CN107323758A - A kind of packaging mechanism applied to particles packing machine - Google Patents
A kind of packaging mechanism applied to particles packing machine Download PDFInfo
- Publication number
- CN107323758A CN107323758A CN201710553637.7A CN201710553637A CN107323758A CN 107323758 A CN107323758 A CN 107323758A CN 201710553637 A CN201710553637 A CN 201710553637A CN 107323758 A CN107323758 A CN 107323758A
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- Prior art keywords
- hot melt
- laterally
- block
- arm
- power
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- 239000002245 particle Substances 0.000 title claims abstract description 75
- 238000004806 packaging method and process Methods 0.000 title claims abstract description 72
- 238000012856 packing Methods 0.000 title claims abstract description 35
- 230000007246 mechanism Effects 0.000 title claims abstract description 19
- 239000012943 hotmelt Substances 0.000 claims abstract description 253
- 239000008187 granular material Substances 0.000 claims abstract description 32
- 238000007789 sealing Methods 0.000 claims description 39
- 230000005540 biological transmission Effects 0.000 claims description 23
- 238000010438 heat treatment Methods 0.000 claims description 23
- 238000005520 cutting process Methods 0.000 claims description 21
- 239000002184 metal Substances 0.000 claims description 15
- 230000003111 delayed effect Effects 0.000 claims 1
- 239000013618 particulate matter Substances 0.000 abstract description 23
- 230000003245 working effect Effects 0.000 abstract description 3
- 230000003247 decreasing effect Effects 0.000 abstract description 2
- 230000033001 locomotion Effects 0.000 description 11
- 238000009826 distribution Methods 0.000 description 8
- 238000005538 encapsulation Methods 0.000 description 7
- 238000010586 diagram Methods 0.000 description 5
- 230000003139 buffering effect Effects 0.000 description 4
- 238000000034 method Methods 0.000 description 4
- 230000008569 process Effects 0.000 description 4
- 238000009987 spinning Methods 0.000 description 4
- 238000009825 accumulation Methods 0.000 description 2
- 230000009286 beneficial effect Effects 0.000 description 2
- 239000003814 drug Substances 0.000 description 2
- 239000011236 particulate material Substances 0.000 description 2
- 230000000737 periodic effect Effects 0.000 description 2
- 238000005096 rolling process Methods 0.000 description 2
- 239000000126 substance Substances 0.000 description 2
- 230000000747 cardiac effect Effects 0.000 description 1
- 230000008859 change Effects 0.000 description 1
- 238000004140 cleaning Methods 0.000 description 1
- 230000007812 deficiency Effects 0.000 description 1
- 238000005516 engineering process Methods 0.000 description 1
- 230000006872 improvement Effects 0.000 description 1
- 238000011065 in-situ storage Methods 0.000 description 1
- 238000009434 installation Methods 0.000 description 1
- 238000004519 manufacturing process Methods 0.000 description 1
- 238000002360 preparation method Methods 0.000 description 1
- 238000000926 separation method Methods 0.000 description 1
- 239000007787 solid Substances 0.000 description 1
- 230000009466 transformation Effects 0.000 description 1
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65B—MACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
- B65B51/00—Devices for, or methods of, sealing or securing package folds or closures; Devices for gathering or twisting wrappers, or necks of bags
- B65B51/10—Applying or generating heat or pressure or combinations thereof
- B65B51/14—Applying or generating heat or pressure or combinations thereof by reciprocating or oscillating members
- B65B51/146—Closing bags
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65B—MACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
- B65B1/00—Packaging fluent solid material, e.g. powders, granular or loose fibrous material, loose masses of small articles, in individual containers or receptacles, e.g. bags, sacks, boxes, cartons, cans, or jars
- B65B1/30—Devices or methods for controlling or determining the quantity or quality or the material fed or filled
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65B—MACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
- B65B51/00—Devices for, or methods of, sealing or securing package folds or closures; Devices for gathering or twisting wrappers, or necks of bags
- B65B51/10—Applying or generating heat or pressure or combinations thereof
- B65B51/26—Devices specially adapted for producing transverse or longitudinal seams in webs or tubes
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65B—MACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
- B65B61/00—Auxiliary devices, not otherwise provided for, for operating on sheets, blanks, webs, binding material, containers or packages
- B65B61/04—Auxiliary devices, not otherwise provided for, for operating on sheets, blanks, webs, binding material, containers or packages for severing webs, or for separating joined packages
- B65B61/06—Auxiliary devices, not otherwise provided for, for operating on sheets, blanks, webs, binding material, containers or packages for severing webs, or for separating joined packages by cutting
Landscapes
- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Quality & Reliability (AREA)
- Basic Packing Technique (AREA)
- Package Closures (AREA)
Abstract
The present invention provides a kind of packaging mechanism applied to particles packing machine, the transverse packed station carried out simultaneously including longitudinal vertical closure station and with longitudinal vertical closure station, first longitudinal direction heats block and second longitudinal direction hot melt block is longitudinally oppositely arranged side by side, first power arm and the second power arm are set laterally side by side, and are connected with longitudinally hot melt tension spring between the position of end rearward of the first power arm and the position of end rearward of the second power arm;First power arm is flexibly connected by a linear bearing with the hot melt central shaft of the arm of force first.It can efficiently and in an orderly manner be automated using a kind of packaging mechanism applied to particles packing machine of the present invention and realize to particulate matter loading packaging bag and while complete to be packaged the packaging bag for loading particulate matter;Granule packaging is greatly increased into the working effect of bag, cost of labor is decreased;The particle quantitative ring of dimension size how much can be changed according to required packing dosage simultaneously, is realized to loading how much particulate matter dosage controls in packaging bag.
Description
Technical field
The present invention relates to packing machine technical field, and in particular to a kind of packaging mechanism applied to particles packing machine.
Background technology
At present, the portable forms of bagged granules are increasingly welcome by numerous users, more especially lack dosage
Food, medicine or chemicals, but often cause leakage due to sealing imprecise problem, and the pot-life of particle extremely has
Limit, sealing imprecision can also make regular hour in advance shelf-life of the particle of food and medicine and chemical classes preparation.
Chinese patent(Publication number 201116158)Utility model is related to a kind of packing machine, more particularly, to one kind to automatic
The structural improvement of packing machine.Automatic bag packaging machine, including send bag apparatus it also include support, on support provided with one be used for will be defeated
It is sent into the small package bag come and is distributed to the dispensing device being symmetricly set on two that send bag apparatus both sides feeding supporting plates, two edges
The feeding supporting plate that horizontal direction moves reciprocatingly is connected with feed drive unit respectively, is set respectively in the top of each feeding supporting plate
Have and feeding when supporting plate is retracted for stopping the baffle plate of small package bag, being respectively arranged below with one and be used in each feeding supporting plate
It is in the accumulation mold for turning over the packaging bag of set state and catching small package bag to strut, and pressure is respectively equipped with directly over each accumulation mold
Bag apparatus.
In file disclosed above, in actual production process, load tolerance is larger, and the bag of different weight often occurs
Fill product.
The content of the invention
The purpose of the present invention is to overcome deficiency in existing product to realize that particulate matter is quantitatively packed simultaneously there is provided automation manipulation
Particulate matter will be had been loaded into and be applied to particle in a kind of integral particles packing machine of the packaging bag encapsulation of open-like shape and one kind
The packaging mechanism of packing machine.
In order to achieve the above object, the present invention is achieved by the following technical solutions:
The present invention provides a kind of particles packing machine, including particle quantitative pack device applied to the particles packing machine, is applied to
The packaging mechanism of the particles packing machine and the pulling bag station for pulling granule packaging bag from top to bottom, wherein:
Particle quantitative pack device includes being used for distributing station by the particle quantitative that particulate matter carries out quantitative separating, drives the particle
The quantitative rotary work station that dosing station is rotated;
The present invention, which provides a kind of packaging mechanism applied to particles packing machine, includes being used for the packaging by particulate matter is quantitatively loaded
Bag sidepiece carries out longitudinal vertical closure station of vertical closure and with longitudinal vertical closure station simultaneously to the quantitatively packaging bag of loading particulate matter
Top or bottom carry out the transverse packed station of horizontal sealing.
