CN108508174B - Beidou intelligent sewage cabinet - Google Patents
Beidou intelligent sewage cabinet Download PDFInfo
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- CN108508174B CN108508174B CN201810410670.9A CN201810410670A CN108508174B CN 108508174 B CN108508174 B CN 108508174B CN 201810410670 A CN201810410670 A CN 201810410670A CN 108508174 B CN108508174 B CN 108508174B
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- G—PHYSICS
- G01—MEASURING; TESTING
- G01N—INVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
- G01N33/00—Investigating or analysing materials by specific methods not covered by groups G01N1/00 - G01N31/00
- G01N33/18—Water
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- C—CHEMISTRY; METALLURGY
- C02—TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
- C02F—TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
- C02F1/00—Treatment of water, waste water, or sewage
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- G—PHYSICS
- G01—MEASURING; TESTING
- G01S—RADIO DIRECTION-FINDING; RADIO NAVIGATION; DETERMINING DISTANCE OR VELOCITY BY USE OF RADIO WAVES; LOCATING OR PRESENCE-DETECTING BY USE OF THE REFLECTION OR RERADIATION OF RADIO WAVES; ANALOGOUS ARRANGEMENTS USING OTHER WAVES
- G01S19/00—Satellite radio beacon positioning systems; Determining position, velocity or attitude using signals transmitted by such systems
- G01S19/01—Satellite radio beacon positioning systems transmitting time-stamped messages, e.g. GPS [Global Positioning System], GLONASS [Global Orbiting Navigation Satellite System] or GALILEO
- G01S19/13—Receivers
- G01S19/14—Receivers specially adapted for specific applications
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- Life Sciences & Earth Sciences (AREA)
- Chemical & Material Sciences (AREA)
- General Physics & Mathematics (AREA)
- Remote Sensing (AREA)
- Health & Medical Sciences (AREA)
- Physics & Mathematics (AREA)
- Radar, Positioning & Navigation (AREA)
- Medicinal Chemistry (AREA)
- Computer Networks & Wireless Communication (AREA)
- Biochemistry (AREA)
- Immunology (AREA)
- Pathology (AREA)
- Analytical Chemistry (AREA)
- Food Science & Technology (AREA)
- General Health & Medical Sciences (AREA)
- Hydrology & Water Resources (AREA)
- Environmental & Geological Engineering (AREA)
- Water Supply & Treatment (AREA)
- Organic Chemistry (AREA)
- Processing Of Solid Wastes (AREA)
- Treatment Of Sludge (AREA)
Abstract
The utility model provides a big dipper intelligence sewage cabinet, relates to sewage monitoring field, including sewage cabinet and functional box, wherein, the functional box includes the case shell, is used for laying hardware system's function integrated board and telescopic connection portion, telescopic connection portion is including linking firmly the cover and moving even the cover, link firmly the cover with move even the cover and be located respectively on the different sideboard face of function integrated board, link firmly and overlap and have a shaft spout, move even to overlap and have into the slot part. According to the invention, the sewage area with specific geographic information is monitored in real time by combining the Beidou navigation and positioning technology, so that the sewage information is recorded, the sewage samples can be stored for extraction and research, different sewage treatment systems or circuit control elements thereof are efficiently concentrated on the sewage cabinet, the realization is convenient, a targeted sewage treatment mode is provided, and the treatment efficiency of the sewage cabinet is improved.
Description
Technical Field
The invention relates to the field of sewage monitoring, in particular to a Beidou intelligent sewage cabinet.
Background
With the increasing importance of environmental problems brought by rapid economic development, the problems of sewage treatment are paid more attention to, and the problems of sewage treatment accumulated by the protection of water resources are not paid much to in the past when the economic development is carried out, so that the problems of sewage treatment can not be thoroughly solved by a simple and traditional sewage treatment scheme, correspondingly, the method for treating sewage is innovated by various social circles aiming at the problem of difficult sewage treatment, the technology of the current front edge is applied to improve the efficiency of sewage treatment, for example, an Internet and Beidou ship sewage discharge monitoring management system is an integrated management system based on GIS geographic information, beidou satellite positioning, internet of things sensing, mobile interconnection and other technologies, different sewage data at all places are integrated and analyzed by the technology of Beidou positioning, mobile interconnection and the like, and the defect of low efficiency in the traditional sewage discharge treatment is solved.
