WO2020073485A1 - 贴条机 - Google Patents

贴条机 Download PDF

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Publication number
WO2020073485A1
WO2020073485A1 PCT/CN2018/121688 CN2018121688W WO2020073485A1 WO 2020073485 A1 WO2020073485 A1 WO 2020073485A1 CN 2018121688 W CN2018121688 W CN 2018121688W WO 2020073485 A1 WO2020073485 A1 WO 2020073485A1
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WO
WIPO (PCT)
Prior art keywords
axis
detection
shaft
feed
mounting seat
Prior art date
Application number
PCT/CN2018/121688
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English (en)
French (fr)
Inventor
陈中华
Original Assignee
陈中华
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Filing date
Publication date
Application filed by 陈中华 filed Critical 陈中华
Publication of WO2020073485A1 publication Critical patent/WO2020073485A1/zh

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    • AHUMAN NECESSITIES
    • A41WEARING APPAREL
    • A41HAPPLIANCES OR METHODS FOR MAKING CLOTHES, e.g. FOR DRESS-MAKING OR FOR TAILORING, NOT OTHERWISE PROVIDED FOR
    • A41H43/00Other methods, machines or appliances
    • A41H43/04Joining garment parts or blanks by gluing or welding ; Gluing presses

Definitions

  • the invention relates to the field of garment processing equipment, in particular to a sticking machine for sticking hot-melt adhesive films on garment fabrics.
  • Clothing is a product that is sewn from fabric and worn on the human body for protection and decoration, also known as clothes.
  • the first appearance of clothing is mainly for the purpose of shaming, and the development of time has turned to practicality, while also paying more attention to the aesthetics of the clothing.
  • Factors that affect aesthetics include fabric texture, color, pattern, shape retention, drape, elasticity, wrinkle resistance, clothing style, etc.
  • the quilting thread is the stitch that fixes the filler and lining on the face.
  • the quilting thread of the traditional down jacket will cause damage to the fabric (with pinholes), and the small down may leak out of the quilting pinhole, thereby affecting the appearance and quality of the clothes.
  • the technology of seamless apparel is to use hot-melt adhesive film to stick the lining and face to replace the traditional quilting line.
  • the clothes made in this way are more beautiful and generous from the outside, and the small down is fixed on the lining and face between. At present, most of these processes are applied by hand, and the efficiency is too low.
  • the purpose of the present invention is to provide a sticking machine for sticking hot-melt adhesive film strips on clothing fabrics with a simple structure and high sticking efficiency.
  • the basic technical solution for realizing the object of the present invention is: a labeling machine whose structural characteristics include: a workbench, an X-axis module, a Y-axis module, a feeding device, a pressing device, a shearing device and a discharging component.
  • the discharge component is used to place the hot melt adhesive film strip.
  • the X-axis module is set on the worktable, and is used to drive the Y-axis module to move left and right along the X-axis direction on the upper side of the worktable.
  • the feeding device is driven by the Y-axis module to move back and forth in the Y-axis direction on the upper side of the worktable.
  • the feeding device includes an active feeding component, a clamping component and a waste receiving component.
  • the clamping assembly is used to clamp or fix the hot melt adhesive film strip.
  • the active feeding component carries out the hot melt adhesive film strip conveying and feeding, and the waste collecting component collects the separation paper layer of the hot melt adhesive film strip.
  • the pressing device is arranged on the Y-axis module, and can move back and forth in the Y-axis direction. It is used to press the corresponding parts of the adhesive film layer of the hot-melt adhesive film strip, so that the adhesive film layer of the hot-melt adhesive film strip is pasted. On the corresponding cloth.
  • the shearing device is used to cut the tight hot melt adhesive film strip.
  • the technical solution based on the above basic technical solution is: it also includes a positioning device.
  • the workbench includes a main frame body and a platen assembly provided on the main frame body. Platen components include worktables and work panels. There are two working panels, and the two working panels are arranged side by side along the left and right directions. Both work panels are made of stainless steel.
  • the two positioning up and down drive cylinders of the positioning device are arranged in order from left to right.
  • the piston rods of the two positioning up and down drive cylinders extend upwards, pass through the worktable, and the positioning pressure plate is fixedly arranged on the piston rods of the two positioning up and down drive cylinders in the left and right directions, and the positioning up and down drive cylinders drive the positioning platen to move up and down.
  • the Y-axis module is provided with a Y-axis first profile and a Y-axis first mounting seat plate that can move back and forth in the Y-axis direction.
  • the Y-axis first profile is arranged on the upper side of the table in the front-back direction, and is driven by the X-axis module to move left and right in the X-axis direction.
  • the active feed assembly includes a feed drive motor, an active feed first synchronous belt pulley, an active feed synchronous belt, an active feed second synchronous belt pulley, an active feed mount, a feed pressure roller shaft, a feed pressure roller connecting rod, a feed upper pressure roller, and a feed
  • the feeding drive motor is fixedly arranged on the upper middle part of the Y-axis first mounting seat plate by its motor shell.
  • the motor shaft of the feeding drive motor is horizontally set in the left-right direction and extends to the right.
  • the drive connection of the first synchronous belt pulley for active feeding is arranged on the motor shaft of the feeding driving motor.
  • the active feed mounting seat is fixedly arranged on the right middle part of the Y-axis first mounting seat plate.
  • the rear end of the feed pressure roller connecting rod is rotatably set on the rear part of the active feed mounting base, and the rotating shaft is set horizontally in the left-right direction.
  • the feed roller shaft is arranged on the front end of the feed roller connecting rod through corresponding bearings rotating in the left-right direction.
  • the front end of the connecting rod of the feeding pressure wheel is provided with a connecting hole.
  • the second synchronous belt pulley for active feeding is connected to the left end of the axle of the feeding pressure roller.
  • the active feeding timing belt is arranged around the active feeding first timing pulley and the active feeding second timing pulley.
  • the upper feed roller is connected to the right end of the shaft of the feed roller.
  • the feeding spring frame is screwed and fixed on the lower front part of the active feeding mounting seat.
  • the lower feeding roller is set on the active feeding mounting seat and is located below the upper feeding roller.
  • One end of the compression spring is connected to the feeding spring frame, and the other end is connected to the connecting hole of the connecting rod of the feeding pressure wheel, which is in an extended state.
  • the compression spring makes the feeding upper pressing wheel clamp the corresponding hot melt adhesive film strip on the feeding lower roller from top to bottom.
  • the feed adjustment screw is screwed on the active feed mounting base from below, and after passing through the active feed mounting base upward, it presses the corresponding position of the lower part of the front end of the feed pressure roller connecting rod upward, used to adjust the feed upper pressure roller and the feed lower roller The size of the gap between.
  • the lifting roller is fixedly arranged on the rear end of the connecting roller of the feeding roller in a direction perpendicular to the rotation axis of the connecting roller of the feeding roller, which is used to lift the feeding upper roller and install the hot melt adhesive film strip.
  • the first guide seat for discharging is fixedly arranged on the right part of the rear part of the active feeding mounting seat in the vertical direction, and is located behind the feeding lower roller.
  • the Y-axis module is provided with a Y-axis first profile and a Y-axis first mounting seat plate that can move back and forth in the Y-axis direction.
  • the Y-axis first profile is arranged on the upper side of the table in the front-back direction, and is driven by the X-axis module to move left and right in the X-axis direction.
  • the material clamping assembly includes a material clamping vertical driving cylinder, a material clamping clamp driving cylinder, a material clamping linear guide, a material clamping mounting seat, a lower clamping plate, an upper clamping plate, a material guiding seat, a material clamping guide wheel and a blowing air pipe.
  • the material-clamping up-and-down driving cylinder is rotatably connected to the right middle part of the Y-axis first mounting seat plate by its cylinder body, and is located behind the active feeding assembly.
  • the clamping cylinder drives the cylinder up and down, and the piston rod extends downward.
  • the clamping linear guide rail is fixedly arranged on the right middle part of the Y-axis first mounting seat plate along the vertical direction by the guide rail, and is located below the clamping vertical driving cylinder.
  • the material clamping mounting seat is fixedly arranged on the slider of the material clamping linear guide.
  • the piston rod of the cylinder driving the cylinder up and down is hingedly connected to the clamping mount.
  • the clamping cylinder driving cylinder is connected to the right side of the clamping material mounting seat by the rotation of the cylinder body.
  • the lower clamping plate is fixedly arranged on the lower right part of the clamping material mounting seat.
  • the upper clamping plate is connected to the right side of the material mounting seat by the middle part, and is located above the lower clamping plate.
  • the front end of the upper clamping plate is hingedly connected to the piston rod of the clamping cylinder driving cylinder.
  • the cylinder is driven by the clamping clamp to drive the upper clamping plate to rotate, so that the upper rear end clamping portion of the upper clamping plate and the lower rear end clamping portion of the lower clamping plate form a clamping structure.
  • the material guide seat is fixedly arranged on the right lower part of the material clamping mounting seat in the front-rear direction, and is located in front of the lower rear end clamping part of the lower clamping plate.
  • the material clamping guide wheel is rotatably arranged on the lower front part of the right side of the material clamping mounting seat, and is located in front of the material guiding seat.
  • the blowing air pipe is fixedly arranged on the right side of the material guiding seat, the air outlet is located at the lower right part of the lower rear clamping part of the lower clamping plate, and the air outlet of the blowing air pipe blows backward.
  • the Y-axis module is provided with a Y-axis first profile and a Y-axis first mounting seat plate that can move back and forth in the Y-axis direction.
  • the Y-axis first profile is arranged on the upper side of the table in the front-back direction, and is driven by the X-axis module to move left and right in the X-axis direction.
  • the waste material collection component includes a material collection tray supporting shaft, a material collection tray bottom plate, a material collection left blocking material tray, a material collection right blocking material tray, a second adjustable damping coupling, a material collection tray mounting seat and a material collection driving assembly.
  • the receiving tray mounting seat is fixedly arranged on the front of the Y-axis first mounting seat plate.
  • the supporting shaft of the receiving tray is arranged on the lower part of the mounting seat of the receiving tray through corresponding bearings and bearing seats rotating in the left-right direction.
  • the right part of the bottom plate of the receiving tray is provided with a partition plate portion.
  • the left collecting tray is fixedly installed on the bottom plate of the collecting tray, and is located on the left side of the partition plate portion of the bottom plate of the collecting tray.
  • the right collecting disc is detachably fixed on the right part of the supporting shaft of the collecting disc, is located on the right side of the partition disc part of the bottom plate of the collecting disc, and is in drive connection with the supporting shaft of the collecting disc.
  • the locking wheel of the second adjustable damping coupling is fixedly arranged on the receiving tray support shaft, and is in drive connection with the receiving tray support shaft.
  • the material collecting drive assembly includes a material collecting motor, a main pulley, a driven pulley and a transmission round belt.
  • the collecting motor is fixedly arranged on the collecting tray mounting seat in the left-right direction by its motor housing, and the motor extends to the right in the axial direction.
  • the main pulley drive is set on the motor shaft of the collecting motor.
  • the driven pulley transmission is arranged on the damping adjustment wheel of the second adjustable damping coupling.
  • the driving round belt is arranged around the main pulley and the driven pulley.
  • the feeding device further includes a discharge tray assembly and a guide wheel assembly.
  • the Y-axis module is provided with a Y-axis first profile and a Y-axis first mounting base that can move back and forth in the Y-axis direction.
  • the Y-axis first profile is arranged on the upper side of the table in the front-back direction, and is driven by the X-axis module to move left and right in the X-axis direction.
  • the discharge tray assembly includes a discharge tray support shaft, a discharge tray bottom plate, a left stop tray, a right stop tray, a first adjustable damping coupling, a discharge tray mounting seat, and a first limit device.
  • the discharge tray mounting seat is fixedly arranged on the upper middle portion of the Y-axis first mounting seat plate.
  • the supporting shaft of the discharge tray is arranged on the upper part of the installation seat of the discharge tray through the corresponding bearings and the bearing seat rotating in the left-right direction.
  • the middle part of the bottom plate of the discharge tray is provided with a partition plate portion.
  • the left blocking plate and the right blocking plate are fixedly arranged on the bottom plate of the discharge plate, and are respectively located on the left and right sides of the partition plate portion of the bottom plate of the discharge plate.
  • the locking wheel of the first adjustable damping coupling is fixedly arranged on the support shaft of the discharge tray, and is drivingly connected with the support shaft of the discharge tray.
  • the first limit device includes a limit hoop and a hoop limit post.
  • the limit hoop is clamped and fixed on the damping adjusting wheel of the first adjustable damping coupling.
  • the lower part of the limit hoop is provided with a limit groove that runs downward through the openings on the left and right sides.
  • the hoop limit post is fixed on the upper left side of the mounting base of the discharge tray in the left and right directions, and the corresponding part is located in the limit groove of the limit hoop, and the circumferential limit of the limit hoop is prevented to prevent its rotation .
  • the guide wheel assembly includes a first guide wheel.
  • the first guide wheel is rotatably arranged on the Y-axis first mounting seat plate, and its rotation axis is horizontally arranged in the left-right direction.
  • the first guide wheel is located between the discharge tray assembly and the active feeding assembly.
  • the feeding device further includes a feeding detection component and a guide wheel component.
  • the feeding detection assembly includes a feeding detection rotating shaft, a detection rotating shaft mounting seat, a detection guide wheel, a detection shaft stop, a detection spring hook seat, a detection limit fixed stop post, a detection limit stop lever, a detection stop plate, a detection link, a detection link Rod shaft, detecting connecting rod retaining ring, detecting and adjusting retaining ring, first spring hook post and detecting return spring.
  • the detection rotating shaft mounting seat is fixedly arranged on the lower right part of the Y-axis first mounting seat plate through a corresponding connecting plate.
  • the feeding detection rotating shaft rotates in the left-right direction on the detection rotating shaft mounting seat, and both left and right ends thereof extend out of the detecting rotating shaft mounting seat.
  • the two detection shaft gear seats are divided into a left detection shaft gear seat and a right detection shaft gear seat according to their different left and right positions.
  • the left detecting shaft gear seat is fixedly arranged on the left end of the feeding detecting rotating shaft, and is in drive connection with the feeding detecting rotating shaft.
  • the detection guide wheel is set on the right part of the feed detection rotating shaft through corresponding bearing rotation, and the right detection shaft stop is fixedly arranged on the right end of the feed detection rotating shaft, which is drivingly connected to the feed detection rotating shaft, and performs the detection guide wheel in the axial direction Limit.
  • the left detection shaft stop and the right detection shaft stop restrict the feed detection rotation shaft on the detection rotation shaft mounting seat in the axial direction.
  • the detection spring hook seat is fixedly arranged on the front side of the left detection shaft stop along the radial direction of the feed detection rotation shaft.
  • the first spring hook post is fixedly arranged on the right lower part of the Y-axis first mounting seat plate in the left-right direction, and is located in front of the detection spring hook seat.
  • One end of the detection return spring is connected to the detection spring hook seat, and the other end is connected to the first spring hook post, which is in an extended state, and is used to rotate the feeding detection rotation axis forward and downward.
  • the detection limit gear lever is fixedly arranged on the rear side of the left detection shaft gear seat along the radial direction of the feed detection rotation shaft.
  • Detection limit The fixed stop column is fixed on the lower right side of the first mounting base of the Y axis in the left and right direction, located behind and below the feed detection rotating shaft, and limits the detection limit lever from above.
  • the detection baffle is arranged on the left end of the feed detection rotating shaft along the radial transmission of the feed detection rotating shaft.
  • the radial transmission of the detection connecting rod along the feed detection rotating shaft is arranged on the right end of the feed detection rotating shaft.
  • the detection link shaft is arranged on the front end of the detection link in the left-right direction, and the right end is fixedly connected to the detection link.
  • the detection link retaining ring is fixed on the left end of the detection link shaft.
  • the detection and adjustment stopper ring can be adjusted and fixed on the detection link shaft, and the distance between it and the detection link stopper ring can be adjusted to correspond to the width of the corresponding hot melt adhesive film strip.
  • the guide wheel assembly includes a second guide wheel.
  • the second guide wheel is rotatably arranged on the Y-axis first mounting seat plate, and its rotation axis is horizontally arranged in the left-right direction.
  • the second guide wheel is located between the feeding detection component and the waste receiving component.
  • the pressing device includes a pressing Y-axis module, a pressing mounting base, a pressing foot, a pressing foot driving cylinder, a pressing foot mounting shaft, and a pressing foot driving arm.
  • the Y-axis module is provided with a Y-axis first profile and a Y-axis first mounting seat plate that can move back and forth in the Y-axis direction.
  • the Y-axis first profile is arranged on the upper side of the table in the front-back direction, and is driven by the X-axis module to move left and right in the X-axis direction.
  • the compression Y-axis module includes a compression drive motor, a compression motor mounting seat, a first tensioning seat, a compression first synchronous belt wheel, a compression second synchronous belt wheel, a compression synchronous belt and a linear guide.
  • the pressing motor mounting seat is fixedly arranged on the upper rear part of the Y-axis first profile of the Y-axis module.
  • the pressing drive motor is fixed on the left side of the pressing motor mounting seat by its motor housing in the left-right direction, and its motor shaft is rotatingly set on the pressing motor mounting seat, and the corresponding part is located in the pressing motor mounting seat.
