CN217151464U - Energy-conserving production factory building structure of construction - Google Patents

Energy-conserving production factory building structure of construction Download PDF

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Publication number
CN217151464U
CN217151464U CN202220726225.5U CN202220726225U CN217151464U CN 217151464 U CN217151464 U CN 217151464U CN 202220726225 U CN202220726225 U CN 202220726225U CN 217151464 U CN217151464 U CN 217151464U
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energy
filter plate
plate
rainwater
factory building
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CN202220726225.5U
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周军伟
蔡长春
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Guangdong Hongbang Construction Group Co ltd
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Guangdong Hongbang Construction Group Co ltd
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02ATECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
    • Y02A20/00Water conservation; Efficient water supply; Efficient water use
    • Y02A20/108Rainwater harvesting

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Abstract

The utility model discloses an energy-conserving production factory building structure of construction, including bottom plate and energy-conserving subassembly, the top surface outer end of bottom plate is fixed with the wall, and the inboard of wall is provided with fire-retardant board, settle on the top of wall has the roof for the rainwater is retrieved energy-conserving subassembly sets up in the upper right end of roof, energy-conserving subassembly includes the water catch bowl, prevents stifled otter board, honeycomb duct, filter frame, metal mesh filter plate, non-woven fabrics filter plate, active carbon filter plate, water tank and observation window. This energy-conserving production factory building structure energy-saving component's of construction setting can utilize the water catch bowl to collect the rainwater, prevents stifled otter board simultaneously and can block the rubbish of leaf and plastic bag and so on, avoids the inside emergence of water catch bowl to block up, later the rainwater can enter into through the honeycomb duct and filter the frame in, this moment, some large granule dusts in the rainwater can be filtered to the metal mesh filter plate, the non-woven fabrics filter plate then can get rid of the tiny particle impurity of rainwater.