The particle quantitative distribution station is including being used to hold and being directed downwardly toward the funnel of delivery of particulate material, equidistantly arrangement
For controlling the how many multiple particle quantitative rings of amounts of particles, for circulating the rotation for driving quantitative loop to carry out rotation particle distribution
Pallet, wherein:
Towards above rotary-tray partial center position at the funnel bottom end opening, the multiple particle quantitative rings equidistantly arranged by
On down extend through rotary-tray, each particle quantitative ring bottom face be connected be capable of timed periodic opening and
The timing switch door of closing;Close the door transverse arm and enabling transverse arm are provided with below rotary-tray, close the door be provided with transverse arm with
Horizontal plane where rotary-tray is mutually perpendicular to and can drive the column of closing the door of timing switch door closure, is installed on enabling transverse arm
There is the enabling column that is mutually perpendicular to and can drive timing switch door to open with horizontal plane where rotary-tray;In rotary-tray side
Lower section and the packaging that the particulate matter for being fallen under receiving out of particle quantitative ring is provided with immediately below enabling column
Bag guiding trestle;The packaging bag guiding trestle is arranged with the unencapsulated packaging bag in open-like shape;
The quantitative rotary work station includes quantitative central shaft, the step-like clamping rings being fixedly connected with the quantitative central shaft, rotation
Turn to rise body, the spiral center axle with the quantitative central shaft sliding connection, the rotation for the limited support spiral center axle
Turn the quantitative transmission mechanism that buffer unit and the quantitative central shaft of driving are quantitatively rotated, wherein:
The step-like clamping rings is connected by rotary steering key with the rotary-tray key that particle quantitative is distributed in station, so that
Realize that quantitative central shaft drives rotary-tray spinning motion together;Rotation rises body and is connected with spiral center axle thread, and
Rotation rises body and spiral center axle is respectively positioned on the lower section of rotary-tray;Because spiral center axle can enter in company with quantitative central shaft
The certain spinning motion of row, while body will be risen along the spiral center axle outside screw with the rotation that spiral center axle thread coordinates
Spiral and the bottom surface for withstanding or propping up step-like clamping rings;Now spiral center axle is not companion in stable state
Quantitative central shaft is transported through dynamic;
Close the door transverse arm and the enabling transverse arm rise body with rotation respectively and are fixedly connected;The rotary buffer device include cushion block,
Bearing, snap ring, rotating base, spring supporting ring and quantitative spring, wherein:The quantitative central shaft is successively from the bottom up through logical
Cross and quantify spring, spring supporting ring, rotating base, snap ring, bearing and cushion block, quantitative spring is upwardly extended and by spring supporting
Ring is fixedly connected with rotating base bottom face, and snap ring is fixedly mounted on rotating base top end face, and spiral is lived for limited support
The cushion block of central shaft bottom is flexibly connected by bearing with snap ring;
The quantitative transmission mechanism includes quantitatively transmission collar, quantitative driving gear component, bearing block and quantitative fixed plate, its
In:Quantitatively transmission collar is connected by quantitative gear key with quantitative center axle key, is quantitatively driven collar and quantitative driving gear set
Part is fixed as one connection, and quantitative driving gear component is located above bearing block;Lived for being slidably connected simultaneously limited support
The bearing block of quantitative central shaft is fixedly mounted on quantitative fixed plate upper surface.
Longitudinal vertical closure station includes vertical closure eccentric cam Power Component, first longitudinal direction hot melt block, the first heating rod, the
One longitudinal direction hot melt buffer board, the first power arm, vertical closure upper bearing (metal), the hot melt arm of force first central shaft, second longitudinal direction hot melt block, second
Heating rod, second longitudinal direction hot melt buffer board, the second power arm, vertical closure lower bearing, the hot melt arm of force second central shaft, longitudinal direction hot melt
Tension spring, wherein:
The first longitudinal direction hot melt block and second longitudinal direction hot melt block are oppositely arranged side by side along longitudinal direction, the first power arm and the second power
Arm is set laterally side by side, and the first power arm end rearward position and the second power arm end rearward position between be connected with it is vertical
Hot melt tension spring;The design of the structure so that outwards top is opened or opened up respectively in the first power arm and the second power arm stress
After opening, by the longitudinal direction, the first power arm and the second power arm can be back pulled to reset by hot melt tension spring;
First power arm is flexibly connected by a linear bearing with the hot melt central shaft of the arm of force first, and the first power arm can
Swung around the hot melt central shaft of the arm of force first;
Second power arm is flexibly connected by another linear bearing with the hot melt central shaft of the arm of force second, and the second power arm energy
It is enough to be swung around the hot melt central shaft of the arm of force second;Specifically:Heat the central shaft of the arm of force first and be arranged on the first power arm
By middle part, it is mutually perpendicular between the hot melt central shaft of the arm of force first and the first power arm;The central shaft of the arm of force second is heated to install
Middle part is leaned in the second power arm, is mutually perpendicular between the hot melt central shaft of the arm of force second and the second power arm;So, first move
While arm of force rear end is opened with the second power arm rear end stress expansion or top, the first power arm front end and the second power arm front end
It is corresponding to draw close or close to clamping;
The first heating rod is connected with first longitudinal direction hot melt block, the second heating rod is connected with second longitudinal direction hot melt block, this
The structure design of sample so that heat block in first longitudinal direction and second longitudinal direction hot melt block mutually clamps the same of granule packaging bag sidepiece
When, granule packaging bag sidepiece is heated by each interior the first heating rod being provided with, the second heating rod and then particle bag is realized
The vertical encapsulation of pack is integral;
First longitudinal direction heats block and is fixedly mounted on the first power arm leading inside portion by first longitudinal direction hot melt buffer board, and second indulges
Hot melt block heats buffer board by second longitudinal direction and is fixedly mounted on the second power arm leading inside portion;In the first power arm rear end
Upper lateral part is provided with vertical closure upper bearing (metal), is provided with vertical closure lower bearing in the second power arm rear end following side, such structure setting,
It ensure that vertical closure upper bearing (metal) and vertical closure lower bearing have enough spacing in the vertical direction, that is, be maintained in Different Plane;
The vertical closure eccentric cam Power Component include be used for outwards push up open vertical closure upper bearing (metal) the first vertical closure eccentric cam and
The second vertical closure eccentric cam of vertical closure lower bearing is opened for outwards pushing up, the first vertical closure eccentric cam and the second vertical closure eccentric cam are solid
Dingan County is on power post, and the protruding parts of the first vertical closure eccentric cam and the protruding parts of the second vertical closure eccentric cam are distinguished
Positioned at the two opposite sides of power post;Such structure design, in order to ensure that the first vertical closure is inclined in power post from during turning around
Cardiac prominence wheel and the second vertical closure eccentric cam can push up out corresponding vertical closure upper bearing (metal) and vertical closure lower bearing respectively;It is achieved in that to
One power arm rear end is opened with the second power arm rear end stress expansion or top, while before the first power arm front end and the second power arm
End is corresponding to be drawn close or close to clamping, that is, realizes first longitudinal direction hot melt block and second longitudinal direction hot melt block is mutually clamped and heat
Melt granule packaging bag sidepiece.