  • the transmission of the compression first synchronous belt wheel is arranged on the motor shaft of the compression drive motor and is located in the installation seat of the compression motor.
  • the first tensioning seat is fixedly arranged on the upper front part of the Y-axis first profile.
  • the pressing second synchronous belt wheel is rotationally arranged in the first tensioning seat.
  • the pressing timing belt is arranged around pressing the first timing pulley and pressing the second timing pulley.
  • the guide rail of the linear guide rail is fixedly arranged on the upper side of the Y-axis first profile in the front-rear direction.
  • the guide rail of the linear guide rail is provided with three slide blocks in order from front to back, and the three slide blocks are divided into a front slide block, a middle slide block and a rear slide block according to their front and rear positions.
  • the upper part of the compression mounting seat is fixedly arranged on the rear slider of the linear guide.
  • the upper left part of the compression mounting base is connected to the compression timing belt drive through the corresponding timing belt clamping plate.
  • the lower part of the middle part of the compression mounting base is fixedly connected with the Y-axis second roller slider of the Y-axis module.
  • the upper part of the Y-axis first mounting base of the Y-axis module is fixedly connected with the front slider and the middle slider.
  • the presser foot installation shaft is rotated on the lower part of the right part of the press mounting base from the middle, the presser foot transmission is provided on the right end of the presser foot installation shaft, and the presser foot drive arm transmission is provided on the left end of the presser foot installation shaft.
  • the rear end of the presser foot driving arm is provided with a waist-round connecting hole which is provided in the front-rear direction and penetrates the left and right sides thereof.
  • the presser foot driving cylinder is fixedly arranged on the pressing mounting base from its cylinder body in the up and down direction, and its piston rod extends downward, and the lower end of the piston rod is hingedly connected in the waist circular connecting hole of the presser foot driving arm. Therefore, the presser foot drives the air cylinder to drive the presser foot to rotate, so that the front end of the presser foot is lifted upward or downward to press and fix the hot melt adhesive film strip on the working panel.
  • the cutting device includes a moving cutter, a fixed cutter, a first drive assembly for the cutter, a second drive assembly for the cutter, a first mounting plate for the cutter, and a mounting seat for the cutter.
  • the Y-axis module is provided with a Y-axis first profile and a Y-axis first mounting seat plate that can move back and forth in the Y-axis direction.
  • the Y-axis first profile is arranged on the upper side of the table in the front-back direction, and is driven by the X-axis module to move left and right in the X-axis direction.
  • the second driving component of the cutter adopts a cylinder with a guide rod.
  • the cylinder with a guide rod is fixedly arranged on the rear side of the ejector rod seat of the auxiliary ejector rod assembly by its cylinder body, and its piston rod is arranged in the left-right direction and extends to the right.
  • the first mounting plate of the cutter is fixedly connected to the piston rod with the guide cylinder.
  • the cutter mounting seat is fixedly arranged on the lower right part of the first mounting plate of the cutter.
  • the first drive assembly of the cutter includes a first drive cylinder for the cutter, a cutter shaft, a cutter shaft connection arm, and a clamping spring.
  • the first driving cylinder of the cutter is fixedly arranged on the rear right side of the first installation plate of the cutter by its cylinder body through a corresponding connecting seat plate.
  • the cutter shaft is rotated and set in the cutter mounting seat, and the clamping spring is sleeved on the cutter shaft in a compressed state.
  • One end of the clamping spring is pressed against the corresponding part of the cutter mounting seat, and the other end is set against the cutter shaft
  • the tight spring pushes the cutter axially forward.
  • One end of the cutter shaft connecting arm is drivingly connected to the rear end of the cutter shaft, and the other end of the cutter shaft connecting arm is hingedly connected to the piston rod of the first drive cylinder of the cutter.
  • the movable cutter is fixedly arranged on the front end of the cutter shaft in the radial direction of the cutter shaft, and the fixed cutter is fixedly arranged on the front part of the cutter mounting seat in the left-right direction. Therefore, the first driving cylinder of the cutter drives the cutter shaft to rotate through the cutter shaft connecting arm, so that the movable cutter and the fixed cutter form a cutting mechanism.
  • the shearing device further includes an auxiliary jack assembly.
  • the auxiliary ejector rod assembly includes an ejector rod, an indenter, an ejector rod seat, an ejector rod drive cylinder, and an ejector rod linear guide.
  • the jack seat is fixedly arranged on the sliders of the two jack linear guide rails, and can move up and down along the guide rails.
  • the jack is vertically fixed on the jack seat.
  • the indenter is detachably fixed on the lower end of the jack, and the indenter is screwed and fixed on the lower end of the jack.
  • the ejector rod driving cylinder is fixedly arranged on the rear part of the Y-axis first installation seat plate through a corresponding mounting seat, the piston rod extends downward, the lower end of the piston rod is hingedly connected to the ejector rod seat, and is driven by the ejector rod driving cylinder
  • the mandrel seat moves up and down along the mandrel linear guide rail, so that the indenter rises up or down to press and fix the corresponding part of the hot melt adhesive film strip on the working panel.
  • the X-axis module includes the first drive motor, the X-axis driving wheel, the X-axis driven shaft, the X-axis driven wheel, the X-axis first timing belt, and the X-axis front drive Components and X-axis rear transmission components.
  • the first driving motor is fixedly arranged on the upper part of the left part of the main frame body, and its motor shaft is horizontally arranged in the front-rear direction and extends backward.
  • the X-axis driving wheel transmission is arranged on the motor shaft of the driving motor.
  • the X-axis driven shaft is rotatably provided on the upper left portion of the main frame body through corresponding two self-aligning ball bearings.
  • the axis of the X-axis driven shaft and the axis of the motor shaft of the first drive motor are parallel to each other.
  • the X-axis driven wheel transmission is set on the X-axis driven shaft.
  • the X-axis first timing belt is arranged around the X-axis driving wheel and the X-axis driven wheel.
  • X-axis front side transmission assembly includes front X-axis profile, X-axis front rail, X-axis front roller slider, X-axis front-side transmission shaft, X-axis front-side synchronous pulley, and X-axis front-side synchronous pulley And X-axis front timing belt.
  • the front X-axis profile is horizontally arranged on the upper part of the front of the main frame body in the left-right direction, and is located on the lower part of the front of the worktable.
  • the X-axis front rail is fixedly arranged in the front X-axis profile in the left-right direction.
  • the X-axis front roller slider is slidingly arranged on the X-axis front rail.
  • the front drive shaft of the X-axis is set on the left part of the front X-axis profile to rotate in the front-rear direction, and its rear end is connected to the front end of the X-axis driven shaft through a corresponding coupling.
  • the first synchronous belt wheel transmission on the front side of the X axis is arranged on the front transmission shaft of the X axis and is located in the left end of the front X axis profile.
  • the second synchronous pulley on the front side of the X axis is rotatably provided in the right part of the front X axis profile.
  • the X-axis front timing belt is disposed around the X-axis front side first timing pulley and the X-axis front side second timing pulley.
  • the X-axis front roller slider is fixedly connected to the X-axis front synchronous belt through corresponding synchronous belt clamping blocks.
  • X-axis rear transmission assembly includes rear X-axis profile, X-axis rear guide rail, X-axis rear roller slider, X-axis rear-side transmission shaft, X-axis rear-side synchronous belt pulley, X-axis rear-side synchronous belt pulley Timing belt after X axis.
  • the rear X-axis profile is horizontally arranged on the upper rear portion of the main frame body in the left-right direction, and is located on the lower rear portion of the table top 1.
  • the X-axis rear guide rail is fixedly arranged in the rear X-axis profile in the left-right direction.
  • the X-axis rear roller slider is slidingly set on the X-axis rear rail.
  • the rear drive shaft of the X-axis is arranged on the left part of the rear X-axis profile in a forward and backward direction, and its front end is connected to the rear end of the X-axis driven shaft through a corresponding coupling.
  • the first synchronous belt wheel transmission on the rear side of the X-axis is arranged on the rear transmission shaft of the X-axis, and is located in the left end of the rear X-axis profile.
  • the second synchronous pulley on the rear side of the X-axis is rotatably provided in the right part of the rear X-axis profile.
  • the X-axis rear timing belt is disposed around the first X-axis rear synchronous pulley and the X-axis rear synchronous pulley.
  • the X-axis rear roller slider is fixedly connected to the X-axis rear synchronous belt through corresponding synchronous belt clamping blocks.
  • the Y-axis module includes the Y-axis first profile, the Y-axis first drive motor, the reducer, the Y-axis first guide rail, the Y-axis first roller slider, and the Y-axis first
  • the first drive motor of the Y-axis is fixedly arranged on the reducer in the left-right direction, and the motor axis extends to the left and is drivingly connected to the input end of the reducer.
  • the first profile of the Y-axis is arranged above the worktable in the front-back direction.
  • the front end of the Y-axis first profile is fixedly connected to the X-axis front roller slider of the X-axis front side transmission assembly through a corresponding connecting seat.
  • the rear end of the Y-axis first profile is fixedly connected to the X-axis rear roller slider of the X-axis rear transmission assembly through a corresponding connecting seat. Therefore, the Y-axis module is driven by the X-axis module to move left and right above the worktable.
  • the Y-axis first guide rail is horizontally arranged in the Y-axis first profile along the front-rear direction.
  • the Y-axis first roller slider and the Y-axis second roller slider are slidingly arranged on the Y-axis first guide rail from front to back.
  • the Y-axis first transmission shaft is rotatably arranged in the rear end of the Y-axis first profile through a corresponding deep groove ball bearing, and its left end extends out of the Y-axis first profile.
  • the reducer is fixedly installed on the left rear of the Y-axis first profile through the corresponding mounting seat.
  • the left end of the Y-axis first transmission shaft is connected to the output shaft of the reducer through a corresponding coupling.
  • the coupling is located In the above-mentioned installation seat of the reduction gear.
  • the Y-axis first synchronous belt wheel transmission is arranged on the Y-axis first transmission shaft.
  • the Y-axis second synchronous pulley is set in the front end of the Y-axis first profile.
  • the Y-axis first timing belt is arranged around the Y-axis first timing pulley and the Y-axis second timing pulley.
  • the lower part of the Y-axis first mounting seat plate is fixedly connected with the Y-axis first roller slider.
  • the present invention has the following beneficial effects: (1)
  • the sticking machine of the present invention has a simple structure, and has two working panels, that is, two working stations, one piece of fabric is attached to the strip while the next piece of fabric is placed and worked Efficiency is greatly improved.
  • the sticking machine of the invention is provided with a positioning device, which can clamp and fix the corresponding template on the working panel, and the positioning is accurate, which greatly improves the accuracy of sticking.
  • the feeding tray assembly of the feeding device of the sticking machine of the present invention is provided with a first adjustable damping coupling, and the bottom plate of the feeding tray is passively rotated, relying on the frictional force of the hot melt adhesive film strip to make it rotate and pass Adjusting the first adjustable damping coupling can effectively prevent the hot-melt adhesive film strip from continuing to rotate due to inertia after the conveyance of the hot-melt adhesive film strip is stopped, thereby maintaining the hot-melt adhesive film strip from the bottom plate of the discharge tray to the active feeding assembly Good tension.
  • the active feeding component of the feeding device of the sticking machine of the present invention is provided with a feeding adjusting screw, which can adjust the gap between the feeding upper pressing wheel and the feeding lower roller, and is suitable for hot-melt adhesive film strips of different thicknesses.
  • the feeding upper pressing wheel can be lifted by lifting the pressing wheel rod, which is convenient for installing the hot melt adhesive film strip.
  • the compression spring makes the feeding upper pressing wheel clamp the corresponding hot-melt adhesive film strip from the top to the lower feeding roller to ensure that the hot-melt adhesive film strip has a stable tension during feeding, and the sticking strip is flat and not wrinkled.
  • the active feeding component is provided with a first guiding seat for discharging, which can ensure that the position of the hot melt adhesive film strip when entering the clamping component is accurate.
  • the feeding device of the sticking machine of the present invention is provided with a feeding detection component, which can judge whether it is in a feeding state.
  • the feeding detection component is equipped with a detection guide wheel, which can assist the hot-melt adhesive film strip to maintain a good tension and smooth state.
  • the feeding device of the sticking machine of the present invention is provided with a detection connecting rod stopper ring and a detection adjusting stopper ring.
  • the distance between the detection adjusting stopper ring and the detection connecting rod stopper ring can be adjusted to make it correspond to Corresponding to the width of the hot melt adhesive film strip.
  • the clamping assembly of the feeding device of the sticking machine of the invention is provided with a clamping guide wheel and a guide seat, which effectively guarantees the accurate position of the hot melt adhesive film when sticking the strip.
  • the clamping assembly of the feeding device of the sticking machine of the invention is provided with a lower clamping plate and an upper clamping plate, which can clamp the hot-melt adhesive film strip and ensure that the separating paper layer will not be peeled off when moving backward.
  • the corresponding position of the adhesive film layer of the hot-melt adhesive film strip between the lower clamping plate and the upper clamping plate to the indenter is kept in a good tension state, which is helpful for the shearing device to cut it.
  • the collecting motor of the scrap collecting component of the feeding device of the strip sticking machine of the present invention is always in the rotating state during the strip sticking process, and is driven by a transmission round belt, by adjusting the second adjustable damping
  • the coupling changes the resistance when the bottom plate of the receiving tray rotates.
  • the transmission round belt drives the bottom plate of the receiving tray to rotate normally and receive; when the feeding device moves the feed backward and moves to the right
  • the transmission round belt is in a slipping state, which can keep the separation paper layer in a tensioned state Without being pulled off.
  • the clamping assembly of the feeding device of the sticking machine of the invention is provided with a blowing air pipe, which can blow up the rear end of the film layer of the hot-melt adhesive film strip, which can effectively ensure that the rear end of the film layer is located under pressure. Below the front of the foot, make sure that the presser foot can press down the film layer.
  • the labeling machine of the present invention changes the traditional disc feeding method and adopts the barrel feeding, which improves the time for a single continuous operation, reduces the time for changing the tray, and is conducive to improving production efficiency.
  • the right receiving tray of the sticking machine of the present invention is detachably fixed on the right part of the supporting shaft of the receiving tray, which is convenient for quick disassembly, and the waste separation paper layer stored on the bottom plate of the receiving tray is taken out to improve Productivity.
  • the cutter shaft of the shearing device of the sticking machine of the present invention is rotatably set in the cutter mounting seat, and the clamping spring is sleeved on the cutter shaft in a compressed state.
  • the corresponding part of the seat, the other end bears against the C-shaped collar set on the cutter shaft, and the clamping spring pushes the cutter axially forward, which can keep the movable cutter and the fixed cutter in good contact and make the shear Smoother, to ensure the cutting effect.
  • FIG. 1 is a schematic structural view of the labeling machine of the present invention
  • FIG. 2 is a schematic left view of FIG. 1;
  • FIG. 3 is a schematic view of the right side of FIG. 1;
  • FIG. 4 is a schematic top view of FIG. 1;
  • FIG. 5 is a schematic rear view of FIG. 1;
  • FIG. 6 is a schematic diagram when viewed from the upper right front of FIG. 1;
  • FIG. 7 is a schematic diagram when viewed from the upper left front of FIG. 1;
  • FIG. 8 is a schematic diagram when viewed from the upper left back of FIG. 1;
  • FIG. 9 is a schematic structural view of the workbench and the X-axis module when viewed from the upper left front of FIG. 1;
  • FIG. 10 is a schematic view of the structure of the workbench and the X-axis module when viewed from the upper left back of FIG. 1;
  • FIG. 11 is an enlarged schematic view of the Y-axis module after removing the Y-axis first profile and the Y-axis first mounting seat plate when viewed from the upper right front of FIG. 1;
  • FIG. 12 is an enlarged schematic view of the corresponding parts of the pressing device and the Y-axis module when viewed from the upper right front of FIG. 1;
  • FIG. 13 is an enlarged schematic view of the corresponding parts of the shearing device and the Y-axis module when viewed from the upper right front of FIG. 1;
  • FIG. 14 is an enlarged schematic diagram of the feeding device in FIG. 3;
  • FIG. 15 is a schematic diagram of the right side of FIG. 14;
  • FIG. 16 is a schematic diagram when viewed from the upper right front of FIG. 14;
  • FIG. 17 is a schematic diagram when viewed from the upper left back of FIG. 14;
  • FIG. 18 is an enlarged schematic view of the active feeding assembly when viewed from the upper right front of FIG. 14;
  • FIG. 19 is an enlarged schematic view of the active feeding assembly when viewed from the upper left front of FIG. 14;
  • FIG. 20 is an enlarged schematic view of the feed detection assembly when viewed from the upper left front of FIG. 14;
  • FIG. 21 is an enlarged schematic view of the clamping group when viewed from the upper right front of FIG. 14;
  • FIG. 22 is an enlarged schematic view of the waste material collecting assembly when viewed from the upper left back of FIG. 14.
  • Workbench 1 main frame 11, workbench assembly 12, workbench 12-1, work panel 12-2,
  • X-axis module 21 driving motor 21-1, X-axis driving wheel 21-2, X-axis driven shaft 21-3, X-axis driven wheel 21-4, X-axis first timing belt 21-5,
  • X-axis front drive assembly 21-6 front X-axis profile 21-6-1, X-axis front guide 21-6-2, X-axis front roller slider 21-6-3, X-axis front drive shaft 21- 6-4, the first synchronous pulley 21-6-5 on the front side of the X axis, the second synchronous pulley 21-6-6 on the front side of the X axis, and the 21-6-7 front synchronous belt on the X axis,
  • X-axis rear drive assembly 21-7 rear X-axis profile 21-7-1, X-axis rear guide rail 21-7-2, X-axis rear roller slider 21-7-3, X-axis rear drive shaft 21- 7-4, the first synchronous pulley 21-7-5 on the back of the X axis, the second synchronous pulley 21-7-6 on the back of the X axis, and the 21-7-7 rear synchronous belt on the X axis,
  • Y-axis module 22 Y-axis first profile 22-1, Y-axis first drive motor 22-2, reducer 22-3, Y-axis first guide rail 22-4, Y-axis first roller slider 22-5 , Y-axis second roller slider 22-6, Y-axis first transmission shaft 22-7, Y-axis first synchronous belt pulley 22-8, Y-axis second synchronous belt pulley 22-9, Y-axis first synchronous belt 22-10, Y-axis first mounting base plate 22-11,
