged with the first chute, and the inside of the moving block is laterally provided with an adjustment thread through hole, and
  • the moving block is screwed on the adjusting screw through an adjusting thread through hole, and a second slide groove is laterally provided in the front-back direction of the bottom end of the moving block, and a second slider is provided at the top of the slide plate.
  • Two sliders are arranged inside the second chute, and the second slider is slidably engaged with the second chute.
  • the top end of the eccentric motor is connected to the bottom end of the slide plate, and the left side plate and the right side plate. The top end is respectively connected to the left and right sides of the bottom end of the eccentric motor.
  • An eccentric shaft is provided at the front output end of the eccentric motor. The top end of the eccentric rod is rotatably connected to the eccentric position of the eccentric shaft.
  • the right side is respectively connected with the bottom ends of the left and right plates, and the inside of the bottom plate is longitudinally provided with a telescopic through hole, the top end of the telescopic rod is rotatably connected with the bottom end of the eccentric rod, and the bottom end of the telescopic rod can be Slide through the inside of the telescopic through hole and extend to the outside of the bottom end of the bottom plate; the top of the striking head is connected to the bottom end of the telescopic rod; and further includes a left first fixing plate, a right first fixing plate, and a left first Two fixing plates, right second fixing plate, left first clamping plate, right first clamping plate, left second clamping plate, right second clamping plate, left first locking screw, right first locking screw, left second locking screw And the right second locking screw, the bottom end of the left first fixing plate is connected to the top left side of the top of the detection platform, and the left first fixing plate is laterally provided with a left first threaded through hole, and the left The right end of the first locking screw
  • the right end of the left first locking screw is inserted and fixedly installed inside the left first ball bearing
  • the left end of the left second fixing plate is connected to the upper side of the right end of the left first clamping plate
  • the inside of the left second fixing plate is longitudinally disposed
  • the bottom end of the left second locking screw is inserted and screwed through the inside of the left second threaded through hole and projects to the outside of the bottom end of the left second fixing plate.
  • the top of the two splints is provided with a left second fixing groove
  • a left second ball bearing is provided inside the left second fixing groove.
  • the bottom end of the left second locking screw is inserted and fixedly installed inside the left second ball bearing.
  • the bottom end of the right first fixing plate is connected to the top right side of the detection platform, and a right first threaded through hole is horizontally disposed inside the right first fixing plate, and a left end screw of the right first locking screw is provided. Fits inside the right first threaded through hole and extends The left end of the right first fixing plate is outside, the right first clamping plate is provided with a right first fixing groove at the right end, and the right first fixing groove is provided with a right first ball bearing inside, and the left end of the right first locking screw Inserted and fixedly installed inside the right first ball bearing, the right end of the right second fixing plate is connected to the upper side of the left end of the right first clamping plate, and the right second threaded through hole is longitudinally provided inside the right second fixing plate, The bottom end of the right second locking screw is inserted and screwed through the inside of the right second threaded through hole and projects to the outside of the bottom end of the right second fixing plate.
  • the top of the right second clamping plate is provided with a right Two fixing grooves, and a right second ball bearing is arranged inside the right second fixing groove, and the bottom end of the right second locking screw is inserted and fixedly installed inside the right second ball bearing; further comprising a torsion motor and an upper support plate , Lower support plate, upper left baffle, upper left splint, upper right baffle, upper right cleat, upper left threaded rod, upper right threaded rod, lower left bezel, lower right bezel, left lower plywood, right lower plywood, left lower threaded rod, and lower right thread Rod, the twist
  • the motor is located on the right side of the partition, and the top end of the torsion motor is connected to the top inner wall of the detection cavity.
  • the top end of the upper support plate is connected to the bottom output end of the torsion motor.
  • the top end of the upper support plate is connected to the left and right sides of the bottom end of the upper support plate, respectively.
  • the left upper baffle plate and the right upper baffle plate are respectively provided with a left upper threaded through hole and a right upper threaded through hole inside, and the right end of the left upper threaded rod is inserted and screwed.
  • the left end of the upper left cleat is provided with a left upper fixing groove; and the left upper fixed groove is provided with a left upper ball bearing; the right end of the left upper threaded rod is inserted And fixedly installed inside the upper left ball bearing, the left end of the right upper threaded rod is inserted and screwed through the inside of the right upper threaded through hole and projects to the outside of the left end of the right upper baffle, and the right end of the upper right splint is provided with a right upper fixing groove,
  • an upper right ball bearing is provided inside the upper right fixing groove, and the left end of the upper right threaded rod is inserted and fixed to the inside of the upper right ball bearing.
  • the supporting plate is located below the upper supporting plate, and the bottom ends of the left lower baffle plate and the right lower baffle plate are connected to the top left and right sides of the lower supporting plate, respectively, and the inner sides of the left lower plate and the right lower plate are respectively transverse
  • a lower left threaded through hole and a lower right threaded through hole are provided, the right end of the lower left threaded rod is inserted and screwed through the inside of the left lower threaded through hole and protrudes to the outside of the right end of the left lower baffle, and the left end of the left lower splint is provided with
  • the lower left fixing groove, and a lower left ball bearing is provided inside the lower left fixing groove.
  • the right end of the lower left threaded rod is inserted and fixed to the inside of the left lower ball bearing.
  • the left end of the lower right threaded rod is inserted and screwed through the lower right threaded passage.
  • the hole is inside and extends to the outside of the left end of the lower right baffle plate.
  • a lower right fixing groove is provided at the right end of the lower right clamping plate, and a lower right ball bearing is provided inside the lower right fixing groove.
  • the left end of the lower right threaded rod is inserted. And fixedly installed inside the lower right ball bearing.
  • the utility model relates to an integrated quality detection device for a mobile phone touch screen, which further includes a left first threaded tube, a right first threaded tube, a left first threaded rod, and a right first threaded rod.
  • the top ends of the first threaded rods are respectively connected to the left and right sides of the bottom end of the lower support plate, and the bottom ends of the left first threaded rod and the right first threaded rod are respectively inserted and screwed to the left first threaded tube and Inside the top of the right first threaded tube, two sets of mounting grooves are provided on the right side of the bottom inner wall of the detection cavity, and two sets of mounting ball bearings are set inside the two sets of mounting grooves.
  • the left first threaded tube and the right The bottom ends of a threaded pipe are inserted into and fixedly installed inside the two sets of ball bearings.
  • the integrated quality detection device for a touch screen of a mobile phone of the present utility model further includes a left locking bolt and a right locking bolt, and the left and right ends of the moving plate are respectively provided with a left locking screw through hole and a right locking screw through Holes, and the left and right locking screw through holes communicate with the inside of the second chute, the right end of the left locking bolt is inserted and screwed into the left locking screw through hole, and the left The right end of the locking bolt is in locking contact with the left end of the second left slider, the left end of the right locking bolt is inserted and screwed into the right locking thread through hole, and the left end of the right locking bolt is in contact with the second The right end of the slider is locked in contact.
  • the integrated quality detection device for a touch screen of a mobile phone of the present utility model further includes an upper limit lever and a lower limit lever, a left end of the upper limit lever is connected to an upper side of a right end of the left upper baffle, and a right end of the upper limit lever Pass through the upper left side of the upper left splint and the upper right side of the splint in sequence and extend to the right end of the upper right splint.
  • the outside is connected to the upper side of the left end of the right upper baffle.
  • the interior of the upper left splint and the upper right splint both slide with the upper limit lever.
  • the left end of the lower limit lever is connected to the lower side of the right end of the left lower baffle, and the right end of the lower limit lever passes through the inner lower side of the lower left splint and the lower right splint in order and protrudes to the outside of the right end of the lower right splint. It is connected to the lower end of the left end of the right lower baffle, and the insides of the lower left splint and the lower right splint are both slidingly fitted with the lower limit lever.
  • the integrated quality detection device for a mobile phone touch screen further includes a first baffle, a second baffle, and a third baffle.
  • the first baffle is located above the driven gear, and the A second baffle is located below the gear motor, and the right ends of the first and second baffles are connected to the left outer wall of the detection box, and the top and bottom ends of the third baffle are respectively connected to the first
  • the left side of the bottom end of one baffle is connected to the left side of the top end of the second baffle.
  • the utility model relates to an integrated quality detection device for a mobile phone touch screen, which further includes a stopwatch, a stopwatch sensor, a connecting plate, and a magnet sensor.
  • the right end of the stopwatch is connected to the outer wall of the left end of the detection box.
  • the upper end of the right end of the connection plate is connected to the lower end of the left end of the skateboard, the left end of the stopwatch sensor is connected to the right end of the connection plate, the right end of the magnet sensor is connected to the left end of the eccentric shaft, and the stopwatch It communicates with the computer sensor through the sensing line.
  • the integrated quality detection device for a touch screen of a mobile phone of the present utility model further includes four sets of rollers, and the top ends of the four sets of rollers are respectively connected to the bottom ends of the four sets of legs.
  • the utility model relates to an integrated quality detection device for a mobile phone touch screen, which further includes a left second threaded tube, a right second threaded tube, a left second threaded rod, and a right second threaded rod, and the left and right ends of the lower support plate.
  • a left compression groove and a right compression groove are respectively provided, and a left compression ball bearing and a right compression ball bearing are respectively provided inside the left compression groove and the right compression groove, and the right end of the left second threaded pipe is inserted and It is fixedly installed inside the left compression ball bearing, and the right end of the left second threaded rod is inserted and screwed into the left end of the left second threaded tube, and the left end of the left second threaded rod is provided with a left indenter.
  • the left end of the two-threaded tube is inserted and fixedly installed inside the right compression ball bearing, and the left end of the right second threaded rod is inserted and screwed into the right end of the right second threaded tube.
  • the right end of the right second threaded rod is provided with a right indenter. .
  • the utility model has the beneficial effects that the eccentric rod can be driven to rotate by the rotation of the eccentric motor, and the circular motion of the telescopic rod can be converted into the reciprocating linear motion of the telescopic rod through the restriction of the expansion hole of the bottom plate, so that the knock
  • the head can continuously click on the touch screen of the mobile phone, and the adjustment screw can be driven by the gear motor to enable the left and right position adjustment of the tapping head, and the second slider can be used to slide with the inside of the second chute to make
  • the tapping head can be moved in the forward and backward direction, which can change the click position and reduce the limitation of use.
  • the left first clamping screw and the right first clamping screw can be adjusted by rotating the left first locking screw and the right first locking screw, respectively.
  • the distance between the clamp plates improves the clamping effect of the mobile phone touch screen on the test bench.
  • the left second clamp plate and the right second clamp plate and the top of the test table are adjusted respectively. The distance between them can improve the compaction effect of the mobile phone's touch screen on the inspection table, and improve the reliability of use;
  • the splint clamps the upper end of the mobile phone touch screen, and then clamps the lower end of the mobile phone touch screen through the lower left and right lower splints, and then keeps the position of the lower support plate stationary.
  • the motor touch screen is twisted by twisting the motor, and a torsional fatigue test is performed. To increase test diversity and practicability.
  • FIG. 1 is a schematic structural diagram of the present invention
  • FIG. 2 is a schematic diagram of a partially enlarged structure at A of the present utility model
  • FIG. 3 is a schematic diagram of a partially enlarged structure at a position B of the present invention.
  • FIG. 4 is a schematic diagram of a partially enlarged structure at C of the present invention.
  • FIG. 5 is a schematic diagram of a partially enlarged structure at D of the present invention.
  • an integrated quality detection device for a mobile phone touch screen includes a detection box 1, four sets of legs 2, a striking head 3, and a detection table 4.
  • the detection box is provided with a detection device. Cavity, and the front of the detection box is provided with a detection window, the detection window communicates with the inside of the detection cavity, the tops of the four sets of legs are connected to the left front side, left rear side, right front side, and right rear side of the bottom of the detection box, and the bottom end of the detection platform
  • There are four sets of struts, and the bottom ends of the four sets of struts are connected to the left front side, left rear side, right front side, and right rear side of the inner wall of the bottom end of the detection cavity; including adjusting screw 5, partition 6, gear motor 7, moving block 8, slide 9, eccentric motor 10, eccentric rod 11, telescopic rod 12, left side plate 13, right side plate, bottom plate 14 and placing plate 15, the partition is longitudinally arranged inside the detection cavity, and the The top end is connected to the
  • the left end of the adjustment screw is provided with a driven gear, and the gear motor is installed in the detection.
  • a driving gear is provided on the outer wall of the left end of the box, and a left output end of the gear motor is provided.
  • the driving gear meshes with the driven gear.
  • a first slider is provided at the top of the moving block. Groove, the first slider is arranged inside the first chute, and the first slider and the first chute are slidingly matched, and the inside of the moving block is provided with an adjusting thread through hole, and the moving block is screwed through the adjusting thread through hole.
