CN112933620A - Degradable antibacterial sanitary towel concentrator - Google Patents
Degradable antibacterial sanitary towel concentrator Download PDFInfo
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- CN112933620A CN112933620A CN202110118014.3A CN202110118014A CN112933620A CN 112933620 A CN112933620 A CN 112933620A CN 202110118014 A CN202110118014 A CN 202110118014A CN 112933620 A CN112933620 A CN 112933620A
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- inlayed
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01D—SEPARATION
- B01D1/00—Evaporating
- B01D1/0011—Heating features
- B01D1/0041—Use of fluids
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01D—SEPARATION
- B01D1/00—Evaporating
- B01D1/0082—Regulation; Control
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01D—SEPARATION
- B01D1/00—Evaporating
- B01D1/30—Accessories for evaporators ; Constructional details thereof
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- Chemical & Material Sciences (AREA)
- Chemical Kinetics & Catalysis (AREA)
- Apparatus For Disinfection Or Sterilisation (AREA)
Abstract
The invention discloses degradable antibacterial sanitary towel concentration equipment which structurally comprises a purification tank, a control box, a power end and a hatch cover, wherein the power end is fixed on the upper end surface of the purification tank through welding, the control box is embedded and fixedly arranged on the end surface of the outer side of the purification tank, the power end is positioned right above the control box, the hatch cover is embedded and arranged on the upper end surface of the purification tank, the wrapping sheet and the hollow groove can be pulled by the mosaic plate in the lifting process of the first nesting rod, so that the wrapping sheet and the hollow groove can gradually extend the longitudinal diameter length of the wrapping sheet and the hollow groove in the process of continuously applying force, thereby ensuring the continuous wrapping of the first nesting rod and the second nesting rod, and the rubber block and the traction strip arranged in the traction mechanism can gradually extend to the left and the right along with the pulling, therefore, the flexible sheet is attached to the outer end face of the traction strip along with the tightened rubber block, and chips are prevented from flowing into the traction strip along gaps when the traction strip is broken.
Description
Technical Field
The invention belongs to the field of concentration equipment for sanitary towels, and particularly relates to degradable antibacterial sanitary towel concentration equipment.
Background
The sanitary towel concentrator is a device which heats the inside of a stirring cabin so as to evaporate water in the mixed raw material pulp of the sanitary towel, reduce the proportion of the water content in the raw pulp, and discharge impurities outwards, and is mainly applied to the concentration purification function of the raw pulp of the sanitary towel.
Based on the findings of the inventor, the following defects mainly exist in the prior art, such as: when carrying out the purification concentration through agitated vessel cooperation heater sanitary towel magma in to jar, the magma can become thick gradually along with the evaporation of internal moisture for partial magma can be attached to agitated vessel's axle wall outline department at the in-process of stirring, along with the evaporation of moisture, the milliliter volume of dense thick liquid can be earlier gradually, makes partially attached to in the magma residue outside the axle wall can be along with the lift of bull stick and imbed in the nested clearance of bull stick, thereby dry under the heating of heater and solidify.
It is therefore desirable to provide a degradable antimicrobial sanitary napkin concentrating device.
Disclosure of Invention
In order to solve the above-mentioned technique when carrying out purification concentration through the sanitary towel magma of agitated vessel cooperation heater in to jar, the magma can become thick gradually along with the evaporation of internal moisture for some magma can be attached to agitated vessel's axle wall outline department at the in-process of stirring, along with the evaporation of moisture, the milliliter volume of thick liquid can be earlier gradually, make partly attached to in the magma residue outside the axle wall can be along with the lift of bull stick and imbed in the nested clearance of bull stick, thereby dry the problem of solidifying under the heating of heater.
