Vacuum packaging device for medicine processing

文档序号:579798 发布日期:2021-05-25 浏览:3次 中文

阅读说明:本技术 一种药品加工用真空包装装置 (Vacuum packaging device for medicine processing ) 是由 唐志冉 于 2021-01-19 设计创作,主要内容包括:本发明公开涉及制药生产设备技术领域,具体为一种药品加工用真空包装装置,包括本体,所述本体中心开设有包装槽,本体上端设有整理箱,整理箱中心下端竖直插接设有真空管,该装置通过进袋板以及导型块对铝箔包装袋进行引导形状,然后通过定位轮以及导向轮对铝箔袋进行调整方向,然后经过热封轮在进行向下拉动包装袋的同时对包装袋一侧进行密封,然后袋内装药,移动至下端进行直接抽真空并且密封剪切,抽真空成功率高通过导型块下端的紫外线灯对包装药品的铝箔袋内壁进行消毒,使抽真空之后药品存放时间更长,且不会污染药品,另外通过两个缓冲块之间的相对移动进行控制切割刀运作间隔,成本较低,且使用方便。(The invention discloses a vacuum packaging device for processing medicines, which relates to the technical field of pharmaceutical production equipment, in particular to a vacuum packaging device for processing medicines, comprising a body, wherein a packaging groove is formed in the center of the body, an arranging box is arranged at the upper end of the body, a vacuum tube is vertically inserted and connected at the lower end of the center of the arranging box, the device guides an aluminum foil packaging bag in shape through a bag inlet plate and a guide block, then adjusts the direction of the aluminum foil packaging bag through a positioning wheel and a guide wheel, then seals one side of the packaging bag while downwards pulling the packaging bag through a heat sealing wheel, then charges the medicines in the bag, moves to the lower end to carry out direct vacuum pumping and sealing shearing, has high vacuum pumping success rate, sterilizes the inner wall of the aluminum foil packaging bag for packaging medicines through an ultraviolet lamp at the lower end of the guide block, ensures that the medicines are stored for a longer time after vacuum pumping, and cannot pollute, the cost is low, and the use is convenient.)

1. The utility model provides a vacuum packaging device is used in medicine processing, includes body (1), its characterized in that: the packaging box is characterized in that a packaging groove (2) is formed in the center of the body (1), a sorting box (3) is arranged at the upper end of the body (1), a vacuum tube (4) is vertically inserted at the lower end of the center of the sorting box (3), two discharging barrels (5) are vertically and symmetrically arranged on two sides of the vacuum tube (4) of the sorting box (3), the vacuum tube (4) and the two discharging barrels (5) are both arranged in the packaging groove (2), a bag inlet plate (6) is integrally arranged at the upper end of one side of the packaging groove (2) of the body (1), a guide block (7) is arranged in the bag inlet plate (6), two positioning rods (8) are horizontally and symmetrically inserted at the upper end of the opposite side of the bag inlet plate (6) in the packaging groove (2), two positioning wheels (9) are respectively and symmetrically arranged on the two positioning rods (8), a first groove pressing plate (10) and a second groove plate (11) are respectively and vertically arranged on two, two heat-sealing wheels (12) and two first bag-feeding wheels (13) are symmetrically and movably embedded and connected at the upper end and the lower end of the pressure groove of the first pressure groove plate (10) through rotating shafts respectively, a second bag-feeding wheel (14) is movably embedded and connected at the lower end of the pressure groove of the second pressure groove plate (11) through rotating shafts respectively, a guide wheel (15) is obliquely arranged at one side of the second pressure groove plate (11) of the discharging barrel (5), one side of the guide wheel (15) is inserted and connected in the pressure groove of the second pressure groove plate (11), telescopic grooves are horizontally and symmetrically arranged at the lower ends of the two inner sides of the packaging groove (2), movable plates (17) are horizontally inserted and connected in the telescopic grooves through telescopic rods (16), heat-sealing plates (18) are arranged at one sides of the two movable plates (17), a buffer groove is arranged at one side of the heat-sealing plate (18) of the movable plates (17), a baffle is arranged at one side of the buffer groove, one side of each of the two buffer rod inserting baffles is integrally provided with a buffer block (19), a first spring (20) is sleeved between one side of each of the buffer blocks (19) of each buffer rod in an inserting buffer groove and each baffle, one side of each buffer block (19) is provided with a butt joint block, one side of each butt joint block is provided with a groove, two sides of the lower end of each vacuum tube (4) are respectively inserted and arranged in the two grooves, one side of each buffer rod in each buffer groove is integrally provided with a first piston (21), the lower end of one side of each buffer groove in one side of each first piston (21) is provided with a vent groove, one side of each vent groove in each movable plate (17) is provided with a cavity, a controller (22) is arranged in each cavity, a cutting knife (23) is horizontally inserted and arranged in the center of one side of each controller (22), one side of each cutting knife (23) penetrates through the strip-shaped, connect electric pole (24) one side to run through to peg graft and arrange the air channel in, connect electric pole (24) to peg graft and connect in the air channel one side cup joint and be equipped with second spring (25), one side level grafting is equipped with and connects electric piece (26) in the air channel, connect electric piece (26) one side an organic whole to be equipped with second piston (27), connect electric piece (26) one side center and seted up and connect the electric tank, connect electric pole (24) one side to peg graft and arrange in and connect the electric tank, and connect electric pole (24) to peg graft and connect electric pole (24) one side and all be equipped with electric joint.

