CN221477766U - Non-bundling heat-sealing packaging equipment for gloves - Google Patents
Non-bundling heat-sealing packaging equipment for gloves Download PDFInfo
- Publication number
- CN221477766U CN221477766U CN202322872665.9U CN202322872665U CN221477766U CN 221477766 U CN221477766 U CN 221477766U CN 202322872665 U CN202322872665 U CN 202322872665U CN 221477766 U CN221477766 U CN 221477766U
- Authority
- CN
- China
- Prior art keywords
- film
- cutter
- rod
- frame
- vertical
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Active
Links
Landscapes
- Basic Packing Technique (AREA)
Abstract
The utility model discloses a glove non-binding heat-sealing packaging device which comprises a frame, a film feeding component, a film cutting component and a conveying belt component, wherein the film feeding component is hung on the upper portion of the frame and used for releasing a wound heat-shrinkable film, the feeding component is sequentially fixed on the middle portion of the frame along the advancing direction of the heat-shrinkable film and used for conveying folded gloves into the heat-shrinkable film, the film cutting component is used for cutting the heat-shrinkable film and sealing the heat-shrinkable film, the conveying belt component is used for conveying the heat-sealed gloves, one side of the conveying belt component is fixed with a film pulling component which pulls the heat-shrinkable film to be cut to a position to be cut, the lower portion of the frame is fixed with a film collecting component which is used for winding the cut and residual film, the outer side of the feeding component is fixed with a rotary table component which is used for conveying the folded gloves into the feeding component, and the frame is also fixed with a control cabinet component. The non-binding heat-sealing glove packaging equipment provided by the utility model can package the folded glove without binding, and saves binding and transferring procedures.
Description
Technical Field
The utility model belongs to the field of glove packaging, and particularly relates to non-bundling heat-sealing packaging equipment for gloves.
Background
The existing glove heat-shrinkable packaging equipment needs to be folded manually and then bundled, and then manually placed into the heat-shrinkable packaging equipment for heat-shrinkable packaging. The manual bundling efficiency is low, the cost is high, and the heat shrinkage packaging can be completed only by two working procedures, (1) the glove is firstly bundled manually and then put into a transfer basket to be carried to a heat shrinkage device; (2) Then the tied gloves are put into the thermal shrinkage equipment one by manpower; the existing packaging equipment has low efficiency, high cost, low speed and low yield.
Chinese patent CN211468987U discloses a film sealing device of a heat shrink film packaging machine, which is a general heat shrink film packaging device, and if used for packaging folded gloves, the folded gloves need to be bundled by a bundling machine to be packaged; the film feeding mode is that the film is fed in the side direction, the film feeding direction and the film drawing direction form 90 degrees, the film drawing resistance is high, and the film drawing bias condition is easy to occur; the feeding mode is that the articles to be packaged are placed on a front conveyor belt, and are sent to the position to be packaged by the conveyor belt; the film cutting mode is a shear type film cutting mode, and the cutter component cannot move; the rear conveyor belt of the apparatus is not movable.
Disclosure of utility model
Aiming at the problems in the prior art, the utility model provides a glove non-bundling heat-sealing packaging device which can package folded gloves by putting the folded gloves into a glove pressing mechanism without bundling, thereby saving bundling and transferring procedures.
The utility model relates to a glove non-binding heat-sealing packaging device which comprises a frame, a film feeding component, a film cutting component and a conveying belt component, wherein the film feeding component is hung on the upper portion of the frame and used for releasing a wound heat-shrinkable film, the feeding component is sequentially fixed on the middle portion of the frame along the advancing direction of the heat-shrinkable film and used for conveying folded gloves into the heat-shrinkable film, the film cutting component is used for cutting the heat-shrinkable film and sealing the heat-shrinkable film, the conveying belt component is used for conveying the heat-sealed gloves, one side of the conveying belt component is fixed with a film pulling component which is used for pulling the heat-shrinkable film to be cut to a position to be cut, the lower portion of the frame is fixed with a film collecting component which is used for winding the cut and remaining film, the outer side of the feeding component is fixed with a rotary table component which is used for conveying the folded gloves into the feeding component, and the frame is also fixed with a control cabinet component.
Further, the frame includes cuboid frame and the back of the body frame of connection in frame one side top, back of the body frame top is fixed with and stretches out towards the direction of frame and be used for fixing two first branches that are parallel to each other of switch board subassembly, the below of inboard first branch is equipped with and is parallel to first branch and is used for fixing the second branch of material loading subassembly, be fixed with the installing support that is used for supporting the membrane module of sending on the back of the body frame next to second branch, the frame includes inside casing, frame and the side frame of connecting inside casing and frame, the back of the body frame is fixed in the inside casing top, be equipped with the first extension board that is used for fixing conveyer belt subassembly and cutting membrane module on the inside casing of the below of first branch, be equipped with the second extension board that is used for fixing the membrane module of drawing on the frame that corresponds with the position of first extension board, the middle part of frame is fixed with towards the equipment outside and is used for fixing the third branch of carousel subassembly, the frame bottom (for example be close to the one side of sending membrane module) is equipped with the fourth branch that is used for fixing the membrane module of receiving, the frame top that keeps away from the second extension board is equipped with the fifth that cooperates the material loading subassembly with second branch.
Further, the film feeding component comprises two parallel film blocking rods suspended below the mounting bracket, a supporting rod for erecting a coiled heat-shrinkable film is connected between the film blocking rods, the heat-shrinkable film is connected above the two parallel film feeding rollers, the film feeding rollers are fixed on the frame through the roller mounting bracket, the film feeding rollers are connected with an output shaft of a film feeding motor through a film feeding transmission chain, a film supporting rod parallel to the mounting bracket is connected on the frame outside the heat-shrinkable film, a film supporting balance rod is rotationally connected on the film supporting rod, a film supporting ejector rod is vertically connected at the free end of the film supporting balance rod, the position of the film supporting balance rod close to the heat-shrinkable film is connected with a film feeding balance block through the film feeding connecting rod, the film feeding connecting rod is simultaneously vertical to the film supporting balance rod and the film supporting ejector rod, the inner side of the film supporting balance rod is provided with an arc film feeding sensor mounting bracket, the bending direction of the film feeding sensor mounting bracket partially coincides with the rotation track of the film supporting balance rod, the outer end of the film feeding sensor mounting bracket is provided with a film supporting balance bar original position sensor for sensing a film supporting balance bar, one end of the film feeding sensor mounting bracket, which is far away from the film supporting balance bar original position sensor, is provided with a film supporting balance bar in-place sensor for sensing the film supporting balance bar, the film supporting balance bar original position sensor, the film supporting balance bar in-place sensor and a film feeding motor are connected with a control cabinet assembly, a heat shrinkable film is fed out from a film feeding roller, and sequentially passes through a film dragging mechanism, a feeding transfer mechanism, a feeding assembly and a driving belt assembly and a film pulling assembly after changing direction, is wound on a frame above the film feeding motor, the needle roller mechanism comprises a needle roller positioning mechanism connected with the frame, a needle roller protecting cover connected with the needle roller positioning mechanism through a first rotating shaft, the needle roller protecting cover rotates around the first rotating shaft, the needle wheel protective cover is rotationally connected with a needle wheel, the outer periphery of the needle wheel is fixedly provided with an axial needle, the tip end of the needle is pricked into a heat shrinkage film on the film feeding roller (when the film feeding roller releases the heat shrinkage film, the needle is pricked into the heat shrinkage film to prevent the heat shrinkage film from rotating), a first needle positioning column is arranged in the needle positioning mechanism, a second needle positioning column is arranged in the needle wheel protective cover below the needle wheel, a first tension spring is connected between the first needle positioning column and the second needle positioning column, the first tension spring is connected with the needle positioning mechanism and the needle wheel protective cover through the first needle positioning column and the second needle positioning column, the needle wheel is pressed against the film feeding roller through the pressure provided by the first tension spring, and the needle of the needle mechanism is pricked into the heat shrinkage film, and the needle wheel rotates along with the rotation when the film feeding roller rotates; the heat shrinkage film enters the film pulling assembly through the film supporting balance rod, and when the film pulling assembly starts film pulling, the film supporting balance rod is driven to swing leftwards; when the film supporting balance rod in-place sensor is triggered, the film feeding motor is started, the film feeding roller is driven to rotate through the transmission chain, and the film feeding roller drives the heat shrinkage film to rotate to release the heat shrinkage film; when the heat shrinkage film is released, the film supporting balance rod is driven by the film conveying balance block, and when the film supporting balance rod swings rightwards and triggers the film supporting balance rod original point sensor, the film conveying motor stops running, and the heat shrinkage film is released.
Further, the feeding assembly comprises a vertical sliding rail fixedly connected with the frame, a vertical feeding mechanism sliding along the vertical sliding rail, a transverse sliding rail vertical to the vertical sliding rail and fixedly connected with the frame and a transverse feeding mechanism sliding along the transverse sliding rail, the vertical feeding mechanism comprises a first vertical rod which is in sliding connection with the vertical sliding rail, a vertical rod which is vertically connected with the vertical rod and a second vertical rod which is vertically connected with the vertical rod and is fixed on the turntable device, a connecting point of the vertical rod and the second vertical rod is positioned at the center of the turntable device, the vertical sliding rail is connected with a first cylinder barrel of a vertical feeding cylinder, the first vertical rod is connected with a first telescopic rod of the vertical feeding cylinder, one end of the second vertical rod far away from the center of the turntable device is fixed with a glove clamping cylinder, The second telescopic rod of the glove clamping cylinder is connected with a glove clamping mechanism, the glove clamping mechanism comprises a folded glove pressing arm, the folding point of the folded glove pressing arm rotates around a rotating shaft, the rotating shaft is fixed on a second vertical rod, when a glove on the placing position of the turntable rotates to the top end of the glove clamping cylinder, the second telescopic rod of the glove clamping cylinder stretches out, the glove pressing arm is close to the glove, the glove is pressed between the glove pressing arm and a glove pressing baffle, and when the second telescopic rod retracts, the glove pressing arm is far away from the glove pressing mechanism; A vertical feeding cylinder original point sensor is fixed at one end of the first cylinder barrel, which is close to the first telescopic rod, and a vertical feeding cylinder in-place sensor is fixed at one end of the first cylinder barrel, which is far away from the vertical feeding cylinder original point sensor; The transverse feeding mechanism comprises a first transverse rod which is connected onto a transverse sliding rail in a sliding manner, an L-shaped push plate which is vertically connected with the first transverse rod, a glove push plate is fixed at one end of the L-shaped push plate, which is far away from the first transverse rod, the first transverse rod is connected with a third telescopic rod of a transverse feeding cylinder, a transverse feeding cylinder in-place sensor is fixed at one end of the transverse feeding cylinder, which is far away from the transverse feeding cylinder in-place sensor, a transverse feeding cylinder original point sensor is fixed at one end of the transverse feeding cylinder, which is far away from the transverse feeding cylinder in-place sensor, a feeding transfer mechanism is fixed below the vertical feeding mechanism, the feeding transfer mechanism comprises a flat plate arranged below the L-shaped push plate and a hollow cuboid structure connected with the flat plate, The glove pushing plate is positioned in the cuboid structure, one side of the cuboid structure facing the conveyor belt assembly and one side of the glove pushing plate facing the turntable device are respectively opened, the opening on one side facing the turntable device enables the glove to be packaged to be pushed into the feeding transfer mechanism through the vertical feeding mechanism, the opening on one side facing the conveyor belt assembly enables the glove to be packaged in the cuboid structure to be pushed onto the conveyor belt through the transverse feeding mechanism, the feeding transfer mechanism separates the double-layer heat-shrinkable film into single-layer heat-shrinkable films, and the single-layer heat-shrinkable films respectively pass through the upper part and the lower part of the feeding transfer mechanism; When the glove to be packaged on the material placing position of the turntable rotates to the top end of the glove clamping cylinder, the second telescopic rod of the glove clamping cylinder stretches out, the glove pressing arm is close to the glove, the glove is pressed between the glove pressing arm and the glove pressing baffle plate, then the first telescopic rod of the vertical feeding cylinder retracts to drive the vertical feeding mechanism to move towards the direction close to the frame, meanwhile, the glove to be packaged is pushed into the cuboid structure, the first telescopic rod stretches out, the first telescopic rod drives the vertical feeding mechanism to move towards the direction far away from the frame, the second telescopic rod retracts, the glove pressing arm is far away from the glove pressing mechanism, the third telescopic rod stretches out, the L-shaped pushing plate is driven by the third telescopic rod through the first transverse rod to push the glove to be packaged in the cuboid structure onto the conveying belt, the cutter assembly falls down, the transverse cutter and the vertical cutter cut and heat-seal the heat shrinkage film, and the glove after heat sealing is carried out by the conveyor belt.
