Infrared stealth shell suitable for diesel engine system

By adopting a combined structure of shrapnel filter, bidirectional blade and unidirectional blade in the diesel generator system, the problems of heat discharge and automatic filter cleaning of diesel generator sets are solved, and rapid heat discharge, infrared stealth and high-efficiency filtration are achieved to ensure the performance and safety of generator sets.

CN120291970AActive Publication Date: 2025-07-11XIAMEN JINMING ENERGY SAVING TECH
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Patent Information

Application Number
CN202510802232.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-16
Publication Date
2025-07-11
Estimated Expiration
2045-06-16

AI Technical Summary

Technical Problem

The shell of the existing diesel system cannot effectively discharge heat from the diesel generator set, resulting in an increase in temperature, lack of infrared stealth effect, low filtering efficiency, and unable to automatically clean, affecting the performance and safety of the generator set.

Method used

The combined structure of shrapnel filter, bidirectional blade and unidirectional blade is adopted, and the driving parts are used to control the air flow direction and filter shape deformation to achieve efficient filtration and automatic cleaning, and combined with the dehumidification and salt removal mechanism to treat air to ensure air quality.

Benefits of technology

It realizes rapid heat discharge of diesel generator sets, keeps the temperature difference within the predetermined range, improves the filter efficiency, automatically cleans the filter, enhances infrared stealth effect, extends the service life of the filter, and ensures the performance and safety of the generator set.

✦ Generated by Eureka AI based on patent content.

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    Figure CN120291970A_ABST
Patent Text Reader

Abstract

The infrared stealth shell comprises a base, a box body is arranged on the base, a diesel generating set is arranged on the base and located in the box body, an air inlet is formed in the right end face of the box body, an air outlet is formed in the left side of the top end face of the box body, and an air outlet is formed in the right end face of the box body. An elastic sheet filter screen is arranged on the box body and is positioned in the air inlet; a connecting frame is arranged on the inner wall of the box body and located on the left side of the elastic piece filter screen, a two-way blade is rotationally arranged on the connecting frame, a first driving part is arranged between the connecting frame and the two-way blade, and an elastic ball is movably arranged on the connecting frame and located between the two-way blade and the elastic piece filter screen; the interception efficiency of the filter screen on particle impurities in the air can be enhanced, the filter screen can filter the particle impurities in the air more fully and completely, and the influence of the particle impurities in the air on the performance, the service life and the safety of the diesel generating set in the working process can be greatly reduced.
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Description

Technical Field

[0001] The present invention relates to the field of diesel generator systems, and in particular to an infrared stealth housing applicable to diesel generator systems. Background Art

[0002] A diesel generator system is a combination of equipment that uses a diesel engine as a power source to drive a generator to generate electrical energy. It is widely used in scenarios such as backup power supplies, mobile power supplies, or off-grid power supplies.

[0003] In a diesel generator system, a housing is used for protection. The existing housing includes a base, a box body is arranged on the base, a diesel generator set is arranged on the base and inside the box body, an air inlet is arranged on the right end face of the box body, an air outlet is arranged on the left side of the top end face of the box body, and a filter screen is arranged on the box body and inside the air inlet.

[0004] However, the following defects exist in the above technical solutions: During the operation of the diesel generator set, it is impossible to ensure the air required by the diesel generator set, impossible to accelerate the discharge of the heat generated by the diesel generator set from the air outlet, impossible to reduce the temperature inside the box body, impossible to keep the temperature difference between the inside and outside of the box body within a predetermined range, not having a certain infrared stealth effect, impossible to enable the diesel generator set to not require long-time cooling waiting before the next stage of work, and not having a certain hot start function; It is impossible to enhance the interception efficiency of the filter screen for particulate impurities in the air, impossible to make the filtration of particulate impurities in the air by the filter screen more sufficient and complete, and impossible to greatly reduce the impact of particulate impurities in the air on the performance, life, and safety of the diesel generator set during operation; When the filter screen filters particulate impurities in the air, it is impossible to reduce the filtration load, impossible to improve the filtration effect of the filter screen for particulate impurities in the air, impossible to extend the time when the filter screen becomes clogged, and impossible to avoid a significant fluctuation in the filtration efficiency due to premature clogging of the filter screen; When the diesel generator set is not operating, it is inconvenient to clean the particulate impurities intercepted on the filter screen and manual cleaning is required. After the diesel generator set stops operating, it is impossible to immediately keep the filter screen unclogged again, and impossible to prevent a significant decrease in the filtration effect of the next filtration of particulate impurities in the air due to failure to clean the particulate impurities on the filter screen in time.

[0005] Designing an infrared stealth housing applicable to diesel generator systems to address the problems existing in the above prior art is the purpose of the research of the present invention. Summary of the Invention

[0006] In view of the problems existing in the above prior art, the present invention provides an infrared stealth housing applicable to diesel generator systems, which can effectively solve at least one of the problems existing in the above prior art.