The invention relates to a purpose and an effect of degradable antibacterial sanitary towel concentration equipment, which are achieved by the following specific technical means: the structure of the device comprises a purification tank, a control box, a power end and a hatch cover, wherein the power end is fixed on the upper end surface of the purification tank through welding, the control box is embedded and fixedly arranged on the outer end surface of the purification tank, the power end is positioned right above the control box, and the hatch cover is embedded and arranged on the upper end surface of the purification tank; the purification jar includes rabbling mechanism, carousel, chip removal mouth, support, the lower extreme surface at the carousel is installed to rabbling mechanism activity block, the carousel is inlayed and is located the support directly over, the chip removal mouth inlays solid the lower extreme lateral surface of installing at the carousel, the support is located the carousel directly under.
The stirring mechanism comprises an embedding block, a telescopic rod, an embedding shaft and an embedding shaft, wherein the embedding block is embedded and clamped on the outer side end face of the telescopic rod, the telescopic rod is embedded and fixedly arranged on the lower end surface of the embedding shaft, the embedding shaft is positioned right above the embedding shaft, and the embedding shaft is embedded with an embedded clamp and is arranged on the outer side face of the lower end of the stirring mechanism.
The telescopic link includes that parcel mechanism, first nested pole, clear bits mechanism, second are inlayed the loop bar, parcel mechanism's laminating parcel is inlayed the outside terminal surface of loop bar at the second, clear bits mechanism is being connected to the nested block of first nested pole upper end lateral surface, clear bits mechanism inlays the medial surface of locating the telescopic link, second nested pole encircles the parcel at the outside terminal surface of first nested pole, clear bits mechanism's lower section is sharp awl tubulose.
The wrapping mechanism comprises a hollow groove, a wrapping sheet, a traction mechanism and an embedding plate, the hollow groove is embedded in the inner side end face of the wrapping sheet, the embedding plates are connected with the upper end and the lower end of the wrapping sheet in an embedded mode, the traction mechanism is symmetrically installed on the left end face and the right end face of the wrapping sheet, the embedding plate is embedded in the inner side end face of the wrapping mechanism, and the wrapping sheet is made of rubber materials.
Wherein, drive mechanism includes the block rubber, pulls strip, fixed axle, flexible piece, the block rubber is inlayed and is located pulling the strip just upward, pull the strip left and right sides terminal surface and inlay the block and connect the fixed axle, the lower extreme left and right sides at the block rubber is installed to the fixed axle symmetry, the lower extreme surface at the block rubber is connected in the laminating of flexible piece, the medial surface that pulls the strip is hollow form and has the pliability.
The chip cleaning mechanism comprises a filling block, a chip removing port and a bidirectional guide groove block, the filling block surrounds the outer side face of the lower end of the bidirectional guide groove block, the chip removing port is embedded in the inner side end face of the chip cleaning mechanism, the chip removing port is connected to the outer side end face of the bidirectional guide groove block in an attached mode, and the inner end of the filling block is filled with air.
The dual-guide groove block comprises an inclined plane guide block, a second chip removal port, a spiral solid block and an embedded ring, the inclined plane guide block is symmetrically arranged at the left end and the right end of the embedded ring, the second chip removal port is embedded in the inner side end face of the dual-guide groove block, the spiral solid block is embedded in the inner side end face of the dual-guide groove block, the embedded ring is located right above the spiral solid block, and the spiral solid block is spirally wrapped on the outer side face of the lower end of the embedded ring.
Compared with the prior art, the invention has the following beneficial effects:
1. the in-process accessible mosaic plate that goes up and down at first nested pole drags parcel piece and hollow groove, make both can extend its longitudinal diameter length gradually by the in-process that lasts the application of force, and then guarantee to the continuous parcel that first nested pole and second inlayed the loop bar, and be equipped with the block rubber in the drive mechanism with pull the strip, also can extend to the left and right sides gradually along with dragging, thereby make the flexible piece along with the block rubber laminating that tightens is at the outside terminal surface of pulling the strip, avoid when pulling the strip fracture the piece along the clearance inflow.