2. The vacuum packaging apparatus for pharmaceutical processing according to claim 1, wherein: one side all is equipped with the air inlet duct in the dashpot, and equal upper end level an organic whole in proper order is equipped with first round hole board and second round hole board in the air inlet duct, is equipped with ball sealer (28) and third spring (29) between first round hole board and the second round hole board in proper order, and the upper end of ball sealer (28) contacts with the round hole lower extreme of first round hole board, and the lower extreme of third spring (29) contacts with the upper end of second round hole board, and the lower extreme of locating ball sealer (28) is cup jointed to the upper end of third spring (29).

3. The vacuum packaging apparatus for pharmaceutical processing according to claim 1, wherein: a plurality of lamp grooves are symmetrically formed in the lower end of the guide block (7), ultraviolet lamps (30) are embedded in the lamp grooves through connecting clamping blocks, and the volume of each ultraviolet lamp (30) is smaller than that of the corresponding lamp groove.

4. The vacuum packaging apparatus for pharmaceutical processing according to claim 1, wherein: one side of the discharge barrel (5) is provided with a visual window which can be a glass window.

5. The vacuum packaging apparatus for pharmaceutical processing according to claim 1, wherein: the lower end of the movable plate (17) is integrally provided with a sliding plate, the lower end in the telescopic groove is provided with a sliding groove, and the sliding plate is inserted in the sliding groove.

6. The vacuum packaging apparatus for pharmaceutical processing according to claim 1, wherein: two guide rods are symmetrically arranged at the upper end and the lower end of one side of the baffle in the buffer groove, four guide sliding grooves are symmetrically formed in one side of the insertion buffer groove of the buffer block (19), and the four guide rods are respectively inserted into the four guide sliding grooves.

Technical Field

The invention relates to the technical field of pharmaceutical production equipment, in particular to a vacuum packaging device for medicine processing.

Background

The tool and the process for selecting and storing the medicines according to the characteristics of the medicines during production are adopted, wherein part of the medicines need to be subjected to vacuum packaging during packaging and storing, so that the storage time of the medicines and the effectiveness of the medicines can be guaranteed, the deteriorated medicines can cause great harm to human bodies, in the prior art, multiple machines are adopted for vacuum packaging of the medicines for bagging, vacuumizing and shearing in steps, and the use efficiency is low.

Disclosure of Invention

The present invention is directed to a vacuum packaging apparatus for pharmaceutical processing, which solves the above problems of the prior art.