The transverse packed station includes horizontal sealing eccentric cam Power Component, first laterally hot melt component, the second horizontal heat
Molten component, two the hot melt leads and transverse cutting device that be arranged in parallel, the first laterally hot melt component and the second horizontal hot melt
It is oppositely arranged side by side between component, horizontal sealing eccentric cam Power Component driving first laterally heats component and the second horizontal hot melt group
Part can realize that first laterally heats component and the second horizontal hot melt component phase respectively along being moved back and forth before and after hot melt lead
Hot melt extruded is mutually transversely carried out after clamping to granule packaging bag integral, and first laterally heats component and the second horizontal heat
Molten component, which resets, to be separated;Realize first laterally hot melt component and second laterally hot melt component between clamp with separate it is reciprocal
Formula is moved;
Described first, which laterally heats component, includes freely adjusting spring, the first guide pin bushing jump ring, hot melt adjustable first fixed plate, gas
Cylinder, laterally the first fixed plate of hot melt, the first guide pillar of hot melt, the first heat block fixed plate, first laterally hot melt block, hot melt power the
Three fixed plates, laterally the second pull bar connecting shaft, hot melt clutch shaft bearing;Wherein:
The hot melt fixed plate of power the 3rd is fixedly mounted on the front end of two hot melt leads, and the hot melt fixed plate of power the 3rd
Place direction is perpendicular to direction where hot melt lead;
The laterally hot melt clutch shaft bearing is fixedly mounted on the hot melt fixed plate medial extremity of power the 3rd by the second pull bar connecting shaft;
Laterally the first fixed plate of hot melt is fixedly mounted on the rear end of two hot melt leads, and laterally direction where the first fixed plate of hot melt
Perpendicular to direction where hot melt lead;
Many the first guide pillars of hot melt are arranged side by side in laterally the first fixed plate of hot melt, laterally the first fixed plate of hot melt passes through this
The first guide pillar of a little hot melts is fixedly connected with adjustable first fixed plate of hot melt, and every the first guide pillar of hot melt and hot melt are adjustable
Junction is provided with the first guide pin bushing jump ring between first fixed plate;
Adjustable first fixed plate of hot melt laterally heats block by many springs that freely adjust being arranged side by side with being provided with first
The first heat block fixed plate connection;Such structure design, laterally the first fixed plate of hot melt, hot melt can adjust the first fixed plate
And first laterally hot melt block in the longitudinal direction can in company with hot melt lead front and rear reciprocating together, and first horizontal
Hot melt block has enough buffering effects in motion process in the longitudinal direction;Wherein:It is fixedly mounted on laterally hot melt first
Cylinder in fixed plate is used to control transverse cutting device to carry out cutting operation to the granule packaging bag after transverse packed;
It is described second laterally hot melt component include second laterally hot melt block, hot melt the second fixed block, cushion block, laterally hot melt second consolidate
Determine block, pull bar connecting rod, locking nut, the first pull bar connecting shaft, arm-tie, laterally extension spring, hot melt second bearing, wherein:
The laterally hot melt second bearing is on arm-tie, and this laterally heats second bearing with laterally heating clutch shaft bearing simultaneously
Row is oppositely arranged on the front and rear sides of power post;The arm-tie two side ends are slided by linear bearing and two hot melt leads respectively
Dynamic to be connected, such arm-tie can be moved forward and backward along on two hot melt leads place in-planes;Arm-tie passes through
First pull bar connecting shaft is connected with laterally the second fixed block of hot melt, and laterally the second fixed block two side ends of hot melt pass through straight line respectively
Bearing and two hot melt lead sliding connections;So laterally the second fixed block of hot melt can be in company with arm-tie along two heat
Moved forward and backward where molten lead on in-plane;Many hot melts the have been arranged side by side on laterally the second fixed block of hot melt
Two guide pillars, laterally the second fixed block of hot melt is by these second guide pillars of hot melt and is provided with the second hot melt second for laterally heating block
Fixed block is fixedly connected, and junction is provided with the second guide pin bushing between the second fixed block of every the second guide pillar of hot melt and hot melt
Jump ring;Such structure design, laterally arm-tie, the second fixed block of hot melt and the second horizontal hot melt block in the longitudinal direction can
Reciprocating before and after being carried out along hot melt lead, and second laterally hot melt block have in the longitudinal direction in motion process
Certain buffering effect;
The transverse cutting device includes upper slitter connecting plate and is used on the upper slitter connecting plate along horizontal direction
The cutting knife of granule packaging bag is cut, specifically:The piston rod that elastic motion is capable of in cylinder front end is connected with upper slitter connecting plate,
Realize that cylinder drives reciprocating type mobile before and after cutting knife in the longitudinal direction, so as to complete the cutting operation to granule packaging bag.
The horizontal sealing eccentric cam Power Component includes the first horizontal sealing eccentric cam and the second horizontal sealing eccentric cam, power post
Sequentially pass through by the first horizontal sealing eccentric cam and the second horizontal sealing eccentric cam and be mutually permanently connected integrally from lower to upper, the
The protruding parts of one horizontal sealing eccentric cam and the protruding parts of the second horizontal sealing eccentric cam are located at the two opposite sides of power post respectively;
So in power post, often, from during turning around, the first horizontal sealing eccentric cam and the second horizontal sealing eccentric cam can be pushed up out respectively
Corresponding laterally hot melt clutch shaft bearing and laterally hot melt second bearing;I.e. laterally hot melt clutch shaft bearing heats second bearing with horizontal
Opposite direction movement is respectively facing after stress, so as to correspondingly drive hot melt power the 3rd fixed plate, laterally hot melt lead, heat
Laterally hot melt block is moved forward together for molten first fixed plate, first, and arm-tie, laterally the first pull bar connecting shaft, hot melt second
Laterally hot melt block is moved backwards together for fixed block, second;It will realize that the first horizontal hot melt block laterally heats block with second and mutually leaned on
Hold together and clamp and heat granule packaging bag bottom or top.
Simultaneously arm-tie two side ends with hot melt the fixed plate of power the 3rd two side ends be connected to extension spring so that stress to
The hot melt fixed plate of power the 3rd that the arm-tie and stress moved afterwards is moved forward acts on Regression extremely in the elastic reset of extension spring
It is in situ.
As preferred, pulling bag station is located at for granule packaging bag to be pulled to by longitudinal vertical closure station above
The transverse packed station of lower section;The pulling bag station includes active clamping wheel, initiative drive shaft, driven clamping wheel, slave drive
Axle, pulling bag fixed seat, pulling bag buffing pad, pulling bag adjusting yoke, movable spring, spring anchor block, fastener, pulling bag motor, master
Moving gear, driven gear, wherein:The active clamping wheel and driven clamping wheel mutually clamp granule packaging bag, pulling bag side by side
Motor is connected by its output shaft with driving gear coaxial transmission, and intermeshing transmission connects between driving gear and driven gear
Connect;Active clamping wheel is extended through pulling bag fixed seat and fixed with driving gear by the initiative drive shaft with its integrally connected to be connected
Connect, driven clamping wheel is extended through pulling bag buffing pad and fixed with driven gear by the slave drive axle with its integrally connected to be connected
Connect;Pulling bag fixed seat is arranged side by side with pulling bag buffing pad, and pulling bag adjusting yoke is used to adjust control pulling bag buffing pad and pulling bag is consolidated
The distance between reservation, and pulling bag buffing pad and pulling bag fixed seat are locked by fastener;Pulling bag buffing pad passes through work
Spring of moving is connected with spring anchor block;Specifically:Pulling bag adjusting yoke one end is flexibly connected with spring anchor block, its other end
Portion is fixedly connected with pulling bag buffing pad, due between pulling bag fixed seat and pulling bag buffing pad side by side and with certain interval, so
Promoted by pulling bag adjusting yoke and extrude pulling bag buffing pad, to realize the tune of pulling bag buffing pad and pulling bag buffing pad spacing size
It is whole, and in time by fastener lock adjustment after spacing so that indirectly regulation and control active clamping wheel and driven clamping wheel it
Between spacing size.
As preferred, it is provided with funnel bottom end opening for clearing up the particle being shelved on rotary-tray upper surface
Thing(These particulate matters being shelved on rotary-tray upper surface are cleared up in particle quantitative ring)One circle hairbrush;Circle hair
Brush is fixedly mounted at funnel bottom end opening by hairbrush retainer ring.
As preferred, through having timing switch door central rotating shaft, timing switch door central rotating shaft on timing switch door
Extend upward through by rotary-tray;It is provided with the top of timing switch door central rotating shaft perpendicular to timing switch door central rotating shaft
A piece opening bearing pin of axial direction, the opening bearing pin is connected with corresponding particle quantitative ring outer side edges along spacing;In place
Timing switch door central rotating shaft below rotary-tray is arranged with pad, torsion spring and collar successively from lower to upper, wherein:Collar
Be fixedly mounted on rotary-tray bottom surface, the bottom of pad and timing switch door central rotating shaft is fixedly connected, torsion spring respectively with pad
Piece, collar connection, and torsion spring are clamped between pad and collar.