  • Feeding device 3 discharge tray assembly 31, discharge tray support shaft 31-1, discharge tray bottom plate 31-2, partition tray portion 31-21, left stop tray 31-3, right stop tray 31-4 ,
  • Active feed assembly 32 feed drive motor 32-1, active feed first synchronous belt pulley 32-2, active feed synchronous belt 32-3, active feed second synchronous belt pulley 32-4, active feed mount 32-5, Feeding roller shaft 32-6, feeding roller connecting rod 32-7, connecting hole 32-7-1, feeding upper roller 32-8, feeding lower roller 32-9, feeding spring frame 32-10, feeding adjusting screw 32 -11, lift the wheel lever 32-12, discharge the first guide seat 32-13,
  • Feed detection assembly 33 feed detection rotation shaft 33-1, detection rotation shaft mounting seat 33-2, detection guide wheel 33-3, detection shaft stop 33-4, left detection shaft stop 33-4a, right detection shaft stop 33 -4b, detection spring hook seat 33-5, detection limit fixed stop post 33-6, detection limit stop lever 33-7, detection stop plate 33-8, detection link 33-9, detection link shaft 33- 10.
  • Clamping assembly 34 clamp driving cylinder 34-1 up and down, clamp driving cylinder 34-2, clamp linear guide 34-3, guide 34-3a, slide 34-3b, clamp mounting seat 34-4, Lower clamping plate 34-5, lower rear clamping portion 34-5a, upper clamping plate 34-6, upper rear clamping portion 34-6a, material guide 34-7, material guide roller 34-8,
  • Guide wheel assembly 35 first guide wheel 35-1, second guide wheel 35-2,
  • Scrap receiving assembly 36 receiving tray support shaft 36-1, receiving tray base plate 36-2, partition tray section 36-21, receiving left tray 36-3, receiving right tray 36-4 , Second adjustable damping coupling 36-5, receiving tray mounting base 36-6, receiving drive assembly 36-7, receiving motor 36-71, main pulley 36-72, driven pulley 36-73, Transmission round belt 36-74,
  • Pressing device 4 pressing Y-axis module 41, pressing drive motor 41-1, pressing motor mounting base 41-2, first tensioning base 41-3, pressing first synchronous belt pulley 41-4, Press the second timing belt pulley 41-5, press the timing belt 41-6, linear guide 41-7, guide rail 41-7a, front slider 41-71, middle slider 41-72, rear slider 41-73 ,
  • Shearing device 5 movable cutter 51, fixed cutter 52, cutter first drive assembly 53, cutter first drive cylinder 53-1, cutter shaft 53-2, cutter shaft connecting arm 53-3, top Tightening spring 53-4, cutter second drive assembly 54, cutter first mounting plate 55, cutter mounting seat 56, auxiliary ejector assembly 57, ejector 57-1, indenter 57-2, ejector seat 57 -3, jack driving cylinder 57-4, jack linear guide 57-5, positioning device 6, positioning up and down driving cylinder 6-1, piston rod 6-1a, positioning pressure plate 6-2, discharge assembly 7, barrel Frame 71, barrel 72, protective frame 8,
  • Y-axis detection assembly 92 Y-axis detection assembly 92, Y-axis front U-shaped photoelectric switch 92-1, Y-axis first detection stop 92-2,
  • Clamping device detection assembly 93 first pressing U-shaped photoelectric switch 93-1, first pressing detection baffle 93-2, second pressing U-shaped photoelectric switch 93-3, second pressing detection baffle 93 -4, hot melt adhesive film strip detection optical eye 94.
  • the orientation of the present invention is described according to the orientation shown in FIG. 1, that is, the up, down, left, and right directions shown in FIG. 1 are the described up, down, left, and right directions.
  • the side facing in FIG. 1 is the front, and the side facing away from FIG.
  • the left-right direction in FIG. 1 is the X-axis direction
  • the front-rear direction in FIG. 1 is the Y-axis direction.
  • the labeling machine of the present invention includes a workbench 1, an X-axis module 21, a Y-axis module 22, a feeding device 3, a pressing device 4, a shearing device 5, a positioning device 6, and a discharge Component 7, protective frame 8 and positioning component 9.
  • the workbench 1 includes a main frame body 11 and a platen assembly 12 provided on the main frame body 11.
  • the table assembly 12 includes a work table 12-1 and a work panel 12-2. There are two working panels 12-2, and two working panels 12-2 are arranged side by side on the working table 12-1. Both work panels 12-2 are made of stainless steel.
  • the positioning device 6 has two groups.
  • the two groups of positioning devices 6 have the same structure and include two positioning up and down driving cylinders 6-1 and a positioning pressure plate 6-2.
  • the two groups of positioning devices 6 are from left to right It is arranged on the upper rear part of the workbench in sequence.
  • the two positioning vertical driving cylinders 6-1 of the positioning device 6 are fixedly arranged on the worktable 1 by their respective cylinders, and are located on the lower side of the worktable plate 12-1.
  • the two positioning up and down drive cylinders 6-1 of the positioning device 6 are arranged in order from left to right.
  • the piston rods 6-1a of the two positioning up and down drive cylinders 6-1 extend upwards, pass through the table plate 12-1, and the positioning pressure plate 6-2 is fixedly arranged in the left and right directions to the piston rods 6-1a of the two positioning up and down drive cylinders Up, the positioning pressure plate 6-2 is driven up and down by the positioning up and down drive cylinder 6-1.
  • the X-axis module 21 includes a first driving motor 21-1, an X-axis driving wheel 21-2, an X-axis driven shaft 21-3, an X-axis driven wheel 21-4, and an X-axis first Timing belt 21-5, X-axis front drive assembly 21-6 and X-axis rear drive assembly 21-7.
  • the first driving motor 21-1 is fixedly arranged on the upper left portion of the main frame body 11, and its motor shaft is horizontally arranged in the front-rear direction and extends backward.
  • the X-axis driving wheel 21-2 transmission is provided on the motor shaft of the driving motor 21-1.
  • the X-axis driven shaft 21-3 is rotatably provided on the upper left portion of the main frame body 11 through corresponding two self-aligning ball bearings.
  • the axis of the X-axis driven shaft 21-3 and the motor of the first drive motor 21-1 The axes of the shafts are arranged parallel to each other.
  • the X-axis driven wheel 21-4 is set on the X-axis driven shaft 21-3.
  • the X-axis first timing belt 21-5 is provided around the X-axis driving wheel 21-2 and the X-axis driven wheel 21-4.
  • the X-axis front drive assembly 21-6 includes a front X-axis profile 21-6-1, an X-axis front rail 21-6-2, an X-axis front roller slider 21-6-3, and an X-axis front drive shaft 21- 6-4.
  • the front X-axis profile 21-6-1 is horizontally arranged on the upper front portion of the main frame body 11 in the left-right direction, and is located on the lower front portion of the table top 12-1.
  • the X-axis front rail 21-6-2 is fixedly arranged in the front X-axis profile 21-6-1 in the left-right direction.
  • the X-axis front roller slider 21-6-3 is slidably arranged on the X-axis front rail 21-6-2.
  • the front drive shaft 21-6-4 of the X-axis is set on the left of the front X-axis profile 21-6-1 in the front-rear direction, and its rear end is connected to the X-axis driven shaft 21-3 through the corresponding coupling Front drive connection.
  • the transmission of the first synchronous belt pulley 21-6-5 on the front side of the X axis is provided on the front transmission shaft 21-6-4 of the X axis, which is located in the left end of the front X axis profile 21-6-1.
  • the X-axis front side second timing pulley 21-6-6 is rotatably provided in the right portion of the front X-axis profile 21-6-1.
  • the X-axis front timing belt 21-6-7 is disposed around the X-axis front side first timing pulley 21-6-5 and the X-axis front side second timing pulley 21-6-6.
  • the X-axis front roller slider 21-6-3 is fixedly connected to the X-axis front synchronous belt 21-6-7 through corresponding synchronous belt clamping blocks.
  • the X-axis rear drive assembly 21-7 includes a rear X-axis profile 21-7-1, an X-axis rear guide rail 21-7-2, an X-axis rear roller slider 21-7-3, and an X-axis rear drive shaft 21- 7-4.
  • the rear X-axis profile 21-7-1 is horizontally arranged on the upper rear portion of the main frame body 11 in the left-right direction, and is located on the lower rear portion of the table top 12-1.
  • the X-axis rear guide rail 21-7-2 is fixedly arranged in the rear X-axis profile 21-7-1 in the left-right direction.
  • the X-axis rear roller slider 21-7-3 is slidably arranged on the X-axis rear rail 21-7-2.
  • the rear drive shaft 21-7-4 of the X-axis is arranged on the left of the rear X-axis profile 21-7-1 in the front-rear direction, and its front end passes through the corresponding coupling and the rear of the X-axis driven shaft 21-3 End drive connection.
  • the transmission of the first synchronous belt pulley 21-7-5 on the rear side of the X-axis is arranged on the transmission shaft 21-7-4 on the rear side of the X-axis, which is located in the left end of the rear X-axis profile 21-7-1.
  • the second synchronous pulley 21-7-6 on the rear side of the X-axis is rotatably provided in the right portion of the rear X-axis profile 21-7-1.
  • the X-axis rear timing belt 21-7-7 is disposed around the X-axis rear side timing belt pulley 21-7-5 and the X-axis rear side timing belt pulley 21-7-6.
  • the X-axis rear roller slider 21-7-3 is fixedly connected to the X-axis rear synchronous belt 21-7-7 through the corresponding timing belt clamp block.
  • the Y-axis module 22 includes a Y-axis first profile 22-1, a Y-axis first drive motor 22-2, a reducer 22-3, a Y-axis first guide rail 22-4, and a Y-axis first One roller slider 22-5, Y axis second roller slider 22-6, Y axis first transmission shaft 22-7, Y axis first synchronous belt pulley 22-8, Y axis second synchronous belt pulley 22-9 , Y-axis first timing belt 22-10 and Y-axis first mounting seat plate 22-11.
  • the Y-axis first drive motor 22-2 is fixedly arranged on the reducer 22-3 in the left-right direction, and its motor extends axially to the left and is drivingly connected to the input end of the reducer 22-3.
  • the Y-axis first profile 22-1 is provided above the table 1 across the front-rear direction.
  • the front end of the Y-axis first profile 22-1 is fixedly connected to the X-axis front roller slider 21-6-3 of the X-axis front side transmission assembly 21-6 through a corresponding connecting seat.
  • the rear end of the Y-axis first profile 22-1 is fixedly connected to the X-axis rear roller slider 21-7-3 of the X-axis rear transmission assembly 21-7 through a corresponding connecting seat.
  • the Y-axis module 22 is driven by the X-axis module 21 to move left and right above the table 1.
  • the Y-axis first guide rail 22-4 is horizontally arranged in the Y-axis first profile 22-1 in the front-rear direction.
  • the Y-axis first roller slider 22-5 and the Y-axis second roller slider 22-6 are sequentially slidably arranged on the Y-axis first guide rail 22-4 from front to back.
  • the Y-axis first transmission shaft 22-7 is rotatably disposed in the rear end of the Y-axis first profile 22-1 through a corresponding deep groove ball bearing, and its left end extends out of the Y-axis first profile 22-1.
  • the reducer 22-3 is fixedly installed on the left rear of the Y-axis first profile 22-1 through the corresponding mounting seat, and the left end of the Y-axis first transmission shaft 22-7 is connected to the reducer 22- through a corresponding coupling
  • the output shaft of 3 is connected by a drive.
  • the coupling is located in the above-mentioned mounting seat of the reduction gear 22-3.
  • the Y-axis first timing pulley 22-8 is disposed on the Y-axis first transmission shaft 22-7.
  • the Y-axis second timing pulley 22-9 is rotatably provided in the front end of the Y-axis first profile 22-1.
  • the Y-axis first timing belt 22-10 is disposed around the Y-axis first timing belt pulley 22-8 and the Y-axis second timing belt pulley 22-9.
  • the lower part of the Y-axis first mounting seat plate 22-11 is fixedly connected to the Y-axis first roller slider 22-5.
  • the feeding device 3 includes a discharge tray assembly 31, an active feeding assembly 32, a feeding detection assembly 33, a clamping assembly 34, a guide wheel assembly 35, and a waste receiving assembly 36.
  • the discharge tray assembly 31 includes a discharge tray support shaft 31-1, a discharge tray bottom plate 31-2, a left stop tray 31-3, a right stop tray 31-4, and a first adjustable damping coupling 31-5 3, the discharge tray mounting seat 31-6 and the first limit device 31-7.
  • the discharge tray mounting seat 31-6 is fixedly arranged on the upper middle portion of the Y-axis first mounting seat plate 22-11.
  • the discharge tray support shaft 31-1 is provided on the upper part of the discharge tray mounting seat 31-6 through corresponding bearings and bearing seats rotating in the left-right direction.
  • the middle portion of the bottom plate 31-2 of the discharge tray is provided with a partition plate portion 31-21.
  • the left blocking plate 31-3 and the right blocking plate 31-4 are fixedly arranged on the discharge plate bottom plate 31-2, and are respectively located on the left and right sides of the partition plate portion 31-21 of the discharge plate bottom plate 31-2 .
  • the locking wheel of the first adjustable damping coupling 31-5 is fixedly arranged on the discharge tray support shaft 31-1 and is in drive connection with the discharge tray support shaft 31-1.
  • the first limiting device 31-7 includes a limiting hoop 31-71 and a hoop limiting post 31-72.
  • the limit hoop 31-71 is clamped and fixed on the damping adjusting wheel of the first adjustable damping coupling 31-5.
  • the lower part of the limiting hoop 31-71 is provided with a limiting groove that extends downward through the openings on the left and right.
  • the hoop limit posts 31-72 are fixed on the upper left side of the discharge tray mounting seat 31-6 in the left-right direction, and the corresponding parts are located in the limit grooves of the limit hoop 31-71. -71 Carry out circumferential limit to prevent it from turning.
  • the active feed assembly 32 includes a feed drive motor 32-1, an active feed first synchronous belt pulley 32-2, an active feed synchronous belt 32-3, an active feed second synchronous belt pulley 32-4, an active feed mount 32-5, Feeding roller shaft 32-6, feeding roller connecting rod 32-7, feeding upper roller 32-8, feeding lower roller 32-9, feeding spring frame 32-10, feeding adjusting screw 32-11, lifting roller 32 -12. Discharge first guide seat 32-13 and compression spring.
  • the feeding drive motor 32-1 is fixedly disposed on the upper middle portion of the Y-axis first mounting seat plate 22-11 by its motor housing, and is located behind the discharge tray mounting seat 31-6.
  • the motor shaft of the feeding drive motor 32-1 is horizontally arranged in the left-right direction and extends to the right.
  • the active feed first synchronous belt pulley 32-2 is drivingly connected to the motor shaft of the feed drive motor 32-1.
  • the active feed mounting seat 32-5 is fixedly arranged on the right middle of the Y-axis first mounting seat plate 22-11.
  • the rear end of the feed pressure roller link 32-7 is rotationally arranged on the rear part of the active feed mounting base 32-5, and the rotational shaft is horizontally arranged in the left-right direction.
  • the feed roller shaft 32-6 is provided on the front end of the feed roller link 32-7 by corresponding bearings rotating in the left-right direction.
  • the front end of the feed pressure roller connecting rod 32-7 is provided with a connecting hole 32-7-1.
  • the active feeding second timing belt pulley 32-4 is drivingly connected to the left end of the feeding pressure roller shaft 32-6.
  • the active feed timing belt 32-3 is disposed around the active feed first timing pulley 32-2 and the active feed second timing pulley 32-4.
  • the feeding upper pressing wheel 32-8 is drivingly connected to the right end of the feeding pressing wheel shaft 32-6.
  • the feeding spring frame 32-10 is screwed and fixed on the lower front part of the active feeding mounting seat 32-5.
  • the lower feeding roller 32-9 is set on the active feeding mounting base 32-5 and is located below the upper feeding roller 32-8.
  • One end of the compression spring is connected to the feed spring frame 32-10, and the other end is connected to the connection hole 32-7-1 of the feed pressure roller link 32-7, which is in an extended state.
  • the compression spring makes the feeding upper pressing wheel 32-8 clamp the corresponding hot melt adhesive film strip on the feeding lower roller 32-9 from top to bottom.
  • the feeding adjustment screw 32-11 is screwed on the active feed mounting base 32-5 from below, and after passing upward through the active feed mounting base 32-5, it presses upward the corresponding position of the lower part of the front end of the feed roller connecting rod 32-7, It is used to adjust the gap between the upper feeding roller 32-8 and the lower feeding roller 32-9.
  • the lifting roller 32-12 is fixedly arranged on the rear end of the feeding roller link 32-7 in a direction perpendicular to the rotation axis of the feeding roller link 32-7, and is used to lift the feeding upper roller 32-8 Install the hot melt adhesive film strip after starting.
  • the discharging first guide seat 32-13 is fixedly arranged on the rear right part of the active feed mounting seat 32-5 in the vertical direction, and is located behind the feed lower roller 32-9.
  • the feed detection assembly 33 includes a feed detection rotation shaft 33-1, a detection rotation shaft mounting seat 33-2, a detection guide wheel 33-3, a detection shaft stop 33-4, a detection spring hook seat 33-5, and a detection limit fixed stop post 33 -6, detection limit lever 33-7, detection baffle 33-8, detection connecting rod 33-9, detection connecting rod shaft 33-10, detection connecting rod retaining ring 33-11, detection adjusting retaining ring 33 -12.
  • the detection rotating shaft mounting seat 33-2 is fixedly provided on the lower right portion of the Y-axis first mounting seat plate 22-11 through a corresponding connecting plate.
  • the feeding detection rotating shaft 33-1 is provided on the detecting rotating shaft mounting seat 33-2 to rotate in the left-right direction, and both left and right ends thereof extend out of the detecting rotating shaft mounting seat 33-2.
  • the left detection shaft stop 33-4a is fixedly arranged on the left end of the feed detection rotating shaft 33-1, and is in drive connection with the feed detection rotating shaft 33-1.
  • the detection guide wheel 33-3 is provided on the right part of the feed detection rotating shaft 33-1 through corresponding bearing rotation, and the right detection shaft stopper 33-4b is fixedly provided on the right end of the feed detection rotating shaft 33-1, and -1 Drive connection, and limit the detection guide wheel 33-3 in the axial direction.
  • the left detection shaft stop 33-4a and the right detection shaft stop 33-4b limit the feed detection rotation shaft 33-1 on the detection rotation shaft mounting seat 33-2 in the axial direction.
  • the detection spring hook seat 33-5 is fixedly arranged on the front side of the left detection shaft stop 33-4a in the radial direction of the feed detection rotation shaft 33-1.
  • the first spring hook post 33-13 is fixedly arranged on the right lower part of the Y-axis first mounting seat plate 22-11 in the left-right direction, and is located in front of the detection spring hook seat 33-5.
  • One end of the detection return spring is connected to the detection spring hook seat 33-5, and the other end is connected to the first spring hook post 33-13, which is in an extended state for rotating and returning the feed detection rotating shaft 33-1 forward and downward.
  • the detection limit lever 33-7 is fixedly arranged on the rear side of the left detection shaft stop 33-4a in the radial direction of the feed detection rotation shaft 33-1.
  • the detection limit fixed stop post 33-6 is fixed on the lower right side of the Y-axis first mounting base plate 22-11 in the left-right direction, located behind and below the feed detection rotating shaft 33-1, and detects the detection limit stop lever from above 33-7 limit.
  • the detection baffle 33-8 is disposed on the left end of the feed detection rotating shaft 33-1 along the radial transmission of the feed detection rotating shaft 33-1.
  • the detection link 33-9 is provided on the right end of the feed detection rotation shaft 33-1 along the radial transmission of the feed detection rotation shaft 33-1.
  • the detection link shaft 33-10 is provided on the front end of the detection link 33-9 in the left-right direction, and the right end is fixedly connected to the detection link 33-9.
  • the detection link stopper 33-11 is fixedly arranged on the left end of the detection link shaft 33-10.
  • the detection and adjustment stopper ring 33-12 can be adjusted and fixed on the detection link shaft 33-10, and the distance between it and the detection link stopper ring 33-11 can be adjusted to make it correspond to the corresponding hot melt adhesive film strip Corresponding to the width.