Further, the film cutting assembly comprises a sliding plate fixedly connected (such as in bolt connection) with the first support plate, a cutter assembly installation upright post is fixed above the sliding plate (such as on one side close to an inner frame of the frame), the cutter installation upright posts are connected with the sliding plate through bolts, sliding rails in the vertical direction are respectively arranged on the vertical edges on two sides of the cutter assembly installation upright posts, a cutter up-and-down sliding assembly moving along the sliding rails is connected on the sliding rails, the cutter up-and-down sliding assembly is connected with a cutter assembly installation frame, the cutter assembly installation frame comprises a vertical cutter assembly installation frame and a transverse cutter assembly installation frame, the vertical cutter assembly installation frame is respectively connected with the cutter up-and-down sliding assembly, the transverse cutter assembly installation frame is connected with the two vertical cutter assembly installation frames, A cutter assembly is fixed below the cutter assembly mounting frame, an L-shaped cutter pad which is consistent with the cutting shape of the cutter assembly is arranged on a sliding plate below the cutter assembly, a cutter assembly control board is also connected between the two vertical cutter assembly mounting frames, a horizontal cylinder mounting bracket is fixed on one side of the cutter assembly mounting upright column facing the cutter assembly, a film cutting cylinder is fixed above the cylinder mounting bracket, a film cutting cylinder original point sensor is fixed on the top end of the film cutting cylinder, a film cutting cylinder in-place sensor is fixed on the bottom end of the film cutting cylinder, a film cutting telescopic rod of the film cutting cylinder is connected with the cutter assembly control board, the film cutting telescopic rod stretches up and down to drive the cutter assembly control board to move up and down, Thereby controlling the movement of the cutter assembly mounting frame and finally controlling the cutter assembly to move up and down, wherein a film pressing cylinder is fixed on the side edge of the cutter assembly mounting upright post, the top end of the film pressing cylinder is fixed with a film pressing cylinder original point sensor, the bottom end of the film pressing cylinder is fixed with a film pressing cylinder in-place sensor, the film pressing cylinder is positioned between the cutter assembly control board and the transverse cutter assembly mounting frame, the free end of a film pressing telescopic rod of the film pressing cylinder is connected with a film pressing mechanism, the film pressing mechanism comprises a film pressing plate vertically connected with the film pressing telescopic rod, the film pressing mechanism moves up and down under the driving of the film pressing telescopic rod, the cutter assembly comprises an L-shaped integral cutter fixed below the cutter assembly mounting frame, the L-shaped integral cutter comprises a vertical cutter connected below the vertical cutter assembly mounting frame close to the film feeding assembly and a transverse cutter fixed below the transverse cutter assembly mounting frame, The length direction of the vertical cutter is consistent with the length direction of the vertical cutter assembly mounting frame, the length direction of the horizontal cutter is consistent with the length direction of the horizontal cutter assembly mounting frame, the edges of the vertical cutter and the horizontal cutter are opposite to the L-shaped cutter pad, the inner side (the side facing the folding glove) of the vertical cutter is provided with a vertical cutter inner guard plate, the outer side of the vertical cutter is provided with a vertical cutter outer guard plate, the inner side of the horizontal cutter is provided with a horizontal cutter inner guard plate, the outer side of the horizontal cutter is provided with a horizontal cutter outer guard plate, a plurality of radiating holes are uniformly distributed on the vertical cutter inner guard plate, the vertical cutter outer guard plate, the horizontal cutter inner guard plate and the horizontal cutter outer guard plate are provided with a vertical cutter temperature sensor and a vertical cutter heating pipe (such as an electric heating pipe), The transverse cutter is provided with a transverse cutter temperature sensor and a transverse cutter heating pipe, one or more (for example, three) threaded holes for the cutter positioning screw rod to penetrate are respectively formed in the vertical cutter assembly mounting frame and the transverse cutter assembly mounting frame, the cutter positioning screw rod penetrates through the threaded holes and then is connected with an L-shaped integrated cutter, a guard plate fixing mechanism is respectively connected between the vertical cutter inner guard plate and the vertical cutter outer guard plate and between the transverse cutter inner guard plate and the transverse cutter outer guard plate, the guard plate fixing mechanism can be a slat for example, guard plate positioning columns penetrating through the vertical cutter assembly mounting frame and the transverse cutter assembly mounting frame are arranged between the adjacent cutter positioning screw rods, the bottom ends of the guard plate positioning columns penetrate through the vertical cutter assembly mounting frame and the transverse cutter assembly mounting frame and then are connected with the guard plate fixing mechanism, The guard plate fixing mechanism is arranged between the cutter positioning screw rods, and guard plate compression springs are connected to guard plate positioning columns between the vertical cutter assembly mounting frame and the transverse cutter assembly mounting frame and the guard plate fixing mechanism in a penetrating manner.
Further, the conveyor belt assembly is fixed on the sliding plate below the cutter assembly mounting frame, the conveyor belt assembly comprises a conveyor belt tensioning roller, a conveyor belt driving roller and a conveyor belt sleeved on the conveyor belt tensioning roller and the conveyor belt driving roller and rotating along the advancing direction of the heat-shrinkable film, the conveyor belt is positioned at the inner side of the L-shaped cutter pad, the conveyor belt is flush with the L-shaped cutter pad, the conveyor belt tensioning roller is positioned below the cutter assembly mounting frame, the conveyor belt driving roller is connected with the output shaft of the conveyor belt driving speed regulating motor through a conveyor belt driving chain, two sides of the conveyor belt are respectively provided with a conveyor belt left side plate and a conveyor belt right side plate which are fixed on the sliding plate, wherein the conveyor belt left side plate is arranged at one side close to the cutter assembly mounting upright post, a second film positioning rod parallel to the conveyor belt tensioning roller is fixed on the frame at the outer side of the conveyor belt tensioning roller, the lower part of the sliding plate is provided with a sliding plate moving screw rod and a sliding component, the sliding plate moving screw rod is movably connected to the sliding plate through a screw rod transmission mechanism, the length direction of the sliding plate moving screw rod is vertical to the conveying direction of the heat shrinkage film, the screw rod transmission mechanism is of a plate-shaped structure with threaded holes, the screw rod transmission mechanism is vertically connected with the sliding plate, two ends of the sliding plate moving screw rod are rotationally connected to screw rod positioning bearings in a penetrating manner, the screw rod positioning bearings are fixed on a frame, one end of the sliding plate moving screw rod, far away from a cutter component mounting upright post, is connected with a screw rod rocking handle, the sliding component comprises rod-shaped optical axis sliding rails arranged on two sides of the sliding plate moving screw rod, the optical axis sliding rail is parallel to the sliding plate moving screw rod, a sliding block fixedly connected with the sliding plate is connected to the optical axis sliding rail in a penetrating manner, two ends of the optical axis sliding rail are fixedly provided with optical axis positioning brackets, the optical axis positioning brackets are fixedly arranged on positioning bracket mounting seats, the locating support mount pad is fixed in the frame, rotates the sliding plate and removes the lead screw, under the interact of lead screw drive mechanism's screw thread and lead screw thread, the sliding plate removes along the optical axis slide rail through the slider, cutter assembly and conveyer belt subassembly that are fixed in on the sliding plate remove together, because the direction of delivery of pyrocondensation membrane does not change, when the position of sliding plate changes, the position of vertical cutter and horizontal cutter changes, consequently change the size of pyrocondensation membrane of cutting, the pyrocondensation membrane is the bilayer membrane of fifty percent discount, vertical cutter and horizontal cutter can be by the heat-seal in the cutting position of pyrocondensation membrane.
Further, the film pulling assembly comprises a servo film pulling motor fixed on the frame, the servo film pulling motor is connected with the foot switch, an output shaft of the servo film pulling motor is connected with a first driving synchronous wheel, the first driving synchronous wheel is connected with a second driving synchronous wheel through a film pulling transmission synchronous belt, a first transmission gear and a lower driving wheel are connected on a central shaft of the second driving synchronous wheel, a second transmission gear is meshed on the first transmission gear, an upper driving wheel is connected on a central shaft of the second transmission gear, the lower driving wheel is connected with a lower tensioning wheel through a lower film pulling synchronous belt, the upper driving wheel is connected with the upper tensioning wheel through an upper film pulling synchronous belt, a lower positioning wheel is arranged between the lower driving wheel and the lower tensioning wheel, an upper positioning wheel is arranged between the upper driving wheel and the upper tensioning wheel, and the upper driving wheel, the lower driving wheel, the upper tensioning wheel and the lower tensioning wheel are fixed on a synchronous wheel fixing plate; when the servo film drawing motor rotates clockwise, the first driving synchronous wheel is driven to drive the second driving synchronous wheel through the film drawing transmission synchronous belt; the second driving synchronous wheel drives the first transmission gear and the lower driving wheel to synchronously rotate clockwise; the first transmission gear drives the second transmission gear and the upper driving wheel to synchronously rotate anticlockwise; the lower driving wheel drives the lower tensioning wheel to rotate clockwise through the pull-down film synchronous belt; the upper driving wheel drives the upper tensioning wheel to rotate anticlockwise through the upper film pulling synchronous belt, the cut heat-shrinkable film is clamped between the lower film pulling synchronous belt and the upper film pulling synchronous belt, the cut heat-shrinkable film moves towards the film collecting assembly under the driving of the upper tensioning wheel, the lower tensioning wheel, the upper driving wheel and the lower driving wheel, a third film positioning rod, a fourth film positioning rod and a fifth film positioning rod are sequentially fixed on a frame below the film pulling assembly along the advancing direction of the cut heat-shrinkable film, and the cut heat-shrinkable film is sequentially wound on a film rolling supporting rod after being sent out from the position between the lower film pulling synchronous belt and the upper film pulling synchronous belt and sequentially passes through the third film positioning rod, the fourth film positioning rod, the fifth film positioning rod and the film collecting ejector rod which are fixed on the frame.
Further, the film collecting assembly comprises a film collecting assembly mounting frame fixed on the frame, a film collecting motor is fixed on the film collecting assembly mounting frame, an output shaft of the film collecting motor is connected with a film collecting structure for collecting and cutting the post-heat-shrinkable film through a film collecting transmission chain, the film collecting structure comprises a film collecting rotating shaft connected with the film collecting transmission chain, two parallel film collecting baffles are fixed on the film collecting rotating shaft, the film collecting baffles can be circular, a plurality of film collecting supporting rods for winding the post-cutting heat-shrinkable film are fixed between the film collecting baffles, film collecting balancing rods are vertically connected on the film collecting rotating shaft, the film collecting balancing rods are fixed on the film collecting rotating shaft between the film collecting assembly mounting frame and the film collecting baffles, one end of the film collecting balancing rod away from the film collecting rotating shaft is vertically connected with a film collecting push rod for changing the post-heat-shrinkable film direction after cutting, the film collecting balancing rods are connected with a film collecting balancing block through the film collecting connecting rods, an arc-shaped film collecting sensor mounting bracket is fixed on a film collecting assembly mounting bracket below the film collecting structure, the bending direction of the film collecting sensor mounting bracket partially coincides with the rotation track of the film collecting balance bar, the outer end of the film collecting sensor mounting bracket is provided with a film collecting balance bar original position sensor for sensing the film collecting balance bar, one end, opposite to the film collecting balance bar original position sensor, of the film collecting sensor mounting bracket is provided with a film collecting balance bar in-place sensor for sensing the film collecting balance bar, when the film collecting balance bar swings rightwards to trigger the film collecting balance bar original position sensor, a film collecting motor is started to drive the film collecting balance bar to swing leftwards, when the film collecting balance bar swings leftwards to trigger the film collecting balance bar in-place sensor, the film collecting motor stops, and after cutting, the heat-shrinkable film sequentially passes through a third film positioning rod, a fourth film positioning rod and a fourth film positioning rod, the third film positioning rod and the third film positioning rod are fixed on a frame after being sent out from an upper driving wheel and a lower driving wheel, the fourth film positioning rod, the first film positioning rod and the film collecting ejector rod are wound on the film rolling supporting rod.