2. In the process of continuously pushing the virgin stock, the chips of the virgin stock can surge around the inner contour of the double-guide groove block along with the guide of the spiral solid block until the chips flow out along the second chip removal port and are finally discharged out along the chip removal port, so that the first embedded rod can be prevented from entering the gap between the first embedded rod and the second embedded rod along the chip cleaning mechanism in the lifting process.
Drawings
Fig. 1 is a schematic structural view of a concentration device of a degradable antibacterial sanitary napkin according to the present invention.
Fig. 2 is a schematic structural diagram of a purification tank of a degradable antibacterial sanitary towel concentration device according to the present invention.
Fig. 3 is a schematic structural diagram of a stirring mechanism of a degradable antibacterial sanitary towel concentration device according to the present invention.
Fig. 4 is a schematic structural view of a telescopic rod of the degradable antibacterial sanitary towel concentration device of the present invention.
Fig. 5 is a schematic structural diagram of a wrapping mechanism of a degradable antibacterial sanitary napkin concentrating device according to the present invention.
Fig. 6 is a schematic structural diagram of a traction mechanism of a concentration device of a degradable antibacterial sanitary napkin according to the present invention.
Fig. 7 is a schematic structural diagram of a scrap removing mechanism of a degradable antibacterial sanitary towel concentration device.
Fig. 8 is a schematic structural view of a dual guide channel block of a concentration device for a degradable antibacterial sanitary napkin according to the present invention.
In the figure: the device comprises a purification tank-1, a control box-2, a power end-3, a hatch cover-4, a stirring mechanism-11, a rotary disc-12, a chip removal port-13, a support-14, an embedded block-111, a telescopic rod-112, an embedded connecting shaft-113, an embedded shaft-114, a wrapping mechanism-121, a first embedded rod-122, a chip removal mechanism-123, a second embedded rod-124, a hollow groove-211, a wrapping sheet-212, a traction mechanism-213, an embedding plate-214, a rubber block-131, a traction bar-132, a fixed shaft-133, a flexible sheet-134, a filling block-231, a chip removal port-232, a bidirectional guide groove block-233, an inclined plane guide block-321, a second chip removal port-322, a spiral solid block-323 and an embedding ring-324.
Detailed Description
The invention is further described below with reference to the accompanying drawings:
example 1:
as shown in figures 1 to 6:
the invention provides degradable antibacterial sanitary towel concentration equipment which structurally comprises a purification tank 1, a control box 2, a power end 3 and a hatch cover 4, wherein the power end 3 is fixed on the upper end face of the purification tank 1 through welding, the control box 2 is fixedly embedded on the outer end face of the purification tank 1, the power end 3 is positioned right above the control box 2, and the hatch cover 4 is embedded on the upper end face of the purification tank 1; purification jar 1 includes rabbling mechanism 11, carousel 12, chip removal mouth 13, support 14, the lower extreme surface at carousel 12 is installed to rabbling mechanism 11 activity block, carousel 12 inlays and locates directly over support 14, chip removal mouth 13 inlays the solid lower extreme lateral surface of installing at carousel 12, support 14 is located carousel 12 directly under.
The stirring mechanism 11 comprises an embedding block 111, a telescopic rod 112, an embedding shaft 113 and an embedding shaft 114, wherein the embedding block 111 is embedded, clamped and installed on the outer end face of the telescopic rod 112, the telescopic rod 112 is embedded, installed on the lower end surface of the embedding shaft 113, the embedding shaft 113 is located right above the embedding shaft 114, and the embedding shaft 114 is embedded, clamped and installed on the outer side face of the lower end of the stirring mechanism 11.
The telescopic rod 112 comprises a wrapping mechanism 121, a first embedded rod 122, a scrap cleaning mechanism 123 and a second embedded rod 124, the wrapping mechanism 121 is attached to and wrapped on the outer side end face of the second embedded rod 124, the scrap cleaning mechanism 123 is connected to the outer side face of the upper end of the first embedded rod 122 in a nested and clamped mode, the scrap cleaning mechanism 123 is embedded in the inner side end face of the telescopic rod 112, the second embedded rod 124 is wrapped on the outer side end face of the first embedded rod 122 in a surrounding mode, the lower section of the scrap cleaning mechanism 123 is in a pointed-cone straight-tube shape, and primary slurry solidified blocks attached to the surface of the first embedded rod 122 can be pushed to the scrap cleaning mechanism 123 to be scraped in the lifting process of the first embedded rod 122.
