CN210197590U - Energy-saving fresh air ventilator - Google Patents

Energy-saving fresh air ventilator Download PDF

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Publication number
CN210197590U
CN210197590U CN201921162048.7U CN201921162048U CN210197590U CN 210197590 U CN210197590 U CN 210197590U CN 201921162048 U CN201921162048 U CN 201921162048U CN 210197590 U CN210197590 U CN 210197590U
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organism
fresh air
machine body
energy
motor
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CN201921162048.7U
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Chinese (zh)
Inventor
Zhongman Zhang
张中满
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Hebei Nasen Air-Conditioner Co Ltd
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Hebei Nasen Air-Conditioner Co Ltd
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Abstract

The utility model discloses an energy-saving fresh air ventilator, concretely relates to ventilator technical field, which comprises a bod, organism one end is provided with the new trend entry, and organism one end is close to new trend entry below and is provided with the export of airing exhaust, the organism other end is provided with the entry of airing exhaust, and the organism other end is close to the entry below of airing exhaust and is provided with the new trend export, the inside top of organism is provided with the water conservancy diversion subassembly, water conservancy diversion subassembly and organism fixed connection, the inside bottom of organism is provided with the heat exchanger core, heat exchanger core and organism fixed connection. The utility model discloses in through having set up the water conservancy diversion subassembly, changed the guide mode of the inside two sets of fans of organism, through single driving motor cooperation forward flabellum and reverse flabellum, produce forward and reverse drainage wind-force simultaneously, guide the air, guaranteed good ventilation effect, effectual economic cost and the electric power resource of having reduced accord with energy-concerving and environment-protective development theory.

