Subsequent leakage detection equipment for powder packaging bag
Technical Field
The invention relates to leakage detection equipment, in particular to subsequent leakage detection equipment for powder packaging bags.
Background
The packaging bag is a bag used for packaging various articles, the packaged packaging bag can enable goods to be more conveniently transported and stored in the production and circulation process, the packaged packaging bag is usually required to be packaged by the packaging bag in the batch production products of types such as bagged food or bagged medicines produced in modern society, the packaging bag is required to be sealed after the packaging bag is completely packaged, air leakage is prevented, and therefore the eating of internal products is influenced, therefore, the packaged packaging bag is required to be detected to be qualified, and unqualified products are required to be repackaged.
At present, people detect whether qualified mode of wrapping bag is generally by the manual work sampling inspection in piling up the good wrapping bag, is difficult to detect all wrapping bags, leads to partly unqualified wrapping bag outflow easily.
In addition, when the packaging bags are manually sampled and detected, the stacked packaging bags need to be manually sampled and detected independently, and human resources are consumed.
Therefore, a powder packaging bag subsequent leakage detection device which can detect a packaging bag after packaging and save manpower during detection needs to be developed.
Disclosure of Invention
In order to overcome the defects that manual sampling detection is difficult to detect all the packaging bags, partial unqualified packaging bags are easy to flow out, and manual detection consumes human resources, the invention has the technical problems that: the utility model provides a can detect the wrapping bag after the packing finishes to can use manpower sparingly the follow-up equipment of leaking hunting of powder wrapping bag when detecting.
The technical scheme is as follows: the utility model provides a follow-up equipment of leaking hunting of powder wrapping bag, which comprises a base, a supporting fram, spacing, fall material passageway and casing, the base top is equipped with the support frame, the support frame top is equipped with spacing, spacing in-frame middle part is equipped with falls the material passageway, it all is equipped with the casing to fall material passageway both sides lower part, the casing is located spacing, still including the push rod, the push pedal, first spring and promotion subassembly, the slidingtype is equipped with the push pedal in the casing, one side that two push pedals were kept away from each other all is connected with the push rod, be connected with first spring between shells inner wall and the push pedal, first spring housing is on the push rod, push rod and casing sliding fit, be equipped with the promotion.
In one embodiment, the pushing assembly comprises a guide rod, a circular plate, a cylinder, a connecting rod and a swing rod, the guide rod is slidably arranged on the top of the front side of the base, the circular plate is connected to the bottom end of the guide rod, the cylinder for pushing the circular plate is arranged on each of two sides of the top in the base, the swing rod is hinged to each of two sides of the top of the support frame, the lower portion of the swing rod extends into the support frame, the upper portion of the swing rod is in contact with the tail end of the push rod, and the connecting rod.
In one embodiment, the automatic feeding device further comprises a feeding assembly, the feeding assembly comprises a roller, a conveying belt, a one-way clutch, a gear, a connecting rod and a rack, a through groove is formed in the middle of the top of the support frame, the rollers are rotatably arranged on the front side and the rear side in the through groove, the conveying belt is wound between the rollers on the front side and the rear side, the one-way clutch is arranged at the two ends of the roller on the front side, the gear is arranged on the outer side of the one-way clutch, the connecting rod is arranged on the rear side of the upper portion of the guide.
In one of the embodiments, still include and remind the subassembly, remind the subassembly including the clamp plate, the second spring, the carriage, the third spring, the reel, the scroll spring, act as go-between and button, the equal slidingtype in one side that the push pedal in both sides is close to each other is equipped with the clamp plate, be connected with the second spring between clamp plate and the push pedal, the equal slidingtype in one side upper portion that the casing in both sides kept away from each other is equipped with the carriage, be connected with the third spring between carriage and the casing, the partial rotary type that the carriage is located the casing is equipped with the reel, be connected with the scroll spring between reel and the carriage, around having acted as go-between on the reel, the terminal push pedal that passes of acting as go-between is connected with the clamp plate, all be equipped with.