  • the clamping assembly 34 includes a clamping cylinder driving cylinder 34-1, a clamping clamp driving cylinder 34-2, a clamping linear guide 34-3, a clamping mounting seat 34-4, a lower clamping plate 34-5, an upper clamping plate 34-6 , Material guide seat 34-7, material clamping guide wheel 34-8 and blowing air pipe.
  • the material-clamping vertical driving cylinder 34-1 is rotatably connected to the right middle part of the Y-axis first mounting seat plate 22-11 by its cylinder body, and is located behind the active feeding assembly 32.
  • the clamping cylinder drives the cylinder 34-1 up and down, and the piston rod extends downward.
  • the clamping linear guide 34-3 is fixedly arranged on the right middle part of the Y-axis first mounting seat plate 22-11 by the guide rail 34-3a in the vertical direction, and is located below the clamping vertical driving cylinder 34-1.
  • the clamp mounting seat 34-4 is fixedly disposed on the slider 34-3b of the clamp linear guide 34-3.
  • the piston rod of the clamping cylinder 34-1 driving the cylinder 34-1 is hingedly connected to the clamping mount 34-4.
  • the clamping clamp driving cylinder 34-2 is rotatably connected to the right side of the clamping mount 34-4 by its cylinder body.
  • the lower clamping plate 34-5 is fixedly arranged on the lower right portion of the clamping mount 34-4.
  • the upper clamping plate 34-6 is rotatably connected to the right side of the material mounting seat 34-4 from the middle thereof, and is located above the lower clamping plate 34-5.
  • the front end of the upper clamping plate 34-6 is hingedly connected to the piston rod of the clamping cylinder driving cylinder 34-2.
  • the upper clamping plate 34-6 is driven to rotate by the clamping clamp driving cylinder 34-2, so that the upper and rear clamping portions 34-6a of the upper clamping plate 34-6 and the lower rear clamping portions 34-5a of the lower clamping plate 34-5 are formed Clamping structure.
  • the material guide 34-7 is fixedly arranged on the right lower part of the material mounting seat 34-4 in the front-rear direction, and is located in front of the lower rear end clamping portion 34-5a of the lower clamping plate 34-5.
  • the material clamping guide wheel 34-8 is rotatably provided on the lower right front portion of the material clamping mounting seat 34-4, and is located in front of the material guiding seat 34-7.
  • the blowing air pipe (not shown in the figure) is fixedly arranged on the right side of the material guiding seat 34-7, and the air outlet is located on the lower right part of the lower rear clamping part 34-5a of the lower clamping plate 34-5, blowing material The air outlet of the trachea blows backward.
  • the guide wheel assembly 35 includes a first guide wheel 35-1 and a second guide wheel 35-2.
  • the first guide wheel 35-1 is rotatably disposed on the Y-axis first mounting seat plate 22-11, and its rotation axis is horizontally disposed in the left-right direction.
  • the first guide wheel 35-1 is located between the discharge tray assembly 31 and the active feeding assembly 32.
  • the second guide wheel 35-2 is rotatably arranged on the Y-axis first mounting seat plate 22-11, and its rotation axis is horizontally arranged in the left-right direction.
  • the second guide wheel 35-2 is located between the feed detection assembly 33 and the waste collection assembly 36.
  • the waste collecting assembly 36 includes a receiving tray support shaft 36-1, a receiving tray bottom plate 36-2, a receiving left stop tray 36-3, a receiving right stop tray 36-4, and a second adjustable damping coupling 36-6, receiving tray mounting base 36-6 and receiving drive assembly 36-7.
  • the receiving tray mounting seat 36-6 is fixedly arranged on the front of the Y-axis first mounting seat plate 22-11.
  • the receiving tray support shaft 36-1 is provided on the lower part of the receiving tray mounting seat 36-6 by corresponding bearings and bearing seats rotating in the left-right direction.
  • the right part of the bottom plate 36-2 of the receiving tray is provided with a partition plate portion 36-21.
  • the receiving left stopper plate 36-3 is fixedly arranged on the receiving tray bottom plate 36-2, and is located on the left side of the partition plate portion 36-21 of the receiving tray bottom plate 36-2.
  • the right receiving tray 36-4 is detachably fixed on the right part of the receiving tray support shaft 36-1, and is located on the right side of the partition tray 36-21 of the receiving tray bottom plate 36-2.
  • the disk support shaft 36-1 is drivingly connected.
  • the locking wheel of the second adjustable damping coupling 36-5 is fixedly arranged on the receiving tray support shaft 36-1 and is in drive connection with the receiving tray support shaft 36-1.
  • the material collecting driving assembly 36-7 includes a material collecting motor 36-71, a main pulley 36-72, a driven pulley 36-73 and a transmission round belt 36-74.
  • the collecting motor 36-71 is fixedly arranged on the collecting tray mounting base 36-6 in the left-right direction by its motor housing, and its motor protrudes to the right in the axial direction.
  • the main pulley 36-72 is set on the motor shaft of the receiving motor 36-71.
  • the driven pulley 36-73 is disposed on the damping adjusting wheel of the second adjustable damping coupling 36-5.
  • the driving round belts 36-74 are arranged around the main pulley 36-72 and the driven pulley 36-73.
  • the pressing device 4 includes a pressing Y-axis module 41, a pressing mounting base 42, a presser foot 43, a presser foot driving cylinder 44, a presser foot mounting shaft 45, and a presser foot driving arm 46.
  • the compression Y-axis module 41 includes a compression drive motor 41-1, a compression motor mounting seat 41-2, a first tensioning seat 41-3, a compression first synchronous pulley 41-4, and a compression second synchronization The pulley 41-5 and the compression timing belt 41-6 and the linear guide 41-7.
  • the pressing motor mounting base 41-2 is fixedly arranged on the upper rear part of the Y-axis first profile 22-1 of the Y-axis module 22.
  • the pressing drive motor 41-1 is fixed on the left side of the pressing motor mounting base 41-2 by its motor housing in the left-right direction, and its motor shaft is rotatingly set on the pressing motor mounting base 41-2, the corresponding part is located Press in the motor mounting seat 41-2.
  • the transmission of the pressing first synchronous belt pulley 41-4 is arranged on the motor shaft of the pressing driving motor 41-1, and is located in the mounting base 41-2 of the pressing motor.
  • the first tension seat 41-3 is fixedly disposed on the upper front portion of the Y-axis first profile 22-1.
  • the pressing second synchronous pulley 41-5 is rotationally set in the first tensioning seat 41-3.
  • the pressing timing belt 41-6 is arranged around the pressing first timing pulley 41-4 and the pressing second timing pulley 41-5.
  • the guide rail 41-7a of the linear guide rail 41-7 is fixedly arranged on the upper side of the Y-axis first profile 22-1 in the front-rear direction.
  • the guide rail of the linear guide 41-7 is provided with three sliders from front to back, and the three sliders are divided into a front slider 41-71, a middle slider 41-72 and a rear slider according to their front and rear positions. 41-73.
  • the upper part of the compression mounting base 42 is fixedly arranged on the rear slider 41-73 of the linear guide 41-7.
  • the upper left part of the compression mounting base 42 is drivingly connected to the compression timing belt 41-6 through a corresponding timing belt clamping plate.
  • the lower middle portion of the pressing mount 42 is fixedly connected to the Y-axis second roller slider 22-6 of the Y-axis module 22.
  • the upper part of the Y-axis first mounting seat plate 22-11 of the Y-axis module 22 is fixedly connected to the front slider 41-71 and the middle slider 41-72.
  • the presser foot mounting shaft 45 is rotatably arranged on the lower right part of the press mounting base 42 from the middle thereof, the presser foot 43 is driven and arranged on the right end of the presser foot mounting shaft 45, and the presser foot driving arm 46 is driven and arranged on the presser foot mounting shaft 45 On the left end.
  • the rear end of the presser foot driving arm 46 is provided with a waist-shaped circular connecting hole extending through the left and right in the front-back direction.
  • the presser foot driving cylinder 44 is fixedly arranged on the pressing mounting base 42 from its cylinder body in the up and down direction, and its piston rod extends downward, and the lower end of the piston rod is hingedly connected in the waist circular connecting hole of the presser foot driving arm 46. Therefore, the presser foot driving cylinder 44 drives the presser foot 43 to rotate, so that the front end of the presser foot 43 is lifted upward or downward to press and fix the hot melt adhesive film strip on the working panel 12-2.
  • the cutting device 5 includes a movable cutter 51, a fixed cutter 52, a cutter first drive assembly 53, a cutter second drive assembly 54, a cutter first mounting plate 55, a cutter Knife mount 56 and auxiliary jack assembly 57.
  • the auxiliary jack assembly 57 includes a jack 57-1, an indenter 57-2, a jack seat 57-3, a jack driving cylinder 57-4, and a jack linear guide 57-5.
  • the jack 57-3 is fixedly arranged on the slider of two jack linear guides 57-5, and can move up and down along the guide.
  • the jack 57-1 is vertically fixed on the jack 57-3.
  • the indenter 57-2 is detachably fixed on the lower end of the plunger 57-1.
  • the indenter of this embodiment is made of nylon material, and the indenter 57-2 is screwed and fixed on the lower end of the plunger 57-1.
  • the jack driving cylinder 57-4 is fixedly arranged on the rear of the Y-axis first mounting seat plate 22-11 through the corresponding mounting seat, and its piston rod extends downward, and the lower end of the piston rod is hingedly connected to the jack seat 57- 3, the ejector rod drive cylinder 57-4 drives the ejector rod seat 57-3 to move up and down along the ejector linear guide 57-5, so that the indenter 57-2 rises up or down the corresponding part of the hot melt adhesive film strip Press and fix on the working panel 12-2.
  • the cutter second drive assembly 54 uses a cylinder with a guide rod.
  • the cylinder with a guide rod is fixedly arranged on the rear side of the ejector rod seat 57-3 of the auxiliary ejector assembly 57 by its cylinder body, and its piston rods are arranged in the left and right directions, and Extend to the right; the first mounting plate 55 of the cutter is fixedly connected to the piston rod with the guide cylinder.
  • the cutter mounting seat 56 is fixedly provided on the lower right portion of the cutter first mounting plate 55.
  • the cutter first drive assembly 53 includes a cutter first drive cylinder 53-1, a cutter shaft 53-2, a cutter shaft connecting arm 53-3, and a clamping spring 53-4.
  • the first driving cylinder 53-1 of the cutter is fixedly arranged on the rear right side of the first mounting plate 55 of the cutter by its cylinder body through a corresponding connecting seat plate (not shown in the figure).
  • the cutter shaft 53-2 is rotated and set in the cutter mounting seat 56, the pressing spring 53-4 is sleeved on the cutter shaft 53-2 and is in a compressed state, and one end of the pressing spring 53-4 bears against the cutter mounting seat Corresponding part of 56, the other end bears against the C-shaped clamping ring provided on the cutter shaft 53-2, and the spring 53-4 is pressed against the cutter shaft 53-2 forward.
  • One end of the cutter shaft connecting arm 53-3 is driven and connected to the rear end of the cutter shaft 53-2, and the other end of the cutter shaft connecting arm 53-3 is hingedly connected to the piston rod of the first drive cylinder 53-1 of the cutter on.
  • the movable cutter 51 is fixedly arranged on the front end of the cutter shaft 53-2 along the radial direction of the cutter shaft, and the fixed cutter 52 is fixedly arranged on the front of the cutter mount 56 in the left-right direction. Therefore, the first driving cylinder 53-1 of the cutter drives the cutter shaft 53-2 to rotate through the cutter shaft connecting arm 53-3, so that the movable cutter 51 and the fixed cutter 52 form a cutting mechanism, and the spring is pressed during the cutting process 53-4 Always push the cutter shaft 53-2 forward, so that the movable cutter 51 and the fixed cutter 52 form a good contact, which is beneficial to improve the cutting effect and the cut is smooth.
  • the discharge assembly 7 includes a barrel holder 71 and a barrel 72.
  • the barrel holder 71 is fixedly arranged on the X-axis front roller slider 21-6-3 of the X-axis front side transmission assembly 21-6 of the X-axis module 21.
  • the cartridge 72 is detachably fixed on the cartridge holder 71.
  • the protective frame 8 is fixedly arranged on the upper part of the rear side of the workbench 1 and encloses the corresponding walking area at the rear of the Y-axis module 22 to prevent anyone from entering the area and causing the Y-axis mold Group 22 was injured during exercise.
  • the positioning assembly 9 includes an X-axis detection assembly 91, a Y-axis detection assembly 92, a pressing device detection assembly 93, and a hot-melt adhesive film strip to detect optical eyes 94 and U-shaped photoelectric switch for tightness detection.
  • the X-axis detection assembly 91 includes an X-axis left U-shaped photoelectric switch 91-1a, an X-axis right U-shaped photoelectric switch 91-1b, and an X-axis detection flap 91-2.
  • the X-axis left U-shaped photoelectric switch 91-1a is fixedly arranged on the rear left end of the rear X-axis profile 21-7-1, and the opening is arranged backward and in the left-right direction.
  • the X-axis right U-shaped photoelectric switch 91-1b is fixedly arranged on the rear right end of the rear X-axis profile 21-7-1, and the opening is arranged backward and along the left-right direction, which is the same as the X-axis left U-shaped photoelectric switch 91-1a In the horizontal plane.
  • the X-axis detection stopper 91-2 is fixedly installed on the connecting seat of the X-axis rear roller slider 21-7-3 connecting the rear end of the Y-axis first profile 22-1 and the X-axis rear side transmission assembly 21-7.
  • the Y-axis detection assembly 92 includes a Y-axis front U-shaped photoelectric switch 92-1 and a Y-axis first detection flap 92-2.
  • the Y-axis front U-shaped photoelectric switch 92-1 is fixedly arranged on the right front part of the Y-axis first profile 22-1, and the opening is to the right and is arranged in the front-rear direction.
  • the Y-axis first detection block 92-2 is fixedly arranged on the front of the Y-axis first mounting seat plate 22-11, and is used to block the Y-axis front U-shaped photoelectric switch 92-1 and determine whether the feeding device 3 is at the forefront Return to the zero position in the Y direction.
  • the pressing device detection assembly 93 includes a first pressing U-shaped photoelectric switch 93-1, a first pressing detection baffle 93-2, a second pressing U-shaped photoelectric switch 93-3, and a second pressing detection baffle 93 -4.
  • the pressing U-shaped photoelectric switch 93-1 is fixedly arranged on the upper rear part of the Y-axis first profile 22-1, and the opening is upward and arranged in the front-rear direction.
  • the pressing detection blocking piece 93-2 is fixedly arranged on the rear side of the pressing mounting base 42 and is used to block the pressing U-shaped photoelectric switch 93-1 and determine whether the pressing device 4 is at the zero position of the last pressing device.
  • the second pressing U-shaped photoelectric switch 93-3 is fixedly arranged on the rear portion of the Y-axis first mounting seat plate 22-11, and the opening is arranged backward and up and down.
  • the second pressing detection baffle 93-4 is fixedly arranged on the front of the pressing mounting base 42 and is used to block the second pressing U-shaped photoelectric switch 93-3, and judge whether the pressing device 4 and the feeding device 3 are together Return to zero position in the Y direction at the forefront.
  • the hot melt adhesive film strip detection optical eye 94 is fixedly arranged on the front part of the discharge tray mounting seat 31-6, and is used for detecting whether a hot melt adhesive film strip enters the left stop plate 31-3 of the discharge tray assembly 31 and Between the right stop plate 31-4.
  • the receiving tension detection U-shaped photoelectric switch is fixed on the lower right side of the Y-axis first mounting seat plate 22-11, located on the path when the detection baffle 33-8 rotates, and is used to judge the detection link shaft 33- 10 Whether it is lifted up is in a tight state.
  • the hot-melt adhesive film strip of the present invention has an adhesive film layer and a release paper layer, and the adhesive side of the adhesive film layer is adhered to the release paper layer.
  • the feeding device 3 and the pressing device 4 are at the foremost position in the Y-direction zero return position. Pull the hot melt adhesive film strip in the barrel 72 out of the discharge hole 72-1 on the upper cover of the barrel, and after the corresponding S-shaped guide, the insulation layer of the hot melt adhesive film strip is located on the lower side and then flat Enter the feeding device 3.
  • the hot-melt adhesive film strip is wound from the front through the upper side of the partition plate portion 31-21 of the discharge tray bottom plate 31-2 of the feeding device 3 to the partition plate portion 31-21 of the discharge tray bottom plate 31-2 Rear side; then bypass the front and lower parts of the first guide wheel 35-1 and then pass through the feed upper pressing wheel 32-8 and the feed lower roller 32-9 of the active feed assembly 32 to enter the first guide seat 32 -13; after bypassing the front and lower parts of the detection guide wheel 33-3 of the feed detection assembly 33, and then bypassing the front and lower parts of the clamping guide wheel 34-8 and entering the guide seat 34-7 ; After coming out of the material guide 34-7, pass through the lower splint 34-5 and the upper splint 34-6, and then separate the film layer and the separation paper layer, and after separation, the separation paper layer on the lower side bypasses the lower splint 34 -5 Pull back in the downward direction; make the separation paper layer bypass the lower side of the detection link shaft 33-10 between the detection link stop ring 33-11 and the detection
  • the positioning pressure plate 6-2 of the positioning device 6 clamps and fixes the corresponding parts of the template on the working panel 12-2.
  • the pressing foot 43 is driven by the pressing Y-axis module 41 to move backward to the zero position of the last pressing device; at the same time, the lower clamping plate 34-5 and the upper clamping plate 34-6 of the clamping assembly 34 clamp the hot melt adhesive film strip
  • the Y-axis module 22 drives the feeding device 3 to move backward to the initial sticking position, that is, the pressing device returns to the zero position.
  • the air outlet of the blowing air pipe blows backward to blow the rear end of the film layer of the hot melt adhesive film strip backward to the front of the presser foot 43 of the pressing device 4, and then the front end of the presser foot 43 moves the hot melt adhesive downward
  • the rear end of the adhesive film layer of the film strip is pressed tightly on the template, and at the same time, the adhesive of the adhesive film layer of the hot melt adhesive film strip is fixed on the template.
  • the lower clamping plate 34-5 and the upper clamping plate 34-6 of the clamping assembly 34 loosen the hot-melt adhesive film strip, and then the feeding device 3 is driven forward by the Y-axis module 22.
  • the adhesive of the hot-melt adhesive film strip The corresponding part of the film layer spans the cloth, and the separating paper layer of the hot-melt adhesive film strip is peeled off from the adhesive film layer and is wound and stored on the receiving tray bottom plate 36-2 of the waste collecting component 36.
  • the pressing head 57-2 of the auxiliary ejector assembly 57 of the shearing device 5 presses down the corresponding part of the hot-melt adhesive film strip on the template, so that the entire hot-melt adhesive film strip goes from top to bottom Paste on the fabric.
  • the clamping assembly 34 lower clamping plate 34-5 and upper clamping plate 34-6 re-clamp the hot melt adhesive film strip;
  • the second drive assembly 54 of the cutter of the shearing device 5 drives the movable cutter 51 and the fixed cutter 52 toward Move it to the left, so that the corresponding part of the film layer of the hot-melt adhesive film strip between the lower clamp 34-5 and the upper clamp 34-6 to the indenter 57-2 is located between the movable cutter 51 and the fixed cutter 52
  • the cutter first drive assembly 53 drives the cutter 51 to rotate, and together with the fixed cutter 52, cuts off the adhesive film layer of the hot melt adhesive film strip to complete a sticking operation.
  • the movable cutter 51 and the fixed cutter 52 of the cutting device 5 are reset to the right, and the indenter 57-2 is lifted upward to reset.
  • the X-axis module 21 drives the Y-axis module 22 to move to the right to perform the second sticking operation.

