CN215853113U - Pollution-preventing spore recovery processing device - Google Patents

Pollution-preventing spore recovery processing device Download PDF

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Publication number
CN215853113U
CN215853113U CN202120629530.8U CN202120629530U CN215853113U CN 215853113 U CN215853113 U CN 215853113U CN 202120629530 U CN202120629530 U CN 202120629530U CN 215853113 U CN215853113 U CN 215853113U
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China
Prior art keywords
spore
feed chute
feeding groove
bin
box
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CN202120629530.8U
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Chinese (zh)
Inventor
郭彦萍
李丽
孙瑞
寇梦园
周征征
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988th Hospital of the Joint Logistics Support Force of PLA
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988th Hospital of the Joint Logistics Support Force of PLA
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Abstract

The utility model discloses a pollution-preventing spore recovery processing device, and relates to the technical field of recovery devices. This spore recovery processing device who prevents pollution, through the feed chute I and the feed chute II that set up on the blowing fill, and through pivot and a plurality of shielding piece that all set up in feed chute I and feed chute II, when slide the lid and open the back, can with the direct back of putting into feed chute I and feed chute II of spore, the spore can be direct drops on the shielding piece, then because the effect of gravity shielding piece can be along with the pivot is rotatory, the spore is along with shielding piece rotatory to feed chute I or feed chute two bottom side back this moment, can enter into the storage space on left and right sides through conveying pipeline I or conveying pipeline two in, can fall into containing box I or containing box two afterwards, realize the collection to the spore.