In one embodiment, the conveyor belt further comprises a motor and a material baffle plate, the motor is installed on the rear side of the top of the support frame and electrically connected with the button, the material baffle plate is connected to an output shaft of the motor, and the material baffle plate is located above the conveyor belt.
In one embodiment, the material stopping device further comprises an arc-shaped sliding rail and a sliding block, the arc-shaped sliding rail is arranged between two sides of the top of the supporting frame, the sliding block is arranged on the arc-shaped sliding rail in a sliding mode, and the sliding block is connected with the top of the tail end of the material stopping plate.
Has the advantages that: the powder packaging bag feeding device is placed at the discharging end of powder packaging equipment, powder packaging bags flowing out of the powder packaging equipment are taken through the material pouring channel, the powder packaging bags are pushed by the pushing assembly to extrude the powder packaging bags after the powder packaging bags are arranged in the material pouring channel, so that each powder packaging bag can be detected, the powder packaging bags are sent out through the feeding assembly after the powder packaging bags are detected, manual collection is not needed, manpower is effectively saved, and qualified products and unqualified products are separated through the matching of the reminding assembly and the material baffle plate, so that workers can conveniently perform secondary packaging.
Drawings
Fig. 1 is a schematic front view of the present invention.
Fig. 2 is a front enlarged view of the portion a of the present invention.
FIG. 3 is an enlarged view of a portion of the reminder assembly of the present invention.
Fig. 4 is a partial top view of the present invention.
Labeled as: 1 … base, 2 … support frame, 3 … spacing frame, 4 … material pouring channel, 5 … casing, 6 … push rod, 7 … push plate, 8 … first spring, 9 … pushing component, 91 … guide rod, 92 … round plate, 93 … air cylinder, 94 … connecting rod, 95 … swing rod, 10 … feeding component, 101 … roller, 102 … conveying belt, 103 … one-way clutch, 104 … gear, 105 … connecting rod, 106 … rack, 11 … reminding component, 111 … pressing plate, 112 … second spring, 113 … sliding frame, 114 … third spring, 115 … reel, 116 … spiral spring, 117 … pull wire, 118 … button, 12 … motor, 13 … striker plate, 14 … arc sliding rail, 15 … slider.
Detailed Description
The invention is described in further detail below with reference to the drawings and the detailed description, but the invention is not limited to the scope of protection and application.
Example one
As shown in figure 1-2, a subsequent leakage detection device for powder packaging bags comprises a base 1, a support frame 2, a limiting frame 3, a material pouring channel 4 and a shell 5, wherein the support frame 2 is arranged at the top of the base 1, the limiting frame 3 is arranged at the top of the support frame 2, the support frame 2 is respectively connected with the base 1 and the limiting frame 3 in a bolt connection mode, the material pouring channel 4 is arranged at the middle part in the limiting frame 3, openings are respectively formed in the side walls of the two sides of the lower part of the material pouring channel 4, the shell 5 is respectively provided with the shell 5 at the lower parts of the two sides of the material pouring channel 4, the shell 5 is communicated with the material pouring channel 4 through the openings, the shell 5 is positioned in the limiting frame 3, the subsequent leakage detection device further comprises a push rod 6, a push plate 7, a first spring 8 and a push component 9, the push plate 7 is arranged in the shell 5 in a sliding mode, the push rod 6, be connected with first spring 8 between 5 inner walls of casing and the push pedal 7, first spring 8 cover is on push rod 6, and push rod 6 and 5 sliding fit are equipped with the promotion subassembly 9 that is used for promoting push pedal 7 between base 1 and the support frame 2.
When the powder packaging bag needs to be checked, the device is placed at the discharge end of the powder packaging device, the powder packaging bag flowing out of the powder packaging device falls into the limiting frame 3 through the material pouring channel 4, at this time, the pushing assembly 9 can be started to push the push rods 6 at the two sides to drive the push plate 7 to move towards the powder packaging bag, the first spring 8 is stretched, when the pushing assembly 9 pushes the pushing rods 6 at both sides to the limit, the pushing plates 7 at both sides tightly press the powder packing bag, when the powder packaging bag is broken during extrusion, the packaging is unqualified and needs to be repackaged, while the powder packaging bag is intact, the packaging is qualified, after the detection of the packaging bag is finished, the pushing assembly 9 is started to reset so that the pushing assembly does not push the push rod 6 any more, the push plate 7 and the push rod 6 reset under the action of the first spring 8, and the detected powder packaging bag is taken out, so that the powder packaging bag can be detected repeatedly.