[0007] The technical solution of the present invention is as follows: An infrared stealth housing applicable to a diesel generator system, comprising: A base, on which a box body is provided. A diesel generator set is provided in the box body on the base. An air inlet is provided at the right end face of the box body, and an air outlet is provided at the left side of the top end face of the box body. A shrapnel filter screen is provided in the air inlet on the box body; A connecting frame is provided on the inner wall of the box body to the left of the shrapnel filter screen. A two-way blade is rotatably provided on the connecting frame. A first driving member is provided between the connecting frame and the two-way blade. An elastic ball is movably provided on the connecting frame between the two-way blade and the shrapnel filter screen. A second driving member is provided between the elastic ball and the connecting frame. A one-way blade for generating a downward airflow is rotatably provided on the outer wall of the box body to the right of the shrapnel filter screen. A third driving member is provided between the one-way blade and the box body; The two-way blade is used to be continuously driven to rotate during the operation of the diesel generator set and generate a lateral airflow, so that the air outside the box body is concentrated and accelerated to flow towards the shrapnel filter screen and enter the box body; The shrapnel filter screen is used to elastically deform towards the two-way blade during the operation of the diesel generator set and continuous rotation of the two-way blade until it is supported by the elastic ball, so as to increase the area of intercepting particulate impurities in the air and effectively slow down the air flow rate; The one-way blade is used to be continuously driven to rotate during the operation of the diesel generator set and continuous rotation of the two-way blade and generate a downward airflow, so that part of the particulate impurities in the air outside the box body are removed before being filtered by the shrapnel filter screen; The shrapnel filter screen is used to restore its original shape when the diesel generator set is not working and the two-way blade stops rotating, so as to shake off most of the intercepted particulate impurities during the restoration of the original shape.

[0008] Further, when the diesel generator set is not working and the elastic ball is driven to first impact the shrapnel filter screen with a predetermined force after the long-term use of the shrapnel filter screen, so that the shrapnel filter screen elastically deforms when impacted by the predetermined force, and then stays for a predetermined time after impacting the shrapnel filter screen, so that the restored shrapnel filter screen is resisted and elastically deformed again; Before the elastic ball impacts the shrapnel filter screen, the one-way blade is driven to continuously rotate and generate a downward airflow, so as to flap the shrapnel filter screen between the one-way blade and the elastic ball to elastically deform the shrapnel filter screen reciprocally after the shrapnel filter screen elastically deforms and moves away from the elastic ball, so that the particulate impurities detached from the shrapnel filter screen move downward away from the shrapnel filter screen; Before the elastic ball hits the shrapnel filter screen, the bidirectional blades are driven to rotate continuously and generate a lateral air flow to concentrate and accelerate the air in the box body to flow towards the shrapnel filter screen, so as to cooperate with the downward air flow generated by the unidirectional blades to quickly move the separated particulate impurities away from the box body and the shrapnel filter screen at the same time.

[0009] Further, the first driving member includes a first rotating motor, which is arranged between the connecting frame and the bidirectional blade, and the first rotating motor is horizontally arranged.

[0010] Further, the second driving member includes an adapter seat, which is arranged on the connecting frame and located between the bidirectional blade and the shrapnel filter screen, and a second rotating motor is arranged on the adapter seat; an extension rod, the top end of the extension rod is arranged at the rotating end of the second rotating motor, the bottom end of the extension rod is provided with an adapter block, and the elastic ball is arranged on the right end face of the adapter block.

[0011] Further, the third driving member includes an adapter plate, which is arranged on the outer wall of the box body and located on the right side of the shrapnel filter screen, and a third rotating motor connected to the unidirectional blade is arranged on the adapter plate.

[0012] Further, the shrapnel filter screen includes elastic pieces, which are arranged on the box body and located in the air inlet, and a plurality of filter holes are arranged on the elastic pieces.

[0013] Further, a linkage seat is arranged in the air outlet in a lifting manner, a lifting driving member is arranged between the linkage seat and the box body, a anti-entering net is arranged on the top end face of the linkage seat, several through holes are arranged on the linkage seat and below the anti-entering net, and an auxiliary blade is arranged in the air outlet and above the linkage seat in a rotating manner, and an auxiliary driving member is arranged between the linkage seat and the auxiliary blade.

[0014] Further, the lifting driving member includes a telescopic member, which is arranged on the bottom end face of the linkage seat, and a connecting frame is arranged between the telescopic member and the box body; The auxiliary driving member includes a fourth rotating motor, which is arranged inside the linkage seat, and the rotating end of the fourth rotating motor passes through the linkage seat and is connected to the auxiliary blade.