Further, the turntable assembly comprises a turntable assembly fixing plate fixed on the third supporting rod, a speed regulating motor is fixed on the turntable assembly fixing plate, an output shaft of the speed regulating motor is connected with a turntable speed reducer through a transmission chain, the transmission chain is connected with a chain tensioning mechanism, an output shaft of the turntable speed reducer is connected with a turntable device, an output shaft of the turntable speed reducer is vertically upwards, the turntable device is vertically connected with the output shaft of the turntable speed reducer, for example, when the speed regulating motor is started, the turntable speed reducer and the turntable device coaxially connected with the turntable speed reducer are driven to rotate through the transmission chain, turntable placing positions extending out of the turntable device are arranged on the periphery of the turntable device, for example, the turntable placing positions can be rectangular plates, for example, the number of turntable placing positions can be 6, the turntable placing positions are evenly distributed around the turntable device, gloves to be packaged are placed on the turntable placing positions, when the rotary table discharging level rotates to a position opposite to the feeding component, the glove to be packaged on the rotary table discharging level is conveyed to the feeding component through the rotary table discharging level, a rotary table discharging level detection sensor is arranged below the rotary table device, the rotary table discharging level detection sensor, a speed regulating motor and a rotary table speed reducer are all connected with the control cabinet component, a glove pressing mechanism for pressing the folded glove is fixed on the rotary table discharging level (for example, the glove pressing mechanism comprises a glove pressing baffle plate fixed on the rotary table discharging level, a positioning column is fixed on the outer side surface (the side where the glove to be packaged is placed) of the glove pressing baffle plate, two parallel positioning plates are fixed on the glove pressing baffle plate above the positioning column, a second rotating shaft is arranged on the positioning plate, a glove pressing plate extending to the inner side of the glove pressing baffle plate is connected on the second rotating shaft in a penetrating way, the glove pressing plate comprises a straight plate which rotates around a second rotation shaft and is perpendicular to the glove pressing baffle plate and a flat plate which is connected with the straight plate and is perpendicular to the straight plate in the length direction, a round hole is formed in the glove pressing plate which is positioned on the outer side of the glove pressing baffle plate, a second tension spring is connected between the round hole and the positioning column, the glove pressing plate rotates around the second rotation shaft under the tension force provided by the second tension spring, and the glove pressing plate presses the glove to be packaged by means of the pressure provided by the second tension spring.
Further, the switch board subassembly includes the switch board, the switch board top is equipped with the alarm that is used for fault alarm, the switch board front (towards operating personnel's one side) is equipped with the touch-sensitive screen, the touch-sensitive screen top is equipped with the horizontal cutter temperature controller that is used for controlling horizontal cutter temperature and the vertical cutter temperature controller that is used for controlling vertical cutter temperature, the touch-sensitive screen left side is equipped with the conveyer belt driving motor speed regulator that is used for controlling the functioning speed of conveyer belt and is used for controlling carousel device's carousel driving motor speed regulator, the touch-sensitive screen below is equipped with scram switch, scram switch presses and cuts off all outputs, the touch-sensitive screen is touch and PLC all-in-one, the membrane cutting cylinder home position sensor, moulding die cylinder home position sensor, receipts membrane balancing pole home position sensor, horizontal material cylinder home position sensor, vertical material loading cylinder home position sensor, vertical material cylinder home position sensor, membrane supporting balancing pole home position sensor, membrane balancing pole position sensor, membrane balancing position sensor, the temperature sensor, the horizontal control switch all connects with the cutter temperature sensor.
The machine frame, the conveyor belt assembly, the film cutting assembly, the film pulling assembly, the film collecting assembly, the rotary table assembly, the feeding assembly, the film conveying assembly and the control cabinet assembly are made of steel materials, preferably stainless steel materials, the machine frame can be made of steel materials, the rotary table device can be made of aluminum alloy, the rest parts except the conveyor belt assembly are made of stainless steel materials, and the components in contact with the gloves.
The utility model relates to a glove non-bundling heat-sealing packaging device, which comprises the following steps:
(1) Placing the glove to be packaged in a turntable discharging position on a turntable device, and then pressing the glove by using a glove pressing mechanism;
(2) The servo film pulling motor is started by pressing the foot switch, and the turntable device is started to rotate at the same time, and after the turntable feeding level detection sensor is triggered; a glove clamping cylinder fixed on the vertical feeding mechanism pushes out the second telescopic rod to drive the glove pressing arm to clamp the glove to be packaged;
(3) The first telescopic rod is retracted by the vertical feeding cylinder, the vertical feeding mechanism and the glove clamping mechanism are driven to move towards the feeding transfer mechanism, and the glove to be packaged is pushed into the cuboid structure of the feeding transfer mechanism from the glove pressing mechanism;
(4) When the in-place sensor of the vertical feeding cylinder is triggered, the vertical feeding cylinder pushes out the first telescopic rod to drive the vertical feeding mechanism to retract; when the vertical feeding cylinder original point sensor is triggered, the transverse feeding cylinder pushes out a third telescopic rod, the third telescopic rod drives the transverse feeding mechanism to move, and the glove to be packaged in the feeding transfer mechanism is pushed into a heat-shrinkable film which is pulled by the film pulling assembly on the conveyor belt through the transverse feeding mechanism;
(5) When the sensor in place of the transverse feeding cylinder is triggered, the film pressing cylinder above the conveyor belt pushes out, and the film pressing mechanism is driven to press the glove to be packaged;
(6) When the in-place sensor of the film pressing cylinder is triggered, the transverse feeding cylinder withdraws the third telescopic rod to drive the transverse feeding mechanism to withdraw;
(7) When the original point sensor of the transverse material cylinder is triggered, the film cutting cylinder is pushed out to drive the cutter assembly to press down to finish heat sealing packaging, the heat sealing packaging is finished, the film cutting cylinder is retracted, and the cut heat shrinkage film is wound on the film collecting assembly after being pulled by the film pulling assembly;
(8) When the original point sensor of the film cutting cylinder is triggered, the conveyor belt drives the speed regulating motor to start, the conveyor belt is driven to operate, and the glove packaged by heat sealing is sent into the heat shrinkage oven.
The utility model has the beneficial effects that:
The non-binding heat-sealing packaging equipment for the gloves can be used for efficiently and quickly packaging the workpieces which are folded into blocks of non-binding gloves by sealing films, and the film feeding direction of the equipment is parallel to the film pulling direction, so that the film pulling resistance is small; the device is used for lateral feeding, and gloves to be packaged are pushed into the positions to be packaged of the conveyor belt through the lateral feeding cylinder and the vertical feeding cylinder; the cutter assembly can move back and forth to adjust the width of the cut film; the equipment adopts a servo motor to draw films, and sets different pulse numbers for gloves to be packaged with different lengths by setting the pulse number quantitative film drawing of the servo film drawing motor; the conveyor belt component and the cutter component are simultaneously fixed on the sliding plate, so that synchronous movement of the conveyor belt and the cutter component is realized.
Drawings
Fig. 1: the utility model relates to an overall structure schematic diagram of a glove non-bundling heat-sealing packaging device.
Fig. 2: the film cutting component part structure of the utility model is schematically shown.
Fig. 3: the belt assembly of the present utility model is partially schematic in construction.
Fig. 4: the drawing film component part structure of the utility model is schematically shown.
Fig. 5: the membrane collecting assembly is partially structurally schematic.
Fig. 6: the turntable assembly part of the utility model is schematically shown in structure.
Fig. 7-1: the feeding component part structure of the utility model is schematically shown.
Fig. 7-2: fig. 7-1 is a top view.
Fig. 8: the film feeding component part structure of the utility model is schematically shown.
Fig. 9: the control cabinet assembly of the utility model is partially schematic.
Fig. 10: the frame part structure of the utility model is schematically shown.
Fig. 11: the cutter assembly part of the utility model is schematically shown in structure.
Fig. 12: and a part of the vertical feeding mechanism is schematically shown in the structure.
Fig. 13: and a part of the structure schematic diagram of the transverse feeding mechanism.
Fig. 14: the glove pressing mechanism is structurally schematic.
Fig. 15: the structure of the needle roller mechanism is schematically shown.
Fig. 16: the sliding component is structurally schematic.
Fig. 17-1: the trend of the cut heat-shrinkable film is shown in the first schematic drawing.
Fig. 17-2: and the cut heat shrinkage film moves to a second schematic drawing.
Fig. 18: a schematic of a portion of the conveyor belt and cutter assembly.
Reference numerals:
1. A frame, 2, a film cutting component, 3, a conveyor belt component, 4, a film pulling component, 5, a film collecting component, 6, a turntable component, 7, a feeding component, 8, a film feeding component, 9, a control cabinet component, 10 and a foot switch,
11. A first support rod, 12, a first support plate, 13, a second support plate, 14, a third support rod, 15, a fourth support rod, 16, a fifth support rod, 17, a second support rod, 19, a mounting bracket,
20. The cutter assembly comprises a column, 201, a slide rail, 21, a cutter up-down sliding assembly, 22, a cutter assembly mounting frame, 221, a vertical cutter assembly mounting frame, 222, a transverse cutter assembly mounting frame, 223, a cutter assembly control board, 23, a film pressing mechanism, 24, an L-shaped cutter pad, 25, a cutter assembly, 26, a film pressing cylinder, 261, a film pressing cylinder original point sensor, 262, a film pressing cylinder in-place sensor, 27, a cylinder mounting bracket, 28, a film cutting cylinder, 281, a film cutting cylinder original point sensor, 282, a film cutting cylinder in-place sensor, 29 and a sliding plate,
30. A conveyor belt, 31, a conveyor belt left side plate, 32, a conveyor belt tensioning roller, 33, a conveyor belt right side plate, 34, a sliding plate moving screw rod, 341, a screw rod positioning bearing, 342, a screw rod transmission mechanism, 35, a sliding component, 351, an optical axis sliding rail, 352, a sliding block, 353, an optical axis positioning bracket, 354, a positioning bracket mounting seat, 36, a conveyor belt driving chain, 37, a conveyor belt driving roller, 38, a conveyor belt driving speed regulating motor, 39, a screw rod rocking handle,
40. A servo film drawing motor 41, a first driving synchronous wheel 411, a second driving synchronous wheel 42, a film driving synchronous belt 43, a first driving gear 431, a second driving gear 44, a synchronous wheel plate 45, a lower driving wheel 451, an upper driving wheel 46, a lower film drawing synchronous belt 461, an upper film drawing synchronous belt 47, a lower positioning wheel 471, an upper positioning wheel 48, a lower tensioning wheel 481 and an upper tensioning wheel,
50. The film collecting assembly comprises a film collecting assembly mounting frame 51, a film collecting motor 52, a film collecting transmission chain 53, a film collecting balance block 54, a film collecting sensor mounting bracket 55, a film collecting balance bar 551, a film collecting balance bar original position sensor 552, a film collecting balance bar in-place sensor 553, a film collecting ejector rod 56, a film collecting baffle plate 57, a film collecting balance bar limiting block 58, a film collecting support bar 581, a film collecting rotating shaft 59 and a cut heat shrinkage film,
60. A turntable device, 601, a turntable loading level detection sensor, 61, a turntable loading level, 62, a glove pressing mechanism, 621, a glove pressing plate, 622, a positioning plate, 623, a glove pressing baffle, 624, a second tension spring, 625, a positioning column, 626, a second rotating shaft, 63, a glove to be packaged, 64, a turntable speed reducer, 65, a transmission chain, 66, a speed regulating motor, 67, a chain tensioning mechanism, 68, a turntable loading level, 69, a turntable assembly fixing plate,
70. A vertical slide rail, a 71 vertical feeding cylinder, 711, a vertical feeding cylinder origin sensor, 712, a vertical feeding cylinder in-place sensor, 713, a first cylinder, 714, a first telescopic rod, 72, a vertical feeding mechanism, 721, a first vertical rod, 722, a vertical rod, 723, a second vertical rod, 73, a feeding transfer mechanism, 731, a flat plate, 732, a cuboid structure, 74, a transverse feeding mechanism, 741, a first transverse rod, 742, an L-shaped push plate, 743, a glove push plate, 75, a transverse slide rail, 76, a transverse feeding cylinder, 761, a transverse feeding cylinder origin sensor, 762, a transverse feeding cylinder in-place sensor, 763, a third telescopic rod, 77, a glove cylinder, 771, a second telescopic rod, 78, a glove clamping mechanism, 781, a glove pressing arm, 782, a rotating shaft,
80. A heat shrinkage film, 81, a film feeding roller, 82, a roller mounting bracket, 83, a film feeding transmission chain, 84, a roller pin mechanism, 841, a roller pin wheel, 842, a roller pin protective cover, 843, a first tension spring, 844, a roller pin positioning mechanism, 845 a first rotation shaft, 846, a first roller pin positioning column, 847, a second roller pin positioning column, 848, a roller pin, 85, a film feeding motor, 86, a film dragging mechanism, 861, a second film positioning rod, 862, a third film positioning rod, 863, a fourth film positioning rod, 864, a fifth film positioning rod, 87, a film feeding balance block, 88, a film supporting balance rod, 881, a film supporting balance rod original point sensor, 882, a film supporting balance rod in-place sensor, 883, a film supporting mandril, 884, a film feeding connecting rod, 885, a film feeding sensor mounting bracket, 89, a film blocking rod,
90. A control cabinet 91, a touch screen 92, a sudden stop switch 93, a conveyor belt driving motor speed regulator 94, a turntable driving motor speed regulator 95, a transverse cutter temperature controller 96, a vertical cutter temperature controller 97 and an alarm,
2501. Vertical cutter heating pipe 2502, vertical cutter temperature sensor, 2503, vertical cutter outer guard plate, 2504, vertical cutter inner guard plate, 2506, vertical cutter, 2507, transverse cutter, 2511, transverse cutter heating pipe, 2512, transverse cutter temperature sensor, 2513, transverse cutter outer guard plate, 2514, transverse cutter inner guard plate, 255, guard plate compression spring, 256, guard plate fixing mechanism, 257, cutter positioning screw rod, 258 and guard plate positioning column.