As shown in fig. 1, the pushing assembly 9 includes a guide rod 91, a circular plate 92, a cylinder 93, a connecting rod 94 and a swing rod 95, the guide rod 91 is slidably disposed at the top of the front side of the base 1, the guide rod 91 is perpendicular to the base 1, the bottom end of the guide rod 91 is connected with the circular plate 92, the circular plate 92 is parallel to the base 1, the cylinders 93 for pushing the circular plate 92 are disposed on both sides of the top of the base 1, the cylinders 93 are located above the circular plate 92, the swing rod 95 is hinged to both sides of the top of the support frame 2, the lower portion of the swing rod 95 extends into the support frame 2, the upper portion of the swing rod 95 contacts with the end of the push rod 6, the connecting rod 94 is connected between the bottom ends of the swing rods.
When needs promote push pedal 7, start cylinder 93 extension promotes plectane 92 downstream, plectane 92 downstream drives guide bar 91 downstream, guide bar 91 downstream drives the pendulum rod 95 top through connecting rod 94 and swings towards 5 directions of casing, thereby promote push rod 6 and push pedal 7 and extrude the detection towards 4 directions movements of pouring material passageway to the powder wrapping bag, after finishing detecting, start cylinder 93 shortens, cylinder 93 telescopic link no longer promotes plectane 92, push rod 6 resets and drives pendulum rod 95 and reset under the effect of first spring 8, thereby drive plectane 92 and reset.
Example two
As shown in fig. 2, on the basis of the first embodiment, the feeding device further comprises a feeding assembly 10, the feeding assembly 10 comprises a roller 101, a conveying belt 102 and a one-way clutch 103, gear 104, connecting rod 105 and rack 106, it has logical groove to open in the middle of the 2 tops of support frame, it is equipped with cylinder 101 to lead to the equal rotary type in both sides around the inslot, cylinder 101 is the level setting, around there being conveyer belt 102 between the cylinder 101 of both sides, leave 5 mm's clearance between the up end of conveyer belt 102 and the lower terminal surface of pouring passageway 4, front side cylinder 101 both ends all are equipped with one way clutch 103, be connected through the mode of interference connection between one way clutch 103 and the cylinder 101, the one way clutch 103 outside is equipped with gear 104, guide bar 91 upper portion rear side is equipped with connecting rod 105, connecting rod 105 is on a parallel with cylinder 101, connecting rod 105 top both sides all are connected with rack 106, rack 106 is located gear 104 front side, rack 106 and gear 104 meshing.
When the powder packaging bag is detected, the powder packaging bag is placed on the surface of the conveying belt 102 at the lower part in the material pouring channel 4, when the guide bar 91 moves downwards, the connecting bar 105 is driven to move downwards, the connecting bar 105 moves downwards to drive the rack 106 to move downwards, the rack 106 moves downwards to drive the gear 104 to rotate, the roller 101 cannot rotate under the action of the one-way clutch 103 when the gear 104 rotates, when the powder packaging bag is detected, the guide rod 91 is driven to reset upwards by the action of the first spring 8, the guide rod 91 moves upwards to reset, the connecting rod 105 drives the rack 106 to move upwards, the rack 106 moves upwards to drive the roller 101 to rotate through the one-way clutch 103, the roller 101 rotates to drive the conveying belt 102 to rotate, therefore, the powder packaging bags on the conveying belt 102 are conveyed backwards, and the powder packaging bags are repeatedly collected without manual work, so that the working efficiency is improved.
