CN109967386A - A kind of filling leakage detection production line of inhalator jar and its leak hunting method - Google Patents
A kind of filling leakage detection production line of inhalator jar and its leak hunting method Download PDFInfo
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- CN109967386A CN109967386A CN201910302073.9A CN201910302073A CN109967386A CN 109967386 A CN109967386 A CN 109967386A CN 201910302073 A CN201910302073 A CN 201910302073A CN 109967386 A CN109967386 A CN 109967386A
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- Prior art keywords
- inhalator jar
- conveyor chain
- inhalator
- production line
- jar
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B07—SEPARATING SOLIDS FROM SOLIDS; SORTING
- B07C—POSTAL SORTING; SORTING INDIVIDUAL ARTICLES, OR BULK MATERIAL FIT TO BE SORTED PIECE-MEAL, e.g. BY PICKING
- B07C5/00—Sorting according to a characteristic or feature of the articles or material being sorted, e.g. by control effected by devices which detect or measure such characteristic or feature; Sorting by manually actuated devices, e.g. switches
- B07C5/02—Measures preceding sorting, e.g. arranging articles in a stream orientating
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B07—SEPARATING SOLIDS FROM SOLIDS; SORTING
- B07C—POSTAL SORTING; SORTING INDIVIDUAL ARTICLES, OR BULK MATERIAL FIT TO BE SORTED PIECE-MEAL, e.g. BY PICKING
- B07C5/00—Sorting according to a characteristic or feature of the articles or material being sorted, e.g. by control effected by devices which detect or measure such characteristic or feature; Sorting by manually actuated devices, e.g. switches
- B07C5/34—Sorting according to other particular properties
- B07C5/3404—Sorting according to other particular properties according to properties of containers or receptacles, e.g. rigidity, leaks, fill-level
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01M—TESTING STATIC OR DYNAMIC BALANCE OF MACHINES OR STRUCTURES; TESTING OF STRUCTURES OR APPARATUS, NOT OTHERWISE PROVIDED FOR
- G01M3/00—Investigating fluid-tightness of structures
- G01M3/02—Investigating fluid-tightness of structures by using fluid or vacuum
- G01M3/04—Investigating fluid-tightness of structures by using fluid or vacuum by detecting the presence of fluid at the leakage point
- G01M3/06—Investigating fluid-tightness of structures by using fluid or vacuum by detecting the presence of fluid at the leakage point by observing bubbles in a liquid pool
- G01M3/10—Investigating fluid-tightness of structures by using fluid or vacuum by detecting the presence of fluid at the leakage point by observing bubbles in a liquid pool for containers, e.g. radiators
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- Physics & Mathematics (AREA)
- General Physics & Mathematics (AREA)
- Examining Or Testing Airtightness (AREA)
Abstract
The invention discloses a kind of filling leakage detection production line of inhalator jar and its leak hunting methods, belong to gas-filling leak hunting technology field, its key points of the technical solution are that including workbench, transporting the transport mechanism of inhalator jar and the water tank for inhalator jar of hunting leak, inlet port and outlet port are additionally provided on the workbench, wherein, the transport mechanism includes conveyor chain, the multiple clamping devices being uniformly distributed on conveyor chain, the power device for driving conveyor chain rotation and removes the water stain dehydration device of inhalator jar.The transport mechanism high degree of automation, while driving motor drives conveyor chain rotation, also drive the first limit disk rotational, first limit disk and baffle collective effect push up inhalator jar, in inhalator jar so that two on clamping device piece intermediate plate is picked up, then conveyor chain transports inhalator jar, the transport mechanism can not only reach job requirement, and production cost is low, meet the low cost production of semiworks.
Description
Technical field
The invention belongs to gas-filling leak hunting technology field, a kind of filling leakage detection production line of inhalator jar and its leak detection side are refered in particular to
Method.
Background technique
Inhalator jar is the canister for containing aerosol products.Since the aerosol is high pressure gas, for
The sealing performance of inhalator jar is more demanding, after inhalator jar gas-filling, needs to carry out leak detection detection to it, to avoid gas leakage
Defect ware comes into the market, and general detection mode is detected using water-bath, i.e., into the water by already filled inhalator jar, checking is
No to have bubble generation, this method is very simple, and proves effective, if inhalator jar leaks air, under atmospheric pressure, gas
It can leak, by generating bubble in water tank, intuitively judge its gas leakage situation.Traditional some water-baths detect production line, need
Largely manually to be operated, by hand by inhalator jar into the water, it is very inconvenient, and working efficiency is also low, therefore has
Necessity provides a kind of production line of automation leak detection.