Description

Pollution-preventing spore recovery processing device
Technical Field
The utility model relates to the technical field of recovery devices, in particular to a spore recovery processing device for preventing pollution.
Background
The spores are also called endospores and are bacterial dormancy bodies, common spore-producing bacteria mainly comprise bacillus, clostridium, sporolactobacillus and the like, when the spore-producing bacteria lack in nutritional conditions, circular or elliptical spore dormancy bodies are formed in the bacteria, the water content of the spores is extremely low, the stress resistance is strong, the spores can withstand high temperature, ultraviolet rays, ionizing radiation, killing of various chemical substances and the like, and in sterilization monitoring, a biological indicator can be prepared by utilizing the high stress resistance of the spores.
After the work area is handled the spore, need put into the box with the spore after handling and collect, because work area's environment has the requirement to bacterial colony number, the spore that is in the open state box can expose in the air, and then can pollute work area's environment, can cause unnecessary trouble.
Therefore, there is a need for a spore recovery processing device that prevents contamination to solve the above problems.
SUMMERY OF THE UTILITY MODEL
Technical problem to be solved
Aiming at the defects of the prior art, the utility model provides a pollution-preventing spore recovery processing device, which solves the problems that after spores are processed in a working area, the processed spores need to be put into a box for collection, and the environment of the working area has requirements on the bacterial colony number, so that the spores in the box in an open state are exposed to the air, and further the environment of the working area is polluted.
(II) technical scheme
In order to achieve the above purposes, the technical scheme adopted by the utility model is as follows: a spore recovery processing device for preventing pollution comprises a recovery box, wherein the left side and the right side in the recovery box are both provided with storage spaces, the left side and the right side of the storage spaces are respectively provided with a first storage box and a second storage box, the bottom ends of the first storage box and the second storage box are both fixedly provided with a base, the left side wall and the right side wall of the recovery box are both provided with notches, the top side walls in the two notches are both fixedly provided with spring pieces, the left side wall of the first storage box and the right side wall of the second storage box are both provided with arc-shaped clamping grooves, the middle bending parts of the two spring pieces are respectively clamped with the two arc-shaped clamping grooves, the middle part of the top end of the recovery box is fixedly provided with a discharge hopper, the front side and the rear side of the discharge hopper are respectively provided with a first feed groove and a second feed groove, the top sides of the first feed groove and the second feed groove are both provided with sliding covers, and the front ends and the rear ends of the left side and the right side of the bottom ends of the sliding covers are both fixedly provided with T-shaped sliding blocks, four the T shape slider slides respectively one by one and sets up in four T shape spouts, and four T shape spouts all set up the upper surface at the blowing fill, the lateral wall all is provided with the pivot, two through the fixed bearing that sets up around in feed chute one and the feed chute two all fixed a plurality of shielding pieces that are provided with in the pivot, the hand is seted up on the left of the top of sliding closure and is dialled the groove, the top left and right sides of collection box all is provided with the observation window.
Preferably, the left side of the bottom of the first feeding groove is provided with a first conveying pipe communicated with the left storage space, and the right side of the bottom of the second feeding groove is provided with a second conveying pipe communicated with the right storage space.
Preferably, the bottom sides of the first feeding groove and the second feeding groove are both arranged in a semicircular shape, and the length of the shielding piece is equal to the radius of the semicircular shape.
Preferably, the front end and the rear end of the discharging hopper are both provided with a portable handle, the two ends of the portable handle are both hinged with fixing blocks, and the fixing blocks are fixedly arranged on the discharging hopper.
Preferably, the bottom ends of the two spring pieces extend out of the notches.
(III) advantageous effects
The utility model has the beneficial effects that:
1. the pollution-preventing spore recovery processing device has the advantages that through the feeding groove I and the feeding groove II which are arranged on the discharging hopper, and through the rotating shaft and the shielding pieces which are arranged in the feeding groove I and the feeding groove II, when the sliding cover is slid and opened, spores can be directly placed into the feeding groove I and the feeding groove II, the spores can directly fall onto the shielding pieces, then the shielding pieces can rotate along with the rotating shaft under the action of gravity, the spores can rotate along with the shielding pieces to the inner bottom sides of the feeding groove I or the feeding groove II, then the spores can enter the containing spaces on the left side and the right side through the conveying pipe I or the conveying pipe II, and then fall into the containing box I or the containing box II, the collection of the spores is realized, at the moment, because the shielding pieces shield the feeding groove I or the feeding groove II, the spores placed into the containing box I or the containing box II can be prevented from being exposed in the air, the spore is prevented from polluting the environment of a working area, and the like.
2. This spore recovery processing device who prevents pollution, through the spring leaf that all sets up in controlling the side notch, and through the arc draw-in groove that all sets up on the left side of containing box one and the right side of containing box two and the joint of spring leaf, can fix containing box one and containing box two in the accommodation space on left and right sides, and the later stage only needs stir the joint of spring leaf cancellation and arc draw-in groove, just can take out containing box one and containing box two from the accommodation space on left and right sides, and is easy operation, convenient to use.
Drawings
FIG. 1 is a schematic perspective view of the present invention;
FIG. 2 is a schematic view of a front cross-sectional structure of a feed chute according to the present invention;
FIG. 3 is a schematic diagram of a front cross-sectional view of a second feed chute according to the present invention;
FIG. 4 is a schematic perspective view of the discharge hopper of the present invention;
FIG. 5 is a schematic perspective view of a storage box according to the present invention.
In the figure: the device comprises a recovery box 1, a storage space 2, a first storage box 3, a second storage box 4, a base 5, a notch 6, a spring leaf 7, an arc-shaped clamping groove 8, a discharge hopper 9, a first feed chute 10, a second feed chute 11, a sliding cover 12, a T-shaped sliding block 13, a T-shaped sliding groove 14, a first feed delivery pipe 15, a second feed delivery pipe 16, a rotating shaft 17, a shielding piece 18, a handle 19, a fixed block 20, a hand-operated shifting groove 21 and an observation window 22.
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.