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Abstract

一种贴条机,包括工作台(1)、X轴模组(21)、Y轴模组(22)、送料装置(3)、压紧装置(4)、剪切装置(5)和放料组件(7)。放料组件(7)用于放置热熔胶膜条。X轴模组(21)设置在工作台(1)上,用于驱动Y轴模组(22)在工作台(1)上侧沿X轴方向左右运动。由Y轴模组(22)驱动送料装置(3)在工作台(1)上侧沿Y轴方向上前后运动。送料装置(3)包括主动送料组件(32)、夹料组件(34)和废料收料组件(36)。夹料组件(34)用于将热熔胶膜条夹住固定或松开。主动送料组件(32)进行热熔胶膜条的输送送料,由废料收料组件(36)将热熔胶膜条的隔离纸层收集。压紧装置(4)设置在Y轴模组(22)上,可在Y轴方向上前后运动,用于压紧热熔胶膜条的胶膜层的相应部位,使压紧热熔胶膜条的胶膜层贴在相应的布料上。剪切装置(5)用于将热熔胶膜条切断。

Description

贴条机 技术领域
本发明涉及一种服装加工设备领域,具体涉及一种将热熔胶膜贴在服装面料上的贴条机。
背景技术
服装是用面料缝制的穿于人体起保护和装饰作用的产品,又称衣服。最开始出现的服装主要以遮羞为目的,经过时间的发展转向了实用性,同时也更加注重服装的美观性。影响美观性的因素有面料的质地、色彩、花纹图案、形态保持性、悬垂性、弹性、防皱性、服装款式等。
绗线是将填充物和里子固定在面子上的线脚。传统羽绒服的绗线会对面料产生破坏(有针孔),细小的羽绒有可能会从绗线的针孔中漏出,从而影响衣服的美观和质量。服装无缝贴胶技术就是用热熔胶膜条粘贴里子和面子来代替传统的绗线,这样做出来的衣服从外观看比较美观、大方,同时细小的羽绒被很好的固定在里子和面子之间。目前这些工艺大多数用手工进行贴胶,效率太低。
发明内容
本发明的目的是提供一种结构简单,贴胶效率高的用于将热熔胶膜条贴在服装面料上的贴条机。
实现本发明目的的基本技术方案是:一种贴条机,其结构特点是:包括工作台、X轴模组、Y轴模组、送料装置、压紧装置、剪切装置和放料组件。放料组件用于放置热熔胶膜条。X轴模组设置在工作台上,用于驱动Y轴模组在工作台上侧沿X轴方向左右运动。由Y轴模组驱动送料装置在工作台上侧沿Y轴方向上前后运动。送料装置包括主动送料组件、夹料组件和废料收料组件。夹料组件用于将热熔胶膜条夹住固定或松开。主动送料组件进行热熔胶膜条的输送送料,由废料收料组件将热熔胶膜条的隔离纸层收集。压紧装置设置在Y轴模组上,可在Y轴方向上前后运动,用于压紧热熔胶膜条的胶膜层的相应部位,使压紧热熔胶膜条的胶膜层贴在相应的布料上。剪切装置用于将紧热熔胶膜条切断。
以上述基本技术方案为基础的技术方案是:还包括定位装置。工作台包括主架体和设置在主架体上的台板组件。台板组件包括工作台板和工作面板。工作面板有两块,两块工作面板沿左右向并排设置工作台板上。两块工作面板均采用不锈钢板。定位装 置有2组,2组定位装置的结构相同,均包括2个定位上下驱动气和定位压板。2组定位装置从左至右依次设置在工作台的上部后部上。定位装置的2个定位上下驱动气缸由其各自的缸体固定设置在工作台上,位于工作台板的下侧。定位装置的2个定位上下驱动气缸从左至右依次设置。2个定位上下驱动气缸的活塞杆向上伸,穿过工作台板,定位压板沿左右向固定设置在2个定位上下驱动气缸的活塞杆上,由定位上下驱动气缸驱动定位压板上下运动。
以上述相应技术方案为基础的技术方案是:所述Y轴模组设有Y轴第一型材和可在Y轴方向上前后运动的Y轴第一安装座板。Y轴第一型材沿前后向横跨设置在工作台的上侧上,由X轴模组驱动其沿X轴方向左右运动。
主动送料组件包括送料驱动电机、主动送料第一同步带轮、主动送料同步带、主动送料第二同步带轮、主动送料安装座、送料压轮轴、送料压轮连杆、送料上压轮、送料下滚轮、送料弹簧架、送料调节螺钉、抬压轮杆、出料第一导向座和压紧弹簧。
送料驱动电机由其电机壳固定设置在Y轴第一安装座板的中部上部上。送料驱动电机的电机轴沿左右向水平设置并向右伸出。主动送料第一同步带轮传动连接设置在送料驱动电机的电机轴上。主动送料安装座固定设置在Y轴第一安装座板的右侧中部上。送料压轮连杆的后端转动设置在主动送料安装座的后部上,转动轴沿左右向水平设置。送料压轮轴通过相应的轴承沿左右向转动设置在送料压轮连杆的前端上。送料压轮连杆的前端设有连接孔。主动送料第二同步带轮传动连接在送料压轮轴的左端上。主动送料同步带围绕主动送料第一同步带轮和主动送料第二同步带轮设置。送料上压轮传动连接在送料压轮轴的右端上。送料弹簧架旋合固定在主动送料安装座的下侧前部上。送料下滚轮转动设在主动送料安装座上,位于送料上压轮的下方。压紧弹簧一端连接在送料弹簧架上,另一端连接在送料压轮连杆的连接孔中,处于伸长状态。压紧弹簧使送料上压轮从上向下将相应的热熔胶膜条夹紧在送料下滚轮上。送料调节螺钉从下向上旋合在主动送料安装座上,向上穿过主动送料安装座后,向上顶住送料压轮连杆的前端下部相应位置,用于调整送料上压轮与送料下滚轮之间的间隙大小。抬压轮杆沿与送料压轮连杆的转动轴垂直的方向固定设置在送料压轮连杆的后端上,用于将送料上压轮抬起后安装热熔胶膜条。出料第一导向座沿上下向固定设置在主动送料安装座的后部右部上,位于送料下滚轮的后方。
以上述相应技术方案为基础的技术方案是:所述Y轴模组设有Y轴第一型材和可在Y轴方向上前后运动的Y轴第一安装座板。Y轴第一型材沿前后向横跨设置在工作台的上侧上,由X轴模组驱动其沿X轴方向左右运动。
夹料组件包括夹料上下驱动气缸、夹料夹驱动气缸、夹料直线导轨、夹料安装座、下夹板、上夹板、导料座、夹料导料轮和吹料气管。
夹料上下驱动气缸由其缸体转动连接在Y轴第一安装座板的右侧中部上,位于主动送料组件的后方。夹料上下驱动气缸沿上下向设置,活塞杆向下伸出。夹料直线导轨由其导轨沿上下向固定设置在Y轴第一安装座板的右侧中部上,位于夹料上下驱动气缸的下方。夹料安装座固定设置在夹料直线导轨的滑块上。夹料上下驱动气缸的活塞杆与夹料安装座铰接连接。夹料夹驱动气缸由其缸体转动连接在夹料安装座的右侧上。下夹板固定设置在夹料安装座的右侧下部上。上夹板由其中部转动连接在料安装座的右侧上,位于下夹板的上方。上夹板的前端铰接连接在夹料夹驱动气缸的活塞杆上。由夹料夹驱动气缸驱动上夹板转动,使上夹板的上后端夹持部与下夹板的下后端夹持部形成可夹持结构。导料座沿前后向固定设置在夹料安装座的右侧下部上,位于下夹板的下后端夹持部的前方。夹料导料轮转动设置在夹料安装座的右侧下部前部上,位于导料座的前方。吹料气管固定设置在导料座的右侧上,出气口位于下夹板的下后端夹持部的下侧右部,吹料气管的出气口向后吹气。
以上述相应技术方案为基础的技术方案是:所述Y轴模组设有Y轴第一型材和可在Y轴方向上前后运动的Y轴第一安装座板。Y轴第一型材沿前后向横跨设置在工作台的上侧上,由X轴模组驱动其沿X轴方向左右运动。
废料收料组件包括收料盘支撑轴、收料盘底板、收料左挡料盘、收料右挡料盘、第二可调阻尼联轴器、收料盘安装座和收料驱动组件。收料盘安装座固定设置在Y轴第一安装座板的前部上。
收料盘支撑轴通过相应的轴承及轴承座沿左右向转动设置在收料盘安装座的下部上。收料盘底板右部设有隔档盘部。收料左挡料盘固定设置在收料盘底板上,位于收料盘底板的隔档盘部的左侧。收料右挡料盘可拆卸固定设置在收料盘支撑轴的右部上,位于收料盘底板的隔档盘部的右侧,与收料盘支撑轴传动连接。第二可调阻尼联轴器的锁紧轮固定设置在收料盘支撑轴上,与收料盘支撑轴传动连接。收料驱动组件包括收料电机、主皮带轮、从动皮带轮和传动圆带。收料电机由其电机壳沿左右向固定设置在收料盘安装座,其电机轴向右方伸出。主皮带轮传动设置在收料电机的电机轴上。从动皮带轮传动设置在第二可调阻尼联轴器的阻尼调节轮上。传动圆带围绕主皮带轮和从动皮带轮设置。
以上述相应技术方案为基础的技术方案是:送料装置还包括放料盘组件和导向轮组件。所述Y轴模组设有Y轴第一型材和可在Y轴方向上前后运动的Y轴第一安装座 板。Y轴第一型材沿前后向横跨设置在工作台的上侧上,由X轴模组驱动其沿X轴方向左右运动。
放料盘组件包括放料盘支撑轴、放料盘底板、左挡料盘、右挡料盘、第一可调阻尼联轴器、放料盘安装座和第一限位装置。放料盘安装座固定设置在Y轴第一安装座板的中部上部上。放料盘支撑轴通过相应的轴承及轴承座沿左右向转动设置在放料盘安装座的上部上。放料盘底板中部设有隔档盘部。左挡料盘和右挡料盘均固定设置在放料盘底板上,且分别位于放料盘底板的隔档盘部的左右两侧。第一可调阻尼联轴器的锁紧轮固定设置在放料盘支撑轴上,与放料盘支撑轴传动连接。
第一限位装置包括限位抱箍和抱箍限位柱。限位抱箍夹紧固定在第一可调阻尼联轴器的阻尼调节轮上。限位抱箍下部设有贯穿其左右的开口向下的限位槽。抱箍限位柱沿左右向固定设置在放料盘安装座的左侧上部上,相应部位位于限位抱箍的限位槽中,对限位抱箍进行周向上的限位,防止其转动。
导向轮组件包括第一导向轮。第一导向轮转动设置在Y轴第一安装座板上,其转动轴线沿左右向水平设置。第一导向轮位于放料盘组件与主动送料组件之间。
以上述相应技术方案为基础的技术方案是:送料装置还包括送料检测组件和导向轮组件。送料检测组件包括送料检测转轴、检测转轴安装座、检测导向轮、检测轴档座、检测弹簧钩座、检测限位固定挡柱、检测限位档杆、检测档板、检测连杆、检测连杆轴、检测连杆挡料圈、检测调节挡料圈、第一弹簧钩柱和检测复位弹簧。
检测转轴安装座通过相应的连接板固定设置在Y轴第一安装座板的右侧下部上。送料检测转轴沿左右向转动设置在检测转轴安装座上,其左右两端均伸出检测转轴安装座外。
检测轴档座有两个,两个检测轴档座按其所处的左右位置的不同分为左检测轴档座和右检测轴档座。左检测轴档座固定设置在送料检测转轴的左端上,与送料检测转轴传动连接。检测导向轮通过相应的轴承转动设置在送料检测转轴的右部上,右检测轴档座固定设置在送料检测转轴的右端上,与送料检测转轴传动连接,且在轴向上对检测导向轮进行限位。左检测轴档座和右检测轴档座在轴向上将送料检测转轴限位在检测转轴安装座上。检测弹簧钩座沿送料检测转轴的径向固定设置在左检测轴档座前侧上。第一弹簧钩柱沿左右向固定设置在Y轴第一安装座板的右侧下部上,位于检测弹簧钩座的前方。检测复位弹簧一端连接在检测弹簧钩座上,另一端连接在第一弹簧钩柱上,处于伸长状态,用于使送料检测转轴向前下方转动复位。
检测限位档杆沿送料检测转轴的径向固定设置在左检测轴档座后侧上。检测限位 固定挡柱沿左右向固定设置在Y轴第一安装座板的右侧下部上,位于送料检测转轴的后下方,从上方对检测限位档杆进行限位。检测档板沿送料检测转轴的径向传动设置在送料检测转轴的左端上。
检测连杆沿送料检测转轴的径向传动设置在送料检测转轴的右端上。检测连杆轴沿左右向设置在检测连杆的前端上,其右端与检测连杆固定连接。检测连杆挡料圈固定设置在检测连杆轴的左端上。检测调节挡料圈可调节固定设置在检测连杆轴上,可以调节其与检测连杆挡料圈之间的距离,使之与相应的热熔胶膜条的宽度相对应。
导向轮组件包括第二导向轮。第二导向轮转动设置在Y轴第一安装座板上,其转动轴线沿左右向水平设置。第二导向轮位于送料检测组件和废料收料组件之间。
以上述相应技术方案为基础的技术方案是:压紧装置包括压紧Y轴模组、压紧安装座、压脚、压脚驱动气缸、压脚安装轴和压脚驱动臂。所述Y轴模组设有Y轴第一型材和可在Y轴方向上前后运动的Y轴第一安装座板。Y轴第一型材沿前后向横跨设置在工作台的上侧上,由X轴模组驱动其沿X轴方向左右运动。
压紧Y轴模组包括压紧驱动电机、压紧电机安装座、第一涨紧座、压紧第一同步带轮、压紧第二同步带轮和压紧同步带和直线导轨。压紧电机安装座固定设置在Y轴模组的Y轴第一型材的上侧后部上。压紧驱动电机沿左右向由其电机壳固定设置在压紧电机安装座的左侧上,其电机轴转动设置在压紧电机安装座上,相应部分位于压紧电机安装座中。压紧第一同步带轮传动设置在压紧驱动电机的电机轴上,位于压紧电机安装座中。第一涨紧座固定设置在的Y轴第一型材的上侧前部上。压紧第二同步带轮转动设置在第一涨紧座中。压紧同步带围绕压紧第一同步带轮和压紧第二同步带轮设置。直线导轨的导轨沿前后向固定设置在Y轴第一型材的上侧上。直线导轨的导轨上从前至后依次设有三个滑块,三个滑块按其所处的前后位置从不同分为前滑块、中滑块和后滑块。
压紧安装座上部固定设置在直线导轨的后滑块上。压紧安装座的上部左部通过相应的同步带夹板与压紧同步带传动连接。压紧安装座的中部下部与Y轴模组的Y轴第二滚轮滑块固定连接。Y轴模组的Y轴第一安装座板的上部与前滑块和中滑块固定连接。
压脚安装轴由其中部转动设置在压紧安装座的右部下部上,压脚传动设置在压脚安装轴的右端上,压脚驱动臂传动设置在压脚安装轴的左端上。压脚驱动臂的后端设有贯穿其左右的沿前后向设置的腰圆形连接孔。压脚驱动气缸由其缸体沿上下向固定设置在压紧安装座上,其活塞杆向下伸出,活塞杆的下端铰接连接在压脚驱动臂的腰 圆形连接孔中。从而由压脚驱动气缸驱动压脚转动,使压脚的前端向上抬起或向下将热熔胶膜条压紧固定在工作面板上。
以上述相应技术方案为基础的技术方案是:剪切装置包括动切刀、定切刀、切刀第一驱动组件、切刀第二驱动组件、切刀第一安装板和切刀安装座。所述Y轴模组设有Y轴第一型材和可在Y轴方向上前后运动的Y轴第一安装座板。Y轴第一型材沿前后向横跨设置在工作台的上侧上,由X轴模组驱动其沿X轴方向左右运动。
切刀第二驱动组件采用带导杆气缸,带导杆气缸由其缸体固定设置在辅助顶杆组件的顶杆座的后侧上,其活塞杆沿左右向设置,并向右伸出。切刀第一安装板固定连接在带导杆气缸的活塞杆上。切刀安装座固定设置在切刀第一安装板的右侧下部上。切刀第一驱动组件包括切刀第一驱动气缸、切刀轴、切刀轴连接臂和顶紧弹簧。切刀第一驱动气缸由其缸体通过相应的连接座板固定设置在切刀第一安装板的右侧后部上。切刀轴转动设置在切刀安装座中,顶紧弹簧套在切刀轴上,处于压缩状态,顶紧弹簧的一端顶住切刀安装座的相应部位,另一端顶住设置在切刀轴上的C形卡圈,顶紧弹簧将切刀轴向前顶。切刀轴连接臂的一端传动连接在切刀轴的后端上,切刀轴连接臂的另一端铰接连接在切刀第一驱动气缸的活塞杆上。动切刀沿切刀轴径向固定设置在切刀轴的前端上,定切刀沿左右向固定设置在切刀安装座的前部上。从而切刀第一驱动气缸通过切刀轴连接臂驱动切刀轴转动,使动切刀与定切刀形成剪切机构。
以上述相应技术方案为基础的技术方案是:剪切装置还包括辅助顶杆组件。辅助顶杆组件包括顶杆、压头、顶杆座、顶杆驱动气缸和顶杆直线导轨。顶杆直线导轨有2个,2个顶杆直线导轨均由其各自的导轨沿上下向从前至后依次固定设置在Y轴第一安装座板的右侧后部上。顶杆座固定设置在2个顶杆直线导轨的滑块上,可以沿导轨上下运动。顶杆竖直固定设置在顶杆座上。压头可拆卸固定设置在顶杆的下端上,压头旋合固定设置在顶杆的下端上。顶杆驱动气缸通过相应的安装座固定设置在Y轴第一安装座板的后部上,其活塞杆向下伸出,活塞杆的下端铰接连接在顶杆座上,由顶杆驱动气缸驱动顶杆座沿顶杆直线导轨上下运动,从而使压头向上升起或向下将热熔胶膜条相应部位压紧固定在工作面板上。
以上述相应技术方案为基础的技术方案是:X轴模组包括第一驱动电机、X轴主动轮、X轴从动轴、X轴从动轮、X轴第一同步带、X轴前侧传动组件和X轴后侧传动组件。
第一驱动电机固定设置在主架体的左部上部上,其电机轴沿前后向水平设置并向后伸出。X轴主动轮传动设置在驱动电机的电机轴上。X轴从动轴通过相应的2个调 心球轴承转动设置在主架体的左部上部上,X轴从动轴的轴线与第一驱动电机的电机轴的轴线相互平行设置。X轴从动轮传动设置在X轴从动轴上。X轴第一同步带围绕X轴主动轮和X轴从动轮设置。
X轴前侧传动组件包括前X轴型材、X轴前导轨、X轴前滚轮滑块、X轴前侧传动轴、X轴前侧第一同步带轮、X轴前侧第二同步带轮和X轴前同步带。
前X轴型材沿左右向水平设置在主架体的前部上部上,位于工作台板的前侧下部。X轴前导轨沿左右向固定设置在前X轴型材中。X轴前滚轮滑块滑动设置在X轴前导轨上。X轴前侧传动轴沿前后向转动设置在前X轴型材的左部上,其后端通过相应的联轴器与X轴从动轴的前端传动连接。X轴前侧第一同步带轮传动设置在X轴前侧传动轴上,位于前X轴型材的左端中。X轴前侧第二同步带轮转动设置在前X轴型材的右部中。X轴前同步带围绕X轴前侧第一同步带轮和X轴前侧第二同步带轮设置。X轴前滚轮滑块通过相应的同步带夹块与X轴前同步带固定连接。
X轴后侧传动组件包括后X轴型材、X轴后导轨、X轴后滚轮滑块、X轴后侧传动轴、X轴后侧第一同步带轮、X轴后侧第二同步带轮和X轴后同步带。
后X轴型材沿左右向水平设置在主架体的后部上部上,位于工作台板1的后侧下部。X轴后导轨沿左右向固定设置在后X轴型材中。X轴后滚轮滑块滑动设置在X轴后导轨上。X轴后侧传动轴沿前后向转动设置在后X轴型材的左部上,其前端通过相应的联轴器与X轴从动轴的后端传动连接。X轴后侧第一同步带轮传动设置在X轴后侧传动轴上,位于后X轴型材的左端中。X轴后侧第二同步带轮转动设置在后X轴型材的右部中。X轴后同步带围绕X轴后侧第一同步带轮和X轴后侧第二同步带轮设置。X轴后滚轮滑块通过相应的同步带夹块与X轴后同步带固定连接。
以上述相应技术方案为基础的技术方案是:Y轴模组包括Y轴第一型材、Y轴第一驱动电机、减速机、Y轴第一导轨、Y轴第一滚轮滑块、Y轴第二滚轮滑块、Y轴第一传动轴、Y轴第一同步带轮、Y轴第二同步带轮、Y轴第一同步带和Y轴第一安装座板。Y轴第一驱动电机沿左右向固定设置在减速机上,其电机轴向左伸出并与减速机的输入端传动连接。
Y轴第一型材沿前后向横跨设置在工作台上方。Y轴第一型材前端通过相应的连接座与X轴前侧传动组件的X轴前滚轮滑块固定连接。Y轴第一型材后端通过相应的连接座与X轴后侧传动组件的X轴后滚轮滑块固定连接。从而由X轴模组驱动Y轴模组在工作台上方左右运动。
Y轴第一导轨沿前后向水平设置在Y轴第一型材中。Y轴第一滚轮滑块和Y轴第 二滚轮滑块从前至后依次滑动设置在Y轴第一导轨上。