Description

Energy-conserving production factory building structure of construction
Technical Field
The utility model relates to a construction technical field specifically is an energy-conserving production factory building structure of construction.
Background
The building construction refers to production activities in the engineering construction implementation stage, is the construction process of various buildings, and also can be a process of changing various lines on design drawings into objects at specified places.
The production factory building on the market has the in-process of using, and the rainwater of being not convenient for is collected and is utilized, leads to the problem that energy-conserving effect is low, for this reason, we provide an energy-conserving production factory building structure of construction.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide an energy-conserving production factory building structure of construction to solve the problem that proposes in the above-mentioned background art.
In order to achieve the above object, the utility model provides a following technical scheme: an energy-saving production factory building structure for building construction comprises a bottom plate and an energy-saving component, wherein a wall is fixed at the outer end of the top surface of the bottom plate, a flame-retardant plate is arranged on the inner side of the wall, a roof is arranged at the top end of the wall, the energy-saving component for rainwater recovery is arranged at the upper right end of the roof, the energy-saving component comprises a water collecting tank, an anti-blocking screen plate, a flow guide pipe, a filter frame, a metal net filter plate, a non-woven fabric filter plate, an active carbon filter plate, a water tank and an observation window, the anti-blocking screen plate is arranged at the upper right end of the water collecting tank, the flow guide pipe is connected to the lower left end of the water collecting tank, the filter frame is connected to the lower end of the flow guide pipe, the metal net filter plate is arranged at the upper inner end of the filter frame, the non-woven fabric filter plate is arranged at the center of the inner part of the filter frame, the active carbon filter plate is arranged at the lower end of the non-woven fabric filter frame, the water tank is connected to the bottom end of the filter frame, and the right side of the water tank is provided with an observation window.
Further, the below of bottom plate is provided with and is used for antidetonation subassembly, the antidetonation subassembly includes hydraulic buffer, spring, rubber sleeve, base, wash port, locating pin and steadying plate, the spring has been cup jointed in the outside of hydraulic buffer, and the outside of spring is provided with the rubber sleeve, the bottom mounting of hydraulic buffer has the base, and the wash port has been seted up to the bottom of base, the bottom surface of base is fixed with the locating pin, and the base left and right sides settles and have the steadying plate.
Furthermore, the oil buffers are equidistantly distributed relative to the bottom surface of the bottom plate, and the bottom plate is connected with the base in a sliding manner.
Further, the rear end of anti-blocking screen plate is provided with the clearance subassembly that is used for the clearance, the clearance subassembly includes motor, driving gear, driven gear, pivot and stop collar, the front end of motor is connected with the driving gear, and the right-hand member of driving gear is connected with driven gear, driven gear's inside arrangement has the pivot, and the central authorities outside of pivot has cup jointed the stop collar.
Further, the rotating shaft is fixedly connected with the anti-blocking net plate, and the anti-blocking net plate is attached to the roof.
Furthermore, the bottom surface of roof is settled there is the fire prevention subassembly that is used for preventing fires, the fire prevention subassembly includes high-pressure tank, pressure detector, gas-supply pipe and branch pipe, settle the upper left end of high-pressure tank has pressure detector, and pressure detector's upper right end is connected with the gas-supply pipe, the upper left end of gas-supply pipe is connected with the branch pipe.
Further, the fire prevention subassembly is still including being responsible for, air vent, solenoid valve and temperature sensor, the left end of branch pipe is connected with the person in charge, and the right lower extreme of branch pipe is provided with the air vent, settle the inside of air vent has the solenoid valve, and the left side of solenoid valve is connected with temperature sensor.
The utility model provides an energy-conserving production factory building structure of construction possesses following beneficial effect: this energy-conserving production factory building structure of construction adopts mutually supporting between a plurality of subassemblies, not only is convenient for collect the rainwater, also can improve the effect when purifying the rainwater simultaneously, makes the production factory building energy-concerving and environment-protective more, and can also strengthen the anti-seismic performance of factory building to the life of extension factory building, and can also be when the inside emergence of factory building catches fire, the automatic security of putting out a fire when improving the factory building and using.
1. The utility model can collect rainwater by utilizing the water collecting tank through the arrangement of the energy-saving component, simultaneously the anti-blocking screen plate can block garbage such as leaves and plastic bags, the internal part of the water collecting tank is prevented from being blocked, then the rainwater can enter the filtering frame through the flow guide pipe, at the moment, the metal mesh filtering plate can filter large granular dust in the rainwater, the non-woven fabric filtering plate can remove small granular impurities in the rainwater, and the activated carbon filtering plate can adsorb and purify the rainwater, thereby improving the effect when filtering the rainwater, and the filtered rainwater can be collected and stored by the water tank, thereby being convenient for recycling the rainwater, achieving the effect of environmental protection and energy saving, and before water collection, the motor can be started, the driving gear drives the driven gear to rotate, the anti-blocking screen plate rotates along the rotating shaft as the center, and the garbage at the upper end of the anti-blocking screen plate can be removed, the influence on the collection amount of rainwater is avoided;