  • a second chute is provided laterally in the front-back direction of the bottom end of the moving block, and a second slider is provided on the top end of the slide, the second slider is arranged inside the second chute, and the second The slider and the second chute slide together, and the top of the eccentric motor is connected to the bottom of the slide, and the tops of the left and right plates are connected to the left and right of the bottom of the eccentric motor, respectively.
  • the front output end of the eccentric motor is provided with an eccentric shaft.
  • the top end of the eccentric rod is rotatably connected to the eccentric position of the eccentric shaft.
  • the top left and right sides of the bottom plate are connected to the bottom ends of the left and right plates, respectively, and
  • the bottom of the bottom plate is provided with a telescopic through hole longitudinally.
  • the top end of the telescopic rod is rotatably connected to the bottom end of the eccentric rod, and the bottom end of the telescopic rod can slide through the inside of the telescopic through hole and protrude to the outside of the bottom end of the bottom plate.
  • the top end of the head is connected to the bottom end of the telescopic rod; it also includes a left first fixing plate 16, a right first fixing plate, a left second fixing plate 17, a right second fixing plate, a left first clamping plate 18, a right first clamping plate, The left second clamping plate 19, the right second clamping plate, the left first locking screw 20, the right first locking screw, the left second locking screw 21 and the right second locking screw.
  • the bottom end of the left first fixing plate and The top of the testing platform is connected to the left side, and the left first fixing plate is horizontally provided with a left first threaded through hole, and the right end of the left first locking screw is screwed through the left first threaded through hole and extends to the left.
  • the right end of the first fixing plate is outside, and the left end of the left first splint is provided
  • the left first fixing groove is provided with a left first ball bearing inside.
  • the right end of the left first locking screw is inserted into and fixed to the left first ball bearing.
  • the left end of the left second fixing plate and the left The upper side of the right end of the first clamping plate is connected, and the inside of the left second fixing plate is longitudinally provided with a left second threaded through hole, and the bottom end of the left second locking screw is inserted and screwed through the inside of the left second threaded through hole and It extends to the outside of the bottom of the left second fixing plate.
  • the top of the left second clamping plate is provided with a left second fixing groove, and the left second fixing groove is provided with a left second ball bearing, and the bottom of the left second locking screw.
  • the end is inserted and fixed to the inside of the left second ball bearing, the bottom end of the right first fixing plate is connected to the top right side of the testing platform, and the right first fixing plate is laterally provided with a right first threaded through hole, and the right
  • the left end of a locking screw is screwed through the inside of the right first threaded through hole and projects to the outside of the left end of the right first fixing plate.
  • the right end of the right first clamping plate is provided with a right first fixing groove and the right first fixing groove.
  • the left end of the right first locking screw is inserted into and fixed to the inside of the right first ball bearing, the right end of the right second fixing plate is connected to the upper side of the left end of the right first clamping plate, and the inside of the right second fixing plate is longitudinally arranged.
  • There is a right second threaded through hole the bottom end of the right second locking screw is inserted and screwed through the inside of the right second threaded through hole and extends to the outside of the bottom end of the right second fixing plate, and the top of the right second clamping plate
  • a right second fixing groove is provided, and a right second ball bearing is provided inside the right second fixing groove.
  • the bottom end of the right second locking screw is inserted and fixed to the inside of the right second ball bearing; it also includes a torsion motor 22, Upper support plate 23, lower support plate, upper left baffle 24, upper left cleat 25, upper right baffle, upper right cleat, upper left threaded rod 26, upper right threaded rod, left lower baffle, lower right baffle, lower left plywood, lower right plywood,
  • the lower left threaded rod and the lower right threaded rod hold the motor on the right side of the partition, and the top of the torsion motor is connected to the top inner wall of the detection cavity.
  • the top of the upper support plate is connected to the bottom output of the torsion motor.
  • Top right The top end of the board is connected to the left and right sides of the bottom end of the upper support plate, respectively.
  • the left upper and right upper baffles are respectively provided with a left upper threaded through hole and a right upper threaded through hole inside.
  • the right end of the upper left threaded rod is inserted and screwed. Pass through the inside of the upper left threaded hole and extend to the outside of the right end of the upper left baffle plate.
  • the left end of the upper left splint is provided with an upper left fixing groove, and the upper left fixing groove is provided with an upper left ball bearing.
  • the right end of the upper left threaded rod is inserted and fixed to the upper left. Inside the ball bearing, the left end of the upper right threaded rod is inserted and screwed through the right upper threaded through hole and projects to the outside of the left end of the upper right baffle.
  • the right end of the upper right splint is provided with an upper right fixing groove, and the upper right fixing groove is provided with an upper right ball.
  • the left end of the upper right threaded rod is inserted and fixed to the inside of the upper right ball bearing
  • the lower support plate is located below the upper support plate
  • the bottom ends of the left lower baffle and the right lower baffle are respectively the left and right sides of the top of the lower support plate
  • the lower left baffle plate and the lower right baffle plate are respectively provided with a lower left threaded through hole and a lower right threaded through hole horizontally
  • the right of the left lower threaded rod is The end is inserted and screwed through the inside of the left lower thread through hole and extends to the outside of the right end of the left lower baffle.
  • the left end of the lower left splint is provided with a lower left fixing groove, and the lower left fixing groove is provided with a lower left ball bearing.
  • the right end of the lower left threaded rod is inserted And fixedly installed inside the lower left ball bearing, the left end of the lower right threaded rod is inserted and screwed through the inside of the lower right threaded through hole and protrudes to the outside of the left end of the right lower baffle, and the right end of the lower right clamping plate is provided with a lower right fixing groove
  • the lower right ball bearing is provided inside the lower right fixing groove, and the left end of the lower right threaded rod is inserted and fixedly installed inside the lower right ball bearing;
  • the rotation of the eccentric rod can be driven by the rotation of the eccentric motor, and through the expansion hole of the bottom plate Limitation, transforming the circular motion into the reciprocating linear motion of the telescopic rod, so that the tapping head can continuously click on the touch screen of the mobile phone, and the adjustment screw can be driven by the gear motor, so
  • the compression effect improves the reliability of use; and the upper end of the mobile phone touch screen can be clamped by the upper left splint and the upper right splint, and then the lower end of the mobile phone touch screen is clamped by the lower left splint and the lower right splint, and then the position of the lower support plate is maintained.
  • the motor By twisting the motor, the mobile phone touch screen is twisted, and the torsional fatigue test is performed to increase the test diversity and practicality.
  • the utility model relates to an integrated quality detection device for a mobile phone touch screen, which further includes a left first threaded tube 27, a right first threaded tube, a left first threaded rod 28, a right first threaded rod, a left first threaded rod, and a right
  • the top end of the first threaded rod is connected to the left and right sides of the bottom end of the lower support plate, respectively, and the bottom ends of the left first threaded rod and the right first threaded rod are respectively inserted and screwed to the left first threaded tube and the right side.
  • two sets of mounting grooves are set on the right side of the bottom inner wall of the detection cavity, and two sets of mounting ball bearings are set inside the two sets of mounting slots.
  • the bottom ends of the left first threaded tube and the right first threaded tube Inserted and fixedly installed inside two sets of mounting ball bearings respectively;
  • the left first threaded tube and the right first threaded tube can be rotated synchronously, so that the lower support plate can be adjusted in height, so that the upper support plate and the lower support plate can be adjusted.
  • the distance between them can be adjusted, so that mobile phone touch screens of different lengths can be clamped for torsional fatigue testing, which improves the adaptability and reduces the limitation of use.
  • the utility model relates to an integrated quality detecting device for a mobile phone touch screen, which further includes a left locking bolt 29 and a right locking bolt.
  • the left and right ends of the moving plate are respectively provided with a left locking thread through hole and a right locking thread through hole.
  • the left and right locking screw through holes communicate with the inside of the second chute, the right end of the left locking bolt is inserted and screwed into the left locking screw through hole, and the right end of the left locking bolt It is in locking contact with the left end of the second left slider, the left end of the right locking bolt is inserted and screwed into the right locking thread through hole, and the left end of the right locking bolt is in lock contact with the right end of the second slider;
  • the second slider adjusted in the forward-backward direction is locked and fixed, thereby fixing the position of the striking head, preventing the position of the striking head from being deflected during the click test after the position adjustment, and improving the accuracy of the clicked position.
  • the utility model relates to an integrated quality detection device for a mobile phone touch screen, which further includes an upper limit lever 30 and a lower limit lever.
  • the left end of the upper limit lever is connected to the upper side of the right end of the upper left baffle, and the right end of the upper limit lever passes through in sequence.
  • the inner upper side of the upper left splint and the upper right splint extend to the right end of the upper right splint and the outside is connected to the upper side of the left end of the upper right baffle.
  • the interior of the upper left splint and the upper right splint slide with the upper limit lever, and the left end of the lower limit lever and the lower left
  • the right end of the baffle is connected to the lower side, and the right end of the lower limit lever passes through the inner lower side of the left lower plywood and the right lower plywood in order and extends to the right end of the right lower plywood.
  • the outside is connected to the left end of the right lower baffle.
  • the inner part of the lower right splint slides with the lower limit lever; the upper lever can improve the stable sliding performance of the upper left and upper splints, and the lower limit lever can improve the stable sliding performance of the lower left and lower right splints to improve reliability. Sex.
  • the integrated quality detection device for a mobile phone touch screen further includes a first baffle 31, a second baffle, and a third baffle.
  • the first baffle is located above the driven gear, and the second baffle is located at The right side of the first baffle and the second baffle are connected to the left outer wall of the detection box under the gear motor, and the top and bottom ends of the third baffle are respectively the left side and the second end of the first baffle.
  • the top and left sides of the baffle are connected; the protection of the gear motor can be improved.
  • the utility model relates to an integrated quality detection device for a mobile phone touch screen, which further includes a stopwatch 32, a stopwatch sensor 33, a connecting plate 34, and a magnet sensor 35.
  • the right end of the stopwatch is connected to the outer wall of the left end of the detection box, and is connected.
  • the upper end of the right end of the board is connected to the lower end of the left end of the skateboard, the left end of the stopwatch sensor is connected to the right end of the connection board, the right end of the magnet sensor is connected to the left end of the eccentric shaft, and the stopwatch and the stopwatch sensor are connected through a sensing line.
  • the information brought by the induction magnet can be captured by the code table sensor, and transmitted to the code table through the sensing line, so that the eccentric shaft rotation counted by the code table can be used to know that the tapping head is on the touch screen of the mobile phone. Clicks, which is convenient for counting the click frequency, and improves the practicability.
  • the utility model relates to an integrated quality detection device for a mobile phone touch screen, which further includes four sets of rollers 36, and the top ends of the four sets of rollers are respectively connected to the bottom ends of the four sets of legs; it is convenient for overall movement.
  • the utility model relates to an integrated quality detection device for a mobile phone touch screen, which further includes a left second threaded tube 37, a right second threaded tube, a left second threaded rod 38, and a right second threaded rod, and the left and right ends of the lower support plate.
  • a left compression groove and a right compression groove are respectively provided, and a left compression ball bearing and a right compression ball bearing are respectively provided inside the left compression groove and the right compression groove.
  • the right end of the left second threaded pipe is inserted and fixed for installation. Press to the left of the ball bearing, and insert the right end of the left second threaded rod into the left end of the left second threaded tube.
  • the left end of the left second threaded rod is provided with a left indenter, and the left end of the right second threaded tube. Inserted and fixedly installed inside the right compression ball bearing, and the left end of the right second threaded rod is inserted and screwed into the right end of the right second threaded tube, and the right end of the right second threaded rod is provided with a right indenter; when twisted During the fatigue test, the left end of the left indenter and the right end of the partition can be pressed by rotating the left second threaded tube and the right second threaded tube respectively, and the right end of the right indenter and the inner wall of the right end of the detection cavity can be compressed at the same time.
  • the utility model relates to an integrated quality detection device for a touch screen of a mobile phone.
  • it When working, it first uses four sets of rollers for overall movement to move the whole to a working area to be tested.
  • a click test is performed, the mobile phone touch screen is first Place it on the test bench, then rotate the left first locking screw and the right first locking screw to adjust the distance between the left first splint and the right first splint, respectively, so that the mobile phone touch screen is clamped on the test bench and rotated at the same time
  • Left second locking screw and right second locking screw respectively adjust the distance between the second left and right splints and the top of the test stand, so that the mobile phone touch screen is pressed on the test stand, and then pass the eccentric motor's Rotate, drive the eccentric rod to rotate, and convert the circular motion into the reciprocating linear motion of the telescopic rod through the restriction of the telescopic hole of the bottom plate, so that the tapping head can continuously click on the touch screen of the mobile phone.
  • the adjustment screw can be driven by the gear motor, so that the striking head can be adjusted to the left and right position, and it can pass the second slide
  • the sliding cooperation with the inside of the second chute allows the striking head to move in the forward and backward direction, and tighten the locked bolt and the right locking bolt to fix the position.