Summary of the invention
It is with higher automatic the object of the present invention is to provide a kind of filling leakage detection production line of inhalator jar and its leak hunting method
Change, inhalator jar is grabbed by manipulator, water-bath detection is carried out to it, and after having detected, can also be gone by dehydration device
Except inhalator jar surface is water stain, packing packaging is then carried out again, is greatly improved work efficiency.
The object of the present invention is achieved like this: a kind of filling leakage detection production line of inhalator jar, including workbench, transport aerosol
The transport mechanism of tank and water tank for inhalator jar of hunting leak are additionally provided with inlet port and outlet port on the workbench, wherein institute
Transport mechanism is stated to include conveyor chain, the multiple clamping devices being uniformly distributed on conveyor chain, conveyor chain is driven to rotate
The power device dehydration device water stain with removal inhalator jar;
The clamping device includes the pedestal for being fixed on the conveyor chain lower end, and the lower end of the pedestal is provided with two pieces
Intermediate plate annular in shape and with resilience performance;
The driving tooth that the power device includes the rotation axis being vertically arranged on the workbench, is set in rotation axis
The driver of wheel and driving rotation axis rotation, the workbench other end are provided with driven gear, the conveyor chain it is ratcheting in
On the driving gear and the driven gear, it is provided with first below the driving gear in the rotation axis and limits
Disk has the baffle around the first limit disk setting, the first limit disk and the baffle on the workbench
Between gap form the displacement region of inhalator jar, the intermediate plate of the part clamping device is right against the displacement
In region, which includes feed zone and de- material area, and the feed inlet is opened in the feed zone front end, it is described go out
Material mouth is opened in de- material area end, is provided on the workbench and moves up and make for the inhalator jar in the feed zone
The end cap of inhalator jar contradict after deformation two folded by piece sloping platform, be additionally provided with the driving intermediate plate hair on the workbench
The actuator of raw deformation, there are two the actuators, and is located above the sloping platform and above the discharge port.
The present invention is further arranged to: the driver includes driving motor and gear, the driving motor, institute
It states gear and the rotation axis is sequentially connected by shaft coupling.
The actuator is the turntable of directional rotating, described while the clamping device is turned to above the sloping platform
Intermediate plate contacts at the end of the turntable and deformation occurs.
The present invention is further arranged to: the baffle includes positioned at the first baffle of the feed zone and positioned at the charging
Second baffle between area and the de- material area, the lateral distance between the second baffle and the first limit disk are less than
The diameter of inhalator jar, the two sides of the second baffle offer the cambered surface one being recessed inwardly respectively along the vertical direction and concave
Sunken cambered surface two, the concave-shaped arc surface one form the feed inlet, and the concave-shaped arc surface two forms the discharge port;The work
It is further respectively had on platform positioned at the feed inlet and the discharge port side and second for limiting inhalator jar displacement limits
Circle of position disk, first disk and second disk are in gear-like, and the face between adjacent teeth is in arc surfaced, and the cambered surface
It is adapted with the outer surface of inhalator jar.
The present invention is further arranged to: the production line further includes the first conveyer belt being connected with feed inlet and discharge port
The second connected conveyer belt and the packaging platform positioned at the second conveyer belt end, the first conveyer belt and the second conveying tape leader
Position is connected and runs simultaneously.
The present invention is further arranged to: the production line further includes the drying box walked for second conveyer belt.
The present invention is further arranged to: the water tank is divided into the inhalator jar drainage area of no water storage and has the inhalator jar of water storage to examine
Drain region, the conveyor chain are divided into feed zone chain band, leak detection area's chain band, except pool chain band and de- material area chain band, institute
The top that leak detection area's chain band is located at inhalator jar leak detection area is stated, it is described except chain band in pool is located at the inhalator jar drainage area
Top, the dehydration device are air compressor machine, and the air outlet of the air-exhausting duct on the air compressor machine is right against described except pool chain band
Lower section.
