CN218723254U - Energy-efficient condensate recovery device - Google Patents

Energy-efficient condensate recovery device Download PDF

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Publication number
CN218723254U
CN218723254U CN202222743716.3U CN202222743716U CN218723254U CN 218723254 U CN218723254 U CN 218723254U CN 202222743716 U CN202222743716 U CN 202222743716U CN 218723254 U CN218723254 U CN 218723254U
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China
Prior art keywords
fixed
condensate recovery
inlet tube
recovery device
pipe
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CN202222743716.3U
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Chinese (zh)
Inventor
周忠玉
张积义
丁光明
鲍婷婷
林琳
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Shandong Avant Garde Environmental Protection Equipment Co ltd
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Shandong Avant Garde Environmental Protection Equipment Co ltd
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Abstract

The utility model discloses an energy-efficient comdenstion water recovery unit, including the organism, upper end one side of organism is provided with the intake pipe, and one side upper end of organism is provided with the inlet tube, and one side of intake pipe is equipped with power unit, is equipped with the actuating lever on the power unit, is equipped with suction mechanism on the actuating lever, and the one end of actuating lever is equipped with drive mechanism. The utility model discloses can drive the flabellum and rotate, can accelerate steam to the conveying efficiency in the condensate recovery device through the rotation of flabellum, improve condensate recovery device's function effect for the recycle efficiency of steam, the water that condensate recovery device used filters simultaneously, prevents that condensate recovery device recycle's aquatic from participating in miscellaneous impurity to can improve condensate recovery device's function efficiency, increase condensate recovery device's recycle effect.