As preferred, be provided with folding shape batten on timing switch door bottom surface, the medial extremity of the folding shape batten with outside it
The direction formed between side is substantially parallel with rotary-tray radial direction, and transverse arm of closing the door upwardly extends and can be with folding shape bar
The outboard end of plate is abutted against, so as to realize the spacing closure to timing switch door, and then allows particle quantitative ring to repeat to hold particle
Thing;Enabling column is upwardly extended and can abutted against with rolling over the medial extremity of shape batten, so as to realize to the spacing of timing switch door
Open, and then the particulate matter being contained in particle quantitative ring is freely fallen into the packaging bag of packaging bag guiding trestle.
As preferred, present invention additionally comprises for i.e. it is real be locked the quantitative transmission collar that stays in during rotation or
The locking device of the quantitative central shaft of person, the locking device includes handle ball, quantitative locking transmission handle and for flexible card
The snap ring of quantitative transmission collar or quantitative central shaft is waled, handle ball is driven handle by quantitative locking and is connected with snap ring.
Compared with prior art, beneficial effects of the present invention are as follows:
Realization can be automated efficiently and in an orderly manner using a kind of particles packing machine of the present invention packaging bag is loaded simultaneously to particulate matter
Complete to be packaged the packaging bag for loading particulate matter simultaneously;Granule packaging is greatly increased into the working effect of bag, is also subtracted
Cost of labor is lacked;The particle quantitative ring of dimension size how much can be changed according to required packing dosage simultaneously, from
And realize to loading how much particulate matter dosage controls in packaging bag.
Brief description of the drawings
Fig. 1 ~ 2 are a kind of overall structure diagram of particles packing machine of the invention.
Fig. 3 is particle quantitative distribution station and the auxiliary section with quantitative rotary work station in a kind of particles packing machine of the invention
Separation structure schematic diagram.
Fig. 4 ~ 7 are particle quantitative distribution station and the cooperation with quantitative rotary work station in a kind of particles packing machine of the invention
Part-structure difference angle schematic diagram.
Fig. 8 is the structural representation of power post in a kind of particles packing machine of the invention.
Fig. 9 is power post and the fit structure schematic diagram with vertical encapsulation station in a kind of particles packing machine of the invention.
Figure 10 is vertical encapsulation station and the fit structure signal with pulling bag station in a kind of particles packing machine of the invention
Figure.
Figure 11 ~ 12 are the structural representation of vertical encapsulation station in a kind of particles packing machine of the invention.
Figure 13 ~ 14 are the structural representation of pulling bag station in a kind of particles packing machine of the invention.
Figure 15 ~ 16 are the structural representation of transverse packed station in a kind of particles packing machine of the invention.
Figure 17 is transverse packed station and the fit structure schematic diagram with power post in a kind of particles packing machine of the invention.
Reference:
Particle quantitative distributes station 1, funnel 101, hairbrush 102, hairbrush retainer ring 103, measure hopper baffle ring 104, particle quantitative ring
105, rotary-tray 106, timing switch door 107, collar 108, torsion spring 109, timing switch door central rotating shaft 110, pad 1101,
Be open bearing pin 111, and folding shape batten 112, folding shape batten medial extremity 1121, folding shape batten outboard end 1122, column 113 of closing the door is closed
Door transverse arm 114, enabling column 115, enabling transverse arm 116, packaging bag guiding trestle 12, conveying and packaging bag mechanism 13;
Quantitative rotary work station 2, quantitative central shaft 200, quantitative hold-down ring 201, rotary steering key 202, quantitative central shaft 200, platform
Scalariform clamping rings 203, rotation rises body 204, spiral center axle 205, cushion block 206, bearing 207, snap ring 208, rotating base
209, spring supporting ring 210, quantitative spring 211, quantitative transmission mechanism 22 is quantitatively driven collar 221, quantitative driving gear component
222, bearing block 223, quantitative fixed plate 224;
Vertical encapsulation station 3, first longitudinal direction hot melt block 311, the first heating rod 312, first longitudinal direction hot melt buffer board 313, first
Power arm 314, vertical closure upper bearing (metal) 315, the first central shaft of the hot melt arm of force 316, second longitudinal direction hot melt block 321, the second heating rod
322, second longitudinal direction hot melt buffer board 323, the second power arm 324, vertical closure lower bearing 325, the second central shaft of the hot melt arm of force 326,
Longitudinal direction hot melt tension spring 33;
Transverse packed station 4, freely adjusts spring 401, and the first guide pin bushing jump ring 402, hot melt can adjust the first fixed plate 404, on
Knife connecting plate 405, cylinder 406, laterally the first fixed plate 407 of hot melt, heats the first guide pillar 408, the first heat block fixed plate
409, the first heat block 410, the second heat block 411 heats the second fixed block 412, and cushion block 413 laterally heats the second fixed block
414, pull bar connecting rod 415, locking nut 416, the first pull bar connecting shaft 417, arm-tie 418, extension spring 419 heats power the 3rd
Fixed plate 420, the second pull bar connecting shaft 421, laterally hot melt clutch shaft bearing 422, laterally heats second bearing 423, cutting knife 41, heat
Molten lead 42;
Power post 50, the first horizontal sealing eccentric cam 501, the second horizontal sealing eccentric cam 502, the first vertical closure eccentric cam 503, second
Vertical closure eccentric cam 504;
Active clamping wheel 601, initiative drive shaft 602, driven clamping wheel 603, slave drive axle 604, pulling bag fixed seat 605 is drawn
Bag buffing pad 606, pulling bag adjusting yoke 607, movable spring 608, spring anchor block 609, pulling bag motor 61, driving gear 611,
Driven gear 612.
Embodiment
Technical scheme is described further with reference to Figure of description:
As shown in Fig. 1 ~ 17, the present invention provides a kind of specific embodiment of particles packing machine, as shown in Figure 1 and 2, a kind of particle bag
Installation include applied to the particle quantitative pack device of the particles packing machine, the packaging mechanism applied to the particles packing machine and
The pulling bag station 6 of granule packaging bag is pulled from top to bottom, wherein:Particle quantitative pack device includes being used to carry out particulate matter
The particle quantitative distribution station 1 of quantitative separating, the quantitative rotary work station 2 for driving particle quantitative distribution station 1 to be rotated;Envelope
Mounting mechanism include be used for by quantitatively load particulate matter packaging bag sidepiece carry out vertical closure longitudinal vertical closure station 3 and with longitudinal direction
At the top of the packaging bag of vertical closure station 3 simultaneously to quantitatively loading particulate matter or bottom carries out the transverse packed station 4 of horizontal sealing.
As shown in Fig. 3 ~ 7, the particle quantitative distribution station 1 includes the leakage for being used to holding and being directed downwardly toward delivery of particulate material
Bucket 101, the multiple particle quantitative rings 105 for being equidistantly arranged for controlling amounts of particles how many, for circulating drive quantitative loop 105
The rotary-tray 106 of rotation particle distribution is carried out, wherein:Towards the partial center of rotary-tray 106 at the bottom end opening of funnel 101
Above position, the multiple particle quantitative rings 105 equidistantly arranged extend through rotary-tray 106 from top to bottom, in each particle
The bottom face of quantitative loop 105 is connected with the timing switch door 107 for the opening and closing for being capable of timed periodic;In rotary-tray
106 lower sections are provided with close the door transverse arm 114 and enabling transverse arm 116, are provided with closing the door on transverse arm 114 and the place of rotary-tray 106
Horizontal plane is mutually perpendicular to and can drive the column 113 of closing the door of the closure of timing switch door 107, is provided with enabling transverse arm 116
The enabling column 115 that is mutually perpendicular to and can drive timing switch door 107 to open with the place horizontal plane of rotary-tray 106;In rotation
Ask and the side-lower of disk 106 and be provided with positioned at the underface of enabling column 115 for being fallen under receiving out of particle quantitative ring 105
The packaging bag guiding trestle of the particulate matter come;The packaging bag guiding trestle is arranged with the unencapsulated packaging bag in open-like shape.