Disclosure of Invention
The invention aims to provide the Beidou intelligent sewage cabinet, which is used for carrying out real-time monitoring on a sewage area with specific geographic information by combining with a Beidou navigation and positioning technology, so that the sewage information is recorded, a sewage sample can be stored for extraction and research, different sewage treatment systems or circuit control elements thereof are efficiently concentrated on the sewage cabinet, the realization is convenient, a targeted sewage treatment mode is provided, and the treatment efficiency of the sewage cabinet is improved.
The technical aim of the invention is realized by the following technical scheme: the utility model provides a big dipper intelligence sewage cabinet, includes sewage cabinet and functional box, wherein, the functional box includes the case shell, is used for laying hardware system's function integrated board and telescopic connection portion, the function integrated board is the flat board, telescopic connection portion is including linking firmly the cover and moving even the cover, link firmly the cover with move even the cover and be located respectively on the different lateral plate face of function integrated board, link firmly the cover for from the outside cylindrical protruding pole that extends of one lateral plate face of function integrated board, move even the cover for from link firmly the outside hollow cylindrical protruding pole that extends of opposite lateral plate face of cover place face, link firmly and overlap there is the axle spout, the axle spout be with link firmly the cover syntropy extend from link firmly the inside sunken straight bar type recess of surface of cover, move even to overlap and have into the groove portion, go into the groove portion for certainly move the rectangle protruding pole that links the internal surface of cover in opposite directions.
The functional box is fixedly connected to the side surface of the sewage cabinet body, for example, the functional box can be fixed in a welding and riveting mode, the box shell can be a hollow cuboid box body, a plurality of functional integrated boards are arranged in the box shell, hardware equipment or electronic control components of various functional systems are arranged on the functional integrated boards, for example, two functional integrated boards are arranged, a control component of a solid crushing and stirring system is arranged on one functional integrated board, a circuit component of a liquid level automatic control system is arranged on the other functional integrated board, adjacent functional integrated boards are connected through telescopic connecting parts, the functional integrated boards can be square panels, the fixed connecting sleeves and the movable connecting sleeves are respectively positioned in the middle parts of two side panels of the functional integrated boards, the fixed connecting sleeves positioned on different functional integrated boards are combined with the movable connecting sleeves positioned on the adjacent functional integrated boards, namely, the groove entering part is inserted into the shaft sliding groove to realize the connection between the fixed connecting sleeve and the movable connecting sleeve, the groove entering part can be realized through injection molding and other processes, so that all the function integrated boards are connected with each other, the function integrated board close to the bottom surface of the box shell can be fixedly connected with the box shell through a cylindrical rod, the groove entering part can move back and forth in the shaft sliding groove, so that the distance between the adjacent function integrated boards can be changed, the control accuracy can be improved when a control element on the function integrated board needs to be controlled, various sewage treatment systems can be started or closed, the distance between the function integrated board where the system is positioned and the adjacent function integrated board can be reduced when one system does not need to be controlled, the distance between the function integration boards can be minimized and placed in the case when the control elements of the respective systems are stopped. In particular, the extension directions of the fixing sleeve and the moving sleeve can be inclined, so that the functional integrated boards can be displaced in a dislocation manner when the distance between the functional integrated boards is changed, and a larger space is obtained.
Particularly, a plurality of function integrated boards can be arranged according to the requirement, so that the coordinated work of a plurality of function systems, such as a solid crushing and stirring system, a Beidou Internet of things sensing system, a self-circulation system, a liquid level automatic control system and a ventilation and explosion prevention system, is realized, and the purpose of intellectualization is achieved.