In order to achieve the purpose, the invention provides the following technical scheme: the bag feeding device comprises a body, wherein a packaging groove is formed in the center of the body, an arranging box is arranged at the upper end of the body, a vacuum tube is vertically inserted at the lower end of the center of the arranging box, two discharging barrels are vertically and symmetrically arranged on two sides of the vacuum tube of the arranging box, the vacuum tube and the two discharging barrels are both arranged in the packaging groove, a bag feeding plate is integrally arranged at the upper end of one side of the packaging groove of the body, a guide block is arranged in the bag feeding plate, two positioning rods are horizontally and symmetrically inserted at the upper end of the opposite side of the bag feeding plate in the packaging groove, two positioning wheels are symmetrically arranged on the two positioning rods respectively, a first groove pressing plate and a second groove pressing plate are respectively and vertically arranged on two sides in the packaging groove, two upper and lower ends in the groove of the first groove pressing plate are respectively and symmetrically movably embedded with two first bag feeding wheels through a rotating shaft, and a second bag feeding wheel is respectively and movably embedded at the lower end, one side of a second pressure groove plate of the discharging barrel is obliquely provided with a guide wheel, one side of the guide wheel is inserted into the pressure groove of the second pressure groove plate, the lower ends of the two sides of the inner connection of the packaging groove are horizontally and symmetrically provided with telescopic grooves, the telescopic grooves are horizontally inserted with movable plates through telescopic rods, one sides of the two movable plates are respectively provided with a heat sealing plate, one sides of the heat sealing plates of the movable plates are respectively provided with a buffer groove, one side of the buffer groove is respectively provided with a baffle, the central buffer hole of the baffle is horizontally inserted with a buffer rod, one sides of the two buffer rod inserting baffles are respectively and integrally provided with a buffer block, a first spring is sleeved between one side of the buffer block inserting buffer groove of the buffer rod and the baffle, one side of the buffer block is respectively provided with a butt joint block, one side of the butt joint block is respectively provided with a groove, and both sides of the, the lower extreme has been seted up the air channel to one side lower extreme in the first piston one side dashpot, and the cavity has been seted up to air channel one side in the fly leaf, is equipped with the controller in the cavity, and the horizontal grafting of controller one side center is equipped with the cutting knife, and cutting knife one side runs through grafting heat-seal board one side bar groove and sets up, controller one side center level is equipped with the electric pole, and electric pole one side runs through to peg graft and arranges the air channel in, and electric pole grafting air channel one side cup joints and is equipped with the second spring, and one side horizontal grafting is equipped with the electricity piece in the air channel, connects an electricity piece one side an organic whole and is equipped with the second piston, connects the electricity piece one side center and has seted up the electricity receiving groove, and electricity receiving pole one side is.

Preferably, one side all is equipped with the air inlet duct in the dashpot, and equal upper end level an organic whole in proper order is equipped with first round hole board and second round hole board in the air inlet duct, is equipped with ball sealer and third spring between first round hole board and the second round hole board in proper order, and the upper end of ball sealer contacts with the round hole lower extreme of first round hole board, and the lower extreme of third spring contacts with the upper end of second round hole board, and the lower extreme of ball sealer is cup jointed to the upper end of third spring.

Preferably, a plurality of lamp grooves are symmetrically formed in the lower end of the guide block, ultraviolet lamps are embedded in the lamp grooves through connecting clamping blocks, and the volume of each ultraviolet lamp is smaller than that of each lamp groove.

Preferably, one side of the discharge barrel is provided with a visual window, and the visual window can be a glass window.

Preferably, the lower end of the movable plate is integrally provided with a sliding plate, the lower end in the telescopic groove is provided with a sliding groove, and the sliding plate is inserted in the sliding groove.

Preferably, both ends all symmetry is equipped with two guide bars about baffle one side in the buffer slot, and four direction spouts have been seted up to one side symmetry in the buffer block grafting buffer slot, and four guide bars peg graft respectively and arrange in four direction spouts.