Y轴第一传动轴通过相应的深沟球轴承转动设置在Y轴第一型材的后端中,其左端伸出Y轴第一型材外。减速机通过相应的安装座固定设置在Y轴第一型材的左侧后部上,Y轴第一传动轴的左端通过相应的连轴器与减速机的输出轴传动连接,该连轴器位于上述安装减速机的安装座中。Y轴第一同步带轮传动设置在Y轴第一传动轴上。Y轴第二同步带轮转动设置在Y轴第一型材的前端中。Y轴第一同步带围绕Y轴第一同步带轮和Y轴第二同步带轮设置。Y轴第一安装座板的下部与Y轴第一滚轮滑块固定连接。
本发明具有以下的有益效果:(1)本发明的贴条机结构简单,具有两个工作面板,也即两个工位,一个布料再贴条的同时进行下一个的布料的摆放,工作效率大大提高。
(2)本发明的贴条机设有定位装置,能将相应的模板夹紧固定在工作面板上,定位准确,大大提高了贴条的精度。
(3)本发明的贴条机的送料装置的放料盘组件设有第一可调阻尼联轴器,放料盘底板为被动转动,依靠热熔胶膜条的摩擦力使其转动,通过调节第一可调阻尼联轴器,能有效避免热熔胶膜条停止输送后放料盘底板由于惯性而继续转动,从而使放料盘底板到主动送料组件之间的热熔胶膜条保持良好的张紧状态。
(4)本发明的贴条机的送料装置的主动送料组件设有送料调节螺钉,能调整送料上压轮与送料下滚轮之间的间隙大小,适应不同厚度的热熔胶膜条。通过抬压轮杆能将送料上压轮抬起,便于安装热熔胶膜条。压紧弹簧使送料上压轮从上向下将相应的热熔胶膜条夹紧在送料下滚轮上,保证送料时热熔胶膜条张力稳定,贴条平整不起皱。
主动送料组件设有出料第一导向座,能保证热熔胶膜条进入夹料组件时位置准确。
(5)本发明的贴条机的送料装置设有送料检测组件,能判断出是否处于送料状态。送料检测组件设有检测导向轮,能辅助热熔胶膜条保持良好的张紧和平整状态。
(6)本发明的贴条机的送料装置设有检测连杆挡料圈和检测调节挡料圈,检测调节挡料圈与检测连杆挡料圈之间的距离可以调节,使之与相应的热熔胶膜条的宽度相对应。
(7)本发明的贴条机的送料装置的夹料组件设有夹料导料轮和导料座,有效保证热熔胶膜条贴条时位置准确。
(8)本发明的贴条机的送料装置的夹料组件设有下夹板和上夹板,能将热熔胶 膜条夹住,确保在向后运动时隔离纸层不会被剥离下来。当剪切时,使热熔胶膜条的胶膜层的位于下夹板和上夹板之间至压头之间的相应部位保持良好的张紧状态,有利于剪切装置将其切断。
(9)本发明的贴条机的送料装置在从后向前运动时,热熔胶膜条的胶膜层位于布料上方,当运动至布料前方时,再通过辅助顶杆组件的压头将热熔胶膜条的胶膜层的前部向下压紧粘贴在模板上,从而使整个热熔胶膜条的胶膜层贴在布料上,整个过程中布料不会起皱,从而保证贴条后布料平整,质量大大提升。
(10)本发明的贴条机的送料装置的废料收料组件的收料驱动组件的收料电机在贴条过程中始终处于转动状态,采用传动圆带进行传动,通过调节第二可调阻尼联轴器改变收料盘底板转动时的阻力,当需要将隔离纸层剥离下来并进行收纳时,传动圆带带动收料盘底板正常转动收料;当送料装置向后移动送料和向右移动改变贴条位置时,由于夹料组件的下夹板和上夹板热熔胶膜条夹住,不需将隔离纸层剥离下来时,传动圆带处于打滑状态,能使隔离纸层保持张紧状态而不被拉断。
(11)本发明的贴条机的送料装置的夹料组件设有吹料气管,能将热熔胶膜条的胶膜层后端向后吹起,能有效保证胶膜层后端位于压脚的前部下方,确保压脚能将胶膜层向下压住。
(12)本发明的贴条机改变了传统的盘式送料方式,采用料筒送料,提高了单次连续作业的时间,减少了换料盘的时间,有利于提高生产效率。
(13)本发明的贴条机的收料右挡料盘可拆卸固定设置在收料盘支撑轴的右部上,便于快速拆卸,将收料盘底板上收纳的废隔离纸层取出,提高生产效率。
(13)本发明的贴条机的剪切装置的切刀轴转动设置在切刀安装座中,顶紧弹簧套在切刀轴上,处于压缩状态,顶紧弹簧的一端顶住切刀安装座的相应部位,另一端顶住设置在切刀轴上的C形卡圈,顶紧弹簧将切刀轴向前顶,能使动切刀与定切刀保持良好的接触状态,使得剪切更加顺畅,保证剪切效果。
附图说明
图1为本发明的贴条机的结构示意图;
图2为图1的左视示意图;
图3为图1的右视示意图;
图4为图1的俯视示意图;
图5为图1的后视示意图;
图6为从图1的右前上方观察时的示意图;
图7为从图1的左前上方观察时的示意图;
图8为从图1的左后上方观察时的示意图;
图9为从图1的左前上方观察时工作台和X轴模组的结构示意图;
图10为从图1的左后上方观察时工作台和X轴模组的结构示意图;
图11为从图1的右前上方观察时Y轴模组去掉Y轴第一型材和Y轴第一安装座板后的放大示意图;
图12为从图1的右前上方观察时压紧装置和Y轴模组相应部件的放大示意图;
图13为从图1的右前上方观察时剪切装置和Y轴模组相应部件的放大示意图;
图14为图3中的送料装置的放大示意图;
图15为图14的右视示意图;
图16为从图14的右前上方观察时的示意图;
图17为从图14的左后上方观察时的示意图;
图18为从图14的右前上方观察时主动送料组件的放大示意图;
图19为从图14的左前上方观察时主动送料组件的放大示意图;
图20为从图14的左前上方观察时送料检测组件的放大示意图;
图21为从图14的右前上方观察时夹料组的放大示意图;
图22为从图14的左后上方观察时废料收料组件的放大示意图。
附图中的标号为:
工作台1,主架体11,台板组件12,工作台板12-1,工作面板12-2,
X轴模组21,驱动电机21-1,X轴主动轮21-2,X轴从动轴21-3,X轴从动轮21-4,X轴第一同步带21-5,
X轴前侧传动组件21-6,前X轴型材21-6-1,X轴前导轨21-6-2,X轴前滚轮滑块21-6-3,X轴前侧传动轴21-6-4,X轴前侧第一同步带轮21-6-5,X轴前侧第二同步带轮21-6-6,X轴前同步带21-6-7,
X轴后侧传动组件21-7,后X轴型材21-7-1,X轴后导轨21-7-2,X轴后滚轮滑块21-7-3,X轴后侧传动轴21-7-4,X轴后侧第一同步带轮21-7-5,X轴后侧第二同步带轮21-7-6,X轴后同步带21-7-7,
Y轴模组22,Y轴第一型材22-1,Y轴第一驱动电机22-2,减速机22-3,Y轴第一导轨22-4,Y轴第一滚轮滑块22-5,Y轴第二滚轮滑块22-6,Y轴第一传动轴22-7,Y轴第一同步带轮22-8,Y轴第二同步带轮22-9,Y轴第一同步带22-10,Y轴第一 安装座板22-11,
送料装置3,放料盘组件31,放料盘支撑轴31-1,放料盘底板31-2,隔档盘部31-21,左挡料盘31-3,右挡料盘31-4,第一可调阻尼联轴器31-5,放料盘安装座31-6,第一限位装置31-7,限位抱箍31-71,抱箍限位柱31-72,
主动送料组件32,送料驱动电机32-1,主动送料第一同步带轮32-2,主动送料同步带32-3,主动送料第二同步带轮32-4,主动送料安装座32-5,送料压轮轴32-6,送料压轮连杆32-7,连接孔32-7-1,送料上压轮32-8,送料下滚轮32-9,送料弹簧架32-10,送料调节螺钉32-11,抬压轮杆32-12,出料第一导向座32-13,
送料检测组件33,送料检测转轴33-1,检测转轴安装座33-2,检测导向轮33-3,检测轴档座33-4,左检测轴档座33-4a,右检测轴档座33-4b,检测弹簧钩座33-5,检测限位固定挡柱33-6,检测限位档杆33-7,检测档板33-8,检测连杆33-9,检测连杆轴33-10,检测连杆挡料圈33-11,检测调节挡料圈33-12,第一弹簧钩柱33-13,
夹料组件34,夹料上下驱动气缸34-1,夹料夹驱动气缸34-2,夹料直线导轨34-3,导轨34-3a,滑块34-3b,夹料安装座34-4,下夹板34-5,下后端夹持部34-5a,上夹板34-6,上后端夹持部34-6a,导料座34-7,夹料导料轮34-8,
导向轮组件35,第一导向轮35-1,第二导向轮35-2,
废料收料组件36,收料盘支撑轴36-1,收料盘底板36-2,隔档盘部36-21,收料左挡料盘36-3,收料右挡料盘36-4,第二可调阻尼联轴器36-5,收料盘安装座36-6,收料驱动组件36-7,收料电机36-71,主皮带轮36-72,从动皮带轮36-73,传动圆带36-74,
压紧装置4,压紧Y轴模组41,压紧驱动电机41-1,压紧电机安装座41-2,第一涨紧座41-3,压紧第一同步带轮41-4,压紧第二同步带轮41-5,压紧同步带41-6,直线导轨41-7,导轨41-7a,前滑块41-71,中滑块41-72,后滑块41-73,
压紧安装座42,压脚43,压脚驱动气缸44,压脚安装轴45,压脚驱动臂46,
剪切装置5,动切刀51,定切刀52,切刀第一驱动组件53,切刀第一驱动气缸53-1,切刀轴53-2,切刀轴连接臂53-3,顶紧弹簧53-4,切刀第二驱动组件54,切刀第一安装板55,切刀安装座56,辅助顶杆组件57,顶杆57-1,压头57-2,顶杆座57-3,顶杆驱动气缸57-4,顶杆直线导轨57-5,定位装置6,定位上下驱动气缸6-1,活塞杆6-1a,定位压板6-2,放料组件7,料筒架71,料筒72,防护架8,
定位组件9,X轴检测组件91,X轴左U型光电开关91-1a,X轴右U型光电开关91-1b,X轴检测挡片91-2,
Y轴检测组件92,Y轴前U型光电开关92-1,Y轴第一检测挡片92-2,
压紧装置检测组件93,第一压紧U型光电开关93-1,第一压紧检测挡片93-2,第二压紧U型光电开关93-3,第二压紧检测挡片93-4,热熔胶膜条检测光眼94。
具体实施方式
为了使本发明的内容更容易被清楚地理解,下面根据具体实施例并结合附图,对本发明作进一步详细的说明。本发明的方位的描述按照图1所示的方位进行,也即图1所示的上下左右方向即为描述的上下左右方向,图1所朝的一方为前方,背离图1的一方为后方。图1的左右方向为X轴方向,图1的前后方向为Y轴方向。
应注意到:相似的标号和字母在下面的附图中表示类似项,因此,一旦某一项在一个附图中被定义,则在随后的附图中不需要对其进行进一步定义和解释。同时,在本发明的描述中,术语“第一”、“第二”等仅用于区分描述,而不能理解为指示或暗示相对重要性。
需要理解的是,术语“上”、“下”、“内”、“外”等指示方位或位置关系是基于附图所述的位置关系,仅是为了便于描述本发明或简化描述,而不是指示必须具有的特定的方位。
(实施例1)
见图1至图22,本发明的贴条机包括工作台1、X轴模组21、Y轴模组22、送料装置3、压紧装置4、剪切装置5、定位装置6、放料组件7、防护架8和定位组件9。
见图1至图10,工作台1包括主架体11和设置在主架体11上的台板组件12。台板组件12包括工作台板12-1和工作面板12-2。工作面板12-2有两块,两块工作面板12-2沿左右向并排设置工作台板12-1上。两块工作面板12-2均采用不锈钢板。
见图1至图10,定位装置6有2组,2组定位装置6的结构相同,均包括2个定位上下驱动气缸6-1和定位压板6-2。2组定位装置6从左至右依次设置在工作台的上部后部上。定位装置6的2个定位上下驱动气缸6-1由其各自的缸体固定设置在工作台上1,位于工作台板12-1的下侧。定位装置6的2个定位上下驱动气缸6-1从左至右依次设置。2个定位上下驱动气缸6-1的活塞杆6-1a向上伸,穿过工作台板12-1,定位压板6-2沿左右向固定设置在2个定位上下驱动气缸的活塞杆6-1a上,由定位上下驱动气缸6-1驱动定位压板6-2上下运动。
见图1至图10,X轴模组21包括第一驱动电机21-1、X轴主动轮21-2、X轴从动轴21-3、X轴从动轮21-4、X轴第一同步带21-5、X轴前侧传动组件21-6和X 轴后侧传动组件21-7。
第一驱动电机21-1固定设置在主架体11的左部上部上,其电机轴沿前后向水平设置并向后伸出。X轴主动轮21-2传动设置在驱动电机21-1的电机轴上。X轴从动轴21-3通过相应的2个调心球轴承转动设置在主架体11的左部上部上,X轴从动轴21-3的轴线与第一驱动电机21-1的电机轴的轴线相互平行设置。X轴从动轮21-4传动设置在X轴从动轴21-3上。X轴第一同步带21-5围绕X轴主动轮21-2和X轴从动轮21-4设置。
X轴前侧传动组件21-6包括前X轴型材21-6-1、X轴前导轨21-6-2、X轴前滚轮滑块21-6-3、X轴前侧传动轴21-6-4、X轴前侧第一同步带轮21-6-5、X轴前侧第二同步带轮21-6-6和X轴前同步带21-6-7。
前X轴型材21-6-1沿左右向水平设置在主架体11的前部上部上,位于工作台板12-1的前侧下部。X轴前导轨21-6-2沿左右向固定设置在前X轴型材21-6-1中。X轴前滚轮滑块21-6-3滑动设置在X轴前导轨21-6-2上。X轴前侧传动轴21-6-4沿前后向转动设置在前X轴型材21-6-1的左部上,其后端通过相应的联轴器与X轴从动轴21-3的前端传动连接。X轴前侧第一同步带轮21-6-5传动设置在X轴前侧传动轴21-6-4上,位于前X轴型材21-6-1的左端中。X轴前侧第二同步带轮21-6-6转动设置在前X轴型材21-6-1的右部中。X轴前同步带21-6-7围绕X轴前侧第一同步带轮21-6-5和X轴前侧第二同步带轮21-6-6设置。X轴前滚轮滑块21-6-3通过相应的同步带夹块与X轴前同步带21-6-7固定连接。
X轴后侧传动组件21-7包括后X轴型材21-7-1、X轴后导轨21-7-2、X轴后滚轮滑块21-7-3、X轴后侧传动轴21-7-4、X轴后侧第一同步带轮21-7-5、X轴后侧第二同步带轮21-7-6和X轴后同步带21-7-7。
后X轴型材21-7-1沿左右向水平设置在主架体11的后部上部上,位于工作台板12-1的后侧下部。X轴后导轨21-7-2沿左右向固定设置在后X轴型材21-7-1中。X轴后滚轮滑块21-7-3滑动设置在X轴后导轨21-7-2上。X轴后侧传动轴21-7-4沿前后向转动设置在后X轴型材21-7-1的左部上,其前端通过相应的联轴器与X轴从动轴21-3的后端传动连接。X轴后侧第一同步带轮21-7-5传动设置在X轴后侧传动轴21-7-4上,位于后X轴型材21-7-1的左端中。X轴后侧第二同步带轮21-7-6转动设置在后X轴型材21-7-1的右部中。X轴后同步带21-7-7围绕X轴后侧第一同步带轮21-7-5和X轴后侧第二同步带轮21-7-6设置。X轴后滚轮滑块21-7-3通过相应的同步带夹块与X轴后同步带21-7-7固定连接。
见图1至图13,Y轴模组22包括Y轴第一型材22-1、Y轴第一驱动电机22-2、减速机22-3、Y轴第一导轨22-4、Y轴第一滚轮滑块22-5、Y轴第二滚轮滑块22-6、Y轴第一传动轴22-7、Y轴第一同步带轮22-8、Y轴第二同步带轮22-9、Y轴第一同步带22-10和Y轴第一安装座板22-11。Y轴第一驱动电机22-2沿左右向固定设置在减速机22-3上,其电机轴向左伸出并与减速机22-3的输入端传动连接。
Y轴第一型材22-1沿前后向横跨设置在工作台1上方。Y轴第一型材22-1前端通过相应的连接座与X轴前侧传动组件21-6的X轴前滚轮滑块21-6-3固定连接。Y轴第一型材22-1后端通过相应的连接座与X轴后侧传动组件21-7的X轴后滚轮滑块21-7-3固定连接。从而由X轴模组21驱动Y轴模组22在工作台1上方左右运动。
Y轴第一导轨22-4沿前后向水平设置在Y轴第一型材22-1中。Y轴第一滚轮滑块22-5和Y轴第二滚轮滑块22-6从前至后依次滑动设置在Y轴第一导轨22-4上。
Y轴第一传动轴22-7通过相应的深沟球轴承转动设置在Y轴第一型材22-1的后端中,其左端伸出Y轴第一型材22-1外。减速机22-3通过相应的安装座固定设置在Y轴第一型材22-1的左侧后部上,Y轴第一传动轴22-7的左端通过相应的连轴器与减速机22-3的输出轴传动连接,该连轴器位于上述安装减速机22-3的安装座中。Y轴第一同步带轮22-8传动设置在Y轴第一传动轴22-7上。Y轴第二同步带轮22-9转动设置在Y轴第一型材22-1的前端中。Y轴第一同步带22-10围绕Y轴第一同步带轮22-8和Y轴第二同步带轮22-9设置。Y轴第一安装座板22-11的下部与Y轴第一滚轮滑块22-5固定连接。
见图1至图8和图14至图22,送料装置3包括放料盘组件31、主动送料组件32、送料检测组件33、夹料组件34、导向轮组件35和废料收料组件36。
放料盘组件31包括放料盘支撑轴31-1、放料盘底板31-2、左挡料盘31-3、右挡料盘31-4、第一可调阻尼联轴器31-5、放料盘安装座31-6和第一限位装置31-7。放料盘安装座31-6固定设置在Y轴第一安装座板22-11的中部上部上。放料盘支撑轴31-1通过相应的轴承及轴承座沿左右向转动设置在放料盘安装座31-6的上部上。放料盘底板31-2中部设有隔档盘部31-21。左挡料盘31-3和右挡料盘31-4均固定设置在放料盘底板31-2上,且分别位于放料盘底板31-2的隔档盘部31-21的左右两侧。第一可调阻尼联轴器31-5的锁紧轮固定设置在放料盘支撑轴31-1上,与放料盘支撑轴31-1传动连接。第一限位装置31-7包括限位抱箍31-71和抱箍限位柱31-72。限位抱箍31-71夹紧固定在第一可调阻尼联轴器31-5的阻尼调节轮上。限位抱箍31-71下部设有贯穿其左右的开口向下的限位槽。抱箍限位柱31-72沿左右向固定设 置在放料盘安装座31-6的左侧上部上,相应部位位于限位抱箍31-71的限位槽中,对限位抱箍31-71进行周向上的限位,防止其转动。
主动送料组件32包括送料驱动电机32-1、主动送料第一同步带轮32-2、主动送料同步带32-3、主动送料第二同步带轮32-4、主动送料安装座32-5、送料压轮轴32-6、送料压轮连杆32-7、送料上压轮32-8、送料下滚轮32-9、送料弹簧架32-10、送料调节螺钉32-11、抬压轮杆32-12、出料第一导向座32-13和压紧弹簧。