The solid stirring system comprises cutting, crushing and circulating stirring functions, when domestic sewage enters the cabinet body, the step of cutting and crushing is automatically started, and three-piece type rotary cutting cuts the domestic large-particle garbage until the domestic large-particle garbage reaches the standard particle size, and the domestic large-particle garbage stops cutting and enters the circulating stirring function.
The self-circulation system is divided into a stirring circulation and a cabinet cleaning circulation, wherein stirring is circulation until standard particles are reached, and the cabinet cleaning self-circulation system is set for a period of minutes.
The liquid level automatic control system is divided into high liquid level control and low liquid level control, the high liquid level control system sends an alarm to the APP end of a user and the buzzing of the cabinet body through the Beidou Internet of things sensing system after triggering, the low liquid level control system judges whether the ship is in stealing arrangement or not through the Beidou Internet of things sensing system after triggering, and the pump signal is cut off remotely.
The ventilation explosion-proof system is designed according to the biogas prevention principle, and is provided with a circulating ventilation pipeline and a volatilizing pipeline, and the whole process controls the concentration of the biogas in real time.
Preferably, the present invention further includes a locking portion for positioning the groove portion.
Preferably, the locking part comprises a locking chute, a locking slide block, a connecting block rod and a connecting rod groove, wherein the locking chute is a groove which extends outwards from the side edge of the shaft chute and is arranged at intervals, the locking slide block is a rectangular block positioned in the locking chute, the connecting rod groove is a hollow through groove communicated with the side edge of the adjacent locking chute, and the connecting block rod is a straight rod penetrating through the connecting rod groove and connected with the side edge of the locking slide block at two sides.
When the entering groove part moves in the shaft sliding groove, the function integrated board is required to be fixed or limited in position due to partial operation, at the moment, the entering groove part can be limited between two adjacent lock sliding blocks by moving the lock sliding blocks, the connecting rod groove is positioned at the tail end of the side, far away from the shaft sliding groove, of the lock sliding groove, the connecting rod is connected with the two adjacent lock sliding blocks through the connecting rod groove, and when the connecting rod abuts against the wall surface of the connecting rod groove, the lock sliding blocks do not move any more, and at the moment, the entering groove part can be limited.
In the present invention, it is preferable that the lock slider has friction ribs on a surface thereof, the friction ribs being projecting straight ribs arranged at intervals along an extending direction of the lock slide groove.
The extending direction of the friction raised strips is perpendicular to the moving direction of the lock slide block, so that the lock slide block can be controlled by a user with fingers more conveniently.
Preferably, the fixing sleeve is further provided with a radial sliding groove, and the radial sliding groove is a groove extending from the tail end of one side of the shaft sliding groove away from the functional integrated board along the side surface of the fixing sleeve in opposite directions.
The radial sliding groove allows the groove entering part to rotate in the vertical direction, namely, the circumferential rotation of the function integrated boards is realized, so that a certain rotational phase difference is arranged between the adjacent function integrated boards, and system components on the function integrated boards are easier to operate.
As a preferred aspect of the present invention, the case further includes a roll-over door including a door panel and a roll-over column, the roll-over column being a straight column having a rectangular cross section and extending reversely from the same side ends of the upper and lower surfaces of the door panel, the roll-over door being a straight groove recessed reversely from the opposite surfaces of the upper and lower panels of the case, the roll-over door being extended in a direction identical to a depth direction of the case, and a rotary groove being provided at an outer end of the roll-over door, the rotary groove being a circular groove extending reversely from an end of the roll-over door.
Specifically, the rotary groove may be a circular groove extending reversely from the ends of the rotary door caulking groove at the upper and lower sides, the overturning column cannot rotate when moving in the rotary door caulking groove, and the door plate can rotate when moving to the rotary groove, and at this time, the door plate can be opened in a rotary manner.