[0015] Therefore, the present invention provides the following effects and / or advantages: 1) During the operation of the diesel generator set, it can ensure the air required by the diesel generator set, accelerate the discharge of the heat generated by the diesel generator set from the air outlet during the operation of the diesel generator set, reduce the temperature inside the box body, make the temperature difference between the inside and outside of the box body within a predetermined range, have a certain infrared stealth effect, enable the diesel generator set not to need to wait for a long time for cooling before the next stage of work, and have a certain hot start function; It can enhance the interception efficiency of the filter screen for particulate impurities in the air, enable the filter screen to filter particulate impurities in the air more fully and completely, and greatly reduce the impact of particulate impurities in the air on the performance, lifespan, and safety of the diesel generator set; When the filter screen filters particulate impurities in the air, it can reduce the filtration load, improve the filtration effect of the filter screen on particulate impurities in the air, extend the time when the filter screen becomes blocked, and avoid a significant fluctuation in the filtration efficiency due to premature blockage of the filter screen; When the diesel generator set is not working, the particulate impurities intercepted on the filter screen can be cleaned without manual cleaning, and the filter screen can be immediately kept unobstructed again after the diesel generator set stops working, preventing a significant decrease in the filtration effect on particulate impurities in the air due to failure to clean the particulate impurities on the filter screen in a timely manner.

[0016] 2) When the diesel generator set is not working and the elastic ball is driven to impact the elastic filter screen with a predetermined force after long-term use of the elastic filter screen, so that the elastic filter screen undergoes elastic deformation when impacted by the predetermined force, and then stays for a predetermined time after impacting the elastic filter screen, so that the restored elastic filter screen is resisted and undergoes elastic deformation again; Before the elastic ball impacts the elastic filter screen, the one-way blade is driven to rotate continuously and generate a downward air flow, so as to flap the elastic filter screen after the elastic filter screen undergoes elastic deformation and moves away from the elastic ball, causing the elastic filter screen to undergo elastic deformation reciprocally between the one-way blade and the elastic ball, so that the particulate impurities detached from the elastic filter screen move downward away from the elastic filter screen; Before the elastic ball impacts the elastic filter screen, the two-way blade is driven to rotate continuously and generate a lateral air flow, so as to concentrate and accelerate the air in the box body to flow towards the elastic filter screen, thereby cooperating with the downward air flow generated by the one-way blade to enable the detached particulate impurities to quickly move away from both the box body and the elastic filter screen simultaneously.

[0017] Other features and advantages of the present invention will be described in the subsequent specification, and, in part, will become apparent from the specification or will be understood by implementing the present invention. The objectives and other advantages of the present invention are achieved and obtained by the structures specifically pointed out in the specification and the drawings.

[0018] It should be understood that the above summary and the following detailed description of the present invention are exemplary and explanatory, and are intended to provide further explanation of the present invention as claimed. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 It is a schematic structural diagram of an infrared stealth system to which the present invention is applied in a diesel generator system.

[0020] Figure 2 For corresponding Figure 1Cross-sectional view after hiding some components.

[0021] Figure 3 For corresponding Figure 2 Enlarged view of part A.

[0022] Figure 4 For corresponding Figure 2 Enlarged view of part B.

[0023] Figure 5 For corresponding Figure 2 Enlarged view of part C.

[0024] Figure 6 For corresponding Figure 2 Enlarged view of part D.

[0025] Figure 7 For corresponding Figure 1 Schematic structural diagram after hiding some components.

[0026] Explanation of reference numerals: Base 1, box body 2, diesel generator set 3, air inlet 4, air outlet 5, elastic sheet filter 6, connecting frame 7, bidirectional blade 8, elastic ball 9, unidirectional blade 10, first rotating motor 11, connection seat 12, second rotating motor 13, extension rod 14, connection block 15, connection plate 16, third rotating motor 17, elastic sheet 18, filter hole 19, linkage seat 20, anti-entering net 21, through hole 22, auxiliary blade 23, telescopic member 24, connection frame 25, fourth rotating motor 26, processing seat 27, horn tube 28, connecting and sealing seat 29, salt spray monitoring instrument 30, humidity sensor 31, placement hole 32, circulation hole 33, first circulation pipe 34, second circulation pipe 35, connecting frame 36, fifth rotating motor 37, increased-throughput anti-entering and holding dry blade 38, desalting shell 39, desalting filler 40, first opening and closing door 41, first reset member 42, sixth rotating motor 43, first connecting rope 44, first support 45, first guide wheel 46, second opening and closing door 47, second reset member 48, seventh rotating motor 49, second connecting rope 50, second support 51, second guide wheel 52, annular circulation plate 53, compression spring 54, holding and resisting plate 55, connection seat 56, eighth rotating motor 57, driving and resisting shaped area rope 58, spherical filter 59, spherical desiccant packet 60. Detailed implementation manners