Landscapes

  • Physics & Mathematics (AREA)
  • Biochemistry (AREA)
  • Health & Medical Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Chemical & Material Sciences (AREA)
  • Analytical Chemistry (AREA)
  • General Health & Medical Sciences (AREA)
  • General Physics & Mathematics (AREA)
  • Immunology (AREA)
  • Pathology (AREA)
  • Electromagnetism (AREA)
  • Telephone Set Structure (AREA)
  • A Measuring Device Byusing Mechanical Method (AREA)

Abstract

一种手机触摸屏用一体化质量检测装置,涉及手机附属装置的技术领域,其可以连续的对手机触摸屏进行点击,提高手机触摸屏在检测台上的夹紧和压紧效果;可以进行扭转疲劳测试;包括检测箱(1)、四组支腿(2)、敲击头(3)和检测台(4);包括调节丝杠(5)、隔板(6)、齿轮电机(7)、移动块(8)、滑板(9)、偏心电机(10)、偏心杆(11)、伸缩杆(12)、左侧板(13)、右侧板、底板(14)和放置板(15);还包括左第一固定板(16)、左第二固定板(17)、左第一夹板(18)、右第一夹板、左第二夹板(19)、左第一锁紧螺杆(20)、左第二锁紧螺杆(21)和右第二锁紧螺杆;还包括扭转电机(22)、上支撑板(23)、下支撑板、左上挡板(24)、左上夹板(25)、右上挡板、右上夹板、左上螺纹杆(26)、右上螺纹杆、左下挡板、右下挡板、左下夹板、右下夹板、左下螺纹杆和右下螺纹杆。