Preferably, the door comprises an isolation part, wherein the isolation part comprises a running groove, a door pushing part and a telescopic part, the running groove is a straight strip groove which is concavely extended inwards from the side surface of the upper panel and the lower panel of the box shell, which is close to one side of the door panel, the running groove is communicated with the revolving door caulking groove, the door pushing part comprises a rotating shaft, a tensioning belt and a strip protruding strip, the rotating shaft is a horizontal shaft connected with the vertical side surface of the running groove, the tensioning belt is tensioned on the rotating shaft on the front side and the rear side, the strip protruding strip is a protruding strip which is arranged at intervals along the side edge of the tensioning belt from the outer surface of the tensioning belt, the telescopic part is a flexible panel, strip inserting holes are formed in the side edge of the telescopic part, the strip inserting holes are through holes which penetrate through the telescopic part and are arranged at intervals along the side edge of the telescopic part, and the extension blocking strip is an arc-shaped strip which is used for guiding the telescopic part to extend outwards and oppositely extends from the edge of the notch of the running groove, which is far away from one side of the revolving door caulking groove.
When the turnover column moves in the revolving door caulking groove, the turnover column can be abutted against the tension belt and the belt raised strips in the revolving door caulking groove, so that the tension belt rotates on a rotating shaft, at the moment, the telescopic parts on the tension belt and the belt raised strips are buckled and embedded to move along with the rotation of the tension belt, the outer ends of the telescopic parts extend towards the opening end of the revolving door caulking groove and gradually extend outwards, the telescopic parts extend towards the middle part of the door plate in an inclined manner after being guided by the extension retaining strip, and if the door plate moves to the inner mouth end of the revolving door caulking groove, the telescopic parts on the upper side and the lower side extend to be connected in opposite directions, so that the telescopic parts wrap the door plate, and therefore the inner space of the box shell or the functional integrated plate can be protected. Particularly, a finger-buckling groove can be formed in the tail end of the telescopic part, the finger-buckling groove is an embedded groove parallel to the tail end edge of the telescopic part, when the door plate gradually moves into the revolving door caulking groove, the telescopic part is blocked from folding, and at the moment, the telescopic parts on two sides can be folded finally through the finger-buckling groove. The isolation part is used for protecting the internal safety of the case shell and has the functions of water resistance and fire resistance.
In summary, the invention has the following beneficial effects: the sewage area with specific geographic information is monitored in real time by combining the Beidou navigation and positioning technology, so that sewage information is recorded, a sewage sample can be stored for extraction and research, different sewage treatment systems or circuit control elements thereof are efficiently concentrated on the sewage cabinet, the sewage cabinet is convenient to realize, a targeted sewage treatment mode is provided, and the treatment efficiency of the sewage cabinet is improved.
Drawings
Fig. 1 is an overall schematic diagram of a sewage tank.
Fig. 2 is a schematic diagram of a case structure.
Fig. 3 is a sectional view of the case structure.
Fig. 4 is a schematic diagram of the connection between functional integrated boards.
Fig. 5 is an enlarged view of the locking portion of the locking sleeve.
FIG. 6 is a schematic diagram of an insulation structure.
Fig. 7 is a schematic view of a swing door pocket and a swing slot.
In the figure: 1. the box shell comprises a box shell body, a box shell 21, a fixedly connected sleeve body, 211, a shaft sliding groove, 22, a movable connected sleeve body, 221, a groove entering part, 3, a locking part, 31, a locking sliding block, 4, a diameter sliding groove, 5, a roll-over door, 6, a revolving door caulking groove, 61, a rotating groove, 71, a travelling groove, 72, a door pushing part, 721, a convex strip, 73, a telescopic part, 731, a strip inserting hole, 8 and an extension blocking strip.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
The present embodiment is only for explanation of the present invention and is not to be construed as limiting the present invention, and modifications to the present embodiment, which may not creatively contribute to the present invention as required by those skilled in the art after reading the present specification, are all protected by patent laws within the scope of claims of the present invention.