Description

Energy-saving fresh air ventilator
Technical Field
The utility model relates to a ventilator technical field, more specifically say, the utility model relates to an energy-saving fresh air ventilator.
Background
The fresh air ventilator adopts the working principle that the full heat exchanger is utilized to exchange the temperature of the dirty air exhausted from the room and the fresh air fed from the outside through the heat transfer plates, and simultaneously exchange the humidity through the micropores on the plates, thereby achieving the effects of ventilation and keeping the temperature and the humidity in the room stable. This is the total heat exchange process. When the total heat exchanger operates in a refrigerating period in summer, fresh air obtains cold energy from exhaust air to reduce the temperature, and the fresh air is exhausted for drying to reduce the humidity of the fresh air; when the air conditioner operates in winter, the fresh air obtains heat from the exhaust air, so that the temperature is raised, and meanwhile, the fresh air is humidified by the exhaust air.
But it is when the in-service use, generally use two sets of fans to carry out air conduction like fresh air ventilator is inside, increased economic cost of manufacture, consumed a large amount of electric power resources, be not conform to energy-concerving and environment-protective theory.
SUMMERY OF THE UTILITY MODEL
In order to overcome prior art's above-mentioned defect, the embodiment of the utility model provides an energy-saving fresh air ventilator, through having set up the water conservancy diversion subassembly, has changed the guide mode of the inside two sets of fans of organism, through single driving motor cooperation forward flabellum and reverse flabellum, produces forward and reverse drainage wind-force simultaneously, guides the air, has guaranteed good ventilation effect, the effectual economic cost and the electric power resource that have reduced accord with energy-concerving and environment-protective development theory.
In order to achieve the above object, the utility model provides a following technical scheme: an energy-saving fresh air ventilator comprises a ventilator body, wherein one end of the ventilator body is provided with a fresh air inlet, an exhaust outlet is arranged below one end of the ventilator body close to the fresh air inlet, the other end of the ventilator body is provided with an exhaust inlet, a fresh air outlet is arranged below the other end of the ventilator body close to the exhaust inlet, a flow guide assembly is arranged above the inside of the ventilator body and fixedly connected with the ventilator body, a heat exchanger core is arranged at the bottom end of the inside of the ventilator body and fixedly connected with the ventilator body;
the utility model discloses a water conservancy diversion subassembly, including driving motor, driving motor's drive end is provided with the motor pole, motor pole and driving motor fixed connection, motor pole pot head has the driving gear, driving gear and motor pole fixed connection, the driving gear below is provided with driven gear, driven gear is connected with the driving gear meshing, driven gear one side is run through and is installed the dwang, dwang and driven gear fixed connection, the dwang outside is close to the fixed cover in driven gear one side and has the forward flabellum, and the dwang outside is close to the fixed cover in driven gear opposite side and has reverse flabellum, the both ends of dwang are provided with the mount respectively, rotate through the bearing between mount and the dwang and be connected.
In a preferred embodiment, a filter screen is arranged at the bottom end inside the machine body, a group of baffles are respectively installed at the bottom end inside the machine body close to two sides of the filter screen, a water inlet pipe is embedded in the lower surface of the machine body, a plurality of groups of water spraying ports are arranged on the water inlet pipe, and a sewage pipe is embedded in one side of the lower surface of the machine body close to the water inlet pipe.
In a preferred embodiment, three sets of partition plates are arranged inside the machine body, and the three sets of partition plates and the heat exchanger core divide the machine body into two sets of airflow channels.
In a preferred embodiment, a motor box is mounted outside the driving motor, and soundproof cotton is bonded on the inner wall of the motor box.
In a preferred embodiment, a fixing ear plate is mounted on the machine body, a fastening rubber pad is arranged between the fixing ear plate and the machine body, and the fixing ear plate and the machine body are fixedly connected through a bolt.
In a preferred embodiment, two sets of channels are provided within the heat exchanger core.
In a preferred embodiment, the water inlet pipe penetrates through the filter screen and is arranged at the bottom of the filter screen.
In a preferred embodiment, a set of open-close valves are embedded and installed outside the sewage pipe and the water inlet pipe.
The utility model discloses a technological effect and advantage:
1. the utility model discloses in through having set up the water conservancy diversion subassembly, compare with the technique of current ventilator two sets of fans drainage air, changed the guide mode of the inside two sets of fans of organism, through single driving motor cooperation forward flabellum and reverse flabellum, produce forward and reverse drainage wind-force simultaneously, guide the air, guaranteed good ventilation effect, the effectual economic cost and the electric power resource that have reduced accord with energy-concerving and environment-protective development theory;
2. the utility model discloses in through having set up inlet tube, water jet and sewage pipe, high-pressure rivers pass through the inlet tube to the inside transmission of organism, directly upwards spray between the filter screen is inside, clean with current dismantlement filter screen and compare, can wash the cleanness to the filter screen in the organism effectual fast, guaranteed the good filter effect of filter screen, avoid filter screen long-term operation to lead to inside to breed the mould to influence indoor people's health.
Drawings
Fig. 1 is a schematic view of the overall structure of the present invention.
Fig. 2 is a schematic view of the internal structure of the middle body of the present invention.
Fig. 3 is a schematic structural view of the middle flow guiding assembly of the present invention.
Fig. 4 is a schematic structural view of the middle driven gear and the rotating rod of the present invention.
Fig. 5 is an enlarged schematic structural view of a portion a in fig. 1 according to the present invention.
The reference signs are: 1 organism, 2 new trend entry, 3 air exhaust export, 4 air exhaust entry, 5 new trend exports, 6 water conservancy diversion subassemblies, 61 driving motor, 62 motor poles, 63 driving gear, 64 driven gear, 65 dwang, 66 forward flabellum, 67 reverse flabellum, 68 mount, 7 heat exchanger core, 8 filter screens, 9 baffles, 10 inlet tubes, 11 water jets, 12 sewage pipes.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