[0027] For the convenience of those skilled in the art to understand, the embodiments will now be described in further detail with reference to the accompanying drawings for the structure of the present invention: Referring to Figure 1-7 The embodiments of the present invention disclose a specific embodiment of an infrared stealth housing applicable to a diesel generator system in an infrared stealth system for a diesel generator system. An infrared stealth system for a diesel generator set, comprising a base 1, a box body 2 is arranged on the base 1, a diesel generator set 3 is arranged on the base 1 and inside the box body 2, an air inlet 4 is arranged on the right end face of the box body 2, an air outlet 5 is arranged on the left side of the top face of the box body 2, and a leaf spring filter screen 6 is arranged in the air inlet 4 on the box body 2; A connecting frame 7 is arranged on the inner wall of the box body 2 and to the left of the leaf spring filter screen 6, a two-way blade 8 is rotatably arranged on the connecting frame 7, a first driving member is arranged between the connecting frame 7 and the two-way blade 8, an elastic ball 9 is movably arranged between the two-way blade 8 and the leaf spring filter screen 6 on the connecting frame 7, a second driving member is arranged between the elastic ball 9 and the connecting frame 7, a one-way blade 10 for generating a downward air flow is rotatably arranged on the outer wall of the box body 2 and to the right of the leaf spring filter screen 6, and a third driving member is arranged between the one-way blade 10 and the box body 2; A dehumidifying and desalting mechanism is arranged between the base 1 and the box body 2 and to the right of the diesel generator set 3.

[0028] The two-way blade 8 is used to continuously rotate under drive during the operation of the diesel generator set 3 and generate a lateral air flow, so that the air outside the box body 2 is concentrated and accelerated to flow towards the leaf spring filter screen 6 and enter the box body 2, thereby ensuring the air required by the diesel generator set 3 during the operation of the diesel generator set 3, accelerating the heat generated by the diesel generator set 3 to be discharged from the air outlet 5 during the operation of the diesel generator set 3, reducing the temperature inside the box body 2, making the temperature difference between the inside and outside of the box body 2 within a predetermined range, having a certain infrared stealth effect, enabling the diesel generator set 3 not to need to wait for a long time for cooling before the next stage of work, and having a certain hot start function; The leaf spring filter screen 6 is used to elastically deform towards the two-way blade 8 during the operation of the diesel generator set 3 and the continuous rotation of the two-way blade 8 until it is supported by the elastic ball 9, so as to increase the area of intercepting particulate impurities in the air and effectively slow down the air flow rate, thereby enhancing the interception efficiency of particulate impurities in the air, making the filtration of particulate impurities in the air more complete and thorough, and greatly reducing the influence of particulate impurities in the air on the performance, service life and safety of the diesel generator set 3; The elastic ball 9 is used to continuously support the leaf spring filter screen 6 when the leaf spring filter screen 6 elastically deforms towards the two-way blade 8, so as to maintain the aperture of the leaf spring filter screen 6 within a predetermined range, thereby ensuring the filtration effect and filtration quality of the leaf spring filter screen 6 on particulate impurities in the air during the elastic deformation of the leaf spring filter screen 6, so that the leaf spring filter screen 6 can restore its original shape after the diesel generator set 3 stops working and the two-way blade 8 stops rotating, thereby ensuring the service life of the leaf spring filter screen 6; The one-way vane 10 is used to continuously rotate and generate a downward air flow during the operation of the diesel generator set 3 and the continuous rotation of the two-way vane 8, so that part of the particulate impurities in the air outside the box body 2 are removed before being filtered by the elastic sheet filter screen 6, thereby reducing the filtration load when the elastic sheet filter screen 6 filters the particulate impurities in the air, improving the filtration effect of the elastic sheet filter screen 6 on the particulate impurities in the air, prolonging the time when the elastic sheet filter screen 6 becomes blocked, and preventing the elastic sheet filter screen 6 from being blocked prematurely and causing a large fluctuation in the filtration efficiency; The dehumidification and desalination mechanism is used to dehumidify and desalinate the air filtered by the elastic sheet filter screen 6 during the operation of the diesel generator set 3, so as to prevent the air filtered by the elastic sheet filter screen 6 from corroding the diesel generator set 3; The elastic sheet filter screen 6 is used to restore its original shape when the diesel generator set 3 is not working and the two-way vane 8 stops rotating, so as to shake off most of the intercepted particulate impurities during the restoration of the original shape, thereby cleaning the intercepted particulate impurities when the diesel generator set 3 is not working and the two-way vane 8 stops rotating without manual cleaning, so that the filter can be kept unobstructed again immediately after the diesel generator set 3 is not working and the two-way vane 8 stops rotating, preventing the filtration effect of the particulate impurities in the air from dropping significantly due to the failure to clean the particulate impurities in time.