Embodiment 1, as shown in fig. 1, is a whole schematic diagram of a sewage tank, and is a Beidou intelligent sewage tank, including a sewage tank and a functional box, wherein, as shown in fig. 2 and 4, the functional box includes a box shell 1, a functional integrated board for placing a hardware system and a telescopic connection part, the functional integrated board is a plane board, the telescopic connection part includes a fixed connection sleeve 21 and a movable connection sleeve 22, the fixed connection sleeve 21 and the movable connection sleeve 22 are respectively located on different side boards of the functional integrated board, the fixed connection sleeve 21 is a cylindrical protruding rod extending outwards from one side board of the functional integrated board, the movable connection sleeve 22 is a hollow cylindrical protruding rod extending outwards from the opposite side board of the board where the fixed connection sleeve 21 is located, a shaft sliding groove 211 is formed on the fixed connection sleeve 21, the shaft sliding groove 211 is a straight-bar-shaped groove extending in the same direction as the fixed connection sleeve 21 and recessed inwards from the surface of the fixed connection sleeve 21, the movable connection sleeve 22 is provided with a groove part 221, and the groove part 221 is a rectangular protruding rod extending in the opposite direction from the inner surface of the movable connection sleeve 22.
The functional box is fixedly connected to the side surface of the cabinet body of the sewage cabinet, for example, the functional box can be fixed in a welding and riveting mode, the box shell 1 can be a hollow cuboid box body, a plurality of functional integrated boards are arranged in the box shell 1, hardware equipment or electronic control components of various functional systems are arranged on the functional integrated boards, for example, two functional integrated boards are arranged, a control component of a solid crushing and stirring system is arranged on one functional integrated board, a circuit component of a liquid level automatic control system is arranged on the other functional integrated board, adjacent functional integrated boards are connected through telescopic connecting parts, the functional integrated boards can be square panels, the fixed connecting sleeve 21 and the movable connecting sleeve 22 are respectively positioned in the middle parts of two side panels of the functional integrated boards, the fixed connecting sleeve 21 positioned on different functional integrated boards is combined with the movable connecting sleeve 22 positioned on the adjacent functional integrated boards, namely, the groove entering part 221 is inserted into the shaft sliding groove 211 to realize the connection between the fixed sleeve 21 and the movable sleeve 22, the groove entering part 221 can be realized through injection molding and other processes, so that all the function integrated boards are mutually connected, the function integrated board close to the bottom surface of the box shell 1 can be fixedly connected with the box shell 1 through a cylindrical rod, the groove entering part 221 can move back and forth in the shaft sliding groove 211, so that the distance between the adjacent function integrated boards can be changed, the control accuracy can be improved when the control element on the function integrated board needs to be controlled, various sewage treatment systems can be started or closed, the distance between the function integrated board where the system is positioned and the adjacent function integrated board can be reduced when one system does not need to be controlled, the distance between the function integrated boards can be adjusted to be minimum when the control element of each system stops to be operated, and the box shell 1 is placed in particular, the extending directions of the fixing sleeve 21 and the moving sleeve 22 can be inclined, so that the functional integrated boards can be displaced in a dislocation manner when the distance between the functional integrated boards is changed, and a larger space is obtained.
Particularly, a plurality of function integrated boards can be arranged according to the requirement, so that the coordinated work of a plurality of function systems, such as a solid crushing and stirring system, a Beidou Internet of things sensing system, a self-circulation system, a liquid level automatic control system and a ventilation and explosion prevention system, is realized, and the purpose of intellectualization is achieved.
The solid stirring system comprises cutting, crushing and circulating stirring functions, when domestic sewage enters the cabinet body, the step of cutting and crushing is automatically started, and three-piece type rotary cutting cuts the domestic large-particle garbage until the domestic large-particle garbage reaches the standard particle size, and the domestic large-particle garbage stops cutting and enters the circulating stirring function.
The self-circulation system is divided into a stirring circulation and a cabinet cleaning circulation, wherein stirring is circulation until standard particles are reached, and the cabinet cleaning self-circulation system is set for a period of minutes.