As shown in Fig. 5 ~ 7, the quantitative rotary work station 2 includes quantitative central shaft 200, fixed with the quantitative central shaft 200
The step-like clamping rings 203 of connection, rotation rise body 204, the spiral center being slidably connected with the quantitative central shaft 200
Axle 205, the rotary buffer device for the limited support spiral center axle 205 and the quantitative central shaft 200 of driving are quantitatively revolved
The quantitative transmission mechanism 22 turned, wherein:The step-like clamping rings 203 is distributed by rotary steering key 202 and particle quantitative
The key of rotary-tray 106 connection in station 1, so as to realize that quantitative central shaft 200 drives the spinning motion together of rotary-tray 106;
Rotation rises body 204 and is connected with the screw thread of spiral center axle 205, and rotation rises body 204 and spiral center axle 205 is respectively positioned on
The lower section of rotary-tray 106;Because spiral center axle 205 can carry out certain spinning motion in company with quantitative central shaft 200, simultaneously
The rotation coordinated with the screw thread of spiral center axle 205 is risen into body 204 along the outside screw spiral of spiral center axle 205 simultaneously
Withstand or prop up the bottom surface of step-like clamping rings 203;Now spiral center axle 205 is not in company with quantitative in stable state
Central shaft 200 is transported through dynamic;As shown in Figure 5:Transverse arm 114 and the enabling transverse arm 116 of closing the door rises body 204 with rotation respectively
It is fixedly connected;As shown in Fig. 6 ~ 7:The rotary buffer device include cushion block 206, bearing 207, snap ring 208, rotating base 209,
Spring supporting ring 210 and quantitative spring 211, wherein:The quantitative central shaft 200 extends through quantitative spring from the bottom up successively
211st, spring supporting ring 210, rotating base 209, snap ring 208, bearing 207 and cushion block 206, quantitative spring 211 are upwardly extended simultaneously
It is fixedly connected by spring supporting ring 210 with the bottom face of rotating base 209, snap ring 208 is fixedly mounted on the top of rotating base 209
On face, the cushion block 206 for living the bottom of spiral center axle 205 for limited support is flexibly connected by bearing 207 with snap ring 208.
As shown in Fig. 6 ~ 7:The quantitative transmission mechanism 22 includes quantitatively transmission collar 221, quantitative driving gear component
222nd, bearing block 223 and quantitative fixed plate 224, wherein:Quantitatively transmission collar 221 passes through quantitative gear key and quantitative central shaft
200 keys are connected, and quantitatively transmission collar 221 is fixed as one with quantitative driving gear component 222 and is connected, and quantitative driving gear component
222 are located at the top of bearing block 223;The bearing block 223 that quantitative central shaft 200 is lived for being slidably connected simultaneously limited support is fixed
Installed in the quantitative upper surface of fixed plate 224.
The present invention provides a kind of packaging mechanism applied to particles packing machine, including longitudinal vertical closure station 3 and can be with
The transverse packed station 4 that longitudinal vertical closure station 3 is operated simultaneously, specifically:
As shown in Fig. 9 ~ 12:Longitudinal vertical closure station 3 include vertical closure eccentric cam Power Component, first longitudinal direction hot melt block 311,
First heating rod 312, first longitudinal direction hot melt buffer board 313, the first power arm 314, vertical closure upper bearing (metal) 315, the hot melt arm of force first
Central shaft 316, second longitudinal direction hot melt block 321, the second heating rod 322, second longitudinal direction hot melt buffer board 323, the second power arm
324th, vertical closure lower bearing 325, the second central shaft of the hot melt arm of force 326, longitudinal direction hot melt tension spring 33, wherein:
As shown in figure 12:The first longitudinal direction hot melt block 311 and second longitudinal direction heat block 321 and are oppositely arranged side by side along longitudinal direction, the
One power arm 314 and the second power arm 324 are set laterally side by side, and are moved in the position of end rearward of the first power arm 314 with second
Longitudinal direction hot melt tension spring 33 is connected between the position of end rearward of the arm of force 324;The design of the structure so that in the first power arm
314 and the stress of the second power arm 324 respectively outwards top open or deploy after, by the longitudinal direction heat tension spring 33 first can be moved
The power arm 324 of the arm of force 314 and second is back pulled to reset;First power arm 314 passes through a linear bearing and hot melt
The first central shaft of the arm of force 316 is flexibly connected, and the first power arm 314 can carry out left and right around hot melt the first central shaft of the arm of force 316
Swing;Second power arm 324 is flexibly connected by another linear bearing with hot melt the second central shaft of the arm of force 326, and second
Power arm 324 can be swung around hot melt the second central shaft of the arm of force 326;Specifically:Heat the first central shaft of the arm of force 316
Middle part is leaned on installed in the first power arm 314, is mutually hung down between the hot melt arm of force the first central shaft 316 and the first power arm 314
Directly;Heat the arm of force the second central shaft 326 and be arranged on the second power arm 324 and lean on middle part, the second central shaft of the hot melt arm of force 326 with
It is mutually perpendicular between second power arm 324;So, the rear end stress expansion of the rear end of the first power arm 314 and the second power arm 324 or
While person opens on top, the front end of the first power arm 314 is corresponding to the front end of the second power arm 324 to be drawn close or close to clamping.
As shown in Figure 10 ~ 12, the first heating rod 312 is connected with first longitudinal direction hot melt block 311, in second longitudinal direction hot melt
The second heating rod 322, such structure design are connected with block 321 so that heat block 311 and second longitudinal direction heat in first longitudinal direction
While frit 321 mutually clamps granule packaging bag sidepiece, added by each interior the first heating rod 312, second being provided with
Hot pin 322 heats to granule packaging bag sidepiece and then realizes that the vertical encapsulation of granule packaging bag is integral;First longitudinal direction heats block
311 heat buffer board 313 by first longitudinal direction is fixedly mounted on the leading inside portion of the first power arm 314, second longitudinal direction hot melt block
321 heat buffer board 323 by second longitudinal direction is fixedly mounted on the leading inside portion of the second power arm 324;In the first power arm 314
Rear upper side portion is provided with vertical closure upper bearing (metal) 315, and vertical closure lower bearing 325 is provided with the rear end following side of the second power arm 324, this
The structure setting of sample, it is ensured that vertical closure upper bearing (metal) 315 and vertical closure lower bearing 325 have enough spacing in the vertical direction, i.e.,
It is maintained in Different Plane.
As shown in Fig. 8 ~ 9:The vertical closure eccentric cam Power Component includes being used to outwards push up opening the of vertical closure upper bearing (metal) 315
One vertical closure eccentric cam 503 and the second vertical closure eccentric cam 504 that vertical closure lower bearing 325 is driven for outwards pushing up, the first vertical closure
The vertical closure eccentric cam 504 of eccentric cam 503 and second is fixedly mounted on power post 50, and the first vertical closure eccentric cam 503
Protruding parts and the protruding parts of the second vertical closure eccentric cam 504 are located at the two opposite sides of power post 50 respectively;Such structure
Design, in order to ensure in power post 50 from during turning around, the first vertical closure eccentric cam 503 and the second vertical closure eccentric cam
504 can push up out corresponding vertical closure upper bearing (metal) 315 and vertical closure lower bearing 325 respectively;It is achieved in that to the rear end of the first power arm 314
Opened with the rear end stress expansion of the second power arm 324 or top, while the front end of the first power arm 314 and the front end of the second power arm 324
It is corresponding to draw close or close to clamping, that is, realize first longitudinal direction hot melt block 311 and second longitudinal direction hot melt block 321 is mutually clamped
And heat granule packaging bag sidepiece.
As shown in Figure 15 ~ 17:The transverse packed station 4 includes the laterally hot melt of horizontal sealing eccentric cam Power Component, first
Component, second laterally hot melt component, two the hot melt leads 42 and transverse cutting device that be arranged in parallel, the first horizontal hot melt group
It is oppositely arranged side by side between part and the second horizontal hot melt component, horizontal sealing eccentric cam Power Component driving first laterally heats component
With second laterally hot melt component can respectively along hot melt lead 42 before and after move back and forth, realize first laterally hot melt component and
Second horizontal hot melt component transversely carries out hot melt extruded integrally after mutually clamping to granule packaging bag, and the first horizontal heat
Molten component and the second horizontal hot melt component reset and separated;Realize first laterally hot melt component and second laterally hot melt component it
Between clamp reciprocating with separating.