Detailed Description
The utility model is further described below with reference to the drawings.
As shown in fig. 1, the non-bundling heat-sealing packaging device for gloves comprises a frame 1, a film feeding component 8 suspended at the upper part of the frame 1 and used for releasing a coiled heat-shrinkable film, a feeding component 7 sequentially fixed at the middle part of the frame along the advancing direction of the heat-shrinkable film and used for conveying folded gloves into the heat-shrinkable film, a film cutting component 2 used for cutting the heat-shrinkable film and sealing the heat-shrinkable film, and a conveying belt component 3 used for conveying the heat-sealed gloves, wherein one side of the conveying belt component 3 is fixed with a film pulling component 4 used for pulling the heat-shrinkable film to be cut to a position to be cut, the lower part of the frame 1 is fixed with a film collecting component 5 used for collecting the residual film, the outer side of the feeding component is fixed with a rotary table component 6 used for conveying the folded gloves into the feeding component, and the frame is also fixed with a control cabinet component 9.
As shown in fig. 10, the frame 1 comprises a cuboid frame and a back frame connected above one side of the frame, the top end of the back frame is fixed with two first support rods 11 which extend towards the direction of the frame and are used for fixing the control cabinet assembly 9, the lower part of the first support rod 11 on the inner side is provided with a second support rod 17 which is parallel to the first support rod 11 and is used for fixing the feeding assembly 7, the back frame next to the second support rod 17 is fixed with a mounting bracket 19 used for supporting the film feeding assembly 8, the frame comprises an inner frame, an outer frame and a side frame which is connected with the inner frame and the outer frame, the back frame is fixed above the inner frame, the inner frame below the first support rod 11 is provided with a first support plate 12 used for fixing the conveyor belt assembly 3 and the film cutting assembly 2, the outer frame corresponding to the position of the first support plate 12 is provided with a second support plate 13 used for fixing the film drawing assembly 4, the middle part of the outer frame is fixed with a third support rod 14 which faces the outside the equipment and is used for fixing the rotary table assembly 6, the bottom of the frame (for example, one side close to the film feeding assembly) is provided with a fourth support rod 15 used for fixing the film receiving assembly 5, and the second support rod 13 far from the top part of the second support rod 13 is provided with a fifth support rod 13 matched with the second support rod 17.
As shown in fig. 8 and 15, the film feeding assembly 8 comprises two parallel film blocking rods 89 suspended below the mounting bracket 19, a supporting rod for erecting a coiled heat-shrinkable film is connected between the film blocking rods 89, the heat-shrinkable film is erected above the two parallel film feeding rollers 81, the film feeding rollers 81 are fixed on the frame 1 through the roller mounting bracket 82, the film feeding rollers 81 are connected with an output shaft of the film feeding motor 85 through a film feeding transmission chain 83, a film supporting rod parallel to the mounting bracket 19 is connected on the frame outside the heat-shrinkable film, a film supporting balance rod 88 is rotatably connected on the film supporting rod, a film supporting ejector rod 883 is vertically connected at the free end of the film supporting balance rod, The position of the film supporting balance rod, which is close to the heat shrinkage film, is connected with a film feeding balance block 87 through a film feeding connecting rod 884, the film feeding connecting rod 884 is vertical to the film supporting balance rod 88 and a film supporting mandril 883, an arc film feeding sensor mounting bracket 885 is arranged at the inner side of the film supporting balance rod, the bending direction of the film feeding sensor mounting bracket 885 is partially overlapped with the rotating track of the film supporting balance rod 88, a film supporting balance rod original point sensor 881 for sensing the film supporting balance rod is arranged at the outer end of the film feeding sensor mounting bracket, a film supporting balance rod in-place sensor 882 for sensing the film supporting balance rod is arranged at one end of the film feeding sensor mounting bracket, which is far away from the film supporting balance rod original point sensor 881, The film supporting balance rod original point sensor 881, the film supporting balance rod in-place sensor 882 and the film feeding motor 85 are connected with the control cabinet component 9, the thermal shrinkage film 80 is fed out from the film feeding roller 81, and sequentially passes through the film dragging mechanism 86, the feeding transfer mechanism 73, the feeding component 7, the driving belt component 3 and the film pulling component 4 after being changed in direction, and then is wound on the film collecting component 5, a needle roller mechanism is fixed on a frame above the film feeding motor, the needle roller mechanism comprises a needle roller positioning mechanism 844 connected with the frame, a needle roller protective cover 842 connected with the needle roller positioning mechanism 844 through a first rotary shaft 845, the needle roller protective cover 842 rotates around the first rotary shaft 845, Needle wheel shield 842 is connected with needle wheel 841 in a rotating way, the outer periphery of needle wheel 841 is fixed with axial needle 848, the tip of needle 848 is pricked into the heat shrinkage film on film feeding roller 81 (when the film feeding roller releases the heat shrinkage film, the needle is pricked into the heat shrinkage film to prevent the heat shrinkage film from rotating), the needle positioning mechanism 844 is internally provided with a first needle positioning column 846, needle wheel shield 842 below needle wheel 841 is internally provided with a second needle positioning column 847, a first tension spring 843 is connected between the first needle positioning column and the second needle positioning column, the first tension spring 843 is connected with the needle positioning mechanism 844 and the needle wheel shield 842 through the first needle positioning column 846 and the second needle positioning column 847, The roller 841 is pressed against the film feeding roller 81 by the pressure provided by the first tension spring 843, and the roller pins of the roller pin mechanism are pricked into the heat shrinkage film, so that the roller pin 841 rotates along with the film feeding roller 81 when rotating; The heat shrinkage film 80 enters the film pulling assembly through the film supporting balance rod 88, and when the film pulling assembly 4 starts film pulling, the film supporting balance rod 88 is driven to swing leftwards; when the film supporting balance rod in-place sensor 882 is triggered, the film feeding motor 85 is started, the film feeding roller 81 is driven to rotate by the transmission chain 83, and the film feeding roller 81 drives the heat shrinkage film 80 to rotate to release the heat shrinkage film; when the heat shrinkage film is released and the film supporting balance rod 88 is driven by the film feeding balance block 87, the film feeding motor 85 stops running and the heat shrinkage film is released when the film supporting balance rod 88 swings rightwards and triggers the film supporting balance rod original point sensor 881.
As shown in fig. 7-1 and 7-2 and fig. 12 and 13, the feeding assembly 7 comprises a vertical slide rail 70 fixedly connected with the frame 1, a vertical feeding mechanism 72 sliding along the vertical slide rail, a horizontal slide rail 75 perpendicular to the vertical slide rail and fixedly connected with the frame, and a horizontal feeding mechanism 74 sliding along the horizontal slide rail, the vertical feeding mechanism comprises a first vertical rod 721 sliding connected with the vertical slide rail, a vertical rod 722 vertically connected with the vertical rod, and a second vertical rod 723 vertically connected with the vertical rod and fixed on the turntable device, the connection point of the vertical rod and the second vertical rod is positioned at the center of the turntable device, for example, the vertical slide rail is connected with a first cylinder 713 of the vertical feeding cylinder 71, The first vertical rod is connected with a first telescopic rod 714 of the vertical feeding cylinder, one end of the second vertical rod far away from the center of the turntable device is fixedly provided with a glove clamping cylinder 77, a second telescopic rod 771 of the glove clamping cylinder is connected with a glove clamping mechanism 78, the glove clamping mechanism 78 comprises a folded glove pressing arm 781, the folding point of the folded glove pressing arm rotates around a rotating shaft 782, the rotating shaft is fixed on the second vertical rod, when a glove on the turntable placing level rotates to the top end of the glove clamping cylinder 77, the second telescopic rod of the glove clamping cylinder stretches out, the glove pressing arm is close to the glove, the glove is pressed between the glove pressing arm and a glove pressing baffle 623, when the second telescopic rod retracts, The glove pressing arm is far away from the glove pressing mechanism; A vertical feeding cylinder original point sensor 711 is fixed at one end of the first cylinder barrel 713, which is close to the first telescopic rod 714, and a vertical feeding cylinder in-place sensor 712 is fixed at one end of the first cylinder barrel, which is far away from the vertical feeding cylinder original point sensor 711; The transverse feeding mechanism 74 comprises a first transverse rod 741 connected to the transverse slide rail 75 in a sliding manner, an L-shaped push plate 742 vertically connected with the first transverse rod, a glove push plate 743 is fixed at one end of the L-shaped push plate 742 far away from the first transverse rod, the first transverse rod 741 is connected with a third telescopic rod 763 of a transverse feeding air cylinder 76, a transverse feeding air cylinder in-place sensor 762 is fixed at one end of the transverse feeding air cylinder 76 near the third telescopic rod 763, a transverse feeding air cylinder in-place sensor 761 is fixed at one end of the transverse feeding air cylinder 76 far away from the transverse feeding air cylinder in-place sensor 762, a feeding transfer mechanism 73 is fixed below the vertical feeding mechanism 72, The feeding transfer mechanism 73 comprises a flat plate 731 arranged below an L-shaped push plate 742, a hollow cuboid structure 732 connected with the flat plate 731, a hole for the L-shaped push plate to enter is formed in the cuboid structure 732, a glove push plate 743 is positioned in the cuboid structure 732, one side of the cuboid structure 732 facing the conveyor belt component and one side facing the turntable device are respectively opened, one side opening facing the turntable device enables gloves to be packaged to be pushed into the feeding transfer mechanism 73 through the vertical feeding mechanism 72, one side opening facing the conveyor belt component enables the gloves to be packaged in the cuboid structure 732 to be pushed onto the conveyor belt 30 through the transverse feeding mechanism 74, the feeding transfer mechanism 73 separates the double-layer heat-shrinkable film into single-layer heat-shrinkable films, and the single-layer heat-shrinkable films pass through the upper part and the lower part of the feeding transfer mechanism respectively; When the glove to be packaged on the material placing position of the turntable rotates to the top end of the glove clamping cylinder 77, the second telescopic rod of the glove clamping cylinder stretches out, the glove pressing arm approaches the glove, the glove is pressed between the glove pressing arm and the glove pressing baffle 623, then the first telescopic rod of the vertical feeding cylinder retracts to drive the vertical feeding mechanism to move towards the direction approaching the machine frame, meanwhile, the glove to be packaged is pushed into the cuboid structure 732, the first telescopic rod stretches out, the first telescopic rod drives the vertical feeding mechanism to move towards the direction far from the machine frame, the second telescopic rod retracts, the glove pressing arm stretches out from the glove pressing mechanism, the third telescopic rod drives the L-shaped pushing plate 742 to push the glove to be packaged in the cuboid structure 732 onto the conveyor belt 30 through the first transverse rod 741, the cutter assembly falls down, the transverse cutter and the vertical cutter cut and heat-seal the heat shrinkage film, and the glove after heat sealing is carried out by the conveyor belt.