The liquid level automatic control system is divided into high liquid level control and low liquid level control, the high liquid level control system sends an alarm to the APP end of a user and the buzzing of the cabinet body through the Beidou Internet of things sensing system after triggering, the low liquid level control system judges whether the ship is in stealing arrangement or not through the Beidou Internet of things sensing system after triggering, and the pump signal is cut off remotely.
The ventilation explosion-proof system is designed according to the biogas prevention principle, and is provided with a circulating ventilation pipeline and a volatilizing pipeline, and the whole process controls the concentration of the biogas in real time.
As shown in fig. 4 and 5, the device further includes a locking portion 3 for positioning the insertion groove 221. The locking part 3 comprises a locking sliding groove, a locking sliding block 31, a connecting block rod and a connecting rod groove, wherein the locking sliding groove is a groove which extends outwards from the side edge of the shaft sliding groove 211 and is arranged at intervals, the locking sliding block 31 is a rectangular block positioned in the locking sliding groove, the connecting rod groove is a hollow through groove communicated with the side face of the adjacent locking sliding groove, and the connecting block rod is a straight rod penetrating through the connecting rod groove and connected with the side faces of the locking sliding blocks 31 at two sides. When the slot entering portion 221 moves in the shaft sliding groove 211, since part of the operation needs to fix or position the functional integrated board, the slot entering portion 221 can be limited between two adjacent lock sliding blocks 31 by moving the lock sliding blocks 31, the connecting rod groove is positioned at the tail end of the side of the lock sliding groove far away from the shaft sliding groove 211, the connecting rod is connected with the two adjacent lock sliding blocks 31 through the connecting rod groove, when the connecting rod abuts against the wall surface of the connecting rod groove, the lock sliding blocks 31 do not move any more, and the slot entering portion 221 can be limited at the moment. The lock slider 31 has friction ribs on its surface, which are straight raised ribs arranged at intervals along the extending direction of the lock slide. The extending direction of the friction convex strips is perpendicular to the moving direction of the lock slide 31, so that the lock slide 31 is more convenient to operate by a user with fingers. The fixing sleeve 21 is also provided with a radial sliding groove 4, and the radial sliding groove 4 is a groove extending from the tail end of the shaft sliding groove 211 away from one side of the functional integrated board along the side surface of the fixing sleeve 21 in opposite directions. The radial chute 4 allows the inlet groove 221 to rotate in the vertical direction, that is, the circumferential rotation of the function integrated boards is realized, so that a certain rotational phase difference is provided between adjacent function integrated boards, and the system components on the function integrated boards are easier to operate.
As shown in fig. 2, 3 and 7, the case 1 further includes a roll-over door 5 and a roll-over door caulking groove 6, the roll-over door 5 includes a door panel and a roll-over column, the roll-over column is a straight column with a rectangular cross section extending reversely from the ends of the same sides of the upper and lower surfaces of the door panel, the roll-over door caulking groove 6 is a straight groove recessed reversely from the opposite sides of the upper and lower panels of the case 1, the extending direction of the roll-over door caulking groove 6 is consistent with the depth direction of the case 1, a rotary groove 61 is provided at the outer end of the roll-over door caulking groove 6, and the rotary groove 61 is a circular groove extending reversely from the ends of the roll-over door caulking groove 6. Specifically, the rotating groove 61 may be a circular groove extending reversely from the ends of the revolving door caulking groove 6 at the upper and lower sides, the revolving column cannot rotate when moving in the revolving door caulking groove 6, and the door panel may be rotated to be opened when moving to the rotating groove 61.