[0029] The elastic ball 9 is used to be driven to impact the elastic sheet filter screen 6 with a predetermined force first when the diesel generator set 3 is not working and the elastic sheet filter screen 6 has been used for a long time, so that the elastic sheet filter screen 6 undergoes elastic deformation when impacted by the predetermined force, thereby quickly separating most of the particulate impurities on the elastic sheet filter screen 6 when the diesel generator set 3 is not working and the elastic sheet filter screen 6 has been used for a long time. Then, it stays for a predetermined time after impacting the elastic sheet filter screen 6, so that the restored elastic sheet filter screen 6 is resisted and undergoes elastic deformation again, thereby successively separating the remaining particulate impurities on the elastic sheet filter screen 6 when the diesel generator set 3 is not working and the elastic sheet filter screen 6 has been used for a long time; The one-way vane 10 is used to continuously rotate and generate a downward air flow before the elastic ball 9 impacts the elastic sheet filter screen 6, so as to slap the elastic sheet filter screen 6 after the elastic sheet filter screen 6 undergoes elastic deformation and moves away from the elastic ball 9, causing the elastic sheet filter screen 6 to undergo elastic deformation reciprocally between the one-way vane 10 and the elastic ball 9, thereby increasing the shaking-off frequency of the intercepted particulate impurities by the elastic sheet filter screen 6, making all the remaining particulate impurities on the elastic sheet filter screen 6 separate, so that the particulate impurities separated from the elastic sheet filter screen 6 move downward away from the elastic sheet filter screen 6, thereby reducing the interference of the separated particulate impurities on the elastic sheet filter screen 6 and reducing the shaking-off efficiency of the remaining particulate impurities by the elastic sheet filter screen 6, and thus reducing the interference of the separated particulate impurities on the elastic sheet filter screen 6 and affecting the elastic deformation of the elastic sheet filter screen 6; The two-way blade 8 is used to be driven to continuously rotate before the elastic ball 9 impacts the elastic sheet filter screen 6 and generate a lateral air flow, so as to concentrate and accelerate the air flow in the box body 2 towards the elastic sheet filter screen 6, so as to cooperate with the downward air flow generated by the one-way blade 10 to quickly move the separated particulate impurities away from the box body 2 and the elastic sheet filter screen 6 at the same time, prevent the separated particulate impurities from adhering to the box body 2 and reducing the heat dissipation effect of the box body 2, prevent the separated particulate impurities from interfering with the elastic sheet filter screen 6 and reducing the shaking-off efficiency of the elastic sheet filter screen 6 for the remaining particulate impurities, and prevent the separated particulate impurities from interfering with the elastic sheet filter screen 6 and affecting the elastic deformation of the elastic sheet filter screen 6.

[0030] The first driving member includes a first rotating motor 11, which is arranged between the connecting frame 7 and the two-way blade 8, and the first rotating motor 11 is arranged horizontally; The second driving member includes an adapter seat 12, which is arranged on the connecting frame 7 and located between the two-way blade 8 and the elastic sheet filter screen 6. A second rotating motor 13 is arranged on the adapter seat 12; an extension rod 14, the top end of the extension rod 14 is arranged at the rotating end of the second rotating motor 13, the bottom end of the extension rod 14 is provided with an adapter block 15, and the elastic ball 9 is arranged on the right end face of the adapter block 15; The third driving member includes an adapter plate 16, which is arranged on the outer wall of the box body 2 and located on the right side of the elastic sheet filter screen 6. A third rotating motor 17 connected to the one-way blade 10 is arranged on the adapter plate 16.

[0031] The elastic sheet filter screen 6 includes elastic sheets 18, which are arranged on the box body 2 and located in the air inlet 4, and a plurality of filter holes 19 are arranged on the elastic sheets 18.

[0032] A linkage seat 20 is arranged in the air outlet 5 in a lifting manner. A lifting driving member is arranged between the linkage seat 20 and the box body 2. A net prevention device 21 is arranged on the top end surface of the linkage seat 20. A plurality of through holes 22 are arranged on the linkage seat 20 and below the net prevention device 21. An auxiliary blade 23 is arranged in the air outlet 5 and above the linkage seat 20 in a rotating manner. An auxiliary driving member is arranged between the linkage seat 20 and the auxiliary blade 23; The plurality of through holes 22 are used to facilitate the exhaust of waste gas and heat to the outside of the box body 2 when the diesel generator set 3 works to generate waste gas and heat, so as to achieve a heat dissipation effect and reduce the internal temperature of the box body 2; The net prevention device 21 is used to prevent insects outside the box body 2 from entering the box body 2 through the plurality of through holes 22 when the diesel generator set 3 is not working, and the net prevention device 21 is used to prevent sundries outside the box body 2 from blocking or passing through the plurality of through holes 22 when the diesel generator set 3 is working; The linkage seat 20 is used to be driven down by a predetermined distance when several through holes 22 fail to discharge the exhaust gas and heat generated by the operation of the diesel generator set 3 to the outside of the box body 2 in time, so as to form a heat dissipation enhancement area between the linkage seat 20 and the air outlet 5, thereby accelerating the discharge of the exhaust gas and heat generated by the operation of the diesel generator set 3 to the outside of the box body 2, thus accelerating heat dissipation and preventing the temperature inside the box body 2 from being too high; The auxiliary blade 23 is used to be continuously rotated and generate an upward air flow after the linkage seat 20 is driven down by a predetermined distance, so as to accelerate the discharge of the exhaust gas and heat generated by the operation of the diesel generator set 3 to the outside of the box body 2 through the heat dissipation enhancement area and several through holes 22 at the same time, thereby quickly and efficiently achieving a heat dissipation effect, and preventing insects or sundries outside the box body 2 from entering the box body 2 through the air outlet 5 and the heat dissipation enhancement area in sequence when a heat dissipation enhancement area is formed between the linkage seat 20 and the air outlet 5.