Wherein, parcel mechanism 121 includes hollow groove 211, parcel piece 212, drive mechanism 213, mosaic plate 214, the inboard terminal surface of locating parcel piece 212 is inlayed to hollow groove 211, mosaic plate 214 is being connected to the block is inlayed at both ends about parcel piece 212, drive mechanism 213 symmetry is installed at the both ends face about parcel piece 212, mosaic plate 214 inlays the inboard terminal surface of locating parcel mechanism 121, parcel piece 212 adopts the rubber material to make, can make first embedded rod 122 form tensile the effectual parcel of first embedded rod 122 and second embedded rod 124 formation through hollow groove 211 and the collocation of parcel piece 212 in the in-process that goes up and down.
Wherein, drive mechanism 213 includes block rubber 131, pulls strip 132, fixed axle 133, flexible piece 134, block rubber 131 inlays and locates and pull strip 132 on, pull strip 132 left and right sides terminal surface and inlay the block and connect fixed axle 133, the lower extreme left and right sides at block rubber 131 is installed to fixed axle 133 symmetry, the lower extreme surface at block rubber 131 is connected in the laminating of flexible piece 134, the medial surface that pulls strip 132 just has the pliability for hollow form, can make fixed axle 133 form effectual deformation when pulling it.
The specific use mode and function of the embodiment are as follows:
in the invention, raw materials to be purified are placed in a purification tank 1, a power end 3 is controlled by a control box 2 to drive a stirring mechanism 11 to rotate, the purification tank 1 is heated, the stirring mechanism 11 is heated continuously by air while rotating, so that moisture in raw pulp is evaporated gradually, the water level line of the raw pulp is lowered gradually in the evaporation and purification process, in order to avoid part of raw pulp from being attached to gaps in an expansion link 112 and solidified along with the heating of the air, a wrapping mechanism 121 and a scrap removing mechanism 123 are arranged in the expansion link 112, a hollow groove 211 in the wrapping mechanism 121 is used for wrapping a first embedded rod 122 and a second embedded rod 124, a wrapping sheet 212 and the hollow groove 211 can be pulled by an embedding plate 214 in the lifting process of the first embedded rod 122, so that the longitudinal diameter lengths of the wrapping sheet 212 and the hollow groove 211 can be extended gradually in the continuous force application process, further, the first nesting rod 122 and the second nesting rod 124 are continuously wrapped, and the rubber block 131 and the traction strip 132 arranged in the traction mechanism 213 can also gradually extend to the left and right sides along with pulling, so that the flexible sheet 134 is attached to the outer end face of the traction strip 132 along with the tightened rubber block 131, and chips are prevented from flowing into the traction strip 132 along gaps when the traction strip 132 is broken.
Example 2:
as shown in fig. 6 to 8:
wherein, clear bits mechanism 123 includes packing block 231, chip removal mouth 232, two-way guide slot piece 233, packing block 231 encircles the parcel at the lower extreme lateral surface of two-way guide slot piece 233, chip removal mouth 232 inlays the medial surface of locating clear bits mechanism 123, chip removal mouth 232 is being connected in the laminating of two-way guide slot piece 233 outside up end, packing block 231 is inner to be filled with the air, can guarantee along with the filling nature of air to the gas tightness between two-way guide slot piece 233 and clear bits mechanism 123 terminal surface, avoids the magma to solidify the piece along with chip removal mouth 232 arranges into in the equipment.