As shown in fig. 3 and 6, the door pushing device further comprises an isolation part, the isolation part comprises a running groove 71, a door pushing part 72 and a telescopic part 73, the running groove 71 is a straight bar groove which is concavely extended inwards from the side surface of the upper panel and the lower panel of the box shell 1, which is close to the door panel, the running groove 71 is communicated with the revolving door caulking groove 6, the door pushing part 72 comprises a rotating shaft, a tensioning belt and a belt raised strip 721, the rotating shaft is a horizontal shaft connected with the vertical side surface of the running groove 71, the tensioning belt is tensioned on the rotating shafts on the front side and the rear side, the belt raised strip 721 is a raised strip which is arranged on the outer surface of the tensioning belt at intervals along the side edge of the tensioning belt, the telescopic part 73 is a flexible panel, a strip inserting hole 731 is a through hole which penetrates the telescopic part 73 and is arranged on the side edge of the telescopic part 73 at intervals, the extension retaining strip 8 for guiding the extension of the telescopic part 73 is an arc-shaped strip plate which is outwards and oppositely extends from the notch edge of the side of the revolving door caulking groove 6.
When the turnover column moves in the revolving door caulking groove 6, the tension belt and the belt convex strip 721 located in the travelling groove 71 can be abutted to enable the tension belt to rotate on the rotating shaft, at the moment, the telescopic part 73 which is buckled on the tension belt and the belt convex strip 721 moves along with the rotation of the tension belt, the outer end of the telescopic part 73 extends towards the opening end of the travelling groove 71 and gradually extends outwards, the outer end of the telescopic part extends obliquely towards the middle part of the door panel after being guided by the extension stop strip 8, and if the door panel moves to the inner mouth end of the revolving door caulking groove 6, the telescopic parts 73 located at the upper side and the lower side extend to be connected in opposite directions, so that the telescopic part 73 clathrates the door panel, and the inner space or the functional integrated board of the box shell 1 can be protected. In particular, a finger-locking groove may be provided at the end of the expansion part 73, and the finger-locking groove may be an embedded groove parallel to the edge of the end of the expansion part 73, which may prevent the expansion part 73 from folding when the door panel gradually moves into the revolving door caulking groove 6, and at this time, the expansion parts 73 at both sides may be finally folded by the finger-locking groove. The isolation part is used for protecting the internal safety of the case shell 1 and has the functions of water resistance and fire resistance.
Claims (3)
1. The utility model provides a big dipper intelligence sewage cabinet, includes sewage cabinet and function box, its characterized in that, the function box includes case (1), is used for laying the function integrated board and the flexible connecting portion of hardware system, the function integrated board is the flat board, flexible connecting portion includes links firmly cover (21) and moves even cover (22), link firmly cover (21) and move even cover (22) and be located respectively on the different lateral plate face of function integrated board, link firmly cover (21) are the cylindrical protruding pole that extends outwards from one side face of function integrated board, move even cover (22) be from link firmly the hollow cylindrical protruding pole that extends outwards of opposite lateral plate face of cover (21) place face, link firmly and have axle spout (211) on cover (21), axle spout (211) with link firmly cover (21) syntropy extend, move even cover (21) surface inwards sunken strip type recess, move even cover (22) upper portion of having a groove (221) and move into the protruding pole that the surface is from linking up (221) and be the rectangle that the portion is moved into to the inside of groove (221); the intelligent sewage cabinet further comprises a locking part (3) for positioning the groove entering part (221); the locking part (3) comprises a locking chute, a locking slide block (31), a connecting block rod and a connecting rod groove, wherein the locking chute is a groove which extends outwards from the side edge of the shaft chute (211) and is arranged at intervals, the locking slide block (31) is a rectangular block positioned in the locking chute, the connecting rod groove is a hollow through groove communicated with the side surface of the adjacent locking chute, and the connecting block rod is a straight rod penetrating through the connecting rod groove