As shown in fig. 1 to 5, the present invention provides a technical solution: a spore recovery processing device for preventing pollution comprises a recovery box 1, wherein the left side and the right side in the recovery box 1 are both provided with storage spaces 2, a first storage box 3 and a second storage box 4 can be stored through the two storage spaces 2, the left side and the right side are respectively provided with the first storage box 3 and the second storage box 4, spores can be separately stored through the first storage box 3 and the second storage box 4, the bottom ends of the first storage box 3 and the second storage box 4 are both fixedly provided with a base 5, the left side wall and the right side wall of the recovery box 1 are both provided with notches 6, the top side wall in the two notches 6 is both fixedly provided with spring pieces 7, the left side wall of the first storage box 3 and the right side wall of the second storage box 4 are both provided with arc-shaped clamping grooves 8, the middle bending parts of the two spring pieces 7 are respectively clamped with the two arc-shaped clamping grooves 8, and the spring pieces 7 are clamped with the arc-shaped clamping grooves 8, the first storage box 3 and the second storage box 4 can be fixed in the storage space on the left side and the right side, the spring piece 7 can be pulled to cancel the clamping with the arc-shaped clamping groove 8, then the first storage box 3 and the second storage box 4 can be pulled out downwards from the storage space 2, the first storage box 3 and the second storage box 4 can be taken out, the middle part of the top end of the recovery box 1 is fixedly provided with the discharge hopper 9, the front side and the rear side of the discharge hopper 9 are respectively provided with the first feed chute 10 and the second feed chute 11, the top sides of the first feed chute 10 and the second feed chute 11 are respectively provided with the sliding cover 12, the front end and the rear end of the left side and the right side of the bottom end of the sliding cover 12 are respectively fixedly provided with the T-shaped sliding blocks 13, the four T-shaped sliding blocks 13 are respectively arranged in the four T-shaped sliding grooves 14 in a one-to-one sliding manner, the four T-shaped sliding grooves 14 are arranged on the upper surface of the discharge hopper 9, and are connected with the T-shaped sliding grooves 14 through the arranged T-shaped sliding blocks 13, the sliding cover 12 can stably slide left and right, the front side wall and the rear side wall in the first feeding chute 10 and the second feeding chute 11 are fixedly provided with rotating shafts 17 through bearings fixedly arranged, the two rotating shafts 17 are fixedly provided with a plurality of shielding pieces 18, when the processed spores are placed into the first feeding chute 10 and the second feeding chute 11, the spores directly fall onto the shielding pieces 18, then the shielding pieces 18 rotate along with the rotating shafts 17 under the action of gravity, the spores rotate along with the shielding pieces 18 to the inner bottom side of the first feeding chute 10 or the second feeding chute 11, then enter the storage spaces 2 on the left side and the right side through the first conveying pipes 15 or the second conveying pipes 16, and then fall into the first storage box 3 or the second storage box 4 to realize collection of the spores, at the moment, because the shielding pieces 18 shield the first feeding chute 10 or the second feeding chute 11, the spores placed into the first storage box 3 or the second storage box 4 can be prevented from being exposed in the air, avoid spore pollution work area's environment etc, the top left side of slip lid 12 has been seted up the hand and has been dialled groove 21, dials groove 21 through the hand buckle hand and can drive slip lid 12 and slide left, and then can make one feed chute 10 and two 11 advance and be in open state, the top left and right sides of collection box 1 all is provided with observation window 22, can observe the storage condition of storage spore in collection box 3 and collection box two 4 through the observation window 22 that sets up.
The left side of the bottom end of the first feed chute 10 is provided with a first conveying pipe 15 which is communicated with the storage space 2 on the left side, the first conveying pipe 15 enables spores entering the first feed chute 10 to slide into the storage box 3, the right side of the bottom end of the second feed chute 11 is provided with a second conveying pipe 16 which is communicated with the storage space 2 on the right side, and the second conveying pipe 16 enables the spores entering the second feed chute 11 to slide into the storage box 4.
The bottom sides of the first feeding groove 10 and the second feeding groove 11 are both in semicircular arrangement, the length of the shielding piece 18 is equal to the semicircular radius, and the effect of the first feeding groove 10 and the second feeding groove 11 is that the shielding piece 18 can be sealed, so that spores placed in the first storage box 10 or the second storage box 11 can be prevented from being exposed in the air, and the environment of a working area is prevented from being polluted by the spores.
All be provided with portable handle 19 in the front and back end of blowing fill 9, portable handle 19's both ends all articulate there is fixed block 20, fixed block 20 is fixed to be set up on blowing fill 9, conveniently mentions collection box 1 through the portable handle 19 that sets up.
Two the notch 6 all extends to the bottom of spring leaf 7, and its effect lies in making things convenient for hand to dial spring leaf 7.
The method comprises the following operation steps:
s1, when in use, the sliding cover 12 is driven to slide leftwards by the hand-buckled hand-pulling groove 21, so that the first feeding groove 10 and the second feeding groove 11 are in an open state, then the treated spores are directly put into the first feeding groove 10 and the second feeding groove 11, the spores directly fall onto the shielding sheet 18, then the shielding plate 18 will rotate along with the rotating shaft 17 due to the action of gravity, and the spores will rotate along with the shielding plate 18 to the bottom side of the first feeding chute 10 or the second feeding chute 11, the spores are collected by entering the left and right containing spaces 2 through the first conveying pipe 15 or the second conveying pipe 16 and then falling into the first containing box 3 or the second containing box 4, and at the moment, because the plurality of shielding pieces 18 shield the first feeding groove 10 or the second feeding groove 11, the spores placed in the first containing box 3 or the second containing box 4 can be prevented from being exposed in the air, and the environment of a working area and the like are prevented from being polluted by the spores;
s2, when the spores need to be taken out at the later stage, the spring piece 7 can be shifted to enable the spring piece 7 to be cancelled to be clamped with the arc-shaped clamping groove 8, then the first containing box 3 and the second containing box 4 can be pulled out downwards from the containing space 2, and the first containing box 3 and the second containing box 4 can be taken out.
The above-mentioned embodiments, objects, technical solutions and advantages of the present invention are further described in detail, it should be understood that the above-mentioned embodiments are only illustrative of the present invention and are not intended to limit the present invention, and any modifications, equivalents, improvements and the like made within the spirit and principle of the present invention should be included in the protection scope of the present invention.