2. the utility model discloses a setting of antidetonation subassembly, when meetting the earthquake, the spring can absorb the vibrations on ground earlier, and the hydraulic buffer restraines vibrations again, just can avoid the factory building of bottom plate top to take place to empty the damage because of vibrations, simultaneously through the setting of rubber sleeve, can protect the spring, avoids rainwater and spring contact, influences the life-span of spring, and is convenient for discharge the rainwater through the wash port, and still through the setting of locating pin and steadying plate, can improve the stability when the base is installed;
3. the utility model discloses a with fire-retardant board setting in the inboard of wall, when catching fire in the factory building, fire-retardant board can block the intensity of a fire, avoid the intensity of a fire to stretch, temperature sensor can detect the high temperature simultaneously, thereby can control the solenoid valve and open, make the compressed carbon dioxide gas of high-pressure incasement enter into the branch pipe through the gas-supply pipe in, and spout in the jet orifice, come to separate the oxygen to the department of catching fire and put out a fire, simultaneously through the setting of being responsible for and a plurality of branch pipes, the scope when can enlarge to put out a fire, and still through pressure detector's setting, can detect the pressure of high-pressure incasement, be convenient for when pressure is low excessively, come the make-up gas of high-pressure incasement.
Drawings
FIG. 1 is a schematic view of the overall structure of an energy-saving production plant structure for building construction of the present invention;
FIG. 2 is a schematic view of the top view structure of the cleaning assembly of the energy-saving factory building structure for building construction of the present invention;
fig. 3 is the utility model relates to a partial structure schematic diagram is looked at bottom of fire prevention subassembly of energy-conserving production factory building structure of construction.
In the figure: 1. a base plate; 2. a wall; 3. a flame retardant sheet; 4. a roof; 5. an anti-seismic assembly; 501. a hydraulic shock absorber; 502. a spring; 503. a rubber sleeve; 504. a base; 505. a drain hole; 506. positioning pins; 507. a stabilizing plate; 6. an energy saving component; 601. a water collection tank; 602. an anti-blocking screen plate; 603. a flow guide pipe; 604. a filter frame; 605. a metal mesh filter plate; 606. a non-woven fabric filter plate; 607. an active carbon filter plate; 608. a water tank; 609. an observation window; 7. cleaning the assembly; 701. a motor; 702. a driving gear; 703. a driven gear; 704. a rotating shaft; 705. a limiting sleeve; 8. a fire protection assembly; 801. a high pressure tank; 802. a pressure detector; 803. a gas delivery pipe; 804. a branch pipe; 805. a main pipe; 806. an air jet; 807. an electromagnetic valve; 808. a temperature sensor.
Detailed Description
As shown in fig. 1 and fig. 3, an energy-saving production factory building structure for building construction comprises a bottom plate 1 and an energy-saving assembly 6, wherein a wall 2 is fixed at the outer end of the top surface of the bottom plate 1, a flame retardant plate 3 is arranged on the inner side of the wall 2, when a fire occurs in a factory building, the flame retardant plate 3 can block fire to avoid fire spreading, a roof 4 is arranged at the top end of the wall 2, an anti-seismic assembly 5 for anti-seismic is arranged below the bottom plate 1, the anti-seismic assembly 5 comprises an oil buffer 501, a spring 502, a rubber sleeve 503, a base 504, a water drain hole 505, a positioning pin 506 and a stabilizing plate 507, the spring 502 is sleeved on the outer side of the oil buffer 501, the rubber sleeve 503 is arranged on the outer side of the spring 502, the spring 502 can be protected by the rubber sleeve 503 to avoid the contact of rainwater with the spring 502, which affects the service life of the spring 502, the base 504 is fixed at the bottom end of the oil buffer 501, the bottom end of the base 504 is provided with a drain hole 505, rainwater can be conveniently drained through the drain hole 505, the oil pressure buffers 501 are distributed at equal intervals on the bottom surface of the bottom plate 1, the bottom plate 1 is connected with the base 504 in a sliding way, the springs 502 can absorb the vibration of the ground, the oil pressure buffers 501 can inhibit the vibration again, so that the damage of the wall 2 and the roof 4 above the bottom plate 1 due to the vibration can be avoided, the positioning pins 506 are fixed on the bottom surface of the base 504, the stabilizing plates 507 are arranged on the left side and the right side of the base 504, the stability of the base 504 during installation can be improved through the arrangement of the positioning pins 506 and the stabilizing plates 507, the energy-saving component 6 for rainwater recovery is arranged at the upper right end of the roof 4, the energy-saving component 6 comprises a water collecting tank 601, an anti-blocking screen plate 602, a flow guide pipe 603, a filter frame 604, a metal mesh filter plate 605, a non-woven fabric filter plate 606, an activated carbon filter plate 607, a water tank 608 and an observation window 609, the right upper end of the water collecting tank 601 is provided with an anti-blocking screen 602, the left lower end of the water collecting tank 601 is connected with a flow guide pipe 603, rainwater can be collected by the water collecting tank 601, the collected rainwater can enter a filter frame 604 through the flow guide pipe 603, the lower end of the flow guide pipe 603 is connected with the filter frame 604, the upper end inside the filter frame 604 is provided with a metal mesh filter plate 605, the metal mesh filter plate 605 can filter large-particle dust in the rainwater, the center inside the filter frame 604 is provided with a non-woven fabric filter plate 606, the lower end inside the non-woven fabric filter plate 606 is provided with an activated carbon filter plate 607, the non-woven fabric filter plate 