[0033] The lifting driving member includes a telescopic member 24, which is arranged on the bottom end surface of the linkage seat 20, and an adapter frame 25 is arranged between the telescopic member 24 and the box body 2; The auxiliary driving member includes a fourth rotating motor 26, which is arranged inside the linkage seat 20, and the rotating end of the fourth rotating motor 26 passes through the linkage seat 20 and is connected to the auxiliary blade 23.

[0034] The dehumidifying and desalting mechanism includes a processing seat 27, which is arranged on the right side of the diesel generator set 3. A horn-shaped cylinder 28 is arranged on the left side of the processing seat 27. The right end surface of the horn-shaped cylinder 28 is hermetically arranged, and the diameter of the horn-shaped cylinder 28 gradually increases from right to left. The processing seat 27 and the horn-shaped cylinder 28 are both arranged between the base 1 and the box body 2 through a connecting and sealing seat 29; A salt spray monitoring instrument 30 and a humidity sensor 31 are respectively arranged on the right end surface of the connecting and sealing seat 29. Several placing holes 32 and several circulation holes 33 are respectively arranged on the processing seat 27. A first circulation pipe 34 is communicated between the placing hole 32 and the horn-shaped cylinder 28, and a second circulation pipe 35 is communicated between the circulation hole 33 and the horn-shaped cylinder 28. A desalting member is arranged in the placing hole 32. A first opening and closing device is arranged at the right end surface of the processing seat 27 at the position of the placing hole 32, and a second opening and closing device is arranged at the right end surface of the processing seat 27 at the position of the circulation hole 33; A circulation supporting member is arranged on the inner wall of the horn-shaped cylinder 28, and a dehumidifying ball is movably arranged on the left side of the circulation supporting member in the horn-shaped cylinder 28. A driving and resisting area member connected to the dehumidifying ball is arranged between the processing seat 27 and the horn-shaped cylinder 28; The salt spray monitoring instrument 30 is used to monitor the salt spray content in the air filtered by the shrapnel filter screen 6 during the operation of the diesel generator set 3. The humidity sensor 31 is used to monitor the humidity content in the air filtered by the shrapnel filter screen 6 during the operation of the diesel generator set 3. The connecting and sealing seat 29 is used to fix the processing seat 27 and the horn 28 between the base 1 and the box body 2. The connecting and sealing seat 29 is used to allow the air filtered by the shrapnel filter screen 6 to enter the diesel generator set 3 only through several placement holes 32 or several circulation holes 33.

[0035] When the diesel generator set 3 is operating and the salt spray monitoring instrument 30 monitors that the salt spray content in the air filtered by the shrapnel filter screen 6 exceeds a predetermined value, the first opening and closing device opens and the second opening and closing device closes, so that the air filtered by the shrapnel filter screen 6 first enters the placement holes 32 only, then is treated by the desalting component to remove salt spray, and then enters the horn 28 through the first circulation pipe 34, so as to effectively and fully remove salt spray from the air filtered by the shrapnel filter screen 6 during the operation of the diesel generator set 3 and prevent the air filtered by the shrapnel filter screen 6 from corroding the diesel generator set 3; When the diesel generator set 3 is operating and the humidity sensor 31 monitors that the humidity content in the air filtered by the shrapnel filter screen 6 exceeds a predetermined value, the driving and resisting area component drives the dehumidifying ball to move to the right until the dehumidifying ball is continuously resisted by the circulation supporting and resisting component and is in the axial position of the horn 28 and forms a circulation area with the horn 28. Then, the air entering the horn 28 flows smoothly and orderly along the right end face of the dehumidifying ball to the circulation area after being collected, rectified, and guided by the circulation supporting and resisting component, so as to ensure more uniform and longer contact between the air and the dehumidifying ball, improve the dehumidification efficiency and effect of the dehumidifying ball on the air, and efficiently and fully dehumidify the air filtered by the shrapnel filter screen 6 during the operation of the diesel generator set 3 and prevent the air filtered by the shrapnel filter screen 6 from corroding the diesel generator set 3.