送料驱动电机32-1由其电机壳固定设置在Y轴第一安装座板22-11的中部上部上,位于放料盘安装座31-6的后方。送料驱动电机32-1的电机轴沿左右向水平设置并向右伸出。主动送料第一同步带轮32-2传动连接设置在送料驱动电机32-1的电机轴上。主动送料安装座32-5固定设置在Y轴第一安装座板22-11的右侧中部上。送料压轮连杆32-7的后端转动设置在主动送料安装座32-5的后部上,转动轴沿左右向水平设置。送料压轮轴32-6通过相应的轴承沿左右向转动设置在送料压轮连杆32-7的前端上。送料压轮连杆32-7的前端设有连接孔32-7-1。主动送料第二同步带轮32-4传动连接在送料压轮轴32-6的左端上。主动送料同步带32-3围绕主动送料第一同步带轮32-2和主动送料第二同步带轮32-4设置。送料上压轮32-8传动连接在送料压轮轴32-6的右端上。送料弹簧架32-10旋合固定在主动送料安装座32-5的下侧前部上。送料下滚轮32-9转动设在主动送料安装座32-5上,位于送料上压轮32-8的下方。压紧弹簧一端连接在送料弹簧架32-10上,另一端连接在送料压轮连杆32-7的连接孔32-7-1中,处于伸长状态。压紧弹簧使送料上压轮32-8从上向下将相应的热熔胶膜条夹紧在送料下滚轮32-9上。送料调节螺钉32-11从下向上旋合在主动送料安装座32-5上,向上穿过主动送料安装座32-5后,向上顶住送料压轮连杆32-7的前端下部相应位置,用于调整送料上压轮32-8与送料下滚轮32-9之间的间隙大小。抬压轮杆32-12沿与送料压轮连杆32-7的转动轴垂直的方向固定设置在送料压轮连杆32-7的后端上,用于将送料上压轮32-8抬起后安装热熔胶膜条。出料第一导向座32-13沿上下向固定设置在主动送料安装座32-5的后部右部上,位于送料下滚轮32-9的后方。
送料检测组件33包括送料检测转轴33-1、检测转轴安装座33-2、检测导向轮33-3、检测轴档座33-4、检测弹簧钩座33-5、检测限位固定挡柱33-6、检测限位档杆33-7、检测档板33-8、检测连杆33-9、检测连杆轴33-10、检测连杆挡料圈33-11、检测调节挡料圈33-12、第一弹簧钩柱33-13和检测复位弹簧。
检测转轴安装座33-2通过相应的连接板固定设置在Y轴第一安装座板22-11的 右侧下部上。送料检测转轴33-1沿左右向转动设置在检测转轴安装座33-2上,其左右两端均伸出检测转轴安装座33-2外。
检测轴档座33-4有两个,两个检测轴档座33-4按其所处的左右位置的不同分为左检测轴档座33-4a和右检测轴档座33-4b。左检测轴档座33-4a固定设置在送料检测转轴33-1的左端上,与送料检测转轴33-1传动连接。检测导向轮33-3通过相应的轴承转动设置在送料检测转轴33-1的右部上,右检测轴档座33-4b固定设置在送料检测转轴33-1的右端上,与送料检测转轴33-1传动连接,且在轴向上对检测导向轮33-3进行限位。左检测轴档座33-4a和右检测轴档座33-4b在轴向上将送料检测转轴33-1限位在检测转轴安装座33-2上。检测弹簧钩座33-5沿送料检测转轴33-1的径向固定设置在左检测轴档座33-4a前侧上。第一弹簧钩柱33-13沿左右向固定设置在Y轴第一安装座板22-11的右侧下部上,位于检测弹簧钩座33-5的前方。检测复位弹簧一端连接在检测弹簧钩座33-5上,另一端连接在第一弹簧钩柱33-13上,处于伸长状态,用于使送料检测转轴33-1向前下方转动复位。
检测限位档杆33-7沿送料检测转轴33-1的径向固定设置在左检测轴档座33-4a后侧上。检测限位固定挡柱33-6沿左右向固定设置在Y轴第一安装座板22-11的右侧下部上,位于送料检测转轴33-1的后下方,从上方对检测限位档杆33-7进行限位。检测档板33-8沿送料检测转轴33-1的径向传动设置在送料检测转轴33-1的左端上。
检测连杆33-9沿送料检测转轴33-1的径向传动设置在送料检测转轴33-1的右端上。检测连杆轴33-10沿左右向设置在检测连杆33-9的前端上,其右端与检测连杆33-9固定连接。检测连杆挡料圈33-11固定设置在检测连杆轴33-10的左端上。检测调节挡料圈33-12可调节固定设置在检测连杆轴33-10上,可以调节其与检测连杆挡料圈33-11之间的距离,使之与相应的热熔胶膜条的宽度相对应。
夹料组件34包括夹料上下驱动气缸34-1、夹料夹驱动气缸34-2、夹料直线导轨34-3、夹料安装座34-4、下夹板34-5、上夹板34-6、导料座34-7、夹料导料轮34-8和吹料气管。
夹料上下驱动气缸34-1由其缸体转动连接在Y轴第一安装座板22-11的右侧中部上,位于主动送料组件32的后方。夹料上下驱动气缸34-1沿上下向设置,活塞杆向下伸出。夹料直线导轨34-3由其导轨34-3a沿上下向固定设置在Y轴第一安装座板22-11的右侧中部上,位于夹料上下驱动气缸34-1的下方。夹料安装座34-4固定设置在夹料直线导轨34-3的滑块34-3b上。夹料上下驱动气缸34-1的活塞杆与夹料安装座34-4铰接连接。夹料夹驱动气缸34-2由其缸体转动连接在夹料安装座34-4 的右侧上。下夹板34-5固定设置在夹料安装座34-4的右侧下部上。上夹板34-6由其中部转动连接在料安装座34-4的右侧上,位于下夹板34-5的上方。上夹板34-6的前端铰接连接在夹料夹驱动气缸34-2的活塞杆上。由夹料夹驱动气缸34-2驱动上夹板34-6转动,使上夹板34-6的上后端夹持部34-6a与下夹板34-5的下后端夹持部34-5a形成可夹持结构。导料座34-7沿前后向固定设置在夹料安装座34-4的右侧下部上,位于下夹板34-5的下后端夹持部34-5a的前方。夹料导料轮34-8转动设置在夹料安装座34-4的右侧下部前部上,位于导料座34-7的前方。吹料气管(图中未画出)固定设置在导料座34-7的右侧上,出气口位于下夹板34-5的下后端夹持部34-5a的下侧右部,吹料气管的出气口向后吹气。
导向轮组件35包括第一导向轮35-1和第二导向轮35-2。第一导向轮35-1转动设置在Y轴第一安装座板22-11上,其转动轴线沿左右向水平设置。第一导向轮35-1位于放料盘组件31与主动送料组件32之间。第二导向轮35-2转动设置在Y轴第一安装座板22-11上,其转动轴线沿左右向水平设置。第二导向轮35-2位于送料检测组件33和废料收料组件36之间。
废料收料组件36包括收料盘支撑轴36-1、收料盘底板36-2、收料左挡料盘36-3、收料右挡料盘36-4、第二可调阻尼联轴器36-5、收料盘安装座36-6和收料驱动组件36-7。收料盘安装座36-6固定设置在Y轴第一安装座板22-11的前部上。
收料盘支撑轴36-1通过相应的轴承及轴承座沿左右向转动设置在收料盘安装座36-6的下部上。收料盘底板36-2右部设有隔档盘部36-21。收料左挡料盘36-3固定设置在收料盘底板36-2上,位于收料盘底板36-2的隔档盘部36-21的左侧。收料右挡料盘36-4可拆卸固定设置在收料盘支撑轴36-1的右部上,位于收料盘底板36-2的隔档盘部36-21的右侧,与收料盘支撑轴36-1传动连接。第二可调阻尼联轴器36-5的锁紧轮固定设置在收料盘支撑轴36-1上,与收料盘支撑轴36-1传动连接。收料驱动组件36-7包括收料电机36-71、主皮带轮36-72、从动皮带轮36-73和传动圆带36-74。收料电机36-71由其电机壳沿左右向固定设置在收料盘安装座36-6上,其电机轴向右方伸出。主皮带轮36-72传动设置在收料电机36-71的电机轴上。从动皮带轮36-73传动设置在第二可调阻尼联轴器36-5的阻尼调节轮上。传动圆带36-74围绕主皮带轮36-72和从动皮带轮36-73设置。
压紧装置4包括压紧Y轴模组41、压紧安装座42、压脚43、压脚驱动气缸44、压脚安装轴45和压脚驱动臂46。
压紧Y轴模组41包括压紧驱动电机41-1、压紧电机安装座41-2、第一涨紧座 41-3、压紧第一同步带轮41-4、压紧第二同步带轮41-5和压紧同步带41-6和直线导轨41-7。
压紧电机安装座41-2固定设置在Y轴模组22的Y轴第一型材22-1的上侧后部上。压紧驱动电机41-1沿左右向由其电机壳固定设置在压紧电机安装座41-2的左侧上,其电机轴转动设置在压紧电机安装座41-2上,相应部分位于压紧电机安装座41-2中。压紧第一同步带轮41-4传动设置在压紧驱动电机41-1的电机轴上,位于压紧电机安装座41-2中。第一涨紧座41-3固定设置在的Y轴第一型材22-1的上侧前部上。压紧第二同步带轮41-5转动设置在第一涨紧座41-3中。压紧同步带41-6围绕压紧第一同步带轮41-4和压紧第二同步带轮41-5设置。直线导轨41-7的导轨41-7a沿前后向固定设置在Y轴第一型材22-1的上侧上。直线导轨41-7的导轨上从前至后依次设有三个滑块,三个滑块按其所处的前后位置从不同分为前滑块41-71、中滑块41-72和后滑块41-73。
压紧安装座42上部固定设置在直线导轨41-7的后滑块41-73上。压紧安装座42的上部左部通过相应的同步带夹板与压紧同步带41-6传动连接。压紧安装座42的中部下部与Y轴模组22的Y轴第二滚轮滑块22-6固定连接。Y轴模组22的Y轴第一安装座板22-11的上部与前滑块41-71和中滑块41-72固定连接。
压脚安装轴45由其中部转动设置在压紧安装座42的右部下部上,压脚43传动设置在压脚安装轴45的右端上,压脚驱动臂46传动设置在压脚安装轴45的左端上。压脚驱动臂46的后端设有贯穿其左右的沿前后向设置的腰圆形连接孔。压脚驱动气缸44由其缸体沿上下向固定设置在压紧安装座42上,其活塞杆向下伸出,活塞杆的下端铰接连接在压脚驱动臂46的腰圆形连接孔中。从而由压脚驱动气缸44驱动压脚43转动,使压脚43的前端向上抬起或向下将热熔胶膜条压紧固定在工作面板12-2上。
见图1至图7和图13,剪切装置5包括动切刀51、定切刀52、切刀第一驱动组件53、切刀第二驱动组件54、切刀第一安装板55、切刀安装座56和辅助顶杆组件57。
辅助顶杆组件57包括顶杆57-1、压头57-2、顶杆座57-3、顶杆驱动气缸57-4和顶杆直线导轨57-5。顶杆直线导轨57-5有2个,2个顶杆直线导轨57-5均由其各自的导轨沿上下向从前至后依次固定设置在Y轴第一安装座板22-11的右侧后部上。顶杆座57-3固定设置在2个顶杆直线导轨57-5的滑块上,可以沿导轨上下运动。顶杆57-1竖直固定设置在顶杆座57-3上。压头57-2可拆卸固定设置在顶杆57-1的下 端上,本实施例的压头采用尼龙材料制成,压头57-2旋合固定设置在顶杆57-1的下端上。顶杆驱动气缸57-4通过相应的安装座固定设置在Y轴第一安装座板22-11的后部上,其活塞杆向下伸出,活塞杆的下端铰接连接在顶杆座57-3上,由顶杆驱动气缸57-4驱动顶杆座57-3沿顶杆直线导轨57-5上下运动,从而使压头57-2向上升起或向下将热熔胶膜条相应部位压紧固定在工作面板12-2上。
切刀第二驱动组件54采用带导杆气缸,带导杆气缸由其缸体固定设置在辅助顶杆组件57的顶杆座57-3的后侧上,其活塞杆沿左右向设置,并向右伸出;切刀第一安装板55固定连接在带导杆气缸的活塞杆上。切刀安装座56固定设置在切刀第一安装板55的右侧下部上。
切刀第一驱动组件53包括切刀第一驱动气缸53-1、切刀轴53-2、切刀轴连接臂53-3和顶紧弹簧53-4。切刀第一驱动气缸53-1由其缸体通过相应的连接座板(图中未画出)固定设置在切刀第一安装板55的右侧后部上。切刀轴53-2转动设置在切刀安装座56中,顶紧弹簧53-4套在切刀轴53-2上,处于压缩状态,顶紧弹簧53-4的一端顶住切刀安装座56的相应部位,另一端顶住设置在切刀轴53-2上的C形卡圈,顶紧弹簧53-4将切刀轴53-2向前顶。切刀轴连接臂53-3的一端传动连接在切刀轴53-2的后端上,切刀轴连接臂53-3的另一端铰接连接在切刀第一驱动气缸53-1的活塞杆上。动切刀51沿切刀轴径向固定设置在切刀轴53-2的前端上,定切刀52沿左右向固定设置在切刀安装座56的前部上。从而切刀第一驱动气缸53-1通过切刀轴连接臂53-3驱动切刀轴53-2转动,使动切刀51与定切刀52形成剪切机构,剪切过程中顶紧弹簧53-4始终将切刀轴53-2向前顶,从而使动切刀51与定切刀52形成良好的接触,有利于提高剪切效果,而且切口平整。
见图1至图8,放料组件7包括料筒架71和料筒72。料筒架71固定设置在X轴模组21的X轴前侧传动组件21-6的X轴前滚轮滑块21-6-3上。料筒72可拆卸固定设置在料筒架71上。
见图1至图8,防护架8固定设置在工作台1的后侧上部上,将Y轴模组22的后部相应的行走区域围挡,防止有人误入该区域而导致被Y轴模组22运动时撞伤。
见图1至图10、图12、图13、图16和图17,定位组件9包括X轴检测组件91、Y轴检测组件92、压紧装置检测组件93、热熔胶膜条检测光眼94和收料涨紧检测U型光电开关。
X轴检测组件91包括X轴左U型光电开关91-1a、X轴右U型光电开关91-1b和X轴检测挡片91-2。X轴左U型光电开关91-1a固定设置在后X轴型材21-7-1的后 侧左端上,开口向后并沿左右向设置。X轴右U型光电开关91-1b固定设置在后X轴型材21-7-1的后侧右端上,开口向后并沿左右向设置,与X轴左U型光电开关91-1a在同一水平面中。X轴检测挡片91-2固定设置在连接Y轴第一型材22-1后端与X轴后侧传动组件21-7的X轴后滚轮滑块21-7-3的连接座上,用于遮挡X轴左U型光电开关91-1a或X轴右U型光电开关91-1b,判断Y轴模组22是否处于左部起始位置或右部结束位置。
Y轴检测组件92包括Y轴前U型光电开关92-1和Y轴第一检测挡片92-2。Y轴前U型光电开关92-1固定设在Y轴第一型材22-1的右侧前部上,开口向右并沿前后向设置。Y轴第一检测挡片92-2固定设置在Y轴第一安装座板22-11的前部上,用于遮挡Y轴前U型光电开关92-1,判断送料装置3是否处于最前端的Y方向回零位置。
压紧装置检测组件93包括第一压紧U型光电开关93-1、第一压紧检测挡片93-2、第二压紧U型光电开关93-3和第二压紧检测挡片93-4。压紧U型光电开关93-1固定设置在Y轴第一型材22-1的上侧后部上,开口向上并沿前后向设置。压紧检测挡片93-2固定设置在压紧安装座42的后侧上,用于遮挡压紧U型光电开关93-1,判断压紧装置4是否处于最后端的压紧装置回零位置。
第二压紧U型光电开关93-3固定设置在Y轴第一安装座板22-11的后部上,开口向后并沿上下向设置。第二压紧检测挡片93-4固定设置在在压紧安装座42的前部上,用于遮挡第二压紧U型光电开关93-3,判断压紧装置4是否和送料装置3一同处于最前端的Y方向回零位置。
热熔胶膜条检测光眼94固定设置在放料盘安装座31-6的前部上,用于检测是否有热熔胶膜条进入放料盘组件31的左挡料盘31-3和右挡料盘31-4之间。
收料张紧检测U型光电开关固定设置在Y轴第一安装座板22-11的右侧下部上,位于检测档板33-8转动时的路径上,用于判断检测连杆轴33-10是否向上抬起处于涨紧状态。
本发明的贴条机工作时具有以下步骤:
一、本发明中所述的热熔胶膜条具有胶膜层和隔离纸层,胶膜层的粘胶的一侧粘结在隔离纸层上。送料装置3和压紧装置4一同处于最前端的Y方向回零位置。将料筒72中的热熔胶膜条从料筒上盖上的出料孔72-1中拉出,通过相应的S形导向后使热熔胶膜条的隔离层位于下侧然后平整的进入送料装置3中。先使热熔胶膜条从前方经过送料装置3的放料盘底板31-2的隔档盘部31-21的上侧绕到放料盘底板31-2 的隔档盘部31-21的后侧;再绕过第一导向轮35-1的前部和下部后穿过主动送料组件32的送料上压轮32-8和送料下滚轮32-9之间进入出料第一导向座32-13中;接着绕过送料检测组件33的检测导向轮33-3的前部和下部后,再绕过夹料导料轮34-8的前部和下部后进入导料座34-7中;从导料座34-7出来后穿过下夹板34-5和上夹板34-6,然后将胶膜层和隔离纸层分开,分开后将位于下侧的隔离纸层绕过下夹板34-5的下方向后拉;使隔离纸层绕过位于检测连杆挡料圈33-11和检测调节挡料圈33-12之间的检测连杆轴33-10的下侧后再绕过第二导向轮35-2的后部和上部,然后固定在收料盘底板36-2的隔档盘部36-21上。将刚才剥离下来的位于下夹板34-5的后方的胶膜层剪去多余的部分,保留出一小段2至4厘米。然后吹料气管的出气口向后吹气用于将热熔胶膜条的胶膜层后端向后吹起。
二、先将摆放布料的相应的模板摆放在位于左侧的工作面板12-2上,然后将待贴热熔胶膜条的布料摆放在该模板上。定位装置6的定位压板6-2将模板相应部位夹紧固定在工作面板12-2上。
三、由压紧Y轴模组41驱动压脚43向后运动至最后端的压紧装置回零位置;同时夹料组件34下夹板34-5和上夹板34-6将热熔胶膜条夹住,由Y轴模组22驱动送料装置3向后运动至起始贴条位置,也即压紧装置回零位置。吹料气管的出气口向后吹气将热熔胶膜条的胶膜层后端向后吹起至压紧装置4的压脚43前部下方,然后压脚43前端向下将热熔胶膜条的胶膜层后端压紧在模板上,同时热熔胶膜条的胶膜层的粘胶粘接固定在模板上。夹料组件34下夹板34-5和上夹板34-6将热熔胶膜条松开,再由Y轴模组22驱动送料装置3向前运动,运动过程中,热熔胶膜条的胶膜层相应部分横跨过布料,热熔胶膜条的隔离纸层从胶膜层上剥离并被卷绕收纳在废料收料组件36的收料盘底板36-2上。
四、剪切装置5的辅助顶杆组件57的压头57-2向下将热熔胶膜条的胶膜层相应部位压紧在模板上,从而整条热熔胶膜条从上向下粘贴在布料上。
五、夹料组件34下夹板34-5和上夹板34-6将热熔胶膜条再夹紧;剪切装置5的切刀第二驱动组件54驱动动切刀51和定切刀52向左运动,使热熔胶膜条的胶膜层的位于下夹板34-5和上夹板34-6之间至压头57-2之间的相应部位位于动切刀51和定切刀52之间,再由切刀第一驱动组件53驱动动切刀51转动,与定切刀52共同将热熔胶膜条的胶膜层剪断,完成一条贴条作业。贴完后剪切装置5的动切刀51和定切刀52向右复位,压头57-2向上抬起复位。
六、由X轴模组21驱动Y轴模组22向右运动,进行第二条贴条作业。
七、再进行第一块布料贴条作业的同时,可以将第二块布料及模板摆放在位于右侧的工作面板12-2上。
以上所述的具体实施例,对本发明的目的、技术方案和有益效果进行了进一步详细说明,所应理解的是,以上所述仅为本发明的具体实施例而已,并不用于限制本发明,凡在本发明的精神和原则之内,所做的任何修改、等同替换、改进等,均应包含在本发明的保护范围之内。