Description

Energy-efficient condensate recovery device
Technical Field
The utility model relates to a condensate recovery device technical field especially relates to an energy-efficient condensate recovery device.
Background
The condensate water recovery device is used in industrial production, a large amount of steam generated in the industrial production is recycled, namely heat in the steam is utilized, water resources are saved, and the condensate water recovery device can enable the industrial production to be more energy-saving and environment-friendly.
The existing condensate water recovery device cannot rapidly suck water vapor into the condensate water recovery device when operating, so that the operating efficiency of the condensate water recovery device is reduced, water used by the condensate water recovery device during steam condensation treatment cannot be filtered, impurities are contained in water recovered from steam by the condensate water recovery device, the recycling effect of the condensate water recovery device on the steam is influenced, and the improvement is needed.
SUMMERY OF THE UTILITY MODEL
The utility model aims at overcoming current condensate recovery device can not be with the quick condensate recovery device that inhales of steam in, lead to condensate recovery device to be lower to the recycle efficiency of steam, can not filter the water that condensate recovery device used simultaneously, reduced condensate recovery device not enough to the steam recycle effect, and the energy-efficient condensate recovery device who provides.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
an efficient and energy-saving condensate water recovery device comprises a machine body, wherein an air inlet pipe is arranged on one side of the upper end of the machine body, a water inlet pipe is arranged on the upper end of one side of the machine body, a power mechanism is arranged on one side of the air inlet pipe, a driving rod is arranged on the power mechanism, an air suction mechanism is arranged on the driving rod, and a transmission mechanism is arranged at one end of the driving rod;
the trachea is installed to the upper end of intake pipe, the water pipe is installed to the one end of inlet tube, the actuating lever sets up in the inlet tube, the both ends of actuating lever rotate respectively and cup joint on the relative inner wall of intake pipe, be equipped with the pivot in the air suction mechanism, the pivot sets up in the inlet tube, the upper end of pivot is fixed with the flabellum, be provided with the filter frame in the inlet tube, be provided with the filter screen in the filter frame, the last round bar that is equipped with of drive mechanism, the round bar slides and cup joints the upper end at the inlet tube, the lower extreme of round bar is fixed with the cleaning board, one side of cleaning board is provided with the brush, the brush is contradicted in one side of filter screen.
Preferably, in order to provide power for the rotation of the driving rod, the power mechanism comprises a fixed frame fixedly connected to one side of the air inlet pipe, a motor is fixedly installed in the fixed frame, and the tail end of an output shaft of the motor is fixedly connected to the other end of the driving rod.
Preferably, in order to drive the flabellum and rotate, accelerate the steam and inhale the efficiency in the organism, improve the operation efficiency of organism, the suction mechanism is fixed the cup joint on the actuating lever and is connect the drive conical gear including fixed, the lower extreme of pivot is fixed with the transmission conical gear, the meshing of transmission conical gear is in one side upper end of drive conical gear, a week equidistant four horizontal poles that are fixed with on the relative inner wall of intake pipe, the relative one end of four horizontal poles is fixed with the carrier ring jointly, the pivot rotates to cup joint in the carrier ring.
Preferably, in order to drive the brush and clean the filter screen when the actuating lever pivoted, realize that a power supply provides the purpose of power for two structures, can effectual saving energy consumption, drive mechanism is including fixed cup joint at the dwang of actuating lever one end, and the lower extreme of dwang is rotated and is connected with the transfer line, and the lower extreme of transfer line is rotated and is connected the upper end at the round bar.
Preferably, in order to make the sweeping board keep the vertical state when removing and remove, can press it when the sweeping board is not upwards stimulateeed simultaneously, realize the reciprocal purpose that goes up and down of sweeping board, both sides in the inlet tube all are fixed with the montant, the sleeve pipe has all been cup jointed in the equal slip on two montants, the equal fixed connection of two sleeve pipes is in the opposite side of sweeping the board, the spring has all been cup jointed on two montants, the equal fixed connection in the upper end in the inlet tube in the upper end of two springs, the lower extreme difference fixed connection of two springs is in two sheathed tube upper ends.