[0036] An air-increasing, anti-entering, supporting, and drying device is arranged in the first circulation pipe 34; When the diesel generator set 3 is operating and the salt spray monitoring instrument 30 monitors that the salt spray content in the air filtered by the shrapnel filter screen 6 exceeds a predetermined value, the air-increasing, anti-entering, supporting, and drying device opens to accelerate the air passing through the desalting component when the air is treated by the desalting component to remove salt spray, so as to improve the desalting efficiency of the desalting component on the air and meet the air required during the operation of the diesel generator set 3; When the diesel generator set 3 is operating and the salt spray monitoring instrument 30 monitors that the salt spray content in the air filtered by the shrapnel filter screen 6 does not exceed a predetermined value, the first opening and closing device closes and the second opening and closing device opens, so that the air filtered by the shrapnel filter screen 6 enters the circulation holes 33 only, and then enters the horn 28 through the second circulation pipe 35; When the diesel generator set 3 is operating, the salt spray monitoring instrument 30 monitors that the salt spray content in the air filtered by the shrapnel filter screen 6 does not exceed the predetermined value, and the humidity sensor 31 monitors that the humidity content in the air filtered by the shrapnel filter screen 6 does not exceed the predetermined value, the air inlet and moisture holding and drying device is turned on to continuously air-dry the desalting part when the air enters the horn 28 through the second flow pipe 35, thereby reducing the humidity of the desalting part and improving the ability and effect of the desalting part to remove salt spray from the air next time; When the diesel generator set 3 is operating, the salt spray monitoring instrument 30 monitors that the salt spray content in the air filtered by the shrapnel filter screen 6 does not exceed the predetermined value, and the humidity sensor 31 monitors that the humidity content in the air filtered by the shrapnel filter screen 6 exceeds the predetermined value, the air inlet and moisture holding and drying device is turned on to prevent the air from entering the desalting part through the first flow pipe 34 and causing an increase in the humidity of the desalting part when the air enters the horn 28 through the second flow pipe 35, thereby preventing the ability and effect of the desalting part to remove salt spray from the air from decreasing and being unable to remove salt spray from the air next time.

[0037] The air inlet and moisture holding and drying device includes a connecting frame 36 disposed on the inner wall of the first flow pipe 34. A fifth rotating motor 37 is disposed on the connecting frame 36, and an air inlet and moisture holding and drying blade 38 is disposed on the fifth rotating motor 37.

[0038] The desalting part includes a desalting housing 39 disposed in the placement hole 32. A desalting filler 40 is disposed in the desalting housing 39; the desalting filler 40 is a nanofiber filter medium or others; The first opening and closing device includes a first opening door 41 rotatably disposed on the right end face of the processing seat 27 and located at the placement hole 32. The first opening door 41 is connected to the processing seat 27 through a first reset member 42. A sixth rotating motor 43 is disposed on the processing seat 27. The sixth rotating motor 43 is connected to the first opening door 41 through a first connecting rope 44. A first guide wheel 46 with a first bracket 45 is disposed on the processing seat 27. The first connecting rope 44 cooperates with the first guide wheel 46; the first reset member 42 includes a first reset frame disposed on the right end face of the processing seat 27, a first reset shaft rotatably disposed on the first reset frame, the first reset shaft is connected to the first opening door 41, and the first reset frame and the first reset shaft are connected through a first torsion spring; The second opening and closing device includes a second opening and closing door 47, which is rotatably arranged on the right end face of the treatment seat 27 and located at the through hole 33. The second opening and closing door 47 is connected to the treatment seat 27 through a second reset member 48. A seventh rotating motor 49 is arranged on the treatment seat 27. The seventh rotating motor 49 is connected to the second opening and closing door 47 through a second connecting rope 50. A second guide wheel 52 with a second bracket 51 is arranged on the treatment seat 27. The second connecting rope 50 cooperates with the second guide wheel 52. The second reset member 48 includes a second reset frame arranged on the right end face of the treatment seat 27 and a second reset shaft rotatably arranged on the second reset frame. The second reset shaft is connected to the second opening and closing door 47. The second reset frame and the second reset shaft are connected through a second torsion spring. The flow holding and resisting member includes an annular flow plate 53, which is arranged on the inner wall of the horn-shaped cylinder 28. A plurality of compression springs 54 are arranged around the left end face of the annular flow plate 53. A holding and resisting plate 55 is arranged on the left end face of the compression spring 54. The driving and resisting shaped area member includes a connecting seat 56, which is arranged between the treatment seat 27 and the horn-shaped cylinder 28. An eighth rotating motor 57 is arranged on the connecting seat 56. A driving and resisting shaped area rope 58, one end of the driving and resisting shaped area rope 58 is connected to the eighth rotating motor 57, and the other end of the driving and resisting shaped area rope 58 passes through the horn-shaped cylinder 28 and is connected to the dehumidifying ball. A sealing ring is arranged between the horn-shaped cylinder 28 and the other end of the driving and resisting shaped area rope 58. The dehumidifying ball includes a spherical filter screen 59, which is movably arranged in the horn-shaped cylinder 28 and located to the left of the flow holding and resisting member. The spherical filter screen 59 is connected to the other end of the driving and resisting shaped area rope 58. A spherical desiccant packet 60 is arranged in the spherical filter screen 59.