One kind being used for the filling leak hunting method of inhalator jar, wherein specific step is as follows, 1. weighing detection: passing through weighing equipment
Check whether already filled inhalator jar weight is qualified, it is not up to standard, it indicates that gas does not fill inhalator jar, needs aeration again;
2. water-bath detects: picking up inhalator jar up to standard by clamping device, and be sent in water tank by conveyor chain
It impregnates, if there is bubble, then it represents that the sealing cover of inhalator jar is not tamping, on the contrary then be normal there are gas leakage;
3. water removal: the inhalator jar of non-gas leakage being fed through at drainage arrangement, removes inhalator jar surface by drainage arrangement
It is water stain;
4. being packaged: after the inhalator jar after water removal is transferred to discharge outlet by conveyor chain, appearance detection is carried out, to appearance
Inhalator jar defective is rejected, and is then packaged to qualified packaging products in boxes.
Be by using above-mentioned technical proposal beneficial effect achieved: the transport mechanism high degree of automation is driving
While motor drives conveyor chain rotation, the first limit disk rotational, the first limit disk and baffle collective effect are also driven
In inhalator jar, inhalator jar is pushed up, so that two on clamping device piece intermediate plate is picked up, then conveyor chain is to aerosol
Tank is transported, the transport mechanism compared to existing some high-accuracy mechanical arms up to the present for, work can not only be reached and wanted
It asks, and production cost is low, meets the low cost production of semiworks.
Detailed description of the invention
Fig. 1 is structural schematic diagram of the invention;
Fig. 2 is transport mechanism structural schematic diagram of the invention;
Fig. 3 is the structural schematic diagram at another visual angle of transport mechanism of the invention;
Appended drawing reference in figure are as follows: 1, workbench;11, feed inlet;12, discharge port;13, first baffle;14, second baffle;
15, sloping platform;16, turntable;17, the second limit disk;2, transport mechanism;21, conveyor chain;22, clamping device;221, pedestal;
222, intermediate plate;23, power device;231, rotation axis;2311, the first limit disk;232, driving gear;233, driven gear;
234, driving motor;235, gear;24, air compressor machine;241, air-exhausting duct;3, water tank;31, inhalator jar drainage area;32, gas
Mist tank leak detection area;4, first conveyer belt;5, the second conveyer belt;6, packaging platform;7, drying box;A, feed zone;B, de- material area.
Specific embodiment
In order to make those skilled in the art more fully understand the technical solution in the present invention, with reference to the accompanying drawing to this hair
Technical solution in bright embodiment is clearly and completely described:
As shown in Figure 1, Figure 2 and Figure 3, a kind of to be used for the filling leakage detection production line of inhalator jar, including workbench 1, transport aerosol
The transport mechanism 2 of tank and water tank 3 for inhalator jar of hunting leak are additionally provided with feed inlet 11 and discharge port 12 on the workbench 1,
Wherein, the transport mechanism 2 includes conveyor chain 21, the multiple clamping devices 22 being uniformly distributed on conveyor chain 21, driving
The water stain dehydration device of the power device 23 and removal inhalator jar surface that conveyor chain 21 rotates.
The water tank 3 divides the inhalator jar drainage area 31 for no water storage and has the inhalator jar leak detection area 32 of water storage, the conveying
Chain 21 divides for feed zone chain band, leak detection area's chain band, except pool chain band and de- material area chain band, leak detection area chain
Band is located at the top in inhalator jar leak detection area 32, described except chain band in pool is located at 31 top of inhalator jar drainage area, institute
Stating dehydration device is air compressor machine 24, and the air outlet of the air-exhausting duct 25 on the air compressor machine 24 is right against described except pool chain leukorrhagia
Side.
There is a large amount of water in the inhalator jar leak detection area 32 of water tank 3, when conveyor chain 21 passes through, water can be by conveyor chain 21
On inhalator jar flood, check for gas leakage;Then anhydrous or a small amount of water, is to be used in the inhalator jar drainage area 31 of water tank 3
The moisture on inhalator jar surface is collected, after air compressor machine 24 blows to inhalator jar, water stain by its surface can be flowed into inhalator jar
In drainage area 31, it is flowed into elsewhere to avoid water.
The clamping device 22 includes the pedestal 221 for being fixed on 21 lower end of conveyor chain, the lower end of the pedestal 221
It is provided with two pieces of intermediate plates 222 annular in shape and with resilience performance.The sealing cover of inhalator jar is clamped by intermediate plate 222.