As shown in fig. 2, 10, 11 and 18, the film cutting assembly 2 includes a sliding plate 29 fixedly connected (e.g., bolted) to the first support plate 12, a cutter assembly mounting post 20 is fixed above the sliding plate 29 (e.g., on a side close to an inner frame of the frame), the cutter assembly mounting post 20 is connected to the sliding plate 29, for example, via bolts, vertical sliding rails 201 are respectively provided on vertical edges on both sides of the cutter assembly mounting post 20, a cutter up-and-down sliding assembly 21 moving along the sliding rails is connected to the sliding rails 201, the cutter up-and-down sliding assembly 21 is connected to a cutter assembly mounting frame 22, the cutter assembly mounting frame 22 includes a vertical cutter assembly mounting frame 221 connected to the cutter up-and-down sliding assembly 21 respectively, and a lateral cutter assembly mounting frame 222 connecting the two vertical cutter assembly mounting frames 221, A cutter assembly 25 is fixed below the cutter assembly mounting frame 22, an L-shaped cutter pad 24 which is consistent with the cutting shape of the cutter assembly is arranged on a sliding plate 29 below the cutter assembly 25, a cutter assembly control plate 223 is also connected between the two vertical cutter assembly mounting frames 221, a horizontal cylinder mounting bracket 27 is fixed on one side of the cutter assembly mounting upright post 20 facing the cutter assembly 25, a film cutting cylinder 28 is fixed above the cylinder mounting bracket 27, a film cutting cylinder original point sensor 281 (used for detecting whether the film cutting cylinder is retracted or not) is fixed on the top end of the film cutting cylinder, a film cutting cylinder in-place sensor 282 (used for detecting whether the film cutting cylinder is in place or not is fixed on the bottom end of the film cutting cylinder, i.e. whether the transverse cutter and the vertical cutter press the heat shrink film), the film cutting telescopic rod of the film cutting cylinder 28 is connected with the cutter assembly control board 223, the film cutting telescopic rod stretches up and down to drive the cutter assembly control board 223 to move up and down, thereby controlling the cutter assembly mounting frame 22 to move, finally controlling the cutter assembly to move up and down, the film pressing cylinder 26 is fixed on the side edge of the cutter assembly mounting upright post 20, the film pressing cylinder original point sensor 261 (used for detecting whether the film pressing cylinder is retracted or not) is fixed on the top end of the film pressing cylinder 26, the film pressing cylinder in-place sensor 262 (used for detecting whether the film pressing cylinder is in place, i.e. whether the film pressing mechanism presses the heat shrink film above the glove or not), The film pressing cylinder is positioned between the cutter assembly control plate 223 and the transverse cutter assembly mounting frame 222, the free end of the film pressing telescopic rod of the film pressing cylinder 26 is connected with the film pressing mechanism 23, the film pressing mechanism 23 comprises a film pressing plate vertically connected with the film pressing telescopic rod, the film pressing mechanism moves up and down under the driving of the film pressing telescopic rod, the cutter assembly 25 comprises an L-shaped integral cutter fixed below the cutter assembly mounting frame 22, the L-shaped integral cutter comprises a vertical cutter 2506 connected below a vertical cutter assembly mounting frame 221 close to the film feeding assembly and a transverse cutter 2507 fixed below the transverse cutter assembly mounting frame, the length direction of the vertical cutter is consistent with the length direction of the vertical cutter assembly mounting frame, The length direction of the transverse cutter is consistent with the length direction of the transverse cutter assembly mounting frame, the edges of the vertical cutter and the transverse cutter are opposite to the L-shaped cutter pad 24, the inner side (the side facing the folding glove) of the vertical cutter 2506 is provided with a vertical cutter inner guard 2504, the outer side of the vertical cutter 2506 is provided with a vertical cutter outer guard 2503, the inner side of the transverse cutter 2507 is provided with a transverse cutter inner guard 2514, the outer side of the transverse cutter 2507 is provided with a transverse cutter outer guard 2513, a plurality of heat dissipation holes are uniformly distributed on the vertical cutter inner guard, the vertical cutter outer guard, the transverse cutter inner guard and the transverse cutter outer guard, A vertical cutter 2506 is provided with a vertical cutter temperature sensor 2502 and a vertical cutter heating pipe 2501 (for example, an electric heating pipe), a transverse cutter temperature sensor 2512 and a transverse cutter heating pipe 2511 are arranged on a transverse cutter 2507, one or more (for example, three) threaded holes for penetrating a cutter positioning screw 257 are respectively arranged on a vertical cutter assembly mounting frame 221 and a transverse cutter assembly mounting frame, the cutter positioning screw 257 penetrates through the threaded holes and is connected with an L-shaped integral cutter, a guard plate fixing mechanism 256 is respectively connected between a vertical cutter inner guard plate and a vertical cutter outer guard plate and between a transverse cutter inner guard plate and a transverse cutter outer guard plate, The guard plate fixing mechanism 256 can be, for example, a slat, guard plate positioning posts 258 penetrating through the vertical cutter assembly mounting frame and the transverse cutter assembly mounting frame are arranged between the adjacent cutter positioning screw rods 257, the bottom ends of the guard plate positioning posts 258 penetrate through the vertical cutter assembly mounting frame and the transverse cutter assembly mounting frame and then are connected with the guard plate fixing mechanism 256, the guard plate fixing mechanism 256 is arranged between the cutter positioning screw rods 257, guard plate compression springs 255 are connected on the guard plate positioning posts between the vertical cutter assembly mounting frame and the transverse cutter assembly mounting frame and the guard plate fixing mechanism 256 in a penetrating way, the bottom ends of the inner guard plates of the vertical cutters and the outer guard plates of the vertical cutters are lower than the vertical cutters, the bottom of horizontal cutter inner guard plate and horizontal cutter outer guard plate is less than horizontal cutter, when cutting the pyrocondensation membrane, thereby vertical cutter inner guard plate, vertical cutter outer guard plate and horizontal cutter inner guard plate, horizontal cutter outer guard plate contact the pyrocondensation membrane respectively earlier vertical cutter and horizontal cutter compress tightly the upper and lower membrane of pyrocondensation membrane, then cut the membrane cylinder and promote cutter assembly mounting bracket downstream, and guard plate compression spring is extruded the shrink, and vertical cutter and horizontal cutter cut the pyrocondensation membrane downwards.
As shown in fig. 3, 16, 17-1, and 17-2, the conveyor belt assembly 3 is fixed on the sliding plate 29 below the cutter assembly mounting frame 22, the conveyor belt assembly 3 includes a conveyor belt tensioning roller 32, a conveyor belt driving roller 37, and a conveyor belt 30 that is fitted over the conveyor belt tensioning roller 32 and the conveyor belt driving roller 37 and rotates in the advancing direction of the heat shrinkable film, the conveyor belt is positioned inside the L-shaped cutter pad 24, the conveyor belt is flush with the L-shaped cutter pad, the conveyor belt tensioning roller 32 is positioned below the cutter assembly mounting frame 22, the conveyor belt driving roller 37 is connected to the output shaft of the conveyor belt driving speed regulating motor 38 via a conveyor belt driving chain 36, both sides of the conveyor belt 30 are respectively provided with a conveyor belt left side plate 31 and a conveyor belt right side plate 33 fixed on the sliding plate 29, wherein the conveyor belt left side plate 31 is disposed on a side close to the cutter assembly mounting upright 20, a second film locating rod 861 parallel to the conveyor belt tensioning roller 32 is fixed on the frame outside the conveyor belt tensioning roller 32, a sliding plate moving screw rod 34 and a sliding component 35 are arranged below the sliding plate 29, the sliding plate moving screw rod 34 is movably connected to the sliding plate 29 through a screw rod transmission mechanism 342, the length direction of the sliding plate moving screw rod 34 is perpendicular to the conveying direction of the heat shrinkage film, the screw rod transmission mechanism 342 is of a plate-shaped structure with threaded holes, the screw rod transmission mechanism 342 is vertically connected with the sliding plate 29, two ends of the sliding plate moving screw rod 34 are rotationally connected on screw rod locating bearings 341 in a penetrating way, the screw rod locating bearings 341 are fixed on the frame 1, one end of the sliding plate moving screw rod, far away from the cutter component mounting upright post 20, is connected with a screw rod rocking handle 39, the sliding component 35 comprises rod-shaped optical axis sliding rails 351 arranged on two sides of the sliding plate moving screw rod 34, the optical axis sliding rails are parallel to the sliding plate moving screw rod 34, the sliding block 352 fixedly connected with the sliding plate 29 passes through the optical axis sliding rail 351, the optical axis positioning brackets 353 are fixed at the two ends of the optical axis sliding rail, the optical axis positioning brackets are fixed on the positioning bracket mounting seats 354, the positioning bracket mounting seats are fixed on the frame 1, the sliding plate is rotated to move the screw rod 34, the sliding plate 29 moves along the optical axis sliding rail 351 through the sliding block 352 under the interaction of the screw thread of the screw rod transmission mechanism and the screw rod screw thread, the cutter assembly and the conveyor belt assembly fixed on the sliding plate 29 move together, and the positions of the vertical cutter and the transverse cutter are changed when the position of the sliding plate is changed due to the fact that the conveying direction of the thermal shrinkage film is not changed, the size of the thermal shrinkage film cut is changed, the thermal shrinkage film is a double-folded double-layer film, and the cutting positions of the vertical cutter and the transverse cutter on the thermal shrinkage film can be heat sealed.
As shown in fig. 4, 17-1 and 17-2, the film pulling assembly 4 comprises a servo film pulling motor 40 fixed on a frame, the servo film pulling motor is connected with a foot switch 10, an output shaft of the servo film pulling motor 40 is connected with a first driving synchronizing wheel 41, the first driving synchronizing wheel 41 is connected with a second driving synchronizing wheel 411 through a film pulling transmission synchronizing belt 42, a first transmission gear 43 and a lower driving wheel 45 are connected on a central shaft of the second driving synchronizing wheel 411, a second transmission gear 431 is meshed on the first transmission gear 43, an upper driving wheel 451 is connected on a central shaft of the second transmission gear 431, a lower driving wheel 45 is connected with a lower tensioning wheel 48 through a lower film pulling synchronizing belt 46, the upper driving wheel 451 is connected with the upper tensioning wheel 481 through an upper film pulling synchronizing belt 461, a lower positioning wheel 47 is arranged between the lower driving wheel 45 and the lower tensioning wheel 48, an upper positioning wheel 471 is arranged between the upper driving wheel 451 and the upper wheel 481, the upper positioning wheel 471 and the lower positioning wheel 47 are used for clamping the upper film pulling synchronizing belt 461 and the lower film synchronizing belt 46 between the upper positioning wheel 471 and the lower positioning wheel 47, the upper driving wheel 45 and the lower driving wheel 45 are used for increasing the upper film pulling synchronizing belt and the lower film tensioning belt 45 and the lower tensioning force of the upper driving wheel 45 and the lower driving wheel 45, and the upper positioning wheel 45 and the lower positioning wheel 48 are fixed on the upper and lower positioning plate 45 and tensioning plates. When the servo film drawing motor 40 rotates clockwise, the first driving synchronous wheel 41 is driven to drive the second driving synchronous wheel 411 through the film drawing transmission synchronous belt 42; the second driving synchronizing wheel 411 drives the first transmission gear 43 and the lower driving wheel 45 to rotate clockwise in synchronization; the first transmission gear 43 drives the second transmission gear 431 and the upper driving wheel 451 to rotate counterclockwise synchronously; the lower driving wheel 45 drives the lower tensioning wheel 48 to rotate clockwise through the pull-down film synchronous belt 46; the upper driving wheel 451 drives the upper tensioning wheel 481 to rotate anticlockwise through the upper film pulling synchronous belt 461, the cut heat-shrinkable film 59 is clamped between the lower film pulling synchronous belt 46 and the upper film pulling synchronous belt 461, the cut heat-shrinkable film 59 moves towards the film collecting assembly under the driving of the upper tensioning wheel, the lower tensioning wheel, the upper driving wheel and the lower driving wheel, a third film positioning rod 862, a fourth film positioning rod 863 and a fifth film positioning rod 864 are sequentially fixed on a frame below the film pulling assembly along the advancing direction of the cut heat-shrinkable film, and the cut heat-shrinkable film 59 is sent out from the position between the lower film pulling synchronous belt 46 and the upper film pulling synchronous belt 461 and sequentially passes through the third film positioning rod 862, the fourth film positioning rod 863, the fifth film positioning rod 864 and the film collecting ejector rod 553 which are fixed on the frame and then wound on the film rolling supporting rod 58.