Preferably, in order to cross the filter rack and install in the inlet tube more stable with the filter screen, cross the lower extreme of filter rack and run through the lower extreme and the fixedly connected with connecting plate of inlet tube, the lower extreme at the inlet tube can be dismantled to the connecting plate, and one side four corners of filter rack all contradicts there is the dog, and four dogs are fixed connection respectively on the relative inner wall of inlet tube.
Preferably, in order to bear the weight of the one end of actuating lever, make the actuating lever keep steadily rotating when rotating, one side upper end of organism is fixed with the carrier block, and the upper end of carrier block is fixed with the bracing piece, the fixed pipe of upper end fixedly connected with of bracing piece, and the one end of actuating lever rotates to cup joint in the fixed pipe.
Compared with the prior art, the beneficial effects of the utility model are that:
1. the suction mechanism is used for driving the fan blades to rotate, and the conveying efficiency of steam to the condensed water recovery device can be accelerated through the rotation of the fan blades, so that the operating efficiency of the condensed water recovery device can be improved, and the steam in industrial production can more efficiently enter the condensed water recovery device for recovery and utilization;
2. through the use of the filter frame, the filter screen, the transmission mechanism and the cleaning plate, water used by the condensate water recovery device can be filtered, impurities are prevented from entering the condensate water recovery device, and meanwhile, the influence of the blockage of the filter screen on the conveying efficiency of the water into the condensate water recovery device can be avoided, so that impurities in the water recycled by the condensate water recovery device can be avoided, and the steam recycling effect of the condensate water recovery device is improved;
to sum up, the utility model discloses can drive the flabellum and rotate, can accelerate steam to the transport efficiency in the condensate recovery device through the rotation of flabellum, improve condensate recovery device's function effect for the recycle efficiency of steam, the water that condensate recovery device used filters simultaneously, prevents that condensate recovery device recycle's aquatic from participating in impurity to can improve condensate recovery device's function efficiency, increase condensate recovery device's recycle effect.
Drawings
In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings required to be used in the embodiments or the prior art description will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments of the present application, and for those skilled in the art, other drawings may be obtained according to these drawings without inventive labor.
Fig. 1 is a connecting structure diagram of a high-efficiency energy-saving condensate water recovery device provided by the utility model;
fig. 2 is a schematic view of an internal connection structure of an air inlet pipe of the high-efficiency energy-saving condensate water recovery device provided by the utility model;
FIG. 3 is a schematic view of the connection structure inside the water inlet pipe of the energy-efficient condensate recovery device provided by the present invention;
FIG. 4 is an enlarged view of the location A of the energy-efficient condensate recovery apparatus of the present invention;
fig. 5 is a schematic structural view of a filter frame of the high-efficiency energy-saving condensate water recovery device provided by the present invention.
The symbols in the figures indicate:
1. the air-water separator comprises a machine body, an air inlet pipe 2, an air pipe 3, an air inlet pipe 4, a water inlet pipe 5, a water pipe 6, a fixed frame 7, a motor 8, a driving rod 9, a driving bevel gear 10, a driving bevel gear 11, a rotating shaft 12, fan blades 13, a bearing ring 14, a cross rod 15 rotating rods, 16 driving rods, 17 round rods, 18 sweeping plates, 19 brushes, 20 connecting plates, 21 filter racks, 22 stoppers, 23 sleeves, 24 vertical rods, 25 springs, 26 bearing blocks, 27 supporting rods and 28 fixing pipes.
Detailed Description
In order to make the technical problems, technical solutions and advantageous effects to be solved by the present application clearer, the present application is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present application and are not intended to limit the present application.
Referring to fig. 1-5, the utility model provides an energy-efficient condensate recovery device, including organism 1, organism 1 is in the industrial production, steam for producing when industrial production carries out recycle, the heat in the steam has been utilized promptly, the equipment of water resource has been practiced thrift again, upper end one side of organism 1 is provided with intake pipe 2, trachea 3 is installed to the upper end of intake pipe 2, trachea 3 and supporting industrial equipment are connected, can carry the intake pipe 2 with the steam that produces when industrial equipment functions in through trachea 3, and intake pipe 2 can carry steam and carry recycle in organism 1.