The dual-guide groove block 233 comprises an inclined guide block 321, a second chip removal port 322, a spiral solid block 323 and an embedding ring 324, the inclined guide block 321 is symmetrically installed at the left end and the right end of the embedding ring 324, the second chip removal port 322 is embedded in the inner side end face of the dual-guide groove block 233, the spiral solid block 323 is embedded and surrounded on the inner side end face of the dual-guide groove block 233, the embedding ring 324 is located right above the spiral solid block 323, the spiral solid block 323 is spirally wrapped on the outer side face of the lower end of the embedding ring 324 in a surrounding manner, and chips can be discharged outwards along the inner contour of the spiral solid block 323 through the second chip removal port 322 along the guide of the inclined guide block 321.
The specific use mode and function of the embodiment are as follows:
when the raw stock is attached to the outer wall of the first embedded rod 122, the raw stock attached to the outer wall of the first embedded rod 122 gradually approaches the chip cleaning mechanism 123 along with the embedding of the first embedded rod 122 and the chip cleaning mechanism 123 until the raw stock is scraped and guided along the inclined guide block 321 in the double-guide groove block 233, and as the inclined guide block 321 is connected with the spiral solid block 323 and the spiral solid block 323 is in a double-hole spiral design, in the process of continuously pushing the raw stock, chips of the raw stock flow can flow around the inner contour of the double-guide groove block 233 along with the guide of the spiral solid block 323 until the chips flow out along the second chip removal port 322 and are finally discharged out along the chip removal port 232, so that the chips of the first embedded rod 122 can be prevented from entering the gap between the first embedded rod 122 and the second embedded rod 124 along the chip cleaning mechanism 123 and being solidified in the lifting process.
The technical solutions of the present invention or similar technical solutions designed by those skilled in the art based on the teachings of the technical solutions of the present invention are all within the scope of the present invention to achieve the above technical effects.
Claims (7)
1. A degradable antibacterial sanitary towel concentration device structurally comprises a purification tank (1), a control box (2), a power end (3) and a hatch cover (4), wherein the power end (3) is fixed on the upper end face of the purification tank (1) through welding, the control box (2) is fixedly embedded in the end face of the outer side of the purification tank (1), the power end (3) is positioned right above the control box (2), and the hatch cover (4) is embedded in the upper end face of the purification tank (1); the method is characterized in that:
purification jar (1) includes rabbling mechanism (11), carousel (12), chip removal mouth (13), support (14), the lower extreme surface at carousel (12) is installed to rabbling mechanism (11) activity block, carousel (12) are inlayed and are located support (14) directly over, chip removal mouth (13) are inlayed and are firmly installed in the lower extreme lateral surface of carousel (12), support (14) are located carousel (12) directly under.
2. The degradable antimicrobial sanitary napkin concentrating apparatus of claim 1, wherein: rabbling mechanism (11) are including inlaying solid piece (111), telescopic link (112), inlay even axle (113), inlay axle (114), inlay solid piece (111) and inlay the block and install the outside terminal surface at telescopic link (112), telescopic link (112) are inlayed the solid lower extreme surface of installing in inlaying even axle (113), it is located directly over inlaying axle (114) to inlay even axle (113), inlay axle (114) and inlay the academy and install the lower extreme lateral surface in rabbling mechanism (11).
3. The degradable antimicrobial sanitary napkin concentrating apparatus of claim 2, wherein: telescopic link (112) inlay nested pole (124) including parcel mechanism (121), first inlay nested pole (122), clear bits mechanism (123), second, parcel mechanism (121) laminating parcel is inlayed nested pole (124) the outside terminal surface in the second, clear bits mechanism (123) are being connected to the nested block of first inlay nested pole (122) upper end lateral surface, clear bits mechanism (123) are inlayed and are located the medial surface of telescopic link (112), second inlay nested pole (124) and encircle the parcel at the outside terminal surface of first inlay nested pole (122).