Description

一种手机触摸屏用一体化质量检测装置 技术领域
本实用新型涉及手机附属装置的技术领域,特别是涉及一种手机触摸屏用一体化质量检测装置。
背景技术
众所周知,手机触摸屏用一体化质量检测装置是一种用于手机触摸屏生产过程中,进行点击测试和扭转疲劳测试,以便于更好的分析手机触摸屏质量的耐用情况的辅助装置,其在电子检测的领域中得到了广泛的使用;现有的手机触摸屏用一体化质量检测装置包括检测箱、四组支腿、气缸、敲击头和检测台,检测箱内部设置有检测腔,并且检测箱的前端设置有检测窗口,检测窗口与检测腔内部相通,四组支腿的顶端与检测箱底端的左前侧、左后侧、右前侧和右后侧连接,并且气缸的顶端与检测腔的顶端内壁连接,敲击头的顶端与气缸的底部输出端连接,检测箱顶端设置有气泵,并且气泵与气缸通过气管连通,检测台的底端设置有四组支杆,并且四组支杆的底端与所述检测腔的底端内壁的左前侧、左后侧、右前侧和右后侧连接,检测台的顶端设置有左卡板和右卡板;现有的手机触摸屏用一体化质量检测装置使用时,首先将待检测的手机触摸屏放置在检测台上,然后通过左卡板和右卡板将手机触摸屏夹紧,然后打开气缸,通过气缸带动敲击头对手机触摸屏和进行不断点击即可。
技术问题
现有的手机触摸屏用一体化质量检测装置使用中发现,气缸不能连续的对手机触摸屏进行点击,且不能更换点击位置,导致其使用局限性较高;同时手机触摸屏在检测台上的夹紧压紧效果较差,使用可靠性较低;并且不能进行扭转疲劳测试,测试单一,导致其实用性较差。
技术解决方案
为解决上述技术问题,本实用新型提供一种可以连续的对手机触摸屏进行点击,且可以更换点击位置,降低使用局限性;同时提高手机触摸屏在检测台上的夹紧和压紧效果,提高使用可靠性;并且可以进行扭转疲劳测试,提高测试多样性,提高实用性的手机触摸屏用一体化质量检测装置。
本实用新型的一种手机触摸屏用一体化质量检测装置,包括检测箱、四组支腿、敲击头和检测台,检测箱内部设置有检测腔,并且检测箱的前端设置有检测窗口,检测窗口与检测腔内部相通,四组支腿的顶端与检测箱底端的左前侧、左后侧、右前侧和右后侧连接,检测台的底端设置有四组支杆,并且四组支杆的底端与所述检测腔的底端内壁的左前侧、左后侧、右前侧和右后侧连接;包括调节丝杠、隔板、齿轮电机、移动块、滑板、偏心电机、偏心杆、伸缩杆、左侧板、右侧板、底板和放置板,所述隔板纵向设置在检测腔内部,并且隔板的顶端与检测腔的顶端内壁连接,隔板的底端与检测腔的底端内壁连接,所述放置板的右端与所述隔板的右端上侧连接,并且放置板的左端设置有放置槽,所述放置槽内部设置有调节滚珠轴承,所述调节丝杠的右端插入并固定安装至调节滚珠轴承内部,并且调节丝杠的左端穿过检测腔的左端内壁并伸出至检测箱的左端外界,所述调节丝杠的左端设置有从动齿轮,所述齿轮电机安装在检测箱的左端外壁上,并且齿轮电机的左部输出端设置有主动齿轮,所述主动齿轮与从动齿轮啮合,所述移动块的顶端设置有第一滑块,并且所述检测腔的顶端内壁横向设置有第一滑槽,所述第一滑块设置在第一滑槽内部,并且第一滑块与第一滑槽滑动配合,移动块的内部横向设置有调节螺纹通孔,并且移动块通过调节螺纹通孔螺装套设在所述调节丝杠上,并且移动块的底端前后方向上横向设置有第二滑槽,并且滑板的顶端设置有第二滑块,所述第二滑块设置在第二滑槽内部,并且第二滑块与第二滑槽滑动配合,所述偏心电机的顶端与所述滑板的底端连接,并且所述左侧板和右侧板的顶端分别与偏心电机底端的左侧和右侧连接,偏心电机的前部输出端设置有偏心轴,所述偏心杆的顶端与偏心轴的偏心位置可旋转连接,所述底板的顶端左侧和右侧分别与左侧板和右侧板的底端连接,并且底板的内部纵向设置有伸缩通孔,所述伸缩杆的顶端与偏心杆的底端可旋转连接,并且伸缩杆的底端可滑动穿过所述伸缩通孔内部并伸出至底板的底端外界,所述敲击头的顶端与伸缩杆的底端连接;还包括左第一固定板、右第一固定板、左第二固定板、右第二固定板、左第一夹板、右第一夹板、左第二夹板、右第二夹板、左第一锁紧螺杆、右第一锁紧螺杆、左第二锁紧螺杆和右第二锁紧螺杆,所述左第一固定板的底端与所述检测台的顶端左侧连接,并且左第一固定板的内部横向设置有左第一螺纹通孔,所述左第一锁紧螺杆的右端螺装穿过左第一螺纹通孔内部并伸出至左第一固定板的右端外界,所述左第一夹板的左端设置有左第一固定槽,并且左第一固定槽内部设置有左第一滚珠轴承,所述左第一锁紧螺杆的右端插入并固定安装至左第一滚珠轴承内部,所述左第二固定板的左端与左第一夹板的右端上侧连接,并且左第二固定板的内部纵向设置有左第二螺纹通孔,所述左第二锁紧螺杆的底端插入并螺装穿过左第二螺纹通孔内部并伸出至左第二固定板的底端外界,所述左第二夹板的顶端设置有左第二固定槽,并且左第二固定槽内部设置有左第二滚珠轴承,所述左第二锁紧螺杆的底端插入并固定安装至左第二滚珠轴承内部,所述右第一固定板的底端与所述检测台的顶端右侧连接,并且右第一固定板的内部横向设置有右第一螺纹通孔,所述右第一锁紧螺杆的左端螺装穿过右第一螺纹通孔内部并伸出至右第一固定板的左端外界,所述右第一夹板的右端设置有右第一固定槽,并且右第一固定槽内部设置有右第一滚珠轴承,所述右第一锁紧螺杆的左端插入并固定安装至右第一滚珠轴承内部,所述右第二固定板的右端与右第一夹板的左端上侧连接,并且右第二固定板的内部纵向设置有右第二螺纹通孔,所述右第二锁紧螺杆的底端插入并螺装穿过右第二螺纹通孔内部并伸出至右第二固定板的底端外界,所述右第二夹板的顶端设置有右第二固定槽,并且右第二固定槽内部设置有右第二滚珠轴承,所述右第二锁紧螺杆的底端插入并固定安装至右第二滚珠轴承内部;还包括扭转电机、上支撑板、下支撑板、左上挡板、左上夹板、右上挡板、右上夹板、左上螺纹杆、右上螺纹杆、左下挡板、右下挡板、左下夹板、右下夹板、左下螺纹杆和右下螺纹杆,所述扭住电机位于所述隔板的右侧,并且扭转电机的顶端与检测腔的顶端内壁连接,所述上支撑板的顶端与所述扭转电机的底部输出端连接,所述左上挡板和右上挡板的顶端分别与上支撑板的底端左侧和右侧连接,左上挡板和右上挡板的内部横向分别设置有左上螺纹通孔和右上螺纹通孔,所述左上螺纹杆的右端插入并螺装穿过左上螺纹通孔内部并伸出至左上挡板的右端外界,所述左上夹板的左端设置有左上固定槽,并且左上固定槽内部设置有左上滚珠轴承,所述左上螺纹杆的右端插入并固定安装至左上滚珠轴承内部,所述右上螺纹杆的左端插入并螺装穿过右上螺纹通孔内部并伸出至右上挡板的左端外界,所述右上夹板的右端设置有右上固定槽,并且右上固定槽内部设置有右上滚珠轴承,所述右上螺纹杆的左端插入并固定安装至右上滚珠轴承内部,所述下支撑板位于所述上支撑板的下方,所述左下挡板和右下挡板的底端分别与下支撑板的顶端左侧和右侧连接,左下挡板和右下挡板的内部横向分别设置有左下螺纹通孔和右下螺纹通孔,所述左下螺纹杆的右端插入并螺装穿过左下螺纹通孔内部并伸出至左下挡板的右端外界,所述左下夹板的左端设置有左下固定槽,并且左下固定槽内部设置有左下滚珠轴承,所述左下螺纹杆的右端插入并固定安装至左下滚珠轴承内部,所述右下螺纹杆的左端插入并螺装穿过右下螺纹通孔内部并伸出至右下挡板的左端外界,所述右下夹板的右端设置有右下固定槽,并且右下固定槽内部设置有右下滚珠轴承,所述右下螺纹杆的左端插入并固定安装至右下滚珠轴承内部。
本实用新型的一种手机触摸屏用一体化质量检测装置,还包括左第一螺纹管、右第一螺纹管、左第一螺纹杆和右第一螺纹杆,所述左第一螺纹杆和右第一螺纹杆的顶端分别与所述下支撑板的底端左侧和右侧连接,并且左第一螺纹杆和右第一螺纹杆的底端分别插入并螺装至左第一螺纹管和右第一螺纹管的顶端内部,所述检测腔的底端内壁右侧设置有两组安装槽,并且两组安装槽内部设置有两组安装滚珠轴承,所述左第一螺纹管和右第一螺纹管的底端分别插入并固定安装至两组安装滚珠轴承内部。
本实用新型的一种手机触摸屏用一体化质量检测装置,还包括左锁紧螺栓和右锁紧螺栓,所述移动板的左端和右端分别设置有左锁紧螺纹通孔和右锁紧螺纹通孔,并且左锁紧螺纹通孔和右锁紧螺纹通孔均与所述第二滑槽内部相通,所述左锁紧螺栓的右端插入并螺装至左锁紧螺纹通孔内部,并且左锁紧螺栓的右端与所述左第二滑块的左端锁紧接触,所述右锁紧螺栓的左端插入并螺装至右锁紧螺纹通孔内部,并且右锁紧螺栓的左端与第二滑块的右端锁紧接触。