As shown in figure 16:Described first, which laterally heats component, includes freely adjusting spring 401, the first guide pin bushing jump ring 402, heat
Molten adjustable first fixed plate 404, laterally cylinder 406, the first fixed plate 407 of hot melt, hot melt the first guide pillar 408, first heating
Block fixed plate 409, first laterally heats block 410, hot melt power the 3rd fixed plate 420, laterally the second pull bar connecting shaft 421, heat
Molten clutch shaft bearing 422;Wherein:The hot melt fixed plate 420 of power the 3rd is fixedly mounted on the front end of two hot melt leads 42,
And the place direction of the 3rd fixed plate of hot melt power 420 is perpendicular to hot melt lead 42 place direction;The laterally hot melt first axle
Hold 422 and the medial extremity of the 3rd fixed plate of hot melt power 420 is fixedly mounted on by the second pull bar connecting shaft 421;Laterally heat first
Fixed plate 407 is fixedly mounted on the rear end of two hot melt leads 42, and laterally hot melt the first fixed plate 407 place direction is vertical
In hot melt lead 42 place direction;Many the first guide pillars of hot melt have been arranged side by side in laterally the first fixed plate 407 of hot melt
408, laterally the first fixed plate 407 of hot melt heats first guide pillars 408 by these and adjustable first fixed plate 404 of hot melt is fixed
Junction is provided with first and led between connection, and every the first guide pillar 408 of hot melt and adjustable first fixed plate 404 of hot melt
Cover jump ring 402;Adjustable first fixed plate 404 of hot melt by many be arranged side by side freely adjust spring 401 with being provided with the
One the first heat block fixed plate 409 for laterally heating block 410 is connected;Such structure design, laterally heats the first fixed plate
407th, heating adjustable first fixed plate 404 and first, laterally hot melt block 410 can be oriented in company with hot melt in the longitudinal direction
The front and rear reciprocating together of post 42, and first laterally hot melt block 410 have in the longitudinal direction in motion process it is enough
Buffering effect;Wherein:The cylinder 406 being fixedly mounted in laterally the first fixed plate 407 of hot melt is used to control transverse cutting device
Cutting operation is carried out to the granule packaging bag after transverse packed.
As shown in Figure 16 ~ 17:Described second, which laterally heats component, includes the second laterally hot melt block 411, fixation of hot melt second
Block 412, laterally cushion block 413, the second fixed block 414 of hot melt, pull bar connecting rod 415, locking nut 416, the first pull bar connecting shaft
417th, arm-tie 418, laterally extension spring 419, hot melt second bearing 423, wherein:The laterally hot melt second bearing 423, which is arranged on, draws
On plate 418, and transverse direction hot melt second bearing 423 is oppositely arranged on power post 50 side by side with laterally hot melt clutch shaft bearing 422
Front and rear sides;The two side ends of arm-tie 418 are slidably connected by linear bearing with two hot melt leads 42 respectively, so
Arm-tie 418 can be moved forward and backward along on two hot melt place in-planes of lead 42;Arm-tie 418 passes through the first pull bar
Connecting shaft 417 is connected with laterally the second fixed block 414 of hot melt, and laterally heats the two side ends of the second fixed block 414 respectively by straight
Bobbin is held to be slidably connected with two hot melt leads 42;So laterally the second fixed block 414 of hot melt can be in company with arm-tie 418
Moved forward and backward along on two hot melt place in-planes of lead 42;On laterally the second fixed block 414 of hot melt side by side
Many the second guide pillars of hot melt are provided with, laterally the second fixed block 414 of hot melt is by these second guide pillars of hot melt and is provided with second
Laterally the second fixed block of hot melt 412 of hot melt block 411 is fixedly connected, and every the second guide pillar of hot melt and the second fixed block of hot melt
Junction is provided with the second guide pin bushing jump ring between 412;Such structure design, laterally arm-tie 418, the second fixed block of hot melt
414 and second laterally hot melt block 411 in the longitudinal direction can along hot melt lead 42 carry out front and rear reciprocating, and
And second laterally hot melt block 411 there is in motion process certain buffering effect in the longitudinal direction;The transverse cutting device
It is used for the cutting granule packaging bag along on horizontal direction including upper slitter connecting plate 405 and on the upper slitter connecting plate 405
Cutting knife 41, specifically:The piston rod that elastic motion is capable of in the front end of cylinder 406 is connected with upper slitter connecting plate 405, realizes gas
Cylinder 406 drives reciprocating type mobile before and after cutting knife 41 in the longitudinal direction, so as to complete the cutting operation to granule packaging bag.
As shown in Fig. 8 and Figure 17:The horizontal sealing eccentric cam Power Component includes the first horizontal sealing eccentric cam 501 and second
Horizontal sealing eccentric cam 502, power post 50 sequentially passes through eccentric by the first horizontal sealing eccentric cam 501 and the second horizontal sealing from lower to upper
Cam 502 and be mutually permanently connected integral, the protruding parts of the first horizontal sealing eccentric cam 501 and the second horizontal sealing eccentric cam
502 protruding parts is located at the two opposite sides of power post 50 respectively;So in power post 50 during often turning around certainly, first
The horizontal sealing eccentric cam 502 of horizontal sealing eccentric cam 501 and second can push up out corresponding laterally hot melt clutch shaft bearing 422 and horizontal stroke respectively
Hot melt second bearing 423;Laterally it is respectively facing phase after hot melt clutch shaft bearing 422 and the horizontal hot melt stress of second bearing 423
Opposite direction is moved, so as to correspondingly drive hot melt power the 3rd fixed plate 420, hot melt lead 42, horizontal hot melt first to fix
Laterally hot melt block 410 is mobile forward together for plate 407, first, and arm-tie 418, laterally the first pull bar connecting shaft 417, hot melt the
Laterally hot melt block 411 is moved two fixed blocks 414, second backwards together;It will realize that first laterally heats the laterally heat of block 410 and second
Frit 411, which is mutually drawn close, clamps and heats granule packaging bag bottom or top.Simultaneously in the two side ends of arm-tie 418 and hot melt power the
The two side ends of three fixed plates 420 are connected to extension spring 419 so that arm-tie 418 that stress is moved rearwards by and stress are to reach
The dynamic hot melt fixed plate 420 of power the 3rd acts on Regression to original position in the elastic reset of extension spring 419.
As shown in Figure 13 ~ 14:Pulling bag station 6 is for granule packaging bag to be drawn by longitudinal vertical closure station 3 above
To underlying transverse packed station 4;The pulling bag station 6 includes active clamping wheel 601, initiative drive shaft 602, slave clip
Hold wheel 603, slave drive axle 604, pulling bag fixed seat 605, pulling bag buffing pad 606, pulling bag adjusting yoke 607, movable spring
608th, spring anchor block 609, fastener 610, pulling bag motor 61, driving gear 611, driven gear 612, wherein:The active
Clamping wheel 601 and driven clamping wheel 603 mutually clamp granule packaging bag side by side, and pulling bag motor 61 passes through its output shaft and active
The coaxial transmission of gear 611 is connected, and drive connection is intermeshed between driving gear 611 and driven gear 612;Active clamping wheel
601 extend through pulling bag fixed seat 605 by the initiative drive shaft 602 with its integrally connected is fixedly connected with driving gear 611,
Driven clamping wheel 603 extends through pulling bag buffing pad 606 and driven gear by the slave drive axle 604 with its integrally connected
612 are fixedly connected;Pulling bag fixed seat 605 is arranged side by side with pulling bag buffing pad 606, and pulling bag adjusting yoke 607, which is used to adjust, to be controlled
The distance between pulling bag buffing pad 606 and pulling bag fixed seat 605, and fixed pulling bag buffing pad 606 and pulling bag by fastener 610
Seat 605 is locked;Pulling bag buffing pad 606 is connected by movable spring 608 with spring anchor block 609;Specifically:Pulling bag is adjusted
The section one end of pull bar 607 is flexibly connected with spring anchor block 609, and its other end is fixedly connected with pulling bag buffing pad 606, due to
Side by side and with certain interval between pulling bag fixed seat 605 and pulling bag buffing pad 606, so pushed away by pulling bag adjusting yoke 607
Move and extrude pulling bag buffing pad 606, to realize the adjustment of pulling bag buffing pad 606 and the spacing size of pulling bag buffing pad 606, and in time
Ground locks the spacing after adjustment by fastener 610, thus indirectly regulation and control active clamping wheel 601 and driven clamping wheel 603 it
Between spacing size.