The power device 23 includes the rotation axis 231 being vertically arranged on the workbench 1, is set to rotation axis 231
On the driver that rotates of driving gear 232 and driving rotation axis 231,1 other end of workbench is provided with driven gear
233, the conveyor chain 21 is ratcheting on the driving gear 232 and the driven gear 233, sets in the rotation axis 231
It is equipped with the first limit disk 2311 for being located at 232 lower section of driving gear, is had on the workbench 1 around first limit
The baffle that disk 2311 is arranged, the orientation that the gap between the first limit disk 2311 and the baffle forms inhalator jar are moved
Dynamic region, the intermediate plate 222 of the part clamping device 22 are right against in the displacement region, displacement region packet
Feed zone A and de- material area B are included, the feed inlet 11 is opened in the front end the feed zone A, and the discharge port 12 is opened in described de-
Expect the end area B, to be provided on the workbench 1 and move up for the inhalator jar in the feed zone A and make the end cap of inhalator jar
The sloping platform 15 on two intermediate plates 222 after deformation is contradicted, the driving intermediate plate 222 is additionally provided on the workbench 1 and is occurred
The actuator of deformation, there are two the actuators, and is located at 12 top of 15 top of sloping platform and the discharge port.
The driver includes driving motor 234 and gear 235, the driving motor 234, the gear drive
Case 235 and the rotation axis 231 are sequentially connected by shaft coupling.
The actuator is the turntable 16 of directional rotating, and the clamping device 22 turns to the same of 15 top of sloping platform
When, the intermediate plate 222 contacts at the end of the turntable 16 and deformation occurs.
Gear 235 is to make driving motor 234 drive rotation axis 231, driving gear 232 slow for decelerating effect
Rotation at the uniform velocity.When driving motor 234 works, conveyor chain 21 and the first position-arresting disk can move simultaneously, in the first position-arresting disk and
Under the action of baffle, the inhalator jar at feed inlet 11 can be moved in moving area, until on the inclined-plane of sloping platform 15,
On the upper surface of sloping platform 15, the intermediate plate 222 on conveyor chain 21 is deformed inward under the action of turntable 16 at the same time, inhalator jar
After rising, sealing cover can be set on two intermediate plates 222, and after intermediate plate 222 is detached from turntable 16, rebound back original shape, two intermediate plates 222
It can be pushed against on the inner wall of sealing cover, after aerosol pot bottom is detached from sloping platform 15, be picked up by two intermediate plates 222, and by conveyor chain
21 drive it to carry out subsequent detection;After having detected, when inhalator jar is transported de- material area B by conveyor chain 21, in discharge port 12
Under the action of locating turntable 16, intermediate plate 222 is again deformed, and inhalator jar can be fallen on the workbench 1 of de- material area B.
The baffle includes positioned at the first baffle 13 of the feed zone A and positioned at the feed zone A and de- material area B
Between second baffle 14, the second baffle 14 and it is described first limit disk 2311 between lateral distance be less than inhalator jar
Diameter, the two sides of the second baffle 14 offer the cambered surface one that is recessed inwardly respectively along the vertical direction and are recessed inwardly
Cambered surface two, the concave-shaped arc surface one form the feed inlet 11, and the concave-shaped arc surface two forms the discharge port 12;The work
It is further respectively had on platform 1 positioned at the feed inlet 11 and 12 side of the discharge port and for limiting inhalator jar displacement
Two limit disks 17, first disk and second disk are in gear-like, and the face between adjacent teeth is in arc surfaced, and
The cambered surface is adapted with the outer surface of inhalator jar.
First baffle 13 is easy for inhalator jar and moves under the action of the first limit disk 2311 to displacement region, the
Two baffles 14 are easy for inhalator jar and are moved to discharge port 12 under the action of the first limit disk 2311 and the second limit disk 17
Place.Feed inlet 11 and discharge port 12 are arranged to arcwall face, are to prevent inhalator jar surface from damaging.
Further setting, the production line further include the first conveyer belt 4 being connected with feed inlet 11, are connected with discharge port 12
The second conveyer belt 5 and packaging platform 6 positioned at 5 end of the second conveyer belt, the first conveyer belt 4 and second conveyer belt 5
First place is connected and runs simultaneously.In practical work process, a gas leakage detection production line can be set with the filling production of multiple inhalator jars
It is standby, the two sides of first conveyer belt 4 are located at, will be directly introduced in first conveyer belt 4 with the inhalator jar filled, to reach raw
It produces and is carried out while detection, improve production efficiency, first conveyer belt 4 and the second conveyer belt 5, which are combined into an entirety, is then
To reduce space occupied, it is allowed to maximally utilize.