本实用新型的一种手机触摸屏用一体化质量检测装置,还包括上限位杆和下限位杆,所述上限位杆的左端与所述左上挡板的右端上侧连接,并且上限位杆的右端依次穿过左上夹板和右上夹板的内部上侧并伸出至右上夹板的右端外界与所述右上挡板的左端上侧连接,所述左上夹板和右上夹板的内部均与所述上限位杆滑动配合,所述下限位杆的左端与所述左下挡板的右端下侧连接,并且下限位杆的右端依次穿过左下夹板和右下夹板的内部下侧并伸出至右下夹板的右端外界与所述右下挡板的左端下侧连接,所述左下夹板和右下夹板的内部均与所述下限位杆滑动配合。
本实用新型的一种手机触摸屏用一体化质量检测装置,还包括第一挡板、第二挡板和第三挡板,所述第一挡板位于所述从动齿轮的上方,并且所述第二挡板位于所述齿轮电机的下方,并且第一挡板和第二挡板的右端均与所述检测箱的左侧外壁连接,所述第三挡板的顶端和底端分别与第一挡板的底端左侧和第二挡板的顶端左侧连接。
本实用新型的一种手机触摸屏用一体化质量检测装置,还包括码表、码表感应器、连接板和磁铁感应器,所述码表的右端与所述检测箱的左端外壁连接,并且所述连接板的右端上侧与滑板的左端下侧连接,所述码表感应器的左端与连接板的右端连接,所述磁铁感应器的右端与所述偏心轴的左端连接,所述码表与码表感应器通过传感线连通。
本实用新型的一种手机触摸屏用一体化质量检测装置,还包括四组滚轮,所述四组滚轮的顶端分别与所述四组支腿的底端连接。
本实用新型的一种手机触摸屏用一体化质量检测装置,还包括左第二螺纹管、右第二螺纹管、左第二螺纹杆和右第二螺纹杆,所述下支撑板的左端和右端分别设置有左压紧槽和右压紧槽,并且左压紧槽和右压紧槽内部分别设置有左压紧滚珠轴承和右压紧滚珠轴承,所述左第二螺纹管的右端插入并固定安装至左压紧滚珠轴承内部,并且左第二螺纹杆的右端插入并螺装至左第二螺纹管的左端内部,并且左第二螺纹杆的左端设置有左压头,所述右第二螺纹管左端插入并固定安装至右压紧滚珠轴承内部,并且右第二螺纹杆的左端插入并螺装至右第二螺纹管的右端内部,右第二螺纹杆的右端设置有右压头。
有益效果
与现有技术相比本实用新型的有益效果为:可以通过偏心电机的转动,带动偏心杆转动,并通过底板的伸缩孔的限制,将圆周运动转化为伸缩杆的往复直线运动,使敲击头可以连续的对手机触摸屏进行点击,且可以通过齿轮电机带动调节丝杠转动,使敲击头可以进行左右位置移动调节,并且可以通第二滑块与第二滑槽内部的滑动配合,使敲击头可以进行前后方向上的位置移动,从而可以更换点击位置,降低使用局限性;同时可以通过旋转左第一锁紧螺杆和右第一锁紧螺杆分别调节左第一夹板和右第一夹板之间的距离,提高手机触摸屏在检测台上的夹紧效果,同时通过旋转左第二锁紧螺杆和右第二锁紧螺杆,分别调整左第二夹板和右第二夹板与检测台顶端之间的距离,提高手机触摸屏在检测台压紧效果,提高使用可靠性;并且可以通过左上夹板和右上夹板将手机触摸屏的上端夹紧,然后通过左下夹板和右下夹板将手机触摸屏的下端夹紧,然后保持下支撑板的位置不动,通过扭转电机转动,使手机触摸屏进行扭转,进行扭转疲劳测试,提高测试多样性,提高实用性。
附图说明
图1是本实用新型的结构示意图;
图2是本实用新型A处的局部放大结构示意图;
图3是本实用新型B处的局部放大结构示意图;
图4是本实用新型C处的局部放大结构示意图;
图5是本实用新型D处的局部放大结构示意图;
附图中标记:1、检测箱;2、支腿;3、敲击头;4、检测台;5、调节丝杠;6、隔板;7、齿轮电机;8、移动块;9、滑板;10、偏心电机;11、偏心杆;12、伸缩杆;13、左侧板;14、底板;15、放置板;16、左第一固定板;17、左第二固定板;18、左第一夹板;19、左第二夹板;20、左第一锁紧螺杆;21、左第二锁紧螺杆;22、扭转电机;23、上支撑板;24、左上挡板;25、左上夹板;26、左上螺纹杆;27、左第一螺纹管;28、左第一螺纹杆;29、左锁紧螺栓;30、上限位杆;31、第一挡板;32、码表;33、码表感应器;34、连接板;35、磁铁感应器;36、滚轮;37、左第二螺纹管;38、左第二螺纹杆。
本发明的最佳实施方式
下面结合附图和实施例,对本实用新型的具体实施方式作进一步详细描述。以下实施例用于说明本实用新型,但不用来限制本实用新型的范围。
如图1至图5所示,本实用新型的一种手机触摸屏用一体化质量检测装置,包括检测箱1、四组支腿2、敲击头3和检测台4,检测箱内部设置有检测腔,并且检测箱的前端设置有检测窗口,检测窗口与检测腔内部相通,四组支腿的顶端与检测箱底端的左前侧、左后侧、右前侧和右后侧连接,检测台的底端设置有四组支杆,并且四组支杆的底端与检测腔的底端内壁的左前侧、左后侧、右前侧和右后侧连接;包括调节丝杠5、隔板6、齿轮电机7、移动块8、滑板9、偏心电机10、偏心杆11、伸缩杆12、左侧板13、右侧板、底板14和放置板15,隔板纵向设置在检测腔内部,并且隔板的顶端与检测腔的顶端内壁连接,隔板的底端与检测腔的底端内壁连接,放置板的右端与隔板的右端上侧连接,并且放置板的左端设置有放置槽,放置槽内部设置有调节滚珠轴承,调节丝杠的右端插入并固定安装至调节滚珠轴承内部,并且调节丝杠的左端穿过检测腔的左端内壁并伸出至检测箱的左端外界,调节丝杠的左端设置有从动齿轮,齿轮电机安装在检测箱的左端外壁上,并且齿轮电机的左部输出端设置有主动齿轮,主动齿轮与从动齿轮啮合,移动块的顶端设置有第一滑块,并且检测腔的顶端内壁横向设置有第一滑槽,第一滑块设置在第一滑槽内部,并且第一滑块与第一滑槽滑动配合,移动块的内部横向设置有调节螺纹通孔,并且移动块通过调节螺纹通孔螺装套设在调节丝杠上,并且移动块的底端前后方向上横向设置有第二滑槽,并且滑板的顶端设置有第二滑块,第二滑块设置在第二滑槽内部,并且第二滑块与第二滑槽滑动配合,偏心电机的顶端与滑板的底端连接,并且左侧板和右侧板的顶端分别与偏心电机底端的左侧和右侧连接,偏心电机的前部输出端设置有偏心轴,偏心杆的顶端与偏心轴的偏心位置可旋转连接,底板的顶端左侧和右侧分别与左侧板和右侧板的底端连接,并且底板的内部纵向设置有伸缩通孔,伸缩杆的顶端与偏心杆的底端可旋转连接,并且伸缩杆的底端可滑动穿过伸缩通孔内部并伸出至底板的底端外界,敲击头的顶端与伸缩杆的底端连接;还包括左第一固定板16、右第一固定板、左第二固定板17、右第二固定板、左第一夹板18、右第一夹板、左第二夹板19、右第二夹板、左第一锁紧螺杆20、右第一锁紧螺杆、左第二锁紧螺杆21和右第二锁紧螺杆,左第一固定板的底端与检测台的顶端左侧连接,并且左第一固定板的内部横向设置有左第一螺纹通孔,左第一锁紧螺杆的右端螺装穿过左第一螺纹通孔内部并伸出至左第一固定板的右端外界,左第一夹板的左端设置有左第一固定槽,并且左第一固定槽内部设置有左第一滚珠轴承,左第一锁紧螺杆的右端插入并固定安装至左第一滚珠轴承内部,左第二固定板的左端与左第一夹板的右端上侧连接,并且左第二固定板的内部纵向设置有左第二螺纹通孔,左第二锁紧螺杆的底端插入并螺装穿过左第二螺纹通孔内部并伸出至左第二固定板的底端外界,左第二夹板的顶端设置有左第二固定槽,并且左第二固定槽内部设置有左第二滚珠轴承,左第二锁紧螺杆的底端插入并固定安装至左第二滚珠轴承内部,右第一固定板的底端与检测台的顶端右侧连接,并且右第一固定板的内部横向设置有右第一螺纹通孔,右第一锁紧螺杆的左端螺装穿过右第一螺纹通孔内部并伸出至右第一固定板的左端外界,右第一夹板的右端设置有右第一固定槽,并且右第一固定槽内部设置有右第一滚珠轴承,右第一锁紧螺杆的左端插入并固定安装至右第一滚珠轴承内部,右第二固定板的右端与右第一夹板的左端上侧连接,并且右第二固定板的内部纵向设置有右第二螺纹通孔,右第二锁紧螺杆的底端插入并螺装穿过右第二螺纹通孔内部并伸出至右第二固定板的底端外界,右第二夹板的顶端设置有右第二固定槽,并且右第二固定槽内部设置有右第二滚珠轴承,右第二锁紧螺杆的底端插入并固定安装至右第二滚珠轴承内部;还包括扭转电机22、上支撑板23、下支撑板、左上挡板24、左上夹板25、右上挡板、右上夹板、左上螺纹杆26、右上螺纹杆、左下挡板、右下挡板、左下夹板、右下夹板、左下螺纹杆和右下螺纹杆,扭住电机位于隔