Compared with the prior art, the invention has the beneficial effects that:

1. the device guides the shape of an aluminum foil packaging bag through a bag inlet plate and a guide block, then adjusts the direction of the aluminum foil packaging bag through a positioning wheel and a guide wheel, then seals one side of the packaging bag while pulling the packaging bag downwards through a heat sealing wheel, then charges the powder in the bag, moves to the lower end to directly vacuumize, seals and cut, and has high vacuumizing success rate;

2. ultraviolet lamp through guide block lower extreme disinfects the aluminium foil bag inner wall of packing medicine, and it is longer to make the medicine storage time after the evacuation, and can not pollute the medicine, controls the cutting knife operation interval through the relative movement between two buffer blocks in addition, and the cost is lower, and convenient to use.

Drawings

FIG. 1 is a schematic structural view of the present invention;

FIG. 2 is a side view of the packaging pocket structure of the present invention;

FIG. 3 is a schematic perspective view of a bag feeding plate and a shape guide block according to the present invention;

FIG. 4 is a schematic view of portion A of FIG. 1 according to the present invention;

FIG. 5 is a schematic view of the portion B of FIG. 2 according to the present invention.

In the figure: the bag feeding device comprises a body 1, a packaging groove 2, an arranging box 3, a vacuum tube 4, a discharging barrel 5, a bag feeding plate 6, a guide block 7, a positioning rod 8, a positioning wheel 9, a first grooving plate 10, a second grooving plate 11, a heat sealing wheel 12, a first bag feeding wheel 13, a second bag feeding wheel 14, a guide wheel 15, a telescopic rod 16, a movable plate 17, a heat sealing plate 18, a buffering block 19, a first spring 20, a first piston 21, a controller 22, a cutting knife 23, an electric connecting rod 24, a second spring 25, an electric connecting block 26, a second piston 27, a sealing ball 28, a third spring 29 and an ultraviolet lamp 30.

Detailed Description

The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.