and connected with the side surfaces of the locking slide blocks (31) at two sides; the box shell (1) further comprises a turnover door (5) and a turnover door caulking groove (6), the turnover door (5) comprises a door plate and a turnover column, the turnover column is a straight column which extends reversely from the tail ends of the same sides of the upper surface and the lower surface of the door plate and has a rectangular cross section, the turnover door caulking groove (6) is a straight strip-shaped groove which is recessed reversely from the opposite surfaces of the upper surface and the lower surface of the box shell (1), the extending direction of the turnover door caulking groove (6) is consistent with the depth direction of the box shell (1), a rotary groove (61) is arranged at the outer end of the turnover door caulking groove (6), and the rotary groove (61) is a circular groove which extends reversely from the tail end of the turnover door caulking groove (6); the intelligent sewage cabinet further comprises an isolation part, the isolation part comprises a traveling groove (71), a door pushing part (72) and a telescopic part (73), the traveling groove (71) is a straight bar groove which is formed by the fact that the upper panel and the lower panel of the box shell (1) are close to the side face of one side of the door plate and extend inwards in a recessed mode, the traveling groove (71) is communicated with the revolving door caulking groove (6), the door pushing part (72) comprises a rotating shaft, a tensioning belt and a protruding bar (721), the rotating shaft is a horizontal shaft which is connected with the vertical side face of the traveling groove (71), the tensioning belt is tensioned on the rotating shaft on the front side and the rear side, the protruding bar (721) is a protruding bar which is arranged on the outer surface of the tensioning belt at intervals along the side face of the tensioning belt, the telescopic part (73) is a flexible panel, the bar inserting hole (731) penetrates through the telescopic part (73) and is arranged along the side edge of the telescopic part (73), and the telescopic part (73) is further provided with a penetrating hole which is arranged on the side edge of the telescopic part (73), and the protruding bar (8) extends towards the outer edge of the telescopic part (8) and extends from the outer edge (8).
2. The Beidou intelligent sewage cabinet of claim 1, wherein friction raised strips are arranged on the surface of the lock sliding block (31), and the friction raised strips are raised straight strips which are arranged at intervals along the extending direction of the lock sliding groove.
3. The Beidou intelligent sewage cabinet according to claim 1, wherein a radial sliding groove (4) is formed in the fixing sleeve (21), and the radial sliding groove (4) is a groove which extends along the side face of the fixing sleeve (21) from the tail end of the shaft sliding groove (211) away from one side of the functional integrated board.
Priority Applications (1)
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CN201810410670.9A CN108508174B (en) | 2018-05-02 | 2018-05-02 | Beidou intelligent sewage cabinet |
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CN201810410670.9A CN108508174B (en) | 2018-05-02 | 2018-05-02 | Beidou intelligent sewage cabinet |
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CN108508174A CN108508174A (en) | 2018-09-07 |
CN108508174B true CN108508174B (en) | 2023-09-29 |
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Citations (4)
Publication number | Priority date | Publication date | Assignee | Title |
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CN2833883Y (en) * | 2005-11-08 | 2006-11-01 | 深圳市捷佳创精密设备有限公司 | Silicon wafer basket |
TW200951043A (en) * | 2008-06-04 | 2009-12-16 | E Sun Prec Ind Co Ltd | Stabilizing system applicable to transfer container |
TW201422501A (en) * | 2012-12-04 | 2014-06-16 | Tian-Sing Huang | Wafer carrier and applications thereof |
TW201615522A (en) * | 2014-10-22 | 2016-05-01 | Els System Technology Co Ltd | Wafer receiving device for chemical treatment |
-
2018
- 2018-05-02 CN CN201810410670.9A patent/CN108508174B/en active Active
Patent Citations (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN2833883Y (en) * | 2005-11-08 | 2006-11-01 | 深圳市捷佳创精密设备有限公司 | Silicon wafer basket |
TW200951043A (en) * | 2008-06-04 | 2009-12-16 | E Sun Prec Ind Co Ltd | Stabilizing system applicable to transfer container |
TW201422501A (en) * | 2012-12-04 | 2014-06-16 | Tian-Sing Huang | Wafer carrier and applications thereof |
TW201615522A (en) * | 2014-10-22 | 2016-05-01 | Els System Technology Co Ltd | Wafer receiving device for chemical treatment |
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CN108508174A (en) | 2018-09-07 |
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