One side of intake pipe 2 is equipped with power unit, the last actuating lever 8 that is equipped with of power unit, actuating lever 8 sets up in intake pipe 2, the both ends of actuating lever 8 are rotated respectively and are cup jointed on intake pipe 2's relative inner wall, function through power unit, can drive actuating lever 8 and rotate, power unit includes fixed connection at the mount 6 of intake pipe 2 one side, fixed mounting has motor 7 in mount 6, the terminal fixed connection of output shaft of motor 7 is at the other end of actuating lever 8, can make motor 7 keep stable operation when the function through mount 6, motor 7 and supporting part are connected, be convenient for stable operation, can set for the procedure, automatic operation, motor 7 function can drive actuating lever 8 and rotate.
Refer to fig. 1, 2, be equipped with the suction mechanism on the actuating lever 8, be equipped with pivot 11 on the suction mechanism, pivot 11 sets up in intake pipe 2, actuating lever 8 rotates and to provide power for the function of suction mechanism, the suction mechanism function can drive pivot 11 and rotate, the upper end of pivot 11 is fixed with flabellum 12, pivot 11 rotates and to drive flabellum 12 and rotate, and flabellum 12 rotates and to produce wind-force, the wind-force that produces when flabellum 12 rotates can accelerate trachea 3 to the efficiency of carrying steam in intake pipe 2, carry recycle in carrying organism 1 that messenger's steam can be quick, thereby can improve organism 1's operating efficiency, make organism 1 more efficient carry out recycle to steam.
The mechanism of breathing in has fixed the cup jointed drive conical gear 9 on actuating lever 8 including fixed, the lower extreme of pivot 11 is fixed with transmission conical gear 10, transmission conical gear 10 meshes in one side upper end of drive conical gear 9, actuating lever 8 rotates and can drive conical gear 9 and rotate, drive conical gear 9 can promote transmission conical gear 10 and rotate, transmission conical gear 10 can drive pivot 11 and rotate, consequently, can drive flabellum 12 through the rotation of actuating lever 8 and rotate, accelerate organism 1 to the processing recycle efficiency of steam.
Referring to fig. 1, 2, 3, 5, a week is equidistant to be fixed with four horizontal poles 14 on the relative inner wall of intake pipe 2, and the relative one end of four horizontal poles 14 is fixed with jointly bears circle 13, and pivot 11 rotates to cup joint in bearing circle 13, can bear the setting that circle 13 is more stable in intake pipe 2 through four horizontal poles 14, can bear pivot 11 through bearing circle 13, makes pivot 11 keep steady rotation when driving flabellum 12 and rotate. One side upper end of organism 1 is provided with inlet tube 4, and water pipe 5 is installed to the one end of inlet tube 4, and water pipe 5 is connected with supporting water installation that send, can carry water through water pipe 5 in inlet tube 4, and inlet tube 4 can carry organism 1 with water in, provides sufficient water source for the function of organism 1.
Further, be provided with in the inlet tube 4 and cross filter frame 21, be provided with the filter screen in crossing filter frame 21, can install the filter screen in inlet tube 4 through crossing filter frame 21, the water that enters into organism 1 through inlet tube 4 can filter through the filter screen, and the filter screen can filter the impurity of aquatic, prevents that impurity from entering into and influencing the processing recovery effect of organism 1 to steam in the organism 1. The lower extreme of crossing filter frame 21 runs through inlet tube 4's lower extreme and fixedly connected with connecting plate 20, the lower extreme at inlet tube 4 can be dismantled to connecting plate 20, can remove filter frame 21 through connecting plate 20, can fix on inlet tube 4 through connecting plate 20 simultaneously, make filter frame 21 and filter screen more stable install in inlet tube 4, it has dog 22 all to contradict in one side four corners of filter frame 21, four dog 22 respectively fixed connection are on inlet tube 4's relative inner wall, can block one side of crossing filter frame 21 through four dog 22, it removes to prevent that rivers from crossing filter frame 21 when assaulting filter frame 21, can improve the stability of filter frame 21 in inlet tube 4.