板的右侧,并且扭转电机的顶端与检测腔的顶端内壁连接,上支撑板的顶端与扭转电机的底部输出端连接,左上挡板和右上挡板的顶端分别与上支撑板的底端左侧和右侧连接,左上挡板和右上挡板的内部横向分别设置有左上螺纹通孔和右上螺纹通孔,左上螺纹杆的右端插入并螺装穿过左上螺纹通孔内部并伸出至左上挡板的右端外界,左上夹板的左端设置有左上固定槽,并且左上固定槽内部设置有左上滚珠轴承,左上螺纹杆的右端插入并固定安装至左上滚珠轴承内部,右上螺纹杆的左端插入并螺装穿过右上螺纹通孔内部并伸出至右上挡板的左端外界,右上夹板的右端设置有右上固定槽,并且右上固定槽内部设置有右上滚珠轴承,右上螺纹杆的左端插入并固定安装至右上滚珠轴承内部,下支撑板位于上支撑板的下方,左下挡板和右下挡板的底端分别与下支撑板的顶端左侧和右侧连接,左下挡板和右下挡板的内部横向分别设置有左下螺纹通孔和右下螺纹通孔,左下螺纹杆的右端插入并螺装穿过左下螺纹通孔内部并伸出至左下挡板的右端外界,左下夹板的左端设置有左下固定槽,并且左下固定槽内部设置有左下滚珠轴承,左下螺纹杆的右端插入并固定安装至左下滚珠轴承内部,右下螺纹杆的左端插入并螺装穿过右下螺纹通孔内部并伸出至右下挡板的左端外界,右下夹板的右端设置有右下固定槽,并且右下固定槽内部设置有右下滚珠轴承,右下螺纹杆的左端插入并固定安装至右下滚珠轴承内部;可以通过偏心电机的转动,带动偏心杆转动,并通过底板的伸缩孔的限制,将圆周运动转化为伸缩杆的往复直线运动,使敲击头可以连续的对手机触摸屏进行点击,且可以通过齿轮电机带动调节丝杠转动,使敲击头可以进行左右位置移动调节,并且可以通第二滑块与第二滑槽内部的滑动配合,使敲击头可以进行前后方向上的位置移动,从而可以更换点击位置,降低使用局限性;同时可以通过旋转左第一锁紧螺杆和右第一锁紧螺杆分别调节左第一夹板和右第一夹板之间的距离,提高手机触摸屏在检测台上的夹紧效果,同时通过旋转左第二锁紧螺杆和右第二锁紧螺杆,分别调整左第二夹板和右第二夹板与检测台顶端之间的距离,提高手机触摸屏在检测台压紧效果,提高使用可靠性;并且可以通过左上夹板和右上夹板将手机触摸屏的上端夹紧,然后通过左下夹板和右下夹板将手机触摸屏的下端夹紧,然后保持下支撑板的位置不动,通过扭转电机转动,使手机触摸屏进行扭转,进行扭转疲劳测试,提高测试多样性,提高实用性。
本实用新型的一种手机触摸屏用一体化质量检测装置,还包括左第一螺纹管27、右第一螺纹管、左第一螺纹杆28和右第一螺纹杆,左第一螺纹杆和右第一螺纹杆的顶端分别与下支撑板的底端左侧和右侧连接,并且左第一螺纹杆和右第一螺纹杆的底端分别插入并螺装至左第一螺纹管和右第一螺纹管的顶端内部,检测腔的底端内壁右侧设置有两组安装槽,并且两组安装槽内部设置有两组安装滚珠轴承,左第一螺纹管和右第一螺纹管的底端分别插入并固定安装至两组安装滚珠轴承内部;可以通过同步旋转左第一螺纹管和右第一螺纹管,使下支撑板可以进行高度上的调节,从而可以使上支撑板和下支撑板之间的距离可以进行调节,从而可以夹持不同长度大小的手机触摸屏进行扭转疲劳测试,提高适应能力,降低使用局限性。
本实用新型的一种手机触摸屏用一体化质量检测装置,还包括左锁紧螺栓29和右锁紧螺栓,移动板的左端和右端分别设置有左锁紧螺纹通孔和右锁紧螺纹通孔,并且左锁紧螺纹通孔和右锁紧螺纹通孔均与第二滑槽内部相通,左锁紧螺栓的右端插入并螺装至左锁紧螺纹通孔内部,并且左锁紧螺栓的右端与左第二滑块的左端锁紧接触,右锁紧螺栓的左端插入并螺装至右锁紧螺纹通孔内部,并且右锁紧螺栓的左端与第二滑块的右端锁紧接触;可以将前后方向调节后的第二滑块进行锁紧固定,从而使敲击头的位置进行固定,防止位置调节后,进行点击测试时,敲击头发生位置偏转,提高点击的位置准确性。
本实用新型的一种手机触摸屏用一体化质量检测装置,还包括上限位杆30和下限位杆,上限位杆的左端与左上挡板的右端上侧连接,并且上限位杆的右端依次穿过左上夹板和右上夹板的内部上侧并伸出至右上夹板的右端外界与右上挡板的左端上侧连接,左上夹板和右上夹板的内部均与上限位杆滑动配合,下限位杆的左端与左下挡板的右端下侧连接,并且下限位杆的右端依次穿过左下夹板和右下夹板的内部下侧并伸出至右下夹板的右端外界与右下挡板的左端下侧连接,左下夹板和右下夹板的内部均与下限位杆滑动配合;可以通过上限位杆提高左上夹板和上夹板的稳定滑动性,可以通过下限位杆提高左下夹板和右下夹板的稳定滑动性,提高使用可靠性。
本实用新型的一种手机触摸屏用一体化质量检测装置,还包括第一挡板31、第二挡板和第三挡板,第一挡板位于从动齿轮的上方,并且第二挡板位于齿轮电机的下方,并且第一挡板和第二挡板的右端均与检测箱的左侧外壁连接,第三挡板的顶端和底端分别与第一挡板的底端左侧和第二挡板的顶端左侧连接;可以提高齿轮电机的保护性,当外漏的主动齿轮和从动齿轮啮合工作时,防止对人造成危害,提高使用可靠性。
本实用新型的一种手机触摸屏用一体化质量检测装置,还包括码表32、码表感应器33、连接板34和磁铁感应器35,码表的右端与检测箱的左端外壁连接,并且连接板的右端上侧与滑板的左端下侧连接,码表感应器的左端与连接板的右端连接,磁铁感应器的右端与偏心轴的左端连接,码表与码表感应器通过传感线连通;当偏心轴旋转时,可以通过码表感应器捕捉到感应磁铁带来的信息,通过传感线传输至码表,从而可以通过码表统计的偏心轴转数得知敲击头对手机触摸屏的点击次数,方便统计点击频次,提高实用性。
本实用新型的一种手机触摸屏用一体化质量检测装置,还包括四组滚轮36,四组滚轮的顶端分别与四组支腿的底端连接;方便整体移动。
本实用新型的一种手机触摸屏用一体化质量检测装置,还包括左第二螺纹管37、右第二螺纹管、左第二螺纹杆38和右第二螺纹杆,下支撑板的左端和右端分别设置有左压紧槽和右压紧槽,并且左压紧槽和右压紧槽内部分别设置有左压紧滚珠轴承和右压紧滚珠轴承,左第二螺纹管的右端插入并固定安装至左压紧滚珠轴承内部,并且左第二螺纹杆的右端插入并螺装至左第二螺纹管的左端内部,并且左第二螺纹杆的左端设置有左压头,右第二螺纹管左端插入并固定安装至右压紧滚珠轴承内部,并且右第二螺纹杆的左端插入并螺装至右第二螺纹管的右端内部,右第二螺纹杆的右端设置有右压头;当进行扭转疲劳测试时,可以通过分别旋转左第二螺纹管和右第二螺纹管,将左压头的左端与隔板的右端压紧,同时将右压头的右端与检测腔的右端内壁压紧,提高下支撑板的稳定性,同时保护左第一螺纹管、右第一螺纹管、左第一螺纹杆和右第一螺纹杆不被扭断,提高左第一螺纹管、右第一螺纹管、左第一螺纹杆和右第一螺纹杆的使用寿命。
本实用新型的一种手机触摸屏用一体化质量检测装置,其在工作时,首先使用四组滚轮进行整体移动,将整体移动至所需测试的作业区域,当进行点击测试时,首先将手机触摸屏放置在检测台上,然后旋转左第一锁紧螺杆和右第一锁紧螺杆分别调节左第一夹板和右第一夹板之间的距离,使手机触摸屏在检测台上进行夹紧,同时旋转左第二锁紧螺杆和右第二锁紧螺杆,分别调整左第二夹板和右第二夹板与检测台顶端之间的距离,使手机触摸屏在检测台上进行压紧,然后通过偏心电机的转动,带动偏心杆转动,并通过底板的伸缩孔的限制,将圆周运动转化为伸缩杆的往复直线运动,使敲击头可以连续的对手机触摸屏进行点击,当需要更改点击测试位置时,且可以通过齿轮电机带动调节丝杠转动,使敲击头可以进行左右位置移动调节,并且可以通第二滑块与第二滑槽内部的滑动配合,使敲击头可以进行前后方向上的位置移动,并拧紧所锁螺栓和右锁紧螺栓,将位置进行固定,当需要进行扭转疲劳测试时,根据手机触摸屏的大小,同步旋转左第一螺纹管和右第一螺纹管,将下支撑板与上支撑板调节至合适的距离,然后通过左上夹板和右上夹板将手机触摸屏的上端夹紧,然后通过左下夹板和右下夹板将手机触摸屏的下端夹紧,然后通过分别旋转左第二螺纹管和右第二螺纹管,将左压头的左端与隔板的右端压紧,同时将右压头的右端与检测腔的右端内壁压紧,保持下支撑板的位置不动,打开扭转电机,使手机触摸屏进行扭转,进行扭转疲劳测试即可。 
以上所述仅是本实用新型的优选实施方式,应当指出,对于本技术领域的普通技术人员来说,在不脱离本实用新型技术原理的前提下,还可以做出若干改进和变型,这些改进和变型也应视为本实用新型的保护范围。