The energy-saving fresh air ventilator shown in fig. 1-4 comprises a ventilator body 1, wherein one end of the ventilator body 1 is provided with a fresh air inlet 2, an exhaust outlet 3 is arranged below one end of the ventilator body 1 close to the fresh air inlet 2, the other end of the ventilator body 1 is provided with an exhaust inlet 4, a fresh air outlet 5 is arranged below the other end of the ventilator body 1 close to the exhaust inlet 4, a flow guide assembly 6 is arranged above the inside of the ventilator body 1, the flow guide assembly 6 is fixedly connected with the ventilator body 1, a heat exchanger core 7 is arranged at the bottom end inside the ventilator body 1, and the heat exchanger core 7 is fixedly connected with the ventilator body 1;
the flow guide assembly 6 comprises a driving motor 61, a motor rod 62 is arranged at the driving end of the driving motor 61, the motor rod 62 is fixedly connected with the driving motor 61, a driving gear 63 is sleeved at one end of the motor rod 62, the driving gear 63 is fixedly connected with the motor rod 62, a driven gear 64 is arranged below the driving gear 63, the driven gear 64 is meshed with the driving gear 63, a rotating rod 65 is installed on one side of the driven gear 64 in a penetrating manner, the rotating rod 65 is fixedly connected with the driven gear 64, a forward fan blade 66 is fixedly sleeved on one side, close to the driven gear 64, of the outer portion of the rotating rod 65, a reverse fan blade 67 is fixedly sleeved on the other side, close to the driven gear 64, of the outer portion of the rotating rod 65, fixing frames 68 are respectively arranged at two ends of the rotating rod 65;
three groups of partition plates are arranged in the machine body 1, and the machine body 1 is divided into two groups of airflow channels by the three groups of partition plates and the heat exchanger core body 7;
a motor box is arranged outside the driving motor 61, and sound insulation cotton is bonded on the inner wall of the motor box;
a fixed lug plate is arranged on the machine body 1, a fastening rubber pad is arranged between the fixed lug plate and the machine body 1, and the fixed lug plate and the machine body 1 are fixedly connected through a bolt;
two groups of channels are arranged inside the heat exchanger core 7.
The implementation mode is specifically as follows: when the air guiding device is used, the driving motor 61 in the air guiding assembly 6 is controlled to work, the driving motor 61 drives the motor rod 62 and the driving gear 63 to rotate, the driving gear 63 is meshed with the driven gear 64 on the rotating rod 65, the forward fan blades 66 and the reverse fan blades 67 on the rotating rod 65 are driven to rotate simultaneously to generate wind power, wherein the forward fan blades 66 rotate forwardly to generate suction force, indoor dirty air is guided from the exhaust inlet 4 and is exhausted from the exhaust outlet 3 to the outdoor through the heat exchanger core 7, in addition, the reverse fan blades 67 on the rotating rod 65 rotate simultaneously to generate reverse wind power, outdoor air is guided from the fresh air inlet 2 and then passes through the heat exchanger core 7 and is transmitted to the indoor from the fresh air outlet 5, the guiding modes of two groups of fans in the machine body 1 are changed, and the single driving motor 61 is matched with the forward fan blades 66 and the reverse fan blades 67, the ventilator has the advantages that the ventilator can generate forward and reverse drainage wind power to guide air, so that a good ventilation effect is guaranteed, economic cost and electric power resources are effectively reduced, the development concept of energy conservation and environmental protection is met, and the problem that the two sets of fans of the ventilator drain air to increase economic cost is solved.
The energy-saving fresh air ventilator shown in the attached fig. 1 and 5 further comprises a button collapse prevention assembly 16, a filter screen 8 is arranged at the bottom end inside the ventilator body 1, a group of baffles 9 are respectively arranged at the bottom end inside the ventilator body 1 close to two sides of the filter screen 8, a water inlet pipe 10 is embedded in the lower surface of the ventilator body 1, a plurality of groups of water spray nozzles 11 are arranged on the water inlet pipe 10, and a sewage pipe 12 is embedded in one side of the lower surface of the ventilator body 1 close to the water inlet pipe 10;
the water inlet pipe 10 penetrates through the filter screen 8 and is arranged at the bottom of the filter screen 8;
a set of open-close valves are embedded outside the sewage pipe 12 and the water inlet pipe 10.
The implementation mode is specifically as follows: when using this embodiment, connect external water pipe by inlet tube 10, high-pressure rivers pass through inlet tube 10 to the internal transmission of organism 1, direct position department from water jet 11 upwards sprays, direct upwards spray between filter screen 8 is inside, thereby wash it, sewage after washing, can be blockked by baffle 9 of both sides, direct outside outflow along sewage pipe 12, can wash the cleanness fast effectually to filter screen 8 in the organism 1, filter screen 8's good filter effect has been guaranteed, avoid filter screen 8 long-term operation to lead to inside to breed the mould, thereby influence indoor people's health, the inconvenient clear problem of filter screen 8 inside of organism 1 has been solved.
The utility model discloses the theory of operation:
referring to the attached drawings 1-4 of the specification, the guide mode of two groups of fans in the machine body 1 is changed by arranging the guide assembly 6, and the air is guided by matching the single driving motor 61 with the forward fan blades 66 and the reverse fan blades 67 and simultaneously generating forward and reverse drainage wind power, so that a good air exchange effect is ensured, the economic cost and the electric power resource are effectively reduced, and the development concept of energy conservation and environmental protection is met;
referring to specification attached drawing 1 and figure 5, through having set up inlet tube 10, water jet 11 and sewage pipe 12, high-pressure rivers pass through inlet tube 10 to the inside transmission of organism 1, directly upwards spray between filter screen 8 is inside, can wash the cleanness fast effectually to filter screen 8 in the organism 1, guaranteed filter screen 8's good filter effect, avoid filter screen 8 long-term operation to lead to inside to breed the mould to influence indoor people's health.
The points to be finally explained are: first, in the description of the present application, it should be noted that, unless otherwise specified and limited, the terms "mounted," "connected," and "connected" should be understood broadly, and may be a mechanical connection or an electrical connection, or a communication between two elements, and may be a direct connection, and "upper," "lower," "left," and "right" are only used to indicate a relative positional relationship, and when the absolute position of the object to be described is changed, the relative positional relationship may be changed;
secondly, the method comprises the following steps: in the drawings of the disclosed embodiments of the present invention, only the structures related to the disclosed embodiments are referred to, and other structures can refer to the common design, and under the condition of no conflict, the same embodiment and different embodiments of the present invention can be combined with each other;
and finally: the above description is only for the preferred embodiment of the present invention and should not be taken as limiting the invention, and any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention should be included in the protection scope of the present invention.