As shown in Fig. 2 ~ 3:It is provided with the bottom end opening of funnel 101 and is shelved on the upper surface of rotary-tray 106 for cleaning
On particulate matter i.e. these particulate matters being shelved on the upper surface of rotary-tray 106 are cleared up one in particle quantitative ring 105
Enclose hairbrush 102;The circle hairbrush 102 is fixedly mounted at the bottom end opening of funnel 101 by hairbrush retainer ring 103.
As shown in Fig. 5 ~ 6:Running through on timing switch door 107 has in timing switch door central rotating shaft 110, timing switch door
Heart rotating shaft 110 is extended upward through by rotary-tray 106;It is provided with fixed perpendicular to this on the top of timing switch door central rotating shaft 110
A piece opening bearing pin 111 of the axial direction of point switch gate central rotating shaft 110, the opening bearing pin 111 and corresponding particle quantitative ring
105 outer side edges are connected along spacing;In the timing switch door central rotating shaft 110 below rotary-tray 106 from lower to upper
Pad 1101, torsion spring 109 and collar 108 are arranged with successively, wherein:Collar 108 is fixedly mounted on the bottom surface of rotary-tray 106,
Pad 1101 is fixedly connected with the bottom of timing switch door central rotating shaft 110, and torsion spring 109 connects with pad 1101, collar 108 respectively
Connect, and torsion spring 109 is clamped between pad 1101 and collar 108.
As shown in Figure 5:Folding shape batten 112, the inner side of the folding shape batten 112 are provided with 107 bottom surfaces of timing switch door
The direction formed between end 1121 and its outboard end 1122 is substantially parallel with the radial direction of rotary-tray 106, transverse arm 114 of closing the door
Upwardly extend and can be abutted against with rolling over the outboard end 1122 of shape batten 112, the spacing of timing switch door 107 is closed so as to realize
Close, and then allow particle quantitative ring 105 to repeat to hold particulate matter;Enabling column 115 upwardly extends and can be with folding shape batten 112
Medial extremity 1121 is abutted against, so as to realize the spacing opening to timing switch door 107, and then to be contained in particle quantitative ring
Particulate matter in 105 is freely fallen into the packaging bag of packaging bag guiding trestle.
As shown in Fig. 5 ~ 7:The quantitative transmission collar stayed in present invention additionally comprises being locked for i.e. reality during rotation
221 or the locking device 23 of quantitative central shaft 200, the locking device 23 includes handle ball 231, quantitative locking transmission handle
232 and the snap ring 233 of quantitatively transmission collar 221 or quantitative central shaft 200 is lived for the clip that stretches, handle ball 231 passes through
Quantitative locking transmission handle 232 is connected with snap ring 233.
Beneficial effects of the present invention are as follows:It can be automated efficiently and in an orderly manner using a kind of particles packing machine of the present invention
Realize and load packaging bag to particulate matter and complete to be packaged the packaging bag for loading particulate matter simultaneously;Greatly increase particle
The working effect of bag is packaged into, cost of labor is decreased;How much can change corresponding according to required packing dosage simultaneously
The particle quantitative ring of specification size, so as to realize to loading how much particulate matter dosage controls in packaging bag.
Above-described embodiment is the description of the invention, is not limitation of the invention, it is any to simple transformation of the present invention after
Scheme belong to protection scope of the present invention.
Claims (2)
1. a kind of packaging mechanism applied to particles packing machine, it is characterised in that including longitudinal vertical closure station(3)And with longitudinal direction
Vertical closure station(3)The transverse packed station carried out simultaneously(4), wherein:
Longitudinal vertical closure station(3)Including vertical closure eccentric cam Power Component, first longitudinal direction hot melt block(311), first heating
Rod(312), first longitudinal direction hot melt buffer board(313), the first power arm(314), vertical closure upper bearing (metal)(315), hot melt the arm of force first
Central shaft(316), second longitudinal direction hot melt block(321), the second heating rod(322), second longitudinal direction hot melt buffer board(323), second
Power arm(324), vertical closure lower bearing(325), hot melt the central shaft of the arm of force second(326), longitudinal direction hot melt tension spring(33), its
In:
The first longitudinal direction heats block(311)Block is heated with second longitudinal direction(321)Longitudinal direction is oppositely arranged side by side, the first power arm
(314)With the second power arm(324)Set laterally side by side, and in the first power arm(314)End rearward position with the second power
Arm(324)End rearward position between be connected with longitudinal direction hot melt tension spring(33);First power arm(314)By always
Bobbin is held and the hot melt central shaft of the arm of force first(316)It is flexibly connected, and the first power arm(314)Can be in the hot melt arm of force first
Heart axle(316)Swung;Second power arm(324)Pass through another linear bearing and the hot melt central shaft of the arm of force second
(326)It is flexibly connected, and the second power arm(324)Can be around the hot melt central shaft of the arm of force second(326)Swung;
One longitudinal direction hot melt block(311)Inside it is connected with the first heating rod(312), block is heated in second longitudinal direction(321)Second is inside connected with to add
Hot pin(322), first longitudinal direction hot melt block(311)Buffer board is heated by first longitudinal direction(313)It is fixedly mounted on the first power arm
(314)Leading inside portion, second longitudinal direction hot melt block(321)Buffer board is heated by second longitudinal direction(323)It is fixedly mounted on second
Power arm(324)Leading inside portion;In the first power arm(314)Rear upper side portion is provided with vertical closure upper bearing (metal)(315), second
Power arm(324)Rear end following side is provided with vertical closure lower bearing(325);
The vertical closure eccentric cam Power Component includes being used to outwards push up driving vertical closure upper bearing (metal)(315)The first vertical closure eccentric cam
(503)And drive vertical closure lower bearing for outwards pushing up(325)The second vertical closure eccentric cam(504), the first vertical closure eccentric cam
(503)Protruding parts and the second vertical closure eccentric cam(504)Protruding parts respectively be located at power post(50)Two opposite sides;
So in power post(50)Often from during turning around, the first vertical closure eccentric cam(503)With the second vertical closure eccentric cam(504)
Corresponding vertical closure upper bearing (metal) can be pushed up out respectively(315)With vertical closure lower bearing(325), the first power arm(314)Rear end and second
Power arm(324)Rear end stress expansion is opened, while the first power arm(314)Front end and the second power arm(324)Front end
Accordingly draw close or close, first longitudinal direction is heated into block to realize(311)Block is heated with second longitudinal direction(321)Mutually draw close
Clamp and heat granule packaging bag sidepiece;
The transverse packed station(4)Including horizontal sealing eccentric cam Power Component, first, laterally hot melt component, second laterally heat
Component, two hot melt leads for be arrangeding in parallel(42)And transverse cutting device, first laterally heats component and the second horizontal heat
It is oppositely arranged side by side between molten component, horizontal sealing eccentric cam Power Component driving first laterally heats component and the second horizontal hot melt
Component can be respectively along hot melt lead(42)It is front and rear to move back and forth, realize that first laterally heats component and the second horizontal hot melt
Component carries out hot melt extruded to packaging bag integrally after mutually clamping, and first laterally heats component and the second horizontal hot melt group
Part, which resets, to be separated;
Described first, which laterally heats component, includes freely adjusting spring(401), the first guide pin bushing jump ring(402), hot melt adjustable the