Further setting, the production line further include the drying box 7 walked for second conveyer belt, pass through drying box 7
To carry out secondary water removal to inhalator jar.
Above-mentioned leak detection step is specific as follows, 1. weighing detection: checking already filled inhalator jar weight by weighing equipment
Whether amount is qualified, not up to standard, indicates that gas does not fill inhalator jar, needs aeration again;
2. water-bath detects: inhalator jar up to standard being put into first conveyer belt 4, first conveyer belt 4 transports inhalator jar
To feed inlet 11, inhalator jar can be moved on sloping platform 15 under the action of the first position-arresting disk and first baffle 13, at this point, clamping
Intermediate plate 222 on device 22 rolls deformation by turntable 16, and the sealing cover of inhalator jar is set on deformed two intermediate plate 222, with
After there are two intermediate plates 222 to pick up inhalator jar, conveyor chain 21 drive inhalator jar move to water tank 3 inhalator jar leak detection area 32 in.
Water can flood inhalator jar, check it with the presence or absence of gas leakage;If there is bubble, then it represents that the sealing cover of inhalator jar is not tamping, is deposited
It is on the contrary then be normal in gas leakage;
3. water removal: the inhalator jar of non-gas leakage is fed through at drainage arrangement by conveyor chain 21, by air compressor machine 24 to aerosol
Tank is blown, to remove the water stain of inhalator jar surface, and the water stain inhalator jar row that can be flowed into water tank 3 on inhalator jar surface
In pool 31;
4. secondary water removal: when the inhalator jar after primary water removal moves to de- material area B by conveyor chain 21, in discharge port 12
Under the action of the turntable 16 at place, intermediate plate 222 is again deformed, and inhalator jar can be fallen on the workbench 1 of de- material area B, the gas fallen
Mist tank is moved at discharge port 12 under the action of the first limit disk 2311 and the second limit disk 17, and falls into the second biography
It sending and takes, after dryer, inhalator jar carries out second and removes water the second conveyer belt, so that inhalator jar surface is without any water stain,
It is reached on packaging platform 6 again.
5. being packaged: carrying out appearance detection to the inhalator jar on packaging platform 6, appearance inhalator jar defective is rejected, then
Qualified packaging products in boxes is packaged.
Above-described embodiment is only presently preferred embodiments of the present invention, rather than whole embodiments, the ordinary skill people of this field
Without making creative work, this all should belong in the other embodiments obtained based on the above embodiment to member
The range of protection is invented, therefore: the equivalence changes that all structures under this invention, shape, principle are done should all be covered by of the invention
Within protection scope.
Claims (8)
1. a kind of filling leakage detection production line of inhalator jar including workbench (1), transports the transport mechanism (2) of inhalator jar and for examining
The water tank (3) of inhalator jar is leaked, is additionally provided with feed inlet (11) and discharge port (12) on the workbench (1), it is characterised in that: institute
Stating transport mechanism (2) includes conveyor chain (21), the multiple clamping devices (22) being uniformly distributed on conveyor chain (21), driving
The water stain dehydration device of the power device (23) and removal inhalator jar of conveyor chain (21) rotation;
The clamping device (22) includes the pedestal (221) for being fixed on the conveyor chain (21) lower end, the pedestal (221)
Lower end is provided with two pieces of intermediate plates (222) annular in shape and with resilience performance;
The power device (23) includes the rotation axis (231) being vertically arranged on the workbench (1), is set to rotation axis
(231) driver of driving gear (232) and driving rotation axis (231) rotation on, workbench (1) other end are provided with
Driven gear (233), the conveyor chain (21) is ratcheting on the driving gear (232) and the driven gear (233), institute
State the first limit disk (2311) being provided with below the driving gear (232) on rotation axis (231), the workbench
(1) there are the baffle around the first limit disk (2311) setting, first limit disk (2311) and the baffle on
Between gap form the displacement region of inhalator jar, the intermediate plate (222) of the part clamping device (22) is right against
In the displacement region, which includes feed zone (A) and de- material area (B), and the feed inlet (11) is opened in
Feed zone (A) front end, the discharge port (12) are opened in de- material area (B) end, are provided on the workbench (1)
It is moved up for the inhalator jar in the feed zone (A) and makes two intermediate plates of the end cap conflict of inhalator jar after deformation
(222) sloping platform (15) on is additionally provided with driving intermediate plate (222) actuator that deformation occurs, institute on the workbench (1)
It states there are two actuators, and is located above the sloping platform (15) and above the discharge port (12).