Claims (5)

1. The utility model provides a spore recovery processing device of preventing pollution, includes collection box (1), its characterized in that: the recycling bin is characterized in that a containing space (2) is respectively arranged at the left side and the right side in the recycling bin (1), a first containing bin (3) and a second containing bin (4) are respectively arranged at the left side and the right side in the containing space, bases (5) are respectively fixedly arranged at the bottoms of the first containing bin (3) and the second containing bin (4), notches (6) are respectively formed in the left side wall and the right side wall of the recycling bin (1), spring pieces (7) are respectively fixedly arranged on the inner top side walls of the two notches (6), arc-shaped clamping grooves (8) are respectively formed in the left side wall of the first containing bin (3) and the right side wall of the second containing bin (4), the middle bending parts of the two spring pieces (7) are respectively clamped with the two arc-shaped clamping grooves (8), a discharging hopper (9) is fixedly arranged in the middle part of the top end of the recycling bin (1), and a first feeding groove (10) and a second feeding groove (11) are respectively formed in the front side and the rear side of the discharging hopper (9), the top side of feed chute (10) and feed chute two (11) all is provided with sliding cover (12), the bottom left and right sides front and back end of sliding cover (12) all fixes and is provided with T shape slider (13), four T shape slider (13) slide respectively one by one and set up in four T shape spout (14), and four T shape spout (14) all set up the upper surface at blowing hopper (9), the lateral wall is all fixed through the bearing of fixed setting around in feed chute (10) and feed chute two (11) and is provided with pivot (17), two all fix in pivot (17) and be provided with a plurality of shielding pieces (18), hand group groove (21) have been seted up in the top left side of sliding cover (12), the top left and right sides of collection box (1) all is provided with observation window (22).
2. A spore recycling apparatus for preventing contamination according to claim 1, wherein: the left side of the bottom end of the first feeding groove (10) is provided with a first conveying pipe (15) communicated with the left storage space (2), and the right side of the bottom end of the second feeding groove (11) is provided with a second conveying pipe (16) communicated with the right storage space (2).
3. A spore recycling apparatus for preventing contamination according to claim 1, wherein: the bottom sides of the first feeding groove (10) and the second feeding groove (11) are both arranged in a semicircular shape, and the length of the shielding piece (18) is equal to the radius of the semicircular shape.
4. A spore recycling apparatus for preventing contamination according to claim 1, wherein: the front end and the rear end of the discharging hopper (9) are respectively provided with a portable handle (19), two ends of each portable handle (19) are respectively hinged with a fixing block (20), and the fixing blocks (20) are fixedly arranged on the discharging hopper (9).
5. A spore recycling apparatus for preventing contamination according to claim 1, wherein: notches (6) extend out of the bottom ends of the two spring pieces (7).
CN202120629530.8U 2021-03-29 2021-03-29 Pollution-preventing spore recovery processing device Active CN215853113U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120629530.8U CN215853113U (en) 2021-03-29 2021-03-29 Pollution-preventing spore recovery processing device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120629530.8U CN215853113U (en) 2021-03-29 2021-03-29 Pollution-preventing spore recovery processing device

Publications (1)

Publication Number Publication Date
CN215853113U true CN215853113U (en) 2022-02-18

Family

ID=80318261

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120629530.8U Active CN215853113U (en) 2021-03-29 2021-03-29 Pollution-preventing spore recovery processing device

Country Status (1)

Country Link
CN (1) CN215853113U (en)

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