Claims (8)

1. The utility model provides an energy-saving fresh air ventilator, includes organism (1), its characterized in that: one end of the machine body (1) is provided with a fresh air inlet (2), an exhaust outlet (3) is arranged below one end of the machine body (1) close to the fresh air inlet (2), an exhaust inlet (4) is arranged at the other end of the machine body (1), a fresh air outlet (5) is arranged below the other end of the machine body (1) close to the exhaust inlet (4), a flow guide assembly (6) is arranged above the interior of the machine body (1), the flow guide assembly (6) is fixedly connected with the machine body (1), a heat exchanger core body (7) is arranged at the bottom end of the interior of the machine body (1), and the heat exchanger core body (7) is fixedly connected with the machine body;
the flow guide assembly (6) comprises a driving motor (61), a motor rod (62) is arranged at the driving end of the driving motor (61), the motor rod (62) is fixedly connected with the driving motor (61), a driving gear (63) is sleeved at one end of the motor rod (62), the driving gear (63) is fixedly connected with the motor rod (62), a driven gear (64) is arranged below the driving gear (63), the driven gear (64) is meshed with the driving gear (63) and is connected with the driving gear (63), a rotating rod (65) is installed on one side of the driven gear (64) in a penetrating mode, the rotating rod (65) is fixedly connected with the driven gear (64), a forward fan blade (66) is fixedly sleeved on one side of the driven gear (64) outside the rotating rod (65), and a reverse fan blade (67) is fixedly sleeved on the other side of the driven gear (64) outside the rotating rod (, the both ends of dwang (65) are provided with mount (68) respectively, be connected through the bearing rotation between mount (68) and dwang (65).
2. An energy-saving fresh air ventilator according to claim 1, wherein: the utility model discloses a sewage treatment machine, including organism (1), the inside bottom of organism (1) is provided with filter screen (8), organism (1) inside bottom is close to filter screen (8) both sides and installs a set of baffle (9) respectively, organism (1) lower surface embedding is provided with inlet tube (10), be provided with multiunit water jet (11) on inlet tube (10), organism (1) lower surface is close to inlet tube (10) one side embedding and installs sewage pipe (12).
3. An energy-saving fresh air ventilator according to claim 1, wherein: three groups of partition plates are arranged in the machine body (1), and the machine body (1) is divided into two groups of airflow channels by the three groups of partition plates and the heat exchanger core body (7).
4. An energy-saving fresh air ventilator according to claim 1, wherein: the outside of the driving motor (61) is provided with a motor box, and sound insulation cotton is bonded on the inner wall of the motor box.
5. An energy-saving fresh air ventilator according to claim 3, wherein: the fixed lug plate is installed on the machine body (1), a fastening rubber mat is arranged between the fixed lug plate and the machine body (1), and the fixed lug plate is fixedly connected with the machine body (1) through bolts.
6. An energy-saving fresh air ventilator according to claim 3, wherein: two groups of channels are arranged in the heat exchanger core body (7).
7. An energy-saving fresh air ventilator according to claim 2, wherein: the water inlet pipe (10) penetrates through the filter screen (8) and is arranged at the bottom of the filter screen (8).
8. An energy-saving fresh air ventilator according to claim 2, wherein: and a group of opening and closing valves are embedded and mounted outside the sewage pipe (12) and the water inlet pipe (10).
CN201921162048.7U 2019-07-23 2019-07-23 Energy-saving fresh air ventilator Active CN210197590U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921162048.7U CN210197590U (en) 2019-07-23 2019-07-23 Energy-saving fresh air ventilator

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921162048.7U CN210197590U (en) 2019-07-23 2019-07-23 Energy-saving fresh air ventilator

Publications (1)

Publication Number Publication Date
CN210197590U true CN210197590U (en) 2020-03-27

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Application Number Title Priority Date Filing Date
CN201921162048.7U Active CN210197590U (en) 2019-07-23 2019-07-23 Energy-saving fresh air ventilator

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112128915A (en) * 2020-09-26 2020-12-25 桃源县第三中学 Indoor ventilation device for ventilation and heat preservation in winter

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112128915A (en) * 2020-09-26 2020-12-25 桃源县第三中学 Indoor ventilation device for ventilation and heat preservation in winter

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