2. the filling leakage detection production line of a kind of inhalator jar according to claim 1, it is characterised in that: the driver includes driving
Dynamic motor (234) and gear (235), the driving motor (234), the gear (235) and the rotation
Axis (231) is sequentially connected by shaft coupling.
3. the filling leakage detection production line of a kind of inhalator jar according to claim 1, it is characterised in that: the actuator is orientation
The turntable (16) of rotation, while the clamping device (22) turns to above the sloping platform (15), the intermediate plate (222) is contradicted
In the end of the turntable (16) and deformation occurs.
4. the filling leakage detection production line of a kind of inhalator jar according to claim 1, it is characterised in that: the baffle includes being located at
The first baffle (13) and the second baffle between the feed zone (A) and the de- material area (B) of the feed zone (A)
(14), the lateral distance between the second baffle (14) and first limit disk (2311) is less than the diameter of inhalator jar,
The cambered surface that the two sides of the second baffle (14) offer the cambered surface one being recessed inwardly respectively along the vertical direction and are recessed inwardly
Two, the concave-shaped arc surface one is formed the feed inlet (11), and the concave-shaped arc surface two forms the discharge port (12);The work
It is further respectively had on platform (1) positioned at the feed inlet (11) and the discharge port (12) side and is moved for limiting inhalator jar orientation
The second dynamic limit disk (17), first disk and second disk are in gear-like, and the face between adjacent teeth is in
Arc surfaced, and the cambered surface is adapted with the outer surface of inhalator jar.
5. the filling leakage detection production line of a kind of inhalator jar according to claim 4, it is characterised in that: the production line further includes
The first conveyer belt (4) that is connected with feed inlet (11), the second conveyer belt (5) being connected with discharge port (12) and it is located at the second conveying
The packaging platform (6) of band (5) end, the first conveyer belt (4) are connected and run simultaneously with the second conveyer belt (5) first place.
6. the filling leakage detection production line of a kind of inhalator jar stated according to claim 5, it is characterised in that: the production line further includes supplying
The drying box (7) that second conveyer belt is walked.
7. the filling leakage detection production line of a kind of inhalator jar according to claim 1, it is characterised in that: the water tank (3) is divided into
The inhalator jar drainage area (31) of no water storage and inhalator jar leak detection area (32) for having water storage, the conveyor chain (21) are divided into feed zone
Chain band, removes pool chain band and de- material area chain band at leak detection area's chain band, and leak detection area chain band is located at the inhalator jar
The top of leak detection area (32), described except chain band in pool is located above the inhalator jar drainage area (31), the dehydration device is
Air compressor machine (24), the air outlet of the air-exhausting duct (25) on the air compressor machine (24) are right against described except below pool chain band.
8. one kind is used for the filling leak hunting method of the described in any item inhalator jars of 1-7, it is characterised in that: specific step is as follows, 1. claims
Re-detection: checking whether already filled inhalator jar weight is qualified by weighing equipment, not up to standard, indicates that gas does not fill gas
Mist tank needs aeration again;
2. water-bath detects: picking up inhalator jar up to standard by clamping device (22), and be sent to water by conveyor chain (21)
It impregnates in case (3), if there is bubble, then it represents that the sealing cover of inhalator jar is not tamping, on the contrary then be normal there are gas leakage;
3. water removal: the inhalator jar of non-gas leakage being fed through at drainage arrangement, removes the water stain of inhalator jar surface by drainage arrangement;
4. being packaged: after the inhalator jar after water removal is transferred at discharge port (12) by conveyor chain (21), appearance detection is carried out, it is right
Appearance inhalator jar defective is rejected, and is then packaged to qualified packaging products in boxes.
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Cited By (3)
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CN112871740A (en) * | 2021-01-25 | 2021-06-01 | 赵春晓 | Gas valve leakage detection equipment and detection method thereof |
CN115144131A (en) * | 2022-08-29 | 2022-10-04 | 江苏宝祥气体有限公司 | Air tightness detection device capable of automatically positioning leakage point of air storage tank |
CN115435981A (en) * | 2022-08-18 | 2022-12-06 | 浙江胜华气雾机械有限公司 | Miniature water bath leak detection machine |
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