Referring to fig. 1-5, the present invention provides a vacuum packaging device for pharmaceutical processing, comprising: the device comprises a body 1, a packaging groove 2 is formed in the center of the body 1, an arranging box 3 is arranged at the upper end of the body 1, a vacuum tube 4 is vertically inserted at the lower end of the center of the arranging box 3, two discharging barrels 5 are vertically and symmetrically arranged on two sides of the vacuum tube 4 of the arranging box 3, the vacuum tube 4 and the two discharging barrels 5 are both arranged in the packaging groove 2, a visual window is arranged on one side of each discharging barrel 5 and can be a glass window, a bag inlet plate 6 is integrally arranged at the upper end of one side of the packaging groove 2 of the body 1, a guide block 7 is arranged in the bag inlet plate 6, the bag inlet plate 6 and the guide block 7 are both of an inclined arc structure, the distance between a pressure plate 7 and the bag inlet plate 6 is larger than the thickness of an aluminum foil bag, two positioning rods 8 are horizontally and symmetrically inserted at the upper end of the opposite side of the bag inlet plate 6 in the packaging groove 2, two positioning rods 8 are respectively and symmetrically provided with two positioning wheels, an ultraviolet lamp 30 is embedded and connected in the lamp groove through a connecting clamping block, the volume of the ultraviolet lamp 30 is smaller than that of the lamp groove, a first grooving plate 10 and a second grooving plate 11 are respectively vertically arranged on two sides in the packaging groove 2, two heat-sealing wheels 12 and two first bag-sending wheels 13 are respectively and symmetrically and movably embedded and connected on two sides of the upper end and the lower end of the grooving plate 10 through a rotating shaft, a second bag-sending wheel 14 is respectively and movably embedded and connected on the lower end of the grooving plate 11 through a rotating shaft, a guide wheel 15 is obliquely arranged on one side of the second grooving plate 11 of the discharging barrel 5, one side of the guide wheel 15 is inserted and connected in the grooving plate 11, telescopic grooves are horizontally and symmetrically formed on the lower ends in the packaging groove 2, a movable plate 17 is horizontally inserted and connected in the telescopic grooves through a telescopic rod 16, one side of each movable plate 17 is provided with a heat-sealing plate 18, one side of each heat-sealing plate 18 of each movable plate 17 is provided with a buffer groove, one side of each buffer groove is provided with a baffle, a buffer rod is horizontally inserted in a buffer hole in the center of the baffle, one side of each two buffer rods inserted in the baffle is provided with a buffer block 19, a first spring 20 is sleeved between one side of each buffer block 19 inserted in the buffer groove and the baffle, the lower end of the movable plate 17 is integrally provided with a sliding plate, the lower end of each telescopic groove is provided with a sliding groove, the sliding plates are inserted in the sliding grooves, one side of each buffer block 19 is provided with a butt joint block, one side of each butt joint block is provided with a groove, two sides of the lower end of the vacuum tube 4 are respectively inserted in the two grooves, one side of each buffer rod in the buffer groove is integrally provided with a first piston 21, the lower end of one side of the buffer groove on the first piston 21 is provided with a vent groove, one side of the vent groove in the movable plate 17 is, one side of a cutting knife 23 penetrates through a strip groove on one side of the inserting heat-sealing plate 18, the two heat-sealing plates 18 are respectively provided with a strip groove, the two strip-shaped positions are correspondingly arranged, a buffering shearing pad is arranged in the strip groove on one side opposite to the inserting cutting knife 23, the upper end and the lower end of one side of a baffle plate in the buffer groove are respectively symmetrically provided with two guide rods, one side of the inserting buffer groove of the buffer block 19 is symmetrically provided with four guide chutes, the four guide rods are respectively inserted and arranged in the four guide chutes, the center of one side of a controller 22 is horizontally provided with an electric connecting rod 24, one side of the electric connecting rod 24 penetrates and is inserted and arranged in the vent groove, one side of the electric connecting rod 24 inserted and arranged in the vent groove is sleeved with a second spring 25, one side of the vent groove is horizontally inserted and arranged with an electric connecting block 26, one side of the electric connecting block, and connect electric pole 24 grafting and connect electric inslot one side and connect electric pole 24 one side and all be equipped with the electrical property and connect, one side all is equipped with the air inlet duct in the dashpot, and equal upper end level an organic whole is equipped with first round hole board and second round hole board in proper order in the air inlet duct, is equipped with sealed ball 28 and third spring 29 between first round hole board and the second round hole board in proper order, and the upper end of sealed ball 28 contacts with the round hole lower extreme of first round hole board, and the lower extreme of third spring 29 contacts with the upper end of second round hole board, and the lower extreme of locating sealed ball 28 is cup jointed to the upper end of third spring 29.

The working principle is as follows: when in use, the aluminum foil bag is prepared into a state to be closed in advance through the relative arcs of the arc-shaped bag inlet plate 6 and the guide block 7, then the two sides of the aluminum foil bag are positioned and pulled through the positioning wheel 9, so that the aluminum foil bag vertically moves downwards along the positioning wheel 9 and the two bag feeding wheels, the aluminum foil bag is sealed into a tubular shape through the rolling of the heat sealing wheel 12 while moving, then the medicines are quantitatively delivered into the bag through the discharge barrel 5 in the bag, then the aluminum foil bag moves downwards until the medicines are positioned at the lower end of the movable plate 17, the two movable plates 17 are driven to move relatively through the telescopic rod 16, then the two buffer blocks 19 are contacted, then the two sides of the buffer blocks of the heat sealing plate 18 are slightly higher than the lower end, and the lower end of the aluminum foil bag can also be temporarily stretched through the fourth spring at a lower temperature, then the vacuum tube 4 vacuumizes the interior of the bag filled with the medicines, meanwhile, the movable plate 17 continues to move, meanwhile, the two buffer rods drive the first piston 21 to compress gas and drive the second piston 27, after the heat sealing plates 18 on the two sides are completely contacted, the electric connecting rod 24 is also inserted into the electric connecting block 26 and is connected through the electric connector, the air device 22 controls the cutting knife 23 to extend out to cut off the sealing position of the bag, the bag automatically falls after vacuumizing is finished, the lower end of the non-filled bag is also sealed, and the next bag operation is conveniently and directly carried out.

Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

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