[0039] It should be noted that in the claims, any reference signs placed between parentheses shall not be construed as limiting the claim. The word "comprising" does not exclude the presence of elements or steps not listed in the claim. The word "a" or "an" preceding an element does not exclude the presence of a plurality of such elements. The present invention can be implemented by means of hardware including several different elements and by means of a suitably programmed computer. In a unit claim listing several means, several of these means can be embodied by the same item of hardware. The use of the words first, second, and third, etc. does not denote any order. These words can be interpreted as names.

[0040] Although the preferred embodiments of the present invention have been described, those skilled in the art can make additional changes and modifications once they learn the basic creative concept. Therefore, the appended claims are intended to be construed to include the preferred embodiments as well as all changes and modifications falling within the scope of the present invention.

[0041] In the present invention, unless otherwise clearly defined or limited, terms such as "installed", "connected", "linked", "fixed", etc. shall be construed in a broad sense. For example, it may be a fixed connection, a detachable connection, or integrated; it may be a mechanical connection or an electrical connection; it may be directly connected or indirectly connected through an intermediate medium, and it may be the internal communication of two components or the interaction relationship between two components. For those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.

[0042] In the description of this specification, the description with reference to terms such as "one embodiment", "some embodiments", "example", "specific example", or "some examples", etc. means that the specific features, structures, materials, or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present invention. In this specification, the schematic expressions of the above terms should not be understood as necessarily referring to the same embodiment or example. Moreover, the specific features, structures, materials, or characteristics described can be combined in a suitable manner in any one or more embodiments or examples. In addition, without contradiction, those skilled in the art can combine and combine the different embodiments or examples described in this specification and the features of different embodiments or examples.

Claims

1. An infrared stealth housing applicable to a diesel generator set system, characterized in that: Including: A base (1), on which a box body (2) is arranged. A diesel generator set (3) is arranged in the box body (2) on the base (1). An air inlet (4) is arranged at the right end face of the box body (2). An air outlet (5) is arranged at the left side of the top end face of the box body (2). A spring filter screen (6) is arranged in the air inlet (4) on the box body (2). A connecting frame (7) is arranged on the inner wall of the box body (2) to the left of the spring filter screen (6). A two-way blade (8) is rotatably arranged on the connecting frame (7). A first driving member is arranged between the connecting frame (7) and the two-way blade (8). An elastic ball (9) is movably arranged between the two-way blade (8) and the spring filter screen (6) on the connecting frame (7). A second driving member is arranged between the elastic ball (9) and the connecting frame (7). A one-way blade (10) for generating a downward air flow is rotatably arranged on the outer wall of the box body (2) to the right of the spring filter screen (6). A third driving member is arranged between the one-way blade (10) and the box body (2). The two-way blade (8) is used to continuously rotate under drive and generate a lateral air flow during the operation of the diesel generator set (3), so that the air outside the box body (2) is concentrated and accelerated to flow towards the spring filter screen (6) and enter the box body (2). The spring filter screen (6) is used to elastically deform towards the two-way blade (8) during the operation of the diesel generator set (3) and the continuous rotation of the two-way blade (8) until it is supported by the elastic ball (9), so as to increase the area of intercepting particulate impurities in the air and effectively slow down the air flow rate. The one-way blade (10) is used to continuously rotate under drive and generate a downward air flow during the operation of the diesel generator set (3) and the continuous rotation of the two-way blade (8), so that part of the particulate impurities in the air outside the box body (2) are removed before being filtered by the spring filter screen (6). The spring filter screen (6) is used to restore its original shape when the diesel generator set (3) is not working and the two-way blade (8) stops rotating, so as to shake off most of the intercepted particulate impurities during the restoration of the original shape.

2. The infrared stealth housing applicable to a diesel generator set system according to claim 1, wherein: When the diesel generator set (3) is not working and the elastic ball (9) is driven to first impact the spring filter screen (6) with a predetermined force after the long-term use of the spring filter screen (6), the spring filter screen (6) elastically deforms when impacted by the predetermined force, and then stays for a predetermined time after impacting the spring filter screen (6), so that the spring filter screen (6) that has restored its shape is resisted and elastically deforms again. Before the elastic ball (9) impacts the spring filter screen (6), the one-way blade (10) is driven to continuously rotate and generate a downward air flow, so as to slap the spring filter screen (6) after the spring filter screen (6) elastically deforms and moves away from the elastic ball (9), so that the spring filter screen (6) elastically deforms reciprocally between the one-way blade (10) and the elastic ball (9), so that the particulate impurities separated from the spring filter screen (6) move downward away from the spring filter screen (6). Before the elastic ball (9) hits the shrapnel filter screen (6), the bidirectional blades (8) are driven to continuously rotate and generate a lateral air flow to concentrate and accelerate the air flow in the box body (2) towards the shrapnel filter screen (6), so as to cooperate with the downward air flow generated by the unidirectional blades (10) to quickly move the separated particulate impurities away from the box body (2) and the shrapnel filter screen (6) at the same time.

3. An infrared stