CN210564966U - Multifunctional air compressor waste heat recovery device - Google Patents
Multifunctional air compressor waste heat recovery device Download PDFInfo
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- CN210564966U CN210564966U CN201921142273.4U CN201921142273U CN210564966U CN 210564966 U CN210564966 U CN 210564966U CN 201921142273 U CN201921142273 U CN 201921142273U CN 210564966 U CN210564966 U CN 210564966U
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- heat recovery
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Abstract
The utility model discloses a multi-functional air compressor waste heat recovery device, the on-line screen storage device comprises a base, compressor mechanism is installed to the base upper end, the utility model discloses the beneficial effect who reaches is: the utility model relates to a multifunctional air compressor, accomplish and discharge to the slidable through the blast pipe after the compression and dismantle the well of a cylindricality section of thick bamboo, and through the one-level filter screen, the sponge piece, activated carbon layer and second grade filter screen carry out the filtration to the combustion gas, discharge into to the water tank through the gas-supply pipe after the filtration completion, carry out the water injection to the water tank through the inlet tube, and heat the water in the water tank through steam, it discharges hot water to be valve two through the outlet pipe after the heating is accomplished, compare with current device, this device simple structure, and convenient operation, and abundant steam that has utilized piston air compressor, make its recycle, the energy has been practiced thrift, and a cylindricality section of thick bamboo is convenient for install and dismantle, make it more convenient to wash it, the practicality of device has been promoted.
Description
Technical Field
The utility model relates to a multi-functional air compressor waste heat recovery device belongs to piston air compressor technical field.
Background
When the piston of the piston air compressor reciprocates in the cylinder and moves rightwards, the pressure of the left cavity of the piston in the cylinder is lower than the atmospheric pressure, the suction valve is opened, and the outside air is sucked into the cylinder, which is called as the compression process. When the pressure in the cylinder is higher than the pressure in the air output pipeline, the exhaust valve is opened, the reciprocating motion of the piston is formed by a crank slider mechanism driven by the motor, the rotary motion of the crank is converted into sliding-reciprocating motion of the piston, the compressor with the structure always has residual volume when the exhaust process is finished, and compressed air in the residual volume can expand when the next air suction is carried out, so that the air suction amount is reduced, the efficiency is reduced, and the compression work is increased.
The existing piston type air compressor can produce a large amount of hot air when working, an existing device cannot recycle the hot air, a large amount of heat energy is wasted, waste gas such as oil gas is directly discharged into the air, the environment is affected by air pollution, and the multifunctional air compressor waste heat recovery device is provided aiming at the problems.
SUMMERY OF THE UTILITY MODEL
The to-be-solved technical problem of the utility model is to overcome prior art's defect, provide a multi-functional air compressor waste heat recovery device.
In order to solve the technical problem, the utility model provides a following technical scheme:
the utility model relates to a multi-functional air compressor waste heat recovery device, the on-line screen storage device comprises a base, compressor mechanism is installed to the base upper end, compressor mechanism serves fixedly connected with rubber seal, rubber seal one side compressor mechanism is connected with and purifies the mechanism, it has the gas-supply pipe to purify mechanism opposite side fixed mounting, the cover is established and is installed rubber seal on the gas-supply pipe, the mechanism of heating is installed to the gas-supply pipe other end.
As a preferred technical scheme of the utility model, compressor mechanism includes piston air compressor, the perpendicular fixed connection of piston air compressor is on the base, piston air compressor input fixed connection intake pipe, piston air compressor output fixed connection blast pipe, just the fixed cover of blast pipe upper end is established and is installed rubber seal.
As a preferred technical scheme of the utility model, purification mechanism includes a cylindricality section of thick bamboo, fixed mounting has one-level filter screen, sponge piece, activated carbon layer and second grade filter screen on the cylindricality section of thick bamboo inner wall, just one-level filter screen, sponge piece, activated carbon layer and second grade filter screen all closely link to each other.
As a preferred technical scheme of the utility model, slide mechanism includes two concave circular spouts, two concave circular spouts have been seted up to the equal symmetry of cylindricality section of thick bamboo both ends inner wall, every concave circular spout is equallyd divide and do not can dismantle sliding connection, two with two arc slider is equallyd divide other symmetry fixed mounting and is served at the blast pipe one arc slider is equallyd divide other symmetry fixed mounting and is served at the gas-supply pipe.
As a preferred technical scheme of the utility model, sliding connection can be dismantled respectively with blast pipe and gas-supply pipe to a cylindricality section of thick bamboo both ends are equallyd divide, the rubber seal who establishes the installation is equallyd divide and closely link to each other and do not connect to each other with a cylindricality section of thick bamboo both ends respectively to the fixed cover in blast pipe and gas-supply pipe upper end.
As a preferred technical scheme of the utility model, heating mechanism includes the water tank, the perpendicular fixed mounting of water tank is on the base, water tank upper end side edge department inserts perpendicularly and installs the inlet tube, just fixed mounting has valve one on the inlet tube, water tank lateral wall lower extreme inserts perpendicularly and installs the outlet pipe, just fixed mounting has valve two on the outlet pipe.
The utility model discloses the beneficial effect who reaches is: the utility model relates to a multifunctional air compressor, the device inputs air through an air inlet pipe by reciprocating piston motion of a piston type air compressor, and discharges the air to a slidable detachable cylindrical barrel through an exhaust pipe after compression, the discharged gas is filtered by the primary filter screen, the sponge block, the activated carbon layer and the secondary filter screen, and is discharged into the water tank through the gas pipe after the filtering is finished, the water tank is filled with water through the water inlet pipe, the water in the water tank is heated through hot air, the hot water is discharged through the water outlet pipe through the valve II after the heating is finished, compared with the prior device, the device has simple structure and convenient operation, fully utilizes the hot gas of the piston type air compressor, recycles the hot gas, saves energy, and the cylindrical barrel is convenient to mount and dismount, so that the cylindrical barrel is more convenient to clean, and the practicability of the device is improved.
Drawings
The accompanying drawings are included to provide a further understanding of the invention, and are incorporated in and constitute a part of this specification, illustrate embodiments of the invention, and together with the description serve to explain the invention and not to limit the invention.
In the drawings:
fig. 1 is a schematic top view of the present invention;
FIG. 2 is a schematic view of the present invention taken along line A in FIG. 1;
fig. 3 is a schematic view of the structure of the present invention.
In the figure: 1. a base; 2. a compressor mechanism; 21. a piston air compressor; 22. an air inlet pipe; 23. An exhaust pipe; 3. a rubber seal ring; 4. a purification mechanism; 41. a cylindrical barrel; 42. a first-stage filter screen; 43. A sponge block; 44. an activated carbon layer; 45. a secondary filter screen; 5. a sliding mechanism; 51. a concave circular chute; 52. An arc-shaped sliding block; 6. a gas delivery pipe; 7. a heating mechanism; 71. a water tank; 72. a water inlet pipe; 73. a first valve; 74. a water outlet pipe; 75. and a second valve.
Detailed Description
The preferred embodiments of the present invention will be described in conjunction with the accompanying drawings, and it will be understood that they are presented herein only to illustrate and explain the present invention, and not to limit the present invention.
Examples
As shown in fig. 1-3, a multi-functional air compressor waste heat recovery device, includes base 1, and compressor mechanism 2 is installed to base 1 upper end, and compressor mechanism 2 serves fixedly connected with rubber seal 3, and 3 one side compressor mechanism 2 of rubber seal are connected with purification mechanism 4, and 4 opposite sides fixedly mounted of purification mechanism have gas-supply pipe 6, and the cover is established on gas-supply pipe 6 and is installed rubber seal 3, and heating mechanism 7 is installed to the other end of gas-supply pipe 6.
Wherein, compressor mechanism 2 includes piston air compressor 21, and the perpendicular fixed connection of piston air compressor 21 is on base 1, and the fixed connection intake pipe 22 of piston air compressor 21 input end, the fixed connection blast pipe 23 of piston air compressor 21 output end, and the fixed cover of blast pipe 23 upper end is established and is installed rubber seal 3.
Wherein, purification mechanism 4 includes a cylindricality section of thick bamboo 41, and fixed mounting has one-level filter screen 42, sponge piece 43, activated carbon layer 44 and second grade filter screen 45 on the 41 inner walls of cylindricality section of thick bamboo, and one-level filter screen 42, sponge piece 43, activated carbon layer 44 and second grade filter screen 45 all closely link to each other.
Wherein, slide mechanism 5 includes two concave circular chutes 51, and two concave circular chutes 51 have been seted up to the equal symmetry of a cylindricality section of thick bamboo 41 both ends inner wall, and every concave circular chute 51 equally divides and do not can dismantle sliding connection with two arc slider 52, and two arc slider 52 equally divide respectively symmetrical fixed mounting at blast pipe 23 one end, and two arc slider 52 equally divide respectively symmetrical fixed mounting at gas-supply pipe 6 one end.
Wherein, a cylindricality section of thick bamboo 41 both ends are equallyd divide and are do not dismantled sliding connection with blast pipe 23 and gas-supply pipe 6, and the rubber seal 3 of the fixed cover of establishing the installation in blast pipe 23 and the 6 upper ends of gas-supply pipe is equallyd divide and closely link to each other and do not connect with a cylindricality section of thick bamboo 41 both ends respectively.
Wherein, heating mechanism 7 includes water tank 71, and water tank 71 vertical fixed mounting is on base 1, and water tank 71 upper end one side edge inserts perpendicularly and installs inlet tube 72, and fixed mounting has valve one 73 on the inlet tube 72, and water tank 71 lateral wall lower extreme inserts perpendicularly and installs outlet pipe 74, and fixed mounting has valve two 75 on the outlet pipe 74.