Claims (10)

  1. 一种贴条机,其特征在于:包括工作台、X轴模组、Y轴模组、送料装置、压紧装置、剪切装置和放料组件;放料组件用于放置热熔胶膜条;X轴模组设置在工作台上,用于驱动Y轴模组在工作台上侧沿X轴方向左右运动;由Y轴模组驱动送料装置在工作台上侧沿Y轴方向上前后运动;送料装置包括主动送料组件、夹料组件和废料收料组件;夹料组件用于将热熔胶膜条夹住固定或松开;主动送料组件进行热熔胶膜条的输送送料,由废料收料组件将热熔胶膜条的隔离纸层收集;压紧装置设置在Y轴模组上,可在Y轴方向上前后运动,用于压紧热熔胶膜条的胶膜层的相应部位,使压紧热熔胶膜条的胶膜层贴在相应的布料上;剪切装置用于将紧热熔胶膜条切断。
  2. 根据权利要求1所述的贴条机,其特征在于:还包括定位装置;工作台包括主架体和设置在主架体上的台板组件;台板组件包括工作台板和工作面板;工作面板有两块,两块工作面板沿左右向并排设置工作台板上;两块工作面板均采用不锈钢板;定位装置有2组,2组定位装置的结构相同,均包括2个定位上下驱动气和定位压板;2组定位装置从左至右依次设置在工作台的上部后部上;定位装置的2个定位上下驱动气缸由其各自的缸体固定设置在工作台上,位于工作台板的下侧;定位装置的2个定位上下驱动气缸从左至右依次设置;2个定位上下驱动气缸的活塞杆向上伸,穿过工作台板,定位压板沿左右向固定设置在2个定位上下驱动气缸的活塞杆上,由定位上下驱动气缸驱动定位压板上下运动。
  3. 根据权利要求1或2所述的贴条机,其特征在于:所述Y轴模组设有Y轴第一型材和可在Y轴方向上前后运动的Y轴第一安装座板;Y轴第一型材沿前后向横跨设置在工作台的上侧上,由X轴模组驱动其沿X轴方向左右运动;
    主动送料组件包括送料驱动电机、主动送料第一同步带轮、主动送料同步带、主动送料第二同步带轮、主动送料安装座、送料压轮轴、送料压轮连杆、送料上压轮、送料下滚轮、送料弹簧架、送料调节螺钉、抬压轮杆、出料第一导向座和压紧弹簧;
    送料驱动电机由其电机壳固定设置在Y轴第一安装座板的中部上部上;送料驱动电机的电机轴沿左右向水平设置并向右伸出;主动送料第一同步带轮传动连接设置在送料驱动电机的电机轴上;主动送料安装座固定设置在Y轴第一安装座板的右侧中部上;送料压轮连杆的后端转动设置在主动送料安装座的后部上,转动轴沿左右向水平设置;送料压轮轴通过相应的轴承沿左右向转动设置在送料压轮连杆的前端上;送料压轮连杆的前端设有连接孔;主动送料第二同步带轮传动连接在送料压轮轴的左端上;主动送料同步带围绕主动送料第一同步带轮和主动 送料第二同步带轮设置;送料上压轮传动连接在送料压轮轴的右端上;送料弹簧架旋合固定在主动送料安装座的下侧前部上;送料下滚轮转动设在主动送料安装座上,位于送料上压轮的下方;压紧弹簧一端连接在送料弹簧架上,另一端连接在送料压轮连杆的连接孔中,处于伸长状态;压紧弹簧使送料上压轮从上向下将相应的热熔胶膜条夹紧在送料下滚轮上;送料调节螺钉从下向上旋合在主动送料安装座上,向上穿过主动送料安装座后,向上顶住送料压轮连杆的前端下部相应位置,用于调整送料上压轮与送料下滚轮之间的间隙大小;抬压轮杆沿与送料压轮连杆的转动轴垂直的方向固定设置在送料压轮连杆的后端上,用于将送料上压轮抬起后安装热熔胶膜条;出料第一导向座沿上下向固定设置在主动送料安装座的后部右部上,位于送料下滚轮的后方。
  4. 根据权利要求1或2所述的贴条机,其特征在于:所述Y轴模组设有Y轴第一型材和可在Y轴方向上前后运动的Y轴第一安装座板;Y轴第一型材沿前后向横跨设置在工作台的上侧上,由X轴模组驱动其沿X轴方向左右运动;
    夹料组件包括夹料上下驱动气缸、夹料夹驱动气缸、夹料直线导轨、夹料安装座、下夹板、上夹板、导料座、夹料导料轮和吹料气管;
    夹料上下驱动气缸由其缸体转动连接在Y轴第一安装座板的右侧中部上,位于主动送料组件的后方;夹料上下驱动气缸沿上下向设置,活塞杆向下伸出;夹料直线导轨由其导轨沿上下向固定设置在Y轴第一安装座板的右侧中部上,位于夹料上下驱动气缸的下方;夹料安装座固定设置在夹料直线导轨的滑块上;夹料上下驱动气缸的活塞杆与夹料安装座铰接连接;夹料夹驱动气缸由其缸体转动连接在夹料安装座的右侧上;下夹板固定设置在夹料安装座的右侧下部上;上夹板由其中部转动连接在料安装座的右侧上,位于下夹板的上方;上夹板的前端铰接连接在夹料夹驱动气缸的活塞杆上;由夹料夹驱动气缸驱动上夹板转动,使上夹板的上后端夹持部与下夹板的下后端夹持部形成可夹持结构;导料座沿前后向固定设置在夹料安装座的右侧下部上,位于下夹板的下后端夹持部的前方;夹料导料轮转动设置在夹料安装座的右侧下部前部上,位于导料座的前方;吹料气管固定设置在导料座的右侧上,出气口位于下夹板的下后端夹持部的下侧右部,吹料气管的出气口向后吹气。
  5. 根据权利要求1或2所述的贴条机,其特征在于:所述Y轴模组设有Y轴第一型材和可在Y轴方向上前后运动的Y轴第一安装座板;Y轴第一型材沿前后向横跨设置在工作台的上侧上,由X轴模组驱动其沿X轴方向左右运动;
    废料收料组件包括收料盘支撑轴、收料盘底板、收料左挡料盘、收料右挡料盘、第二可调阻尼联轴器、收料盘安装座和收料驱动组件;收料盘安装座固定设置在Y轴第一安装座板的前部上;
    收料盘支撑轴通过相应的轴承及轴承座沿左右向转动设置在收料盘安装座的下部上;收料盘底板右部设有隔档盘部;收料左挡料盘固定设置在收料盘底板上,位于收料盘底板的隔档盘部的左侧;收料右挡料盘可拆卸固定设置在收料盘支撑轴的右部上,位于收料盘底板的隔档盘部的右侧,与收料盘支撑轴传动连接;第二可调阻尼联轴器的锁紧轮固定设置在收料盘支撑轴上,与收料盘支撑轴传动连接;收料驱动组件包括收料电机、主皮带轮、从动皮带轮和传动圆带;收料电机由其电机壳沿左右向固定设置在收料盘安装座,其电机轴向右方伸出;主皮带轮传动设置在收料电机的电机轴上;从动皮带轮传动设置在第二可调阻尼联轴器的阻尼调节轮上;传动圆带围绕主皮带轮和从动皮带轮设置。
  6. 根据权利要求1或2所述的贴条机,其特征在于:送料装置还包括放料盘组件和导向轮组件;所述Y轴模组设有Y轴第一型材和可在Y轴方向上前后运动的Y轴第一安装座板;Y轴第一型材沿前后向横跨设置在工作台的上侧上,由X轴模组驱动其沿X轴方向左右运动;
    放料盘组件包括放料盘支撑轴、放料盘底板、左挡料盘、右挡料盘、第一可调阻尼联轴器、放料盘安装座和第一限位装置;放料盘安装座固定设置在Y轴第一安装座板的中部上部上;放料盘支撑轴通过相应的轴承及轴承座沿左右向转动设置在放料盘安装座的上部上;放料盘底板中部设有隔档盘部;左挡料盘和右挡料盘均固定设置在放料盘底板上,且分别位于放料盘底板的隔档盘部的左右两侧;第一可调阻尼联轴器的锁紧轮固定设置在放料盘支撑轴上,与放料盘支撑轴传动连接;
    第一限位装置包括限位抱箍和抱箍限位柱;限位抱箍夹紧固定在第一可调阻尼联轴器的阻尼调节轮上;限位抱箍下部设有贯穿其左右的开口向下的限位槽;抱箍限位柱沿左右向固定设置在放料盘安装座的左侧上部上,相应部位位于限位抱箍的限位槽中,对限位抱箍进行周向上的限位,防止其转动;
    导向轮组件包括第一导向轮;第一导向轮转动设置在Y轴第一安装座板上,其转动轴线沿左右向水平设置;第一导向轮位于放料盘组件与主动送料组件之间。
  7. 根据权利要求1或2所述的贴条机,其特征在于:送料装置还包括送料检测组件和导向轮组件;送料检测组件包括送料检测转轴、检测转轴安装座、检测导向轮、检测轴档座、检测弹簧钩座、检测限位固定挡柱、检测限位档杆、检测档板、检测连杆、检测连杆轴、检测连杆挡料圈、检测调节挡料圈、第一弹簧钩柱和检测复位弹簧;
    检测转轴安装座通过相应的连接板固定设置在Y轴第一安装座板的右侧下部上;送料检测转轴沿左右向转动设置在检测转轴安装座上,其左右两端均伸出检测转轴安装座外;
    检测轴档座有两个,两个检测轴档座按其所处的左右位置的不同分为左检测轴档座和右检测轴档座;
    左检测轴档座固定设置在送料检测转轴的左端上,与送料检测转轴传动连接;
    检测导向轮通过相应的轴承转动设置在送料检测转轴的右部上,右检测轴档座固定设置在送料检测转轴的右端上,与送料检测转轴传动连接,且在轴向上对检测导向轮进行限位;
    左检测轴档座和右检测轴档座在轴向上将送料检测转轴限位在检测转轴安装座上;
    检测弹簧钩座沿送料检测转轴的径向固定设置在左检测轴档座前侧上;第一弹簧钩柱沿左右向固定设置在Y轴第一安装座板的右侧下部上,位于检测弹簧钩座的前方;检测复位弹簧一端连接在检测弹簧钩座上,另一端连接在第一弹簧钩柱上,处于伸长状态,用于使送料检测转轴向前下方转动复位;
    检测限位档杆沿送料检测转轴的径向固定设置在左检测轴档座后侧上;检测限位固定挡柱沿左右向固定设置在Y轴第一安装座板的右侧下部上,位于送料检测转轴的后下方,从上方对检测限位档杆进行限位;检测档板沿送料检测转轴的径向传动设置在送料检测转轴的左端上;
    检测连杆沿送料检测转轴的径向传动设置在送料检测转轴的右端上;检测连杆轴沿左右向设置在检测连杆的前端上,其右端与检测连杆固定连接;检测连杆挡料圈固定设置在检测连杆轴的左端上;检测调节挡料圈可调节固定设置在检测连杆轴上,可以调节其与检测连杆挡料圈之间的距离,使之与相应的热熔胶膜条的宽度相对应;
    导向轮组件包括第二导向轮;第二导向轮转动设置在Y轴第一安装座板上,其转动轴线沿左右向水平设置;第二导向轮位于送料检测组件和废料收料组件之间。
  8. 根据权利要求1或2所述的贴条机,其特征在于:压紧装置包括压紧Y轴模组、压紧安装座、压脚、压脚驱动气缸、压脚安装轴和压脚驱动臂;所述Y轴模组设有Y轴第一型材和可在Y轴方向上前后运动的Y轴第一安装座板;Y轴第一型材沿前后向横跨设置在工作台的上侧上,由X轴模组驱动其沿X轴方向左右运动;
    压紧Y轴模组包括压紧驱动电机、压紧电机安装座、第一涨紧座、压紧第一同步带轮、压紧第二同步带轮和压紧同步带和直线导轨;
    压紧电机安装座固定设置在Y轴模组的Y轴第一型材的上侧后部上;压紧驱动电机沿左右向由其电机壳固定设置在压紧电机安装座的左侧上,其电机轴转动设置在压紧电机安装座上,相应部分位于压紧电机安装座中;压紧第一同步带轮 传动设置在压紧驱动电机的电机轴上,位于压紧电机安装座中;第一涨紧座固定设置在的Y轴第一型材的上侧前部上;压紧第二同步带轮转动设置在第一涨紧座中;压紧同步带围绕压紧第一同步带轮和压紧第二同步带轮设置;直线导轨的导轨沿前后向固定设置在Y轴第一型材的上侧上;直线导轨的导轨上从前至后依次设有三个滑块,三个滑块按其所处的前后位置从不同分为前滑块、中滑块和后滑块;
    压紧安装座上部固定设置在直线导轨的后滑块上;压紧安装座的上部左部通过相应的同步带夹板与压紧同步带传动连接;压紧安装座的中部下部与Y轴模组的Y轴第二滚轮滑块固定连接;Y轴模组的Y轴第一安装座板的上部与前滑块和中滑块固定连接;
    压脚安装轴由其中部转动设置在压紧安装座的右部下部上,压脚传动设置在压脚安装轴的右端上,压脚驱动臂传动设置在压脚安装轴的左端上;压脚驱动臂的后端设有贯穿其左右的沿前后向设置的腰圆形连接孔;压脚驱动气缸由其缸体沿上下向固定设置在压紧安装座上,其活塞杆向下伸出,活塞杆的下端铰接连接在压脚驱动臂的腰圆形连接孔中;从而由压脚驱动气缸驱动压脚转动,使压脚的前端向上抬起或向下将热熔胶膜条压紧固定在工作面板上。
  9. 根据权利要求1或2所述的贴条机,其特征在于:剪切装置包括动切刀、定切刀、切刀第一驱动组件、切刀第二驱动组件、切刀第一安装板和切刀安装座;所述Y轴模组设有Y轴第一型材和可在Y轴方向上前后运动的Y轴第一安装座板;Y轴第一型材沿前后向横跨设置在工作台的上侧上,由X轴模组驱动其沿X轴方向左右运动;
    切刀第二驱动组件采用带导杆气缸,带导杆气缸由其缸体固定设置在辅助顶杆组件的顶杆座的后侧上,其活塞杆沿左右向设置,并向右伸出;切刀第一安装板固定连接在带导杆气缸的活塞杆上;切刀安装座固定设置在切刀第一安装板的右侧下部上;
    切刀第一驱动组件包括切刀第一驱动气缸、切刀轴、切刀轴连接臂和顶紧弹簧;
    切刀第一驱动气缸由其缸体通过相应的连接座板固定设置在切刀第一安装板的右侧后部上;
    切刀轴转动设置在切刀安装座中,顶紧弹簧套在切刀轴上,处于压缩状态,顶紧弹簧的一端顶住切刀安装座的相应部位,另一端顶住设置在切刀轴上的C形卡圈,顶紧弹簧将切刀轴向前顶;
    切刀轴连接臂的一端传动连接在切刀轴的后端上,切刀轴连接臂的另一端铰接连接在切刀第一驱动气缸的活塞杆上;
    动切刀沿切刀轴径向固定设置在切刀轴的前端上,定切刀沿左右向固定设置在切刀安装座的前部上;从而切刀第一驱动气缸通过切刀轴连接臂驱动切刀轴转动,使动切刀与定切刀形成剪切机构。
  10. 根据权利要求8所述的贴条机,其特征在于:剪切装置还包括辅助顶杆组件;辅助顶杆组件包括顶杆、压头、顶杆座、顶杆驱动气缸和顶杆直线导轨;顶杆直线导轨有2个,2个顶杆直线导轨均由其各自的导轨沿上下向从前至后依次固定设置在Y轴第一安装座板的右侧后部上;顶杆座固定设置在2个顶杆直线导轨的滑块上,可以沿导轨上下运动;顶杆竖直固定设置在顶杆座上;压头可拆卸固定设置在顶杆的下端上,压头旋合固定设置在顶杆的下端上;顶杆驱动气缸通过相应的安装座固定设置在Y轴第一安装座板的后部上,其活塞杆向下伸出,活塞杆的下端铰接连接在顶杆座上,由顶杆驱动气缸驱动顶杆座沿顶杆直线导轨上下运动,从而使压头向上升起或向下将热熔胶膜条相应部位压紧固定在工作面板上。
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CN108936926B (zh) * 2018-10-12 2024-01-26 常州智谷机电科技有限公司 贴条机
CN109649745B (zh) * 2018-12-28 2024-02-02 浙江旭翔机械科技有限公司 用于灌装机的热熔胶条增覆装置
CN111605205B (zh) * 2020-05-30 2021-12-03 仙桃市银宏防护用品有限公司 防护服生产用缝口密封机、防护服生产工艺及防护服

Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN201021482Y (zh) * 2007-02-05 2008-02-13 京华超音波股份有限公司 热熔胶贴条贴合机
JP2010203018A (ja) * 2009-03-06 2010-09-16 Juki Corp ボンディング装置
CN104178941A (zh) * 2014-08-15 2014-12-03 上海富山精密机械科技有限公司 全自动取送料缝纫机
CN106963016A (zh) * 2016-12-28 2017-07-21 常州智谷机电科技有限公司 热熔贴条机
CN206462476U (zh) * 2016-12-28 2017-09-05 常州智谷机电科技有限公司 一种热熔贴条机
CN108455342A (zh) * 2018-02-08 2018-08-28 深圳市华安半导体有限公司东莞分公司 一种接料带机及接料带方法
CN108936926A (zh) * 2018-10-12 2018-12-07 常州智谷机电科技有限公司 贴条机
CN108936925A (zh) * 2018-10-12 2018-12-07 常州智谷机电科技有限公司 贴条机的送料装置

Family Cites Families (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106963017B (zh) * 2016-12-28 2019-03-19 常州智谷机电科技有限公司 压辊装置
CN208987877U (zh) * 2018-10-12 2019-06-18 常州智谷机电科技有限公司 一种贴条机

Patent Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN201021482Y (zh) * 2007-02-05 2008-02-13 京华超音波股份有限公司 热熔胶贴条贴合机
JP2010203018A (ja) * 2009-03-06 2010-09-16 Juki Corp ボンディング装置
CN104178941A (zh) * 2014-08-15 2014-12-03 上海富山精密机械科技有限公司 全自动取送料缝纫机
CN106963016A (zh) * 2016-12-28 2017-07-21 常州智谷机电科技有限公司 热熔贴条机
CN206462476U (zh) * 2016-12-28 2017-09-05 常州智谷机电科技有限公司 一种热熔贴条机
CN108455342A (zh) * 2018-02-08 2018-08-28 深圳市华安半导体有限公司东莞分公司 一种接料带机及接料带方法
CN108936926A (zh) * 2018-10-12 2018-12-07 常州智谷机电科技有限公司 贴条机
CN108936925A (zh) * 2018-10-12 2018-12-07 常州智谷机电科技有限公司 贴条机的送料装置

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113290363A (zh) * 2021-06-19 2021-08-24 东莞市鼎力自动化科技有限公司 一种全自动背光组装设备
CN113290363B (zh) * 2021-06-19 2024-05-28 东莞市鼎力自动化科技有限公司 一种全自动背光组装设备
GB2614225A (en) * 2021-09-01 2023-07-05 Hop Lun Brands Ltd A system for applying an adhesive layer to a fabric or textile
CN114348659A (zh) * 2021-12-15 2022-04-15 安徽精菱玻璃机械有限公司 一种大型件输送用导向组件及大型件中转装置
CN114166341A (zh) * 2022-01-04 2022-03-11 安徽中科谱锐达光电有限公司 一种用于太阳光度计的试验转台装置

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