As shown in fig. 2-3, the reminder device 11 further includes a reminder device 11, the reminder device 11 includes a pressing plate 111, a second spring 112, a sliding bracket 113, a third spring 114, a reel 115, a spiral spring 116, a pull wire 117 and a button 118, the pressing plate 111 is slidably disposed on one side of the two side push plates 7 close to each other, the second spring 112 is connected between the pressing plate 111 and the push plates 7, the second spring 112 is sleeved on the pressing plate 111, the sliding bracket 113 is slidably disposed on the upper portion of one side of the two side shells 5 away from each other, one half of the sliding bracket 113 is disposed inside the shell 5, the other half is disposed outside the shell 5, the third spring 114 is connected between the outer sliding bracket 113 and the shell 5, the part of the sliding bracket 113 disposed inside the shell 5 is rotatably disposed with the reel 115, the spiral spring 116 is connected between the reel 115 and the sliding bracket 113, the pull wire 117 is wound, the tail end of the stay wire 117 is connected with the pressing plate 111 through a through hole, the outer walls of the two side shells 5 far away from each other are respectively provided with a button 118, the buttons 118 are located inside the sliding frame 113, the outer wall of the support frame 2 is provided with an indicator light, and the indicator light is electrically connected with the buttons 118.
When the push plate 7 moves towards the powder packaging bag, the press plate 111 is driven to move towards the powder packaging bag, the pull wire 117 is stretched when the press plate 111 moves, the reel 115 rotates to release the pull wire 117, the scroll spring 116 is compressed, when the press plate 111 contacts with the powder packaging bag, the press plate 111 does not move any more, the push plate 7 continues to move towards the powder packaging bag, the second spring 112 is compressed, the reel 115 winds and releases the pull wire 117, if the powder packaging bag is broken, the press plate 111 continues to move towards the powder packaging bag under the action of the second spring 112, the reel 115 is pulled to move towards the powder packaging bag through the pull wire 117, when the reel 115 moves towards the powder packaging bag, the sliding frame 113 moves towards the shell 5, when the sliding frame 113 contacts with the button 118, the indicator lamp is lightened, and therefore, the prompt can be made when the powder packaging bag is detected to be unqualifie, after the push plate 7 is reset, the pressing plate 111 is driven to reset, the sliding frame 113 is reset under the action of the third spring 114, the wire 117 is drawn by the winding wheel 115 under the action of the spiral spring 116, and therefore when unqualified packaging bags are detected, reminding can be carried out.
EXAMPLE III
As shown in fig. 4, on the basis of the second embodiment, the conveyor further comprises a motor 12 and a striker plate 13, the motor 12 is installed on the rear side of the top of the support frame 2, the motor 12 is located on the rear side of the conveyor belt 102, the motor 12 is electrically connected with the button 118, the striker plate 13 is connected to an output shaft of the motor 12, the striker plate 13 is connected to the output shaft of the motor 12 through a coupler, the striker plate 13 is located above the conveyor belt 102, and a gap of 3mm is left between the striker plate 13 and the conveyor belt 102.
When the sliding frame 113 contacts with the button 118, the motor 12 is started, so that the striker plate 13 is driven to rotate, the unqualified powder packaging bags falling into the striker plate at this time fall into the side different from the qualified powder packaging bags, when the sliding frame 113 resets, the button 118 is not triggered, and the motor 12 drives the striker plate 13 to reset.
As shown in fig. 4, the material stopping device further comprises an arc-shaped slide rail 14 and a slide block 15, the arc-shaped slide rail 14 is arranged between two sides of the top of the support frame 2, the slide block 15 is arranged on the arc-shaped slide rail 14 in a sliding mode, and the slide block 15 is connected with the top of the tail end of the material stopping plate 13.
The striker plate 13 moves along the arc-shaped slide rail 14 through the slide block 15 when moving, so that the striker plate 13 is more stable when moving.
Although the present invention has been described in detail with reference to the above embodiments, it will be apparent to those skilled in the art from this disclosure that various changes or modifications can be made herein without departing from the principles and spirit of the invention as defined by the appended claims. Therefore, the detailed description of the embodiments of the present disclosure is to be construed as merely illustrative, and not limitative of the remainder of the disclosure, but rather to limit the scope of the disclosure to the full extent set forth in the appended claims.