One fixed plate(404), cylinder(406), laterally hot melt the first fixed plate(407), hot melt the first guide pillar(408), the first heat block
Fixed plate(409), first laterally hot melt block(410), hot melt the fixed plate of power the 3rd(420), the second pull bar connecting shaft(421)、
Laterally heat clutch shaft bearing(422), wherein:
The hot melt fixed plate of power the 3rd(420)It is fixedly mounted on two hot melt leads(42)Front end, it is described laterally heat
Molten clutch shaft bearing(422)Pass through the second pull bar connecting shaft(421)It is fixedly mounted on the hot melt fixed plate of power the 3rd(420)Inner side
End;
Laterally heat the first fixed plate(407)It is fixedly mounted on two hot melt leads(42)Rear end, laterally hot melt first
Fixed plate(407)On be arranged side by side many hot melt the first guide pillars(408), laterally heat the first fixed plate(407)By these
Heat the first guide pillar(408)With adjustable first fixed plate of hot melt(404)It is fixedly connected, adjustable first fixed plate of hot melt
(404)By many be arranged side by side freely adjust spring(401)Block is laterally heated with being provided with first(410)First heating
Block fixed plate(409)Connection;Wherein:It is fixedly mounted on laterally the first fixed plate of hot melt(407)On cylinder(406)For controlling
Transverse cutting device carries out cutting operation to the granule packaging bag after transverse packed;
Described second, which laterally heats component, includes the second horizontal hot melt block(411), hot melt the second fixed block(412), cushion block
(413), laterally hot melt the second fixed block(414), pull bar connecting rod(415), locking nut(416), the first pull bar connecting shaft
(417), arm-tie(418), extension spring(419), laterally hot melt second bearing(423), wherein:
The laterally hot melt second bearing(423)Installed in arm-tie(418)On, the arm-tie(418)Two side ends are respectively by straight
Bobbin is held and two hot melt leads(42)Sliding connection, arm-tie(418)Pass through the first pull bar connecting shaft(417)With horizontal stroke
The fixed block of hot melt second(414)Connection, and laterally the second fixed block of hot melt(414)Two side ends pass through linear bearing and two respectively
Root heats lead(42)Sliding connection;Laterally heating the second fixed block(414)On many hot melts the have been arranged side by side
Two guide pillars, laterally heat the second fixed block(414)By these second guide pillars of hot melt block is laterally heated with being provided with second(411)
The fixed block of hot melt second(412)It is fixedly connected;
The transverse cutting device includes upper slitter connecting plate(405)And installed in the upper slitter connecting plate(405)It is upper be used for along
The cutting knife of granule packaging bag is cut on horizontal direction(41), it is convex that the horizontal sealing eccentric cam Power Component includes the first horizontal sealing bias
Wheel(501)With the second horizontal sealing eccentric cam(502), power post(50)Sequentially pass through from lower to upper by the first horizontal sealing eccentric cam
(501)With the second horizontal sealing eccentric cam(502)And it is integral to be mutually permanently connected, the first horizontal sealing eccentric cam(501)Protrusion
Position and the second horizontal sealing eccentric cam(502)Protruding parts respectively be located at power post(50)Two opposite sides;
So in power post(50)During often turning around certainly, the first horizontal sealing eccentric cam(501)It is convex with the second horizontal sealing bias
Wheel(502)Corresponding laterally hot melt clutch shaft bearing can be pushed up out respectively(422)With laterally hot melt second bearing(423), will realize
First laterally heats block(410)Block is laterally heated with second(411)Mutually draw close and clamp and heat granule packaging bag bottom or top
Portion.
2. a kind of packaging mechanism applied to particles packing machine according to claim 1, it is characterised in that also including use
In the pulling bag station for pulling granule packaging bag from top to bottom(6), the pulling bag station(6)Including active clamping wheel(601), it is main
Dynamic power transmission shaft(602), driven clamping wheel(603), slave drive axle(604), pulling bag fixed seat(605), pulling bag buffing pad
(606), pulling bag adjusting yoke(607), movable spring(608), spring anchor block(609), fastener(610), pulling bag motor
(61), driving gear(611), driven gear(612), wherein:
The active clamping wheel(601)With driven clamping wheel(603)Granule packaging bag, pulling bag motor are mutually clamped side by side(61)
Pass through its output shaft and driving gear(611)Coaxial transmission is connected, driving gear(611)With driven gear(612)Between mutually
It is connected by meshing transmission;Active clamping wheel(601)Pass through the initiative drive shaft with its integrally connected(602)Pulling bag is extended through to fix
Seat(605)With driving gear(611)It is fixedly connected, driven clamping wheel(603)Pass through the slave drive axle with its integrally connected
(604)Extend through pulling bag buffing pad(606)With driven gear(612)It is fixedly connected;Pulling bag fixed seat(605)Buffered with pulling bag
Seat(606)It is arranged side by side, pulling bag adjusting yoke(607)For adjusting control pulling bag buffing pad(606)With pulling bag fixed seat(605)
The distance between, and by fastener(610)By pulling bag buffing pad(606)With pulling bag fixed seat(605)It is locked;Pulling bag is delayed
Red seat(606)Pass through movable spring(608)With spring anchor block(609)Connection.
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CN201710553637.7A CN107323758A (en) | 2017-07-08 | 2017-07-08 | A kind of packaging mechanism applied to particles packing machine |
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CN109018556A (en) * | 2018-08-16 | 2018-12-18 | 廖培炎 | A kind of volume cup seal packing machine |
CN109051095A (en) * | 2018-08-16 | 2018-12-21 | 廖培炎 | A kind of heating device for seal packing machine |
CN109229610A (en) * | 2018-08-16 | 2019-01-18 | 廖培炎 | A kind of closing device for packing machine |
CN112173287A (en) * | 2020-09-22 | 2021-01-05 | 冯国民 | A equipment for food package pricks mouth |
CN113277163A (en) * | 2021-06-30 | 2021-08-20 | 东莞市安翔智能包装设备有限公司 | Automatic feeding and discharging machine |
CN114229139A (en) * | 2022-02-23 | 2022-03-25 | 佛山市锦泽致盛智能科技有限公司 | Automatic packaging machine and control method applying same |
CN118090404A (en) * | 2024-04-26 | 2024-05-28 | 成都秦润医药科技有限公司 | Tablet detection device |
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CN204110413U (en) * | 2014-10-17 | 2015-01-21 | 吴蒙 | A kind of vertical duplex bag packaging machine |
CN105883045A (en) * | 2016-06-21 | 2016-08-24 | 湖南大学 | Small automatic fruit packaging machine |
CN106428808A (en) * | 2016-12-06 | 2017-02-22 | 沈阳星辉利包装机械有限公司 | Sauce material packaging device |
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CN2341896Y (en) * | 1998-08-30 | 1999-10-06 | 佛山市城区德宝食品包装机械厂 | Food packing machine |
CN203624072U (en) * | 2013-10-24 | 2014-06-04 | 汕头市锦华泰包装机械有限公司 | Sealing opening punching mechanism on automatic packaging machine |
CN204110413U (en) * | 2014-10-17 | 2015-01-21 | 吴蒙 | A kind of vertical duplex bag packaging machine |
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Cited By (9)
Publication number | Priority date | Publication date | Assignee | Title |
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CN109018556A (en) * | 2018-08-16 | 2018-12-18 | 廖培炎 | A kind of volume cup seal packing machine |
CN109051095A (en) * | 2018-08-16 | 2018-12-21 | 廖培炎 | A kind of heating device for seal packing machine |
CN109229610A (en) * | 2018-08-16 | 2019-01-18 | 廖培炎 | A kind of closing device for packing machine |
CN112173287A (en) * | 2020-09-22 | 2021-01-05 | 冯国民 | A equipment for food package pricks mouth |
CN113277163A (en) * | 2021-06-30 | 2021-08-20 | 东莞市安翔智能包装设备有限公司 | Automatic feeding and discharging machine |
CN113277163B (en) * | 2021-06-30 | 2025-06-03 | 东莞市安翔智能包装设备有限公司 | Automatic loading and unloading machine |
CN114229139A (en) * | 2022-02-23 | 2022-03-25 | 佛山市锦泽致盛智能科技有限公司 | Automatic packaging machine and control method applying same |
CN114229139B (en) * | 2022-02-23 | 2022-06-24 | 佛山市锦泽致盛智能科技有限公司 | Automatic packaging machine and control method applying same |
CN118090404A (en) * | 2024-04-26 | 2024-05-28 | 成都秦润医药科技有限公司 | Tablet detection device |
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