4. A degradable antimicrobial sanitary napkin concentrating device according to claim 3, wherein: parcel mechanism (121) are including hollow groove (211), parcel piece (212), drive mechanism (213), mosaic plate (214), the medial surface of locating parcel piece (212) is inlayed in hollow groove (211), the block is being connected mosaic plate (214) is inlayed at both ends about parcel piece (212), drive mechanism (213) symmetry is installed at both ends face about parcel piece (212), mosaic plate (214) are inlayed and are located the medial surface of parcel mechanism (121).
5. The degradable antimicrobial sanitary napkin concentrating apparatus of claim 4, wherein: traction mechanism (213) include block rubber (131), pull strip (132), fixed axle (133), flexible piece (134), block rubber (131) are inlayed and are located and pull strip (132) on, pull strip (132) left and right sides terminal surface and inlay the block and connect fixed axle (133), the lower extreme left and right sides in block rubber (131) is installed to fixed axle (133) symmetry, the lower extreme surface in block rubber (131) is connected in the laminating of flexible piece (134), the medial surface of pulling strip (132) is hollow and has the pliability.
6. A degradable antimicrobial sanitary napkin concentrating device according to claim 3, wherein: the chip cleaning mechanism (123) comprises a filling block (231), a chip removing port (232) and a two-way guide groove block (233), wherein the filling block (231) is wrapped on the outer side surface of the lower end of the two-way guide groove block (233) in a surrounding mode, the chip removing port (232) is embedded in the end surface of the inner side of the chip cleaning mechanism (123), and the chip removing port (232) is connected to the upper end surface of the outer side of the two-way guide groove block (233) in a fitting mode.
7. The degradable antimicrobial sanitary napkin concentrating apparatus of claim 6, wherein: double-guide groove block (233) include inclined plane guide block (321), second chip removal mouth (322), spiral solid block (323), inlay ring (324), inclined plane guide block (321) symmetry is installed at the left and right sides both ends of inlaying ring (324), the medial surface of locating double-guide groove block (233) is inlayed in second chip removal mouth (322), spiral solid block (323) are inlayed and are encircleed the medial surface at double-guide groove block (233), inlay ring (324) and be located spiral solid block (323) directly over.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202110118014.3A CN112933620A (en) | 2021-01-28 | 2021-01-28 | Degradable antibacterial sanitary towel concentrator |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202110118014.3A CN112933620A (en) | 2021-01-28 | 2021-01-28 | Degradable antibacterial sanitary towel concentrator |
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CN112933620A true CN112933620A (en) | 2021-06-11 |
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CN202110118014.3A Withdrawn CN112933620A (en) | 2021-01-28 | 2021-01-28 | Degradable antibacterial sanitary towel concentrator |
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Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN206980124U (en) * | 2017-05-19 | 2018-02-09 | 梓潼县金梅农业开发有限公司 | A kind of starch enrichment facility |
CN209378461U (en) * | 2018-10-26 | 2019-09-13 | 江苏鸿祺生物科技有限公司 | A kind of propolis extract efficient concentration device |
CN211585241U (en) * | 2019-12-25 | 2020-09-29 | 湖南橘色科技有限责任公司 | External heating type extraction thickener |
-
2021
- 2021-01-28 CN CN202110118014.3A patent/CN112933620A/en not_active Withdrawn
Patent Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN206980124U (en) * | 2017-05-19 | 2018-02-09 | 梓潼县金梅农业开发有限公司 | A kind of starch enrichment facility |
CN209378461U (en) * | 2018-10-26 | 2019-09-13 | 江苏鸿祺生物科技有限公司 | A kind of propolis extract efficient concentration device |
CN211585241U (en) * | 2019-12-25 | 2020-09-29 | 湖南橘色科技有限责任公司 | External heating type extraction thickener |
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Effective date of registration: 20220125 Address after: 223199 No.51, Renmin North Road, Hongze County, Huai'an City, Jiangsu Province Applicant after: Xie Meifen Address before: 223199 No.51, Renmin North Road, Hongze County, Huai'an City, Jiangsu Province Applicant before: Nanjing linyujin Trading Co.,Ltd. |
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