Claims (8)

  1. 一种手机触摸屏用一体化质量检测装置,包括检测箱(1)、四组支腿(2)、敲击头(3)和检测台(4),检测箱(1)内部设置有检测腔,并且检测箱(1)的前端设置有检测窗口,检测窗口与检测腔内部相通,四组支腿(2)的顶端与检测箱(1)底端的左前侧、左后侧、右前侧和右后侧连接,检测台(4)的底端设置有四组支杆,并且四组支杆的底端与所述检测腔的底端内壁的左前侧、左后侧、右前侧和右后侧连接;其特征在于,包括调节丝杠(5)、隔板(6)、齿轮电机(7)、移动块(8)、滑板(9)、偏心电机(10)、偏心杆(11)、伸缩杆(12)、左侧板(13)、右侧板、底板(14)和放置板(15),所述隔板(6)纵向设置在检测腔内部,并且隔板(6)的顶端与检测腔的顶端内壁连接,隔板(6)的底端与检测腔的底端内壁连接,所述放置板(15)的右端与所述隔板(6)的右端上侧连接,并且放置板(15)的左端设置有放置槽,所述放置槽内部设置有调节滚珠轴承,所述调节丝杠(5)的右端插入并固定安装至调节滚珠轴承内部,并且调节丝杠(5)的左端穿过检测腔的左端内壁并伸出至检测箱(1)的左端外界,所述调节丝杠(5)的左端设置有从动齿轮,所述齿轮电机(7)安装在检测箱(1)的左端外壁上,并且齿轮电机(7)的左部输出端设置有主动齿轮,所述主动齿轮与从动齿轮啮合,所述移动块(8)的顶端设置有第一滑块,并且所述检测腔的顶端内壁横向设置有第一滑槽,所述第一滑块设置在第一滑槽内部,并且第一滑块与第一滑槽滑动配合,移动块(8)的内部横向设置有调节螺纹通孔,并且移动块(8)通过调节螺纹通孔螺装套设在所述调节丝杠(5)上,并且移动块(8)的底端前后方向上横向设置有第二滑槽,并且滑板(9)的顶端设置有第二滑块,所述第二滑块设置在第二滑槽内部,并且第二滑块与第二滑槽滑动配合,所述偏心电机(10)的顶端与所述滑板(9)的底端连接,并且所述左侧板(13)和右侧板的顶端分别与偏心电机(10)底端的左侧和右侧连接,偏心电机(10)的前部输出端设置有偏心轴,所述偏心杆(11)的顶端与偏心轴的偏心位置可旋转连接,所述底板(14)的顶端左侧和右侧分别与左侧板(13)和右侧板的底端连接,并且底板(14)的内部纵向设置有伸缩通孔,所述伸缩杆(12)的顶端与偏心杆(11)的底端可旋转连接,并且伸缩杆(12)的底端可滑动穿过所述伸缩通孔内部并伸出至底板(14)的底端外界,所述敲击头(3)的顶端与伸缩杆(12)的底端连接;还包括左第一固定板(16)、右第一固定板、左第二固定板(17)、右第二固定板、左第一夹板(18)、右第一夹板、左第二夹板(19)、右第二夹板、左第一锁紧螺杆(20)、右第一锁紧螺杆、左第二锁紧螺杆(21)和右第二锁紧螺杆,所述左第一固定板(16)的底端与所述检测台(4)的顶端左侧连接,并且左第一固定板(16)的内部横向设置有左第一螺纹通孔,所述左第一锁紧螺杆(20)的右端螺装穿过左第一螺纹通孔内部并伸出至左第一固定板(16)的右端外界,所述左第一夹板(18)的左端设置有左第一固定槽,并且左第一固定槽内部设置有左第一滚珠轴承,所述左第一锁紧螺杆(20)的右端插入并固定安装至左第一滚珠轴承内部,所述左第二固定板(17)的左端与左第一夹板(18)的右端上侧连接,并且左第二固定板(17)的内部纵向设置有左第二螺纹通孔,所述左第二锁紧螺杆(21)的底端插入并螺装穿过左第二螺纹通孔内部并伸出至左第二固定板(17)的底端外界,所述左第二夹板(19)的顶端设置有左第二固定槽,并且左第二固定槽内部设置有左第二滚珠轴承,所述左第二锁紧螺杆(21)的底端插入并固定安装至左第二滚珠轴承内部,所述右第一固定板的底端与所述检测台(4)的顶端右侧连接,并且右第一固定板的内部横向设置有右第一螺纹通孔,所述右第一锁紧螺杆的左端螺装穿过右第一螺纹通孔内部并伸出至右第一固定板的左端外界,所述右第一夹板的右端设置有右第一固定槽,并且右第一固定槽内部设置有右第一滚珠轴承,所述右第一锁紧螺杆的左端插入并固定安装至右第一滚珠轴承内部,所述右第二固定板的右端与右第一夹板的左端上侧连接,并且右第二固定板的内部纵向设置有右第二螺纹通孔,所述右第二锁紧螺杆的底端插入并螺装穿过右第二螺纹通孔内部并伸出至右第二固定板的底端外界,所述右第二夹板的顶端设置有右第二固定槽,并且右第二固定槽内部设置有右第二滚珠轴承,所述右第二锁紧螺杆的底端插入并固定安装至右第二滚珠轴承内部;还包括扭转电机(22)、上支撑板(23)、下支撑板、左上挡板(24)、左上夹板(25)、右上挡板、右上夹板、左上螺纹杆(26)、右上螺纹杆、左下挡板、右下挡板、左下夹板、右下夹板、左下螺纹杆和右下螺纹杆,所述扭住电机位于所述隔板(6)的右侧,并且扭转电机(22)的顶端与检测腔的顶端内壁连接,所述上支撑板(23)的顶端与所述扭转电机(22)的底部输出端连接,所述左上挡板(24)和右上挡板的顶端分别与上支撑板(23)的底端左侧和右侧连接,左上挡板(24)和右上挡板的内部横向分别设置有左上螺纹通孔和右上螺纹通孔,所述左上螺纹杆(26)的右端插入并螺装穿过左上螺纹通孔内部并伸出至左上挡板(24)的右端外界,所述左上夹板(25)的左端设置有左上固定槽,并且左上固定槽内部设置有左上滚珠轴承,所述左上螺纹杆(26)的右端插入并固定安装至左上滚珠轴承内部,所述右上螺纹杆的左端插入并螺装穿过右上螺纹通孔内部并伸出至右上挡板的左端外界,所述右上夹板的右端设置有右上固定槽,并且右上固定槽内部设置有右上滚珠轴承,所述右上螺纹杆的左端插入并固定安装至右上滚珠轴承内部,所述下支撑板位于所述上支撑板(23)的下方,所述左下挡板和右下挡板的底端分别与下支撑板的顶端左侧和右侧连接,左下挡板和右下挡板的内部横向分别设置有左下螺纹通孔和右下螺纹通孔,所述左下螺纹杆的右端插入并螺装穿过左下螺纹通孔内部并伸出至左下挡板的右端外界,所述左下夹板的左端设置有左下固定槽,并且左下固定槽内部设置有左下滚珠轴承,所述左下螺纹杆的右端插入并固定安装至左下滚珠轴承内部,所述右下螺纹杆的左端插入并螺装穿过右下螺纹通孔内部并伸出至右下挡板的左端外界,所述右下夹板的右端设置有右下固定槽,并且右下固定槽内部设置有右下滚珠轴承,所述右下螺纹杆的左端插入并固定安装至右下滚珠轴承内部。
  2. 如权利要求1所述的一种手机触摸屏用一体化质量检测装置,其特征在于,还包括左第一螺纹管(27)、右第一螺纹管、左第一螺纹杆(28)和右第一螺纹杆,所述左第一螺纹杆(28)和右第一螺纹杆的顶端分别与所述下支撑板的底端左侧和右侧连接,并且左第一螺纹杆(28)和右第一螺纹杆的底端分别插入并螺装至左第一螺纹管(27)和右第一螺纹管的顶端内部,所述检测腔的底端内壁右侧设置有两组安装槽,并且两组安装槽内部设置有两组安装滚珠轴承,所述左第一螺纹管(27)和右第一螺纹管的底端分别插入并固定安装至两组安装滚珠轴承内部。
  3. 如权利要求2所述的一种手机触摸屏用一体化质量检测装置,其特征在于,还包括左锁紧螺栓(29)和右锁紧螺栓,所述移动板的左端和右端分别设置有左锁紧螺纹通孔和右锁紧螺纹通孔,并且左锁紧螺纹通孔和右锁紧螺纹通孔均与所述第二滑槽内部相通,所述左锁紧螺栓(29)的右端插入并螺装至左锁紧螺纹通孔内部,并且左锁紧螺栓(29)的右端与所述左第二滑块的左端锁紧接触,所述右锁紧螺栓的左端插入并螺装至右锁紧螺纹通孔内部,并且右锁紧螺栓的左端与第二滑块的右端锁紧接触。
  4. 如权利要求3所述的一种手机触摸屏用一体化质量检测装置,其特征在于,还包括上限位杆(30)和下限位杆,所述上限位杆(30)的左端与所述左上挡板(24)的右端上侧连接,并且上限位杆(30)的右端依次穿过左上夹板(25)和右上夹板的内部上侧并伸出至右上夹板的右端外界与所述右上挡板的左端上侧连接,所述左上夹板(25)和右上夹板的内部均与所述上限位杆(30)滑动配合,所述下限位杆的左端与所述左下挡板的右端下侧连接,并且下限位杆的右端依次穿过左下夹板和右下夹板的内部下侧并伸出至右下夹板的右端外界与所述右下挡板的左端下侧连接,所述左下夹板和右下夹板的内部均与所述下限位杆滑动配合。
  5. 如权利要求4所述的一种手机触摸屏用一体化质量检测装置,其特征在于,还包括第一挡板(31)、第二挡板和第三挡板,所述第一挡板(31)位于所述从动齿轮的上方,并且所述第二挡板位于所述齿轮电机(7)的下方,并且第一挡板(31)和第二挡板的右端均与所述检测箱(1)的左侧外壁连接,所述第三挡板的顶端和底端分别与第一挡板(31)的底端左侧和第二挡板的顶端左侧连接。
  6. 如权利要求5所述的一种手机触摸屏用一体化质量检测装置,其特征在于,还包括码表(32)、码表感应器(33)、连接板(34)和磁铁感应器(35),所述码表(32)的右端与所述检测箱(1)的左端外壁连接,并且所述连接板(34)的右端上侧与滑板(9)的左端下侧连接,所述码表感应器(33)的左端与连接板(34)的右端连接,所述磁铁感应器(35)的右端与所述偏心轴的左端连接,所述码表(32)与码表感应器(33)通过传感线连通。
  7. 如权利要求6所述的一种手机触摸屏用一体化质量检测装置,其特征在于,还包括四组滚轮(36),所述四组滚轮(36)的顶端分别与所述四组支腿(2)的底端连接。
  8. 如权利要求7所述的一种手机触摸屏用一体化质量检测装置,其特征在于,还包括左第二螺纹管(37)、右第二螺纹管、左第二螺纹杆(38)和右第二螺纹杆,所述下支撑板的左端和右端分别设置有左压紧槽和右压紧槽,并且左压紧槽和右压紧槽内部分别设置有左压紧滚珠轴承和右压紧滚珠轴承,所述左第二螺纹管(37)的右端插入并固定安装至左压紧滚珠轴承内部,并且左第二螺纹杆(38)的右端插入并螺装至左第二螺纹管(37)的左端内部,并且左第二螺纹杆(38)的左端设置有左压头,所述右第二螺纹管左端插入并固定安装至右压紧滚珠轴承内部,并且右第二螺纹杆的左端插入并螺装至右第二螺纹管的右端内部,右第二螺纹杆的右端设置有右压头。
     