Referring to fig. 1, 3 and 4, one end of the driving rod 8 is provided with a transmission mechanism, the transmission mechanism is provided with a round rod 17, the round rod 17 is slidably sleeved at the upper end of the water inlet pipe 4, the driving rod 8 provides power for the fan blade 12 and also provides power for the transmission mechanism, the transmission mechanism can drive the round rod 17 to ascend and descend, the round rod 17 can drive parts in the water inlet pipe 4 to ascend and descend, the transmission mechanism comprises a rotating rod 15 fixedly sleeved at one end of the driving rod 8, the lower end of the rotating rod 15 is rotatably connected with a transmission rod 16, the lower end of the transmission rod 16 is rotatably connected to the upper end of the round rod 17, the driving rod 8 can drive the upper end of the rotating rod 15 to rotate, the lower end of the rotating rod 15 can drive the upper end of the transmission rod 16 to move by taking the driving rod 8 as an axis, the lower end of the transmission rod 16 can pull the round rod 17 to reciprocate, the lower end of the round rod 17 is fixedly provided with a cleaning plate 18, one side of the cleaning plate 18 is provided with a brush 19, the round rod 17 can drive the cleaning plate 18 to reciprocate and ascend and descend, and descend.
Referring to fig. 1, 3 and 4, both sides in the water inlet pipe 4 are fixed with vertical rods 24, sleeves 23 are sleeved on the two vertical rods 24 in a sliding manner, the two sleeves 23 are fixedly connected to the other side of the cleaning board 18, the cleaning board 18 can drive the two sleeves 23 to slide on the two vertical rods 24 when being lifted, the rotation of the cleaning board 18 can be limited by the two sleeves 23 sliding on the two vertical rods 24, so that the cleaning board 18 keeps vertical lifting when being driven, springs 25 are sleeved on the two vertical rods 24, the upper ends of the two springs 25 are fixedly connected to the upper end in the water inlet pipe 4, the lower ends of the two springs 25 are respectively and fixedly connected to the upper ends of the two sleeves 23, the springs 25 have elastic force, the sleeves 23 can be pressed by the elastic force of the springs 25, when the cleaning board 18 is not pulled upwards, the descending elastic force of the sleeves 23 can be applied by the springs 25, so that the cleaning board 18 moves downwards, therefore, the cleaning board 18 can drive the brush 19 to reciprocate to lift the brush 19, the filter screen can be cleaned by the cooperation of the spring 25 and the round rod 17, and the filter screen can be prevented from being blocked by impurities which can supply water to the reciprocating brush 1.
Organism 1's one side upper end is fixed with carrier block 26, carrier block 26's upper end is fixed with bracing piece 27, the fixed pipe 28 of upper end fixedly connected with of bracing piece 27, the one end of actuating lever 8 is rotated and is cup jointed in fixed pipe 28, carrier block 26 can bear bracing piece 27, make bracing piece 27 fix in organism 1's upper end, bracing piece 27 can fix fixed pipe 28, fixed pipe 28 is used for bearing the one end of actuating lever 8, make actuating lever 8 keep steady rotation when rotating.
The utility model discloses a theory of operation:
the utility model discloses when using: control motor 7 through supporting controlgear and function, motor 7 drives actuating lever 8 and rotates, actuating lever 8 drives drive bevel gear 9 and rotates, drive bevel gear 9 promotes transmission bevel gear 10 and rotates, drive bevel gear 10 drives pivot 11 and rotates, pivot 11 rotates and drives flabellum 12 and rotates, flabellum 12 rotates and to produce wind-force, rotation through flabellum 12 can produce suction to trachea 3, the steam that trachea 3 carried is quick carries in organism 1 through intake pipe 2, simultaneously when organism 1 is to steam recycle, water pipe 5 can pass through inlet tube 4 and carry organism 1 in with water, water through inlet tube 4 can filter through the filter screen in filter frame 21, prevent that impurity from getting into organism 1, actuating lever 8 can drive dwang 15 and rotate simultaneously, the upper end that the lower extreme of dwang 15 drove actuating lever 16 uses actuating lever 8 to move as the axle center, actuating lever 16 stimulates round bar 17 and reciprocates, round bar 17 drives and cleans board 18 and reciprocates, it cleans brush 19 and cleans the filter screen to prevent that the filter screen from blockking up.
In the description of the present invention, it is to be understood that the positional or positional relationships, such as the terms "length," "width," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," and the like, are based on the positional or positional relationships illustrated in the drawings and are for convenience in describing the present application and to simplify the description, but are not intended to indicate or imply that the device or element so referred to must have a particular orientation, be constructed and operated in a particular orientation, and are therefore not to be considered as limiting of the present application.
Further, in the description of the present application, "a plurality" means two or more unless specifically defined otherwise.
The above description is only exemplary of the present application and should not be taken as limiting the present application, as any modification, equivalent replacement, or improvement made within the spirit and principle of the present application should be included in the protection scope of the present application.