As shown in fig. 5, the film collecting assembly 5 comprises a film collecting assembly mounting frame 50 fixed on a frame, a film collecting motor 51 is fixed on the film collecting assembly mounting frame 50, an output shaft of the film collecting motor is connected with a film collecting structure for collecting and cutting the heat-shrinkable film through a film collecting transmission chain 52, the film collecting structure comprises a film collecting rotating shaft 581 connected with the film collecting transmission chain 52, two parallel film collecting baffles 56 are fixed on the film collecting rotating shaft 581, the film collecting baffles can be circular, a plurality of film collecting supporting rods 58 for collecting and cutting the heat-shrinkable film 59 are fixed between the film collecting baffles, a film collecting balance rod 55 is vertically connected on the film collecting rotating shaft 581 between the film collecting assembly mounting frame and the film collecting baffles 56, one end of the film collecting balance rod 55 away from the film collecting rotating shaft is vertically connected with a film collecting push rod 553 for changing the direction of the heat-shrinkable film after cutting, the film collecting balance bar is connected with the film collecting balance block 53 through a film collecting connecting rod, an arc film collecting sensor mounting bracket 54 is fixed on a film collecting assembly mounting bracket below the film collecting structure, the bending direction of the film collecting sensor mounting bracket 54 is partially overlapped with the rotating track of the film collecting balance bar 55, the outer end of the film collecting sensor mounting bracket is provided with a film collecting balance bar original position sensor 551 for sensing the film collecting balance bar, one end of the film collecting sensor mounting bracket opposite to the film collecting balance bar original position sensor 551 is provided with a film collecting balance bar in-place sensor 552 for sensing the film collecting balance bar, when the film collecting balance bar 55 swings rightwards to trigger the film collecting balance bar original position sensor 551, the film collecting motor 51 is started to drive the film collecting balance bar 55 to swing leftwards, when the film collecting balance bar 55 swings leftwards to trigger the film collecting balance bar in-place sensor 552, the cut heat-shrinkable film 59 is sent out from the upper driving wheel and the lower driving wheel, and then sequentially passes through a third film positioning rod 862, a fourth film positioning rod 863, a first film positioning rod 864 and a film collecting ejector rod 553 which are fixed on the frame, and then is wound on the film rolling supporting rod 58.
As shown in fig. 6 and 14, the turntable assembly 6 includes a turntable assembly fixing plate 69 fixed on the third supporting rod 14, a speed regulating motor 66 is fixed on the turntable assembly fixing plate, an output shaft of the speed regulating motor 66 is connected with a turntable speed reducer 64 through a transmission chain 65, the transmission chain is connected with a chain tensioning mechanism 67, an output shaft of the turntable speed reducer is connected with a turntable device 60, an output shaft of the turntable speed reducer is vertically upward, the turntable device is vertically connected with an output shaft of the turntable speed reducer, for example, when the speed regulating motor 66 is started, the turntable speed reducer 64 and the turntable device 60 coaxially connected with the turntable speed reducer are driven to rotate through the transmission chain 65, a turntable placing position 68 extending out of the turntable device is arranged at the periphery of the turntable device, the turntable placing position can be a rectangular plate, the turntable placing position 68 can be 6, the included angle formed by the connecting lines between the adjacent turntable discharging positions and the center of the turntable device is 30-180 degrees, preferably 30-120 degrees, preferably 36-90 degrees, preferably 40-80 degrees, further 60 degrees, the plurality of turntable discharging positions are uniformly distributed around the turntable device, the glove 63 to be packaged is placed on the turntable discharging positions, when the turntable discharging positions rotate to the position facing the feeding component, the glove 63 to be packaged on the turntable discharging positions is conveyed to the feeding component through the turntable discharging positions 61, a turntable discharging position detecting sensor 601 is arranged below the turntable device, round holes corresponding to the turntable discharging positions are formed on the turntable device on the inner side of the turntable discharging positions 68, the number of the round holes corresponds to the number of the turntable discharging positions, for example 6, detecting positions for triggering the turntable discharging position detecting sensor 601 are arranged on the turntable device between the adjacent round holes, and when the turntable device rotates for 60 degrees, the feeding positions synchronously rotate for 60 degrees, the feeding level triggers the feeding level detection sensor 601 of the rotary table, the glove clamping cylinder 77 fixed on the vertical feeding mechanism 72 pushes out the second telescopic rod 771 to drive the glove pressing arm 781 to clamp the glove to be packaged, the feeding level detection sensor 601 of the rotary table, the speed regulating motor and the rotary table speed reducer are all connected with the control cabinet component, the glove pressing mechanism 62 for pressing the folded glove is fixed on the feeding level 68 of the rotary table (for example, fixed through bolts), the glove pressing mechanism comprises a glove pressing baffle 623 fixed on the feeding level of the rotary table, a positioning column 625 is fixed on the outer side surface (the side on which the glove to be packaged is placed) of the glove pressing baffle, two parallel positioning plates 622 are fixed on the glove pressing baffle above the positioning column, a second rotating shaft 626 is arranged on the positioning plate, a glove pressing plate 621 extending to the inner side of the glove pressing baffle is penetrated on the second rotating shaft, the glove pressing plate comprises a straight plate which rotates around the second rotating shaft and is perpendicular to the glove pressing baffle, a flat plate which is connected with the straight plate in the length direction, a tension spring is arranged on the pressing plate positioned on the outer side of the glove pressing baffle, a tension spring is arranged on the pressing plate which is connected between the round hole and the positioning column, the glove pressing plate 624 is connected with the positioning column, and the glove pressing plate 624 is provided with the second rotating around the second rotating shaft 624, and the glove pressing plate 624 is provided.
As shown in fig. 9, the control cabinet assembly comprises a control cabinet 90, an alarm 97 for fault alarm is arranged at the top of the control cabinet, a touch screen 91 is arranged on the front surface (the surface facing an operator) of the control cabinet, a transverse cutter temperature controller 95 for controlling the temperature of a transverse cutter and a vertical cutter temperature controller 96 for controlling the temperature of a vertical cutter are arranged above the touch screen 91, a conveyor belt driving motor speed regulator 93 for controlling the running speed of the conveyor belt 30 and a turntable driving motor speed regulator 94 for controlling the rotating speed of the turntable device 60 are arranged at the left side of the touch screen 91, a scram switch 92 is arranged below the touch screen, the scram switch 92 is pressed to cut off all outputs, the touch screen 91 is a touch and PLC integrated machine, and a film cutting cylinder original position sensor, a pressing die cylinder first position sensor, a film collecting balance bar original position sensor, a film collecting balance bar in-position sensor, a transverse feeding cylinder original position sensor, a vertical feeding cylinder in-position sensor, a vertical feeding cylinder original position sensor, a film supporting balance bar in-position sensor, a transverse cutter temperature sensor and a vertical cutter temperature sensor are all connected with the control cabinet 90.
The frame 1, the conveyor belt assembly 3, the film cutting assembly 2, the film pulling assembly 4, the film collecting assembly 5, the rotary table assembly 6, the feeding assembly 7, the film conveying assembly 8 and the control cabinet assembly 9 are made of steel materials, preferably stainless steel, the frame can be made of steel materials, the rotary table device 60 can be made of aluminum alloy, the rest parts except the conveyor belt are made of stainless steel, and the components in contact with the glove are made of stainless steel.
The utility model relates to a glove non-bundling heat-sealing packaging device, which comprises the following steps:
(1) Placing the glove 63 to be packaged in a turntable discharge position 68 on the turntable device 60, and then pressing the glove using the glove pressing mechanism 62;
(2) The pedal switch 10 is pressed down to start the servo film drawing motor 40, meanwhile, the turntable device 60 starts to rotate, and when the turntable feeding level detection sensor 601 is triggered; the glove clamping cylinder 77 fixed on the vertical feeding mechanism 72 pushes out the second telescopic rod 771 to drive the glove pressing arm 781 to clamp the glove 63 to be packaged;
(3) The first telescopic rod 714 is retracted by the vertical feeding air cylinder 71, the vertical feeding mechanism 72 and the glove clamping mechanism 78 are driven to move towards the feeding transfer mechanism, and the glove 63 to be packaged is pushed into the cuboid structure 732 of the feeding transfer mechanism 73 from the glove pressing mechanism 62;
(4) When the vertical feeding cylinder in-place sensor 712 is triggered, the vertical feeding cylinder 71 pushes out the first telescopic rod 714 to drive the vertical feeding mechanism 72 to retract; when the vertical feeding cylinder original point sensor 711 is triggered, the transverse feeding cylinder 76 pushes out a third telescopic rod, and the third telescopic rod drives the transverse feeding mechanism 74 to move, so that the glove 63 to be packaged in the feeding transfer mechanism 73 is pushed into a heat-shrinkable film pulled by the film pulling assembly 4 on the conveyor belt 31 through the transverse feeding mechanism 74;
(5) When the transverse material cylinder in-place sensor 762 is triggered, the film pressing cylinder 26 above the conveyor belt 30 pushes out to drive the film pressing mechanism 23, and the film pressing mechanism 23 presses the glove 63 to be packaged;
(6) When the film pressing cylinder in-place sensor 262 is triggered, the transverse feeding cylinder 76 withdraws the third telescopic rod to drive the transverse feeding mechanism 74 to withdraw;
(7) When the transverse material cylinder original point sensor 761 is triggered, the film cutting cylinder 28 pushes out to drive the cutter assembly 25 to push down to finish heat sealing packaging, the heat sealing packaging is finished, the film cutting cylinder 28 withdraws, and the cut heat shrinkage film is wound on the film collecting assembly after being pulled by the film pulling assembly;
(8) When the film cutting cylinder original point sensor 281 is triggered, the conveyor belt drives the speed regulating motor 38 to start, the conveyor belt 30 is driven to run, and the heat-sealed packaged glove is sent into the heat-shrinkable oven.
The foregoing description of the preferred embodiments of the present utility model has been presented for purposes of illustration and not of limitation. Many variations or modifications may be made by one of ordinary skill in the art without departing from the spirit and scope of the utility model. Such changes or modifications are intended to be included within the scope of the appended claims.
Claims (10)
1. The utility model provides a non-bundling heat-seal packaging equipment of gloves, a serial communication port, it includes frame (1), hang send membrane module (8) that are used for releasing the pyrocondensation membrane of coiling in frame (1) upper portion and be fixed in the material loading subassembly (7) that are used for transporting folding gloves to the pyrocondensation membrane in the frame middle part in proper order along the advancing direction of pyrocondensation membrane, be used for cutting off the pyrocondensation membrane and seal for the pyrocondensation membrane, be used for transporting conveyer belt subassembly (3) of the gloves that the heat-seal is accomplished, one side of conveyer belt subassembly (3) is fixed with and draws membrane module (4) that drag to waiting to cut the pyrocondensation membrane to the position, the lower part of frame (1) is fixed with and is used for the receipts membrane module (5) that will cut surplus membrane rolling, the outside of material loading module is fixed with and is used for transporting the carousel subassembly (6) of material loading subassembly with folding gloves, still be fixed with switch board subassembly (9) in the frame.
2. The glove non-strapping heat-seal packaging equipment according to claim 1, characterized in that the rack (1) comprises a cuboid frame and a back frame connected above one side of the frame, the top end of the back frame is fixed with two mutually parallel first support rods (11) which extend towards the direction of the frame and are used for fixing a control cabinet assembly, a second support rod (17) which is parallel to the first support rods (11) and is used for fixing a feeding assembly is arranged below the first support rods (11), a mounting bracket (19) used for supporting a film feeding assembly is fixed on the back frame adjacent to the second support rods (17), the frame comprises an inner frame, an outer frame and a side frame which is connected with the inner frame and the outer frame, the back frame is fixed above the inner frame, a first support plate (12) used for fixing a conveyor belt assembly and a film cutting assembly is arranged on the inner frame below the first support rod (11), a second support plate (13) used for fixing a film pulling assembly is arranged on the outer frame corresponding to the position of the first support plate (12), a third support rod (14) which faces the outside the equipment and is used for fixing a turntable assembly is fixed on the middle part of the outer frame, a second support rod (16) used for fixing the film pulling assembly is arranged at the bottom of the frame, and a fifth support rod assembly (16) used for fixing the second support rod assembly is arranged on the second support rod (16) which is far away from the top of the second support rod assembly.
3. The non-bundling heat-sealing glove packaging device according to claim 1 or 2, characterized in that the film conveying component (8) comprises two parallel film blocking rods (89) suspended below the mounting bracket (19), a film supporting rod (883) is connected between the film blocking rods (89), the heat-shrinkable film is connected above the two parallel film conveying rollers (81), the film conveying rollers (81) are fixed on the frame through the roller mounting bracket (82), the film conveying rollers (81) are connected with an output shaft of the film conveying motor (85) through a film conveying transmission chain (83), a film supporting rod parallel to the mounting bracket (19) is connected on the frame outside the heat-shrinkable film, a film supporting balancing rod (88) is connected on the film supporting rod in a rotating way, a film supporting ejector rod (883) is vertically connected at the free end of the film supporting balancing rod, the position of the film supporting rod close to a film is connected with the film conveying balancing block (87) through a film conveying connecting rod (884), the film conveying connecting rod (884) is simultaneously vertical to the film supporting balancing rod and the inner side of the film, the film supporting rod is provided with a sensor balancing rod (885) is provided with a sensor balancing rod (88), the sensor balancing rod is provided with a sensor balancing rod (5), and the sensor balancing rod is provided with a sensor balancing rod (5) and a sensor balancing rod (5) is arranged on the outer side of the film supporting rod, and the sensor balancing rod is used for a sensor rod (5), one end of the film feeding sensor mounting bracket, which is far away from the film supporting balance bar original point sensor (881), is provided with a film supporting balance bar in-place sensor (882) for sensing the film supporting balance bar, a needle roller mechanism is fixed on the frame above the film feeding motor and comprises a needle roller positioning mechanism (844) connected with the frame, a needle roller protection cover (842) connected with the needle roller positioning mechanism (844) through a first rotating shaft (845), the needle roller protection cover (842) rotates around the first rotating shaft (845), a needle roller (841) is rotationally connected with the needle roller protection cover (842), an axial needle roller (848) is fixed on the outer periphery of the needle roller (841), a first needle roller positioning column (846) is arranged in the needle roller positioning mechanism (844), a second needle roller positioning column (847) is arranged in the needle roller protection cover (842) below the needle roller positioning column, a first tension spring (843) is connected between the first needle roller positioning column and the second needle roller positioning column, and the first tension spring (843) is connected with the needle roller positioning column (846) through the first needle roller positioning column 846) and the second needle roller positioning column 847, and the needle roller (843) is connected with the needle roller positioning column (843) through the first tension spring 843) and the needle roller positioning mechanism (843).
4. The non-strapping heat-seal glove packaging apparatus according to claim 3, wherein the feeding assembly (7) comprises a vertical sliding rail (70) fixedly connected with the frame (1), a vertical feeding mechanism (72) sliding along the vertical sliding rail, a transverse sliding rail (75) perpendicular to the vertical sliding rail and fixedly connected with the frame, and a transverse feeding mechanism (74) sliding along the transverse sliding rail, the vertical feeding mechanism comprises a first vertical rod (721) sliding connected with the vertical sliding rail, a vertical rod (722) vertically connected with the vertical rod, and a second vertical rod (723) vertically connected with the vertical rod and fixed to the turntable device, the connection point of the vertical rod and the second vertical rod is positioned at the center of the turntable device, the vertical sliding rail is connected with a first cylinder (713) of the vertical feeding cylinder (71), one end of the second vertical rod, which is far away from the center of the turntable device, is fixed with a hand clamping cylinder (77), the second telescopic rod (771) of the hand clamping cylinder is connected with the hand clamping mechanism (78), the hand clamping mechanism (78) comprises a folding arm (781), and the folding arm (781) is fixed on the rotating around the rotation axis of the glove; a vertical feeding cylinder original point sensor (711) is fixed at one end of the first cylinder barrel (713) close to the first telescopic rod (714), and a vertical feeding cylinder in-place sensor (712) is fixed at one end of the first cylinder barrel far away from the vertical feeding cylinder original point sensor (711); the transverse feeding mechanism (74) comprises a first transverse rod (741) which is connected to the transverse sliding rail (75) in a sliding way, an L-shaped push plate (742) which is vertically connected with the first transverse rod, a glove push plate (743) is fixed at one end of the L-shaped push plate (742) far away from the first transverse rod, the first transverse rod (741) is connected with a third telescopic rod (763) of a transverse feeding cylinder (76), a transverse feeding cylinder in-place sensor (762) is fixed at one end of the transverse feeding cylinder (76) close to the third telescopic rod (763), a transverse feeding cylinder in-place sensor (761) is fixed at one end of the transverse feeding cylinder (76) far away from the transverse feeding cylinder in-place sensor (762), the lower part of the vertical feeding mechanism (72) is fixedly provided with a feeding transfer mechanism (73), the feeding transfer mechanism (73) comprises a flat plate (731) arranged below an L-shaped push plate (742), a hollow cuboid structure (732) connected with the flat plate (731), a hole for the L-shaped push plate to enter is formed in the cuboid structure (732), a glove push plate (743) is positioned in the cuboid structure (732), one side of the cuboid structure (732) facing the conveyor belt component and one side of the turntable device are respectively opened, one side opening facing the turntable device enables gloves to be packaged to be pushed into the feeding transfer mechanism (73) through the vertical feeding mechanism (72), the opening on the side facing the conveyor belt assembly enables the glove to be packaged in the cuboid structure (732) to be pushed onto the conveyor belt (30) through the transverse feeding mechanism (74).
5. The non-bundling, heat-sealing and packaging device for gloves according to claim 4, wherein the film cutting assembly (2) comprises a sliding plate (29) fixedly connected with the first support plate (12), a cutter assembly mounting upright post (20) is fixed above the sliding plate (29), the cutter assembly mounting upright post (20) is connected with the sliding plate (29) through bolts, vertical sliding rails (201) are respectively arranged on vertical edges on two sides of the cutter assembly mounting upright post (20), a cutter up-and-down sliding assembly (21) moving along the sliding rails is connected on the sliding rails (201), the cutter up-and-down sliding assembly (21) is connected with a cutter assembly mounting frame (22), The cutter assembly mounting frame (22) comprises a vertical cutter assembly mounting frame (221) connected with the cutter up-down sliding assembly (21) and a transverse cutter assembly mounting frame (222) connected with the two vertical cutter assembly mounting frames (221), a cutter assembly (25) is fixed below the cutter assembly mounting frame (22), an L-shaped cutter pad (24) consistent with the cutter assembly cutting shape is arranged on a sliding plate (29) below the cutter assembly (25), a cutter assembly control plate (223) is further connected between the two vertical cutter assembly mounting frames (221), a horizontal cylinder mounting bracket (27) is fixed on one side of a cutter assembly mounting upright post (20) facing the cutter assembly (25), A film cutting cylinder (28) is fixed above the cylinder mounting bracket (27), a film cutting cylinder original point sensor (281) is fixed at the top end of the film cutting cylinder, a film cutting cylinder in-place sensor (282) is fixed at the bottom end of the film cutting cylinder, a film cutting telescopic rod of the film cutting cylinder (28) is connected with a cutter assembly control plate (223), the film cutting telescopic rod stretches up and down to drive the cutter assembly control plate (223) to move up and down, thereby controlling the cutter assembly mounting bracket (22) to move, finally controlling the cutter assembly to move up and down, a film pressing cylinder (26) is fixed on the side edge of the cutter assembly mounting upright post (20), and a film pressing cylinder original point sensor (261) is fixed at the top end of the film pressing cylinder (26), The bottom end is fixed with a film pressing cylinder in-place sensor (262), the film pressing cylinder is positioned between a cutter assembly control board (223) and a transverse cutter assembly mounting frame (222), the free end of a film pressing telescopic rod of a film pressing cylinder (26) is connected with a film pressing mechanism (23), the film pressing mechanism (23) comprises a film pressing plate which is vertically connected with the film pressing telescopic rod, the film pressing mechanism moves up and down under the driving of the film pressing telescopic rod, the cutter assembly (25) comprises an L-shaped integral cutter which is fixed below the cutter assembly mounting frame (22), the L-shaped integral cutter comprises a vertical cutter (2506) which is connected below the vertical cutter assembly mounting frame (221) close to a film feeding assembly and a transverse cutter (2507) which is fixed below the transverse cutter assembly mounting frame, The length direction of the vertical cutter is consistent with the length direction of the vertical cutter assembly mounting frame, the length direction of the horizontal cutter is consistent with the length direction of the horizontal cutter assembly mounting frame, the edges of the vertical cutter and the horizontal cutter are opposite to an L-shaped cutter pad (24), a vertical cutter inner guard plate (2504) is arranged on the inner side of the vertical cutter (2506), a vertical cutter outer guard plate (2503) is arranged on the outer side of the vertical cutter (2506), a horizontal cutter inner guard plate (2514) is arranged on the inner side of the horizontal cutter (2507), a horizontal cutter outer guard plate (2513) is arranged on the outer side of the horizontal cutter (2507), a vertical cutter inner guard plate, The vertical cutter outer guard plate, the horizontal cutter inner guard plate and the horizontal cutter outer guard plate are uniformly distributed with a plurality of heat dissipation holes, a vertical cutter temperature sensor (2502) and a vertical cutter heating pipe (2501) are arranged on the vertical cutter (2506), a horizontal cutter temperature sensor (2512) and a horizontal cutter heating pipe (2511) are arranged on the horizontal cutter (2507), one or a plurality of threaded holes for the cutter positioning screw rod (257) to penetrate are respectively arranged on the vertical cutter assembly mounting frame (221) and the horizontal cutter assembly mounting frame, the cutter positioning screw rod (257) is connected with the L-shaped integral cutter after penetrating through the threaded holes, Guard plate fixing mechanisms (256) are respectively connected between the vertical cutter inner guard plate and the vertical cutter outer guard plate and between the transverse cutter inner guard plate and the transverse cutter outer guard plate, the guard plate fixing mechanisms (256) are laths, guard plate positioning columns (258) penetrating through the vertical cutter assembly installation frame and the transverse cutter assembly installation frame are arranged between adjacent cutter positioning screw rods (257), the bottom ends of the guard plate positioning columns (258) penetrate through the vertical cutter assembly installation frame and the transverse cutter assembly installation frame and then are connected with the guard plate fixing mechanisms (256), the guard plate fixing mechanisms (256) are arranged between the cutter positioning screw rods (257), and guard plate compression springs (255) are connected on the guard plate positioning columns between the vertical cutter assembly installation frame and the transverse cutter assembly installation frame and the guard plate fixing mechanisms (256) in a penetrating mode.
6. The non-strapping heat-seal glove packaging apparatus according to claim 5, wherein the conveyor belt assembly (3) is fixed to the slide plate (29) below the cutter assembly mounting frame (22), the conveyor belt assembly (3) comprises a conveyor belt tensioning roller (32), a conveyor belt driving roller (37) and a conveyor belt (30) which is sleeved on the conveyor belt tensioning roller (32) and the conveyor belt driving roller (37) and rotates along the advancing direction of the heat shrink film, the conveyor belt is positioned on the inner side of the L-shaped cutter pad, the conveyor belt is flush with the L-shaped cutter pad, the conveyor belt tensioning roller (32) is positioned below the cutter assembly mounting frame (22), the conveyor belt driving roller (37) is connected with the output shaft of the conveyor belt driving speed regulating motor (38) through a conveyor belt driving chain (36), two sides of the conveyor belt (30) are respectively provided with a conveyor belt left side plate (31) and a conveyor belt right side plate (33) which are fixed on the slide plate (29), wherein the conveyor belt tensioning roller (32) is fixed on the outer side of the conveyor belt tensioning roller (32) on one side close to the mounting upright (20), the conveyor belt tensioning roller is fixed on the frame on the outer side of the conveyor belt tensioning roller (32) and is provided with a second frame tensioning roller (861) which is connected with a slide plate (35) and a screw rod (35) which is movable on the slide plate (34) through a screw rod, the length direction of the sliding plate moving screw rod (34) is perpendicular to the conveying direction of the heat shrinkage film, the screw rod transmission mechanism (342) is of a plate-shaped structure with threaded holes, the screw rod transmission mechanism (342) is perpendicularly connected with the sliding plate (29), two ends of the sliding plate moving screw rod (34) are rotationally connected onto screw rod positioning bearings (341) in a penetrating mode, the screw rod positioning bearings (341) are fixed onto a frame (1), one end, far away from a cutter assembly mounting upright post (20), of the sliding plate moving screw rod is connected with a screw rod rocking handle (39), the sliding assembly (35) comprises rod-shaped optical axis sliding rails (351) arranged on two sides of the sliding plate moving screw rod (34), the optical axis sliding rails are parallel to the sliding plate moving screw rod (34), sliding blocks (352) fixedly connected with the sliding plate (29) are connected to the optical axis sliding rails in a penetrating mode, and optical axis positioning supports (353) are fixed to two ends of the optical axis sliding rails and are fixed onto positioning support mounting bases (354).
7. The non-bundling, heat-sealing and packaging device for gloves according to claim 6, wherein the film pulling assembly (4) comprises a servo film pulling motor (40) fixed on the frame, the servo film pulling motor is connected with a foot switch (10), an output shaft of the servo film pulling motor (40) is connected with a first driving synchronous wheel (41), the first driving synchronous wheel (41) is connected with a second driving synchronous wheel (411) through a film pulling transmission synchronous belt (42), a first transmission gear (43) and a lower driving wheel (45) are connected on a central shaft of the second driving synchronous wheel (411), a second transmission gear (431) is meshed on the first transmission gear (43), an upper driving wheel (451) is connected on a central shaft of the second transmission gear (431), the lower driving wheel (45) is connected with a lower tensioning wheel (48) through a lower film pulling synchronous belt (46), a lower positioning wheel (47) is arranged between the upper driving wheel (451) and the lower driving wheel (45), an upper driving wheel (481) and a lower tensioning wheel (481) are arranged between the upper driving wheel (451) and the upper driving wheel (481), the lower driving wheel (45) is fixed on the upper driving wheel (481) and the lower driving wheel (45), a third film positioning rod (862), a fourth film positioning rod (863) and a fifth film positioning rod (864) are sequentially fixed on the frame below the film pulling assembly along the advancing direction of the cut heat shrinkage film, and the cut heat shrinkage film (59) is sent out from between the lower film pulling synchronous belt (46) and the upper film pulling synchronous belt (461) and sequentially passes through the third film positioning rod (862), the fourth film positioning rod (863), the fifth film positioning rod (864) and the film collecting ejector rod (553) which are fixed on the frame and then is wound on the film rolling supporting rod (58).
8. The non-bundling, heat-sealing and packaging device for glove according to claim 7, wherein the film collecting assembly (5) comprises a film collecting assembly mounting frame (50) fixed on a frame, a film collecting motor (51) is fixed on the film collecting assembly mounting frame (50), an output shaft of the film collecting motor is connected with a film rolling structure for rolling and cutting the post-heat-shrinkable film through a film collecting transmission chain (52), the film rolling structure comprises a film rolling rotating shaft (581) connected with the film collecting transmission chain (52), two parallel film collecting baffles (56) are fixed on the film rolling rotating shaft (581), a plurality of film rolling supporting rods (58) for winding and cutting the post-heat-shrinkable film (59) are fixed between the film collecting baffles, a film collecting balancing rod (55) is vertically connected on the film rolling rotating shaft (581), the film collecting balance rod is fixed on a film collecting rotating shaft between the film collecting assembly mounting frame and the film collecting baffle plate (56), one end of the film collecting balance rod (55) away from the film collecting rotating shaft is vertically connected with a film collecting ejector rod (553) for changing the direction of the heat shrinkage film after cutting, the film collecting balance rod is connected with a film collecting balance block (53) through the film collecting connecting rod, an arc-shaped film collecting sensor mounting bracket (54) is fixed on the film collecting assembly mounting frame below the film collecting structure, the bending direction of the film collecting sensor mounting bracket (54) is partially overlapped with the rotating track of the film collecting balance rod (55), the outer end of the film collecting sensor mounting bracket is provided with a film collecting balance rod original point sensor (551) for sensing the film collecting balance rod, and a film receiving balance rod in-place sensor (552) for sensing the film receiving balance rod is arranged at one end, opposite to the film receiving balance rod original point sensor (551), of the film receiving sensor mounting bracket.
9. The non-bundling, heat-sealing and packaging device for glove according to claim 8, wherein the turntable assembly (6) comprises a turntable assembly fixing plate (69) fixed on the third supporting rod (14), a speed regulating motor (66) is fixed on the turntable assembly fixing plate, an output shaft of the speed regulating motor (66) is connected with a turntable speed reducer (64) through a transmission chain (65), the transmission chain is connected with a chain tensioning mechanism (67), an output shaft of the turntable speed reducer is connected with a turntable device (60), an output shaft of the turntable speed reducer is vertically upwards, the turntable device is vertically connected with an output shaft of the turntable speed reducer, turntable placing positions (68) extending out of the turntable device are uniformly distributed around the turntable device, glove to be packaged (63) are placed on the turntable placing positions, a turntable upper position detecting sensor (601) is arranged below the turntable device, the turntable speed reducer is connected with the control cabinet assembly, a pressing mechanism (62) for pressing folded glove is fixed on the turntable speed reducer (68), the pressing mechanism comprises a pressing plate (623) fixed on the upper side of the turntable placing position, a glove positioning plate (626) is arranged on the outer side of the turntable (622), a glove positioning plate (626) is arranged on the glove positioning plate) is arranged on the upper side of the glove positioning plate, and the glove positioning plate is extended on the glove positioning plate, the glove pressing plate comprises a straight plate which rotates around a second rotation shaft and is vertical to the glove pressing baffle plate and a flat plate which is connected with the straight plate and is vertical to the straight plate in the length direction, a round hole is formed in the glove pressing plate which is positioned on the outer side of the glove pressing baffle plate, a second tension spring (624) is connected between the round hole and the positioning column, the glove pressing plate (621) rotates around the second rotation shaft (626) under the tension force provided by the second tension spring (624), and the glove pressing plate presses the glove to be packaged by means of the pressure provided by the second tension spring (624).
10. The glove non-bundling heat-sealing packaging equipment according to claim 9, wherein the control cabinet assembly comprises a control cabinet (90), an alarm (97) for fault alarm is arranged at the top of the control cabinet, a touch screen (91) is arranged on the front of the control cabinet, a transverse cutter temperature controller (95) for controlling the temperature of a transverse cutter and a vertical cutter temperature controller (96) for controlling the temperature of a vertical cutter are arranged above the touch screen (91), a conveyor belt driving motor speed regulator (93) for controlling the running speed of a conveyor belt (30) and a turntable driving motor speed regulator (94) for controlling the rotating speed of a turntable device (60) are arranged on the left side of the touch screen (91), a scram switch (92) is arranged below the touch screen, all outputs are cut off by pressing the touch screen (91) by a touch and PLC integrated machine, a film cutting cylinder home position sensor, a die cylinder home position sensor, a film receiving balancing lever home position sensor, a transverse material cylinder home position sensor, a transverse material feeding cylinder position sensor, a transverse material feeding roller sensor, a vertical material feeding roller position sensor, a temperature balancing lever sensor, a vertical material feeding roller position sensor and a temperature sensor, a vertical material feeding roller position sensor and a temperature sensor.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202322872665.9U CN221477766U (en) | 2023-10-25 | 2023-10-25 | Non-bundling heat-sealing packaging equipment for gloves |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202322872665.9U CN221477766U (en) | 2023-10-25 | 2023-10-25 | Non-bundling heat-sealing packaging equipment for gloves |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN221477766U true CN221477766U (en) | 2024-08-06 |
Family
ID=92376006
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202322872665.9U Active CN221477766U (en) | 2023-10-25 | 2023-10-25 | Non-bundling heat-sealing packaging equipment for gloves |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN221477766U (en) |
Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN118614676A (en) * | 2024-08-14 | 2024-09-10 | 张家港宝翔机械有限公司 | A fully automatic plastic film disposable glove machine |
-
2023
- 2023-10-25 CN CN202322872665.9U patent/CN221477766U/en active Active
Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN118614676A (en) * | 2024-08-14 | 2024-09-10 | 张家港宝翔机械有限公司 | A fully automatic plastic film disposable glove machine |
Similar Documents
| Publication | Publication Date | Title |
|---|---|---|
| CN110466819B (en) | Multiple tube packaging system | |
| CN101663202A (en) | Film wrapping machine using two film carriage assemblies to efficiently perform film change operations | |
| CN110466818B (en) | Tubular product bagging system | |
| CN108001721A (en) | A kind of heat-shrink tube winding apparatus and method | |
| CN104590621B (en) | The automatic packaging machine of disposable syringe | |
| CN214241516U (en) | A sealing and cutting machine for book packaging | |
| CN210503318U (en) | Gantry type cantilever top-covering winding machine | |
| CN105836217B (en) | A kind of more size courier bag sealing machines | |
| CN114955140B (en) | Film detaching equipment for heat shrinkage film external package | |
| CN221477766U (en) | Non-bundling heat-sealing packaging equipment for gloves | |
| CN112249388B (en) | A device for automatic carton packaging | |
| CN112706970A (en) | Automatic packaging device for paper tubes | |
| CN104943233A (en) | Fully-automatic double-station double-layer bag forming machine | |
| CN215202134U (en) | Automatic nylon tube adhesive tape winding and cutting equipment | |
| CN112810912A (en) | Bottom sealing heat-shrinkable film packaging machine | |
| CN117465759B (en) | Packaging equipment integrating edge banding rolling and packaging | |
| CN107600545A (en) | A kind of glass fibre rolls up felt baling press | |
| CN107986086A (en) | A kind of heat-shrink tube winding reclaimer and method | |
| CN116835024A (en) | Automatic winding and film breaking device for winding film for product packaging | |
| CN119873036A (en) | Non-bundling heat-sealing packaging equipment for gloves | |
| CN223408188U (en) | Paper cup bundling device for paper cup production | |
| CN107298210B (en) | Pneumatic clamper packing box automatic sticking patch device and its rubberizing technique | |
| CN118107838B (en) | Automatic cable packing equipment | |
| CN221458104U (en) | Packaging equipment integrating edge banding rolling and packaging | |
| CN207726510U (en) | A kind of heat-shrink tube winding reclaimer |
Legal Events
| Date | Code | Title | Description |
|---|---|---|---|
| GR01 | Patent grant | ||
| GR01 | Patent grant |