606 can remove small-particle impurities in the rainwater, and the activated carbon filter plate 607 can adsorb and purify the rainwater, thereby improving the effect when the rainwater is filtered, the bottom end of the filter frame 604 is connected with a water tank 608, and the right side of the water tank 608 is provided with an observation window 609, the filtered rainwater can be collected and stored through the water tank 608, and the water collection amount can also be observed through the observation window 609, so that the rainwater can be conveniently recycled, and the environment-friendly and energy-saving effects can be achieved, the bottom surface of the roof 4 is provided with the fireproof assembly 8 for fire prevention, the fireproof assembly 8 comprises a high-pressure tank 801, a pressure detector 802, a gas pipe 803 and a branch pipe 804, the left upper end of the high-pressure tank 801 is provided with the pressure detector 802, the right upper end of the pressure detector 802 is connected with the gas pipe 803, the pressure in the high-pressure tank 801 can be detected through the arrangement of the pressure detector 802, so that when the pressure is too low, the gas in the high-pressure tank 801 can be supplemented, the left upper end of the gas pipe 803 is connected with the branch pipe 804, the fireproof assembly 8 further comprises a main pipe 805, a gas injection port 806, an electromagnetic valve 807 and a temperature sensor 808, the left end of the branch pipe 804 is connected with a main pipe 805, and the right lower end of the branch pipe 804 is provided with a gas injection port 806, the inside of gas jet 806 is settled there is the solenoid valve 807, and the left side of solenoid valve 807 is connected with temperature sensor 808, and temperature sensor 808 can detect high temperature to can control solenoid valve 807 and open, make the compressed carbon dioxide gas in the high-pressure tank 801 enter into branch pipe 804 through gas-supply pipe 803, and spout in gas jet 806, come to separate oxygen to the department of catching a fire and put out a fire, simultaneously through the setting of being responsible for 805 and a plurality of branch pipe 804, scope when can expand and put out a fire.
As shown in fig. 2, a cleaning assembly 7 for cleaning is disposed at the rear end of the anti-blocking screen 602, the cleaning assembly 7 includes a motor 701, a driving gear 702, a driven gear 703, a rotating shaft 704 and a limiting sleeve 705, the driving gear 702 is connected to the front end of the motor 701, the driven gear 703 is connected to the right end of the driving gear 702, the rotating shaft 704 is disposed inside the driven gear 703, a limiting sleeve 705 is sleeved outside the center of the rotating shaft 704, the rotating shaft 704 is fixedly connected to the anti-blocking screen 602, the anti-blocking screen 602 is attached to the roof 4, the anti-blocking screen 602 can block rubbish such as leaves and plastic bags to prevent the interior of the water collecting tank 601 from being blocked, and when raining, the motor 701 can be started to make the driving gear 702 drive the driven gear to rotate, the anti-blocking screen 602 rotates around the rotating shaft 704, and the limiting sleeve 705 can limit the rotating shaft 704 to remove the rubbish at the upper end of the anti-blocking screen 602, avoid influencing the collection volume of rainwater.
In summary, when the energy-saving production factory building structure for building construction is used, firstly, according to the structure shown in fig. 1 and fig. 2, the anti-blocking screen 602 can block rubbish such as leaves and plastic bags to prevent the inside of the water collection tank 601 from being blocked, and when raining, the motor 701 can be started to enable the driving gear 702 to drive the driven gear 703 to rotate, the anti-blocking screen 602 rotates around the rotating shaft 704, and the limiting sleeve 705 can limit the rotating shaft 704, so that the rubbish on the upper end of the anti-blocking screen 602 can be removed to avoid influencing the collection amount of rainwater, then the anti-blocking screen 602 is rotated back, then, the rainwater can be collected by the water collection tank 601, the collected rainwater can enter the filter frame 604 through the flow guide pipe 603, at this time, the metal mesh filter plate 605 can filter some large particle dust in the rainwater, and the non-woven fabric filter plate 606 can remove small particle impurities in the rainwater, and the activated carbon filter plate 607 can absorb and purify the rainwater, thereby improving the effect of filtering the rainwater, the filtered rainwater can be collected and stored by the water tank 608, the water collection amount can be observed by the observation window 609, thereby being convenient for recycling the rainwater, so as to achieve the effects of environmental protection and energy saving, then, when an earthquake occurs, the spring 502 can absorb the vibration of the ground, the oil buffer 501 can restrain the vibration, so as to avoid the damage of the wall 2 and the roof 4 above the bottom plate 1 due to the vibration, meanwhile, the spring 502 can be protected by the arrangement of the rubber sleeve 503, the rainwater is prevented from contacting the spring 502, the service life of the spring 502 is influenced, the rainwater can be conveniently discharged through the drain hole 505, and the stability of the base 504 during installation can be improved through the arrangement of the positioning pin 506 and the stabilizing plate 507, finally, according to the structure shown in fig. 3, when catching fire in the factory building, fire-retardant board 3 can block the intensity of fire, avoid the intensity of fire to stretch, temperature sensor 808 can detect high temperature simultaneously, thereby can control solenoid valve 807 to open, make the compressed carbon dioxide gas in high-pressure tank 801 enter into branch pipe 804 through gas-supply pipe 803, and spout in jet 806, come to fire department and separate the oxygen and put out a fire, simultaneously through the setting of being responsible for 805 and a plurality of branch pipes 804, can enlarge the scope when putting out a fire, and still through the setting of pressure detector 802, can detect the pressure in high-pressure tank 801, be convenient for when the pressure is low excessively, come supplementary gas in high-pressure tank 801.