Claims (7)

1. The utility model provides an energy-efficient condensate recovery device, includes organism (1), its characterized in that: an air inlet pipe (2) is arranged on one side of the upper end of the machine body (1), a water inlet pipe (4) is arranged on the upper end of one side of the machine body (1), a power mechanism is arranged on one side of the air inlet pipe (2), a driving rod (8) is arranged on the power mechanism, an air suction mechanism is arranged on the driving rod (8), and a transmission mechanism is arranged at one end of the driving rod (8);
trachea (3) are installed to the upper end of intake pipe (2), water pipe (5) are installed to the one end of inlet tube (4), actuating lever (8) set up in intake pipe (2), the both ends of actuating lever (8) are rotated respectively and are cup jointed on the relative inner wall of intake pipe (2), be equipped with pivot (11) on the air suction mechanism, pivot (11) set up in intake pipe (2), the upper end of pivot (11) is fixed with flabellum (12), be provided with in inlet tube (4) and cross filter frame (21), be provided with the filter screen in cross filter frame (21), the last round bar (17) that is equipped with of drive mechanism, round bar (17) slip cup joint the upper end at inlet tube (4), the lower extreme of round bar (17) is fixed with cleaning plate (18), one side of cleaning plate (18) is provided with brush (19), brush (19) are contradicted in one side of filter screen.
2. An energy-efficient condensate recovery apparatus according to claim 1, wherein: the power mechanism comprises a fixing frame (6) fixedly connected to one side of the air inlet pipe (2), a motor (7) is fixedly mounted in the fixing frame (6), and the tail end of an output shaft of the motor (7) is fixedly connected to the other end of the driving rod (8).
3. An energy-efficient condensate recovery apparatus according to claim 1, wherein: the mechanism of breathing in is fixed the cover including fixed cup joint on actuating lever (8) and is connected drive conical gear (9), the lower extreme of pivot (11) is fixed with transmission conical gear (10), one side upper end at drive conical gear (9) is engaged in transmission conical gear (10), a week equidistant four horizontal poles (14) of being fixed with on the relative inner wall of intake pipe (2), the relative one end common fixation of four horizontal poles (14) has bearing ring (13), pivot (11) rotate to cup joint in bearing ring (13).
4. An energy-efficient condensate recovery apparatus according to claim 1, wherein: drive mechanism is including fixed cup joint dwang (15) in actuating lever (8) one end, the lower extreme of dwang (15) is rotated and is connected with transfer line (16), the lower extreme of transfer line (16) is rotated and is connected the upper end at round bar (17).
5. An energy-efficient condensate recovery apparatus according to claim 1, wherein: both sides in inlet tube (4) all are fixed with montant (24), and equal slip has cup jointed sleeve pipe (23) on two montants (24), and the equal fixed connection of two sleeve pipes (23) has all cup jointed spring (25) on two montants (24), and the equal fixed connection in the upper end in inlet tube (4) of the upper end of two spring (25), the lower extreme difference fixed connection of two spring (25) is in the upper end of two sleeve pipes (23).
6. An energy-efficient condensate recovery apparatus according to claim 1, wherein: the lower extreme of crossing filter frame (21) runs through the lower extreme and fixedly connected with connecting plate (20) of inlet tube (4), the connection can be dismantled at the lower extreme of inlet tube (4) in connecting plate (20), one side four corners of crossing filter frame (21) all contradicts dog (22), and four dog (22) difference fixed connection are on the relative inner wall of inlet tube (4).
7. An energy-efficient condensate recovery apparatus according to claim 1, wherein: the bearing block (26) is fixed to the upper end of one side of the machine body (1), the supporting rod (27) is fixed to the upper end of the bearing block (26), the fixing pipe (28) is fixedly connected to the upper end of the supporting rod (27), and one end of the driving rod (8) is rotatably sleeved in the fixing pipe (28).
CN202222743716.3U 2022-10-18 2022-10-18 Energy-efficient condensate recovery device Active CN218723254U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222743716.3U CN218723254U (en) 2022-10-18 2022-10-18 Energy-efficient condensate recovery device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222743716.3U CN218723254U (en) 2022-10-18 2022-10-18 Energy-efficient condensate recovery device

Publications (1)

Publication Number Publication Date
CN218723254U true CN218723254U (en) 2023-03-24

Family

ID=85587091

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202222743716.3U Active CN218723254U (en) 2022-10-18 2022-10-18 Energy-efficient condensate recovery device

Country Status (1)

Country Link
CN (1) CN218723254U (en)

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