PCT/CN2018/113356 2018-06-07 2018-11-01 一种手机触摸屏用一体化质量检测装置 WO2019233026A1 (zh)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201810578398.5 2018-06-07
CN201810578398.5A CN108680445A (zh) 2018-06-07 2018-06-07 一种手机触摸屏用一体化质量检测装置

Publications (1)

Publication Number Publication Date
WO2019233026A1 true WO2019233026A1 (zh) 2019-12-12

Family

ID=63810270

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2018/113356 WO2019233026A1 (zh) 2018-06-07 2018-11-01 一种手机触摸屏用一体化质量检测装置

Country Status (2)

Country Link
CN (1) CN108680445A (zh)
WO (1) WO2019233026A1 (zh)

Families Citing this family (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108680445A (zh) * 2018-06-07 2018-10-19 江苏赛博宇华科技有限公司 一种手机触摸屏用一体化质量检测装置
CN109186996A (zh) * 2018-12-01 2019-01-11 洛阳恒辉实业有限公司 一种全自动箱包拉杆寿命检测装置
CN110987688B (zh) * 2019-12-24 2020-11-13 江苏润祁项目管理有限公司 一种便于避免滑脱的新材料研发用表面性能检测装置
CN111537220B (zh) * 2020-04-21 2022-04-19 安徽科技学院 一种摆线针轮减速机质量检测装置
CN112985829B (zh) * 2021-01-29 2023-08-01 重庆峰跃科技有限公司 一种防倾杆扭矩与形变检测装置
CN113075472B (zh) * 2021-03-22 2022-09-13 昆山绿之源智能设备制造有限公司 一种平板电脑触摸屏点击测试装置
CN116858712B (zh) * 2023-09-05 2023-11-07 深圳市微特精密科技股份有限公司 一种触摸屏耐久性检测系统

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR20070117158A (ko) * 2006-06-07 2007-12-12 엘지.필립스 엘시디 주식회사 컬러필터 어레이 기판의 검사장비 및 검사방법
CN205941754U (zh) * 2016-06-07 2017-02-08 深圳市品触光电科技有限公司 一种触摸屏断短路检测装置
CN206479328U (zh) * 2017-02-25 2017-09-08 沧州鑫利达五金制造有限责任公司 弹簧寿命测试仪
CN107894541A (zh) * 2017-10-20 2018-04-10 上海四旻机电科技有限公司 带触摸屏的控制器面板性能测试平台
CN107941641A (zh) * 2017-11-21 2018-04-20 江门市嘉威电器实业有限公司 触摸屏摩擦测试仪
CN108680445A (zh) * 2018-06-07 2018-10-19 江苏赛博宇华科技有限公司 一种手机触摸屏用一体化质量检测装置

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR20070117158A (ko) * 2006-06-07 2007-12-12 엘지.필립스 엘시디 주식회사 컬러필터 어레이 기판의 검사장비 및 검사방법
CN205941754U (zh) * 2016-06-07 2017-02-08 深圳市品触光电科技有限公司 一种触摸屏断短路检测装置
CN206479328U (zh) * 2017-02-25 2017-09-08 沧州鑫利达五金制造有限责任公司 弹簧寿命测试仪
CN107894541A (zh) * 2017-10-20 2018-04-10 上海四旻机电科技有限公司 带触摸屏的控制器面板性能测试平台
CN107941641A (zh) * 2017-11-21 2018-04-20 江门市嘉威电器实业有限公司 触摸屏摩擦测试仪
CN108680445A (zh) * 2018-06-07 2018-10-19 江苏赛博宇华科技有限公司 一种手机触摸屏用一体化质量检测装置

Also Published As

Publication number Publication date
CN108680445A (zh) 2018-10-19

Similar Documents

Publication Publication Date Title
WO2019233026A1 (zh) 一种手机触摸屏用一体化质量检测装置
CN208780566U (zh) 一种手机触摸屏用一体化质量检测装置
CN208620995U (zh) 一种带定位功能的高度差检测机
CN206523385U (zh) 一种电动硬度计
CN215677833U (zh) 一种钢筋弯曲试验夹具
CN209606067U (zh) 一种卷板机壳气压扩张强度检测装置
CN205066652U (zh) 一种叶型检验装置
CN209727056U (zh) 弯管截面椭圆度测量装置
CN108050980A (zh) 一种主轴工件偏心度测量仪器
CN211915039U (zh) 一种金属弯管弯曲成形性能测量装置
CN210005230U (zh) 一种箱包拉伸测试机
CN210243185U (zh) 用于滚珠丝杠副的监测装置
CN208059736U (zh) 用于涡旋压缩机曲轴的综合位置检具
CN206740030U (zh) 一种气门杆端面跳动检测装置
CN219302512U (zh) 一种电路板测试治具
CN220339264U (zh) 一种用于设计的检测设备
CN219455796U (zh) 一种铝合金延伸率测量装置
CN201266068Y (zh) 一种同轴度检测装置
CN218137583U (zh) 水表测试用的定位夹持装置
CN213579928U (zh) 一种望远镜防水性快速检测装置
CN220959953U (zh) 一种内径检测辅助装置
CN211452329U (zh) 一种建筑检测用辅助装置
CN218511933U (zh) 一种压力计量辅助定位结构
CN220853432U (zh) 一种机械导轨生产用滑块测试平台
CN220438022U (zh) 焊接管压力测试机

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: 18921778

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: 18921778

Country of ref document: EP

Kind code of ref document: A1