Claims (7)

1. The utility model provides an energy-conserving production factory building structure of construction, includes bottom plate (1) and energy-conserving subassembly (6), its characterized in that, the top surface outer end of bottom plate (1) is fixed with wall (2), and the inboard of wall (2) is provided with fire-retardant board (3), settle the top of wall (2) has roof (4), is used for the rainwater to retrieve energy-conserving subassembly (6) set up in the upper right end of roof (4), energy-conserving subassembly (6) include water catch bowl (601), prevent stifled otter board (602), honeycomb duct (603), filter frame (604), metal mesh filter plate (605), non-woven fabrics filter plate (606), active carbon filter plate (607), water tank (608) and observation window (609), the upper right end of water catch bowl (601) is provided with prevents stifled otter board (602), and the left lower extreme of water catch bowl (601) is connected with honeycomb duct (603), the lower extreme of honeycomb duct (603) is connected with filter frame (604), and the inside upper end of filtering frame (604) is settled there is metal mesh filter plate (605), the inside central authorities of filtering frame (604) are settled there is non-woven fabrics filter plate (606), and the inside lower extreme of non-woven fabrics filter plate (606) is provided with activated carbon filter plate (607), the bottom of filtering frame (604) is connected with water tank (608), and the right side of water tank (608) is provided with observation window (609).
2. The energy-saving production factory building structure for building construction according to claim 1, wherein an anti-seismic component (5) for anti-seismic is arranged below the bottom plate (1), the anti-seismic component (5) comprises an oil pressure buffer (501), a spring (502), a rubber sleeve (503), a base (504), a water drain hole (505), a positioning pin (506) and a stabilizing plate (507), the spring (502) is sleeved outside the oil pressure buffer (501), the rubber sleeve (503) is arranged outside the spring (502), the base (504) is fixed at the bottom end of the oil pressure buffer (501), the water drain hole (505) is formed at the bottom end of the base (504), the positioning pin (506) is fixed at the bottom surface of the base (504), and the stabilizing plates (507) are arranged on the left side and the right side of the base (504).
3. The energy-saving production factory building structure for building construction according to claim 2, wherein said hydraulic buffers (501) are equidistantly distributed about the bottom surface of the base plate (1), and the base plate (1) is slidably connected with the base (504).
4. The energy-saving production factory building structure for building construction according to claim 1, wherein a cleaning assembly (7) for cleaning is arranged at the rear end of the anti-blocking screen plate (602), the cleaning assembly (7) comprises a motor (701), a driving gear (702), a driven gear (703), a rotating shaft (704) and a limiting sleeve (705), the driving gear (702) is connected to the front end of the motor (701), the driven gear (703) is connected to the right end of the driving gear (702), the rotating shaft (704) is arranged in the driven gear (703), and the limiting sleeve (705) is sleeved on the outer side of the center of the rotating shaft (704).
5. The energy-saving production factory building structure of building construction of claim 4, wherein, pivot (704) and prevent stifled otter board (602) fixed connection, and prevent laminating mutually between stifled otter board (602) and roof (4).
6. The energy-saving production factory building structure for building construction according to claim 1, wherein the bottom surface of the roof (4) is provided with a fireproof component (8) for fire prevention, the fireproof component (8) comprises a high-pressure tank (801), a pressure detector (802), an air pipe (803) and a branch pipe (804), the pressure detector (802) is arranged at the upper left end of the high-pressure tank (801), the upper right end of the pressure detector (802) is connected with the air pipe (803), and the upper left end of the air pipe (803) is connected with the branch pipe (804).
7. The energy-saving production factory building structure for building construction according to claim 6, wherein said fire protection assembly (8) further comprises a main pipe (805), an air nozzle (806), a solenoid valve (807) and a temperature sensor (808), the left end of the branch pipe (804) is connected with the main pipe (805), the right lower end of the branch pipe (804) is provided with the air nozzle (806), the solenoid valve (807) is arranged inside the air nozzle (806), and the left side of the solenoid valve (807) is connected with the temperature sensor (808).
CN202220726225.5U 2022-03-30 2022-03-30 Energy-conserving production factory building structure of construction Active CN217151464U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202220726225.5U CN217151464U (en) 2022-03-30 2022-03-30 Energy-conserving production factory building structure of construction

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202220726225.5U CN217151464U (en) 2022-03-30 2022-03-30 Energy-conserving production factory building structure of construction

Publications (1)

Publication Number Publication Date
CN217151464U true CN217151464U (en) 2022-08-09

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ID=82698429

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202220726225.5U Active CN217151464U (en) 2022-03-30 2022-03-30 Energy-conserving production factory building structure of construction

Country Status (1)

Country Link
CN (1) CN217151464U (en)

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