Specifically, when the utility model is used, firstly, the piston type air compressor 21 is powered on, the water inlet pipe 72 is connected with the water pipe, and the piston type air compressor 21 is started, the air inlet of the piston type air compressor 21 inputs air through the air inlet pipe 22, the reciprocating motion is carried out in the cylinder of the piston type air compressor 21 to discharge the air to the cylindrical barrel 41 which is detachably connected with the air outlet pipe 23 in a sliding way through the air outlet pipe 23, and the discharged air is filtered layer by layer through the primary filter screen 42 which is fixedly arranged on the inner wall of the cylindrical barrel 41, the sponge block 43, the activated carbon layer 44 and the secondary filter screen 45, after the filtration is finished, the air is conveyed to the water tank 71 through the air conveying pipe 6, and the valve one 73 on the water inlet pipe 72 is opened to inject water into the water tank 71, the valve one 73 is closed after a certain amount of water is injected, the second valve 75 on the water outlet pipe 74 connected with the lower end of the water tank 71 is opened to discharge hot water, the device saves energy and improves the practicability of the device until the whole working sequence is completed.
Finally, it should be noted that: although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that modifications may be made to the embodiments described in the foregoing embodiments, or equivalents may be substituted for elements thereof. Any modification, equivalent replacement, or improvement made within the spirit and principle of the present invention should be included in the protection scope of the present invention.
Claims (6)
1. The utility model provides a multi-functional air compressor waste heat recovery device, its characterized in that, includes base (1), compressor mechanism (2) are installed to base (1) upper end, compressor mechanism (2) serve fixedly connected with rubber seal (3), rubber seal (3) one side compressor mechanism (2) are connected with purification mechanism (4), purification mechanism (4) opposite side fixed mounting has gas-supply pipe (6), cover is established on gas-supply pipe (6) and is installed rubber seal (3), heating mechanism (7) are installed to gas-supply pipe (6) other end.
2. The waste heat recovery device of the multifunctional air compressor as claimed in claim 1, wherein the compressor mechanism (2) comprises a piston type air compressor (21), the piston type air compressor (21) is vertically and fixedly connected to the base (1), an inlet pipe (22) is fixedly connected to an input end of the piston type air compressor (21), an outlet pipe (23) is fixedly connected to an output end of the piston type air compressor (21), and a rubber sealing ring (3) is fixedly sleeved on an upper end of the outlet pipe (23).
3. The waste heat recovery device of the multifunctional air compressor as claimed in claim 1, wherein the purification mechanism (4) comprises a cylindrical barrel (41), a primary filter screen (42), a sponge block (43), an activated carbon layer (44) and a secondary filter screen (45) are fixedly mounted on the inner wall of the cylindrical barrel (41), and the primary filter screen (42), the sponge block (43), the activated carbon layer (44) and the secondary filter screen (45) are all tightly connected.
4. The waste heat recovery device of the multifunctional air compressor as claimed in claim 3, wherein the sliding mechanism (5) comprises two concave circular sliding grooves (51), the inner walls of the two ends of the cylindrical barrel (41) are symmetrically provided with the two concave circular sliding grooves (51), each concave circular sliding groove (51) is equally divided into two arc-shaped sliding blocks (52), the two arc-shaped sliding blocks (52) are equally divided into two arc-shaped sliding blocks, the two arc-shaped sliding blocks are symmetrically and fixedly mounted on one end of the exhaust pipe (23), and the two arc-shaped sliding blocks (52) are equally divided into two arc-shaped sliding blocks, the two arc-shaped sliding blocks are symmetrically and fixedly mounted on one end of the air.
5. The waste heat recovery device of the multifunctional air compressor as claimed in claim 3, wherein the two ends of the cylindrical tube (41) are detachably and slidably connected with the exhaust pipe (23) and the air pipe (6), and the rubber sealing rings (3) fixedly sleeved and installed at the upper ends of the exhaust pipe (23) and the air pipe (6) are closely connected with and disconnected from the two ends of the cylindrical tube (41).
6. The waste heat recovery device of the multifunctional air compressor as claimed in claim 1, wherein the heating mechanism (7) comprises a water tank (71), the water tank (71) is vertically and fixedly installed on the base (1), a water inlet pipe (72) is vertically inserted and installed at one side edge of the upper end of the water tank (71), a first valve (73) is fixedly installed on the water inlet pipe (72), a water outlet pipe (74) is vertically inserted and installed at the lower end of the side wall of the water tank (71), and a second valve (75) is fixedly installed on the water outlet pipe (74).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201921142273.4U CN210564966U (en) | 2019-07-19 | 2019-07-19 | Multifunctional air compressor waste heat recovery device |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201921142273.4U CN210564966U (en) | 2019-07-19 | 2019-07-19 | Multifunctional air compressor waste heat recovery device |
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CN210564966U true CN210564966U (en) | 2020-05-19 |
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CN201921142273.4U Active CN210564966U (en) | 2019-07-19 | 2019-07-19 | Multifunctional air compressor waste heat recovery device |
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2019
- 2019-07-19 CN CN201921142273.4U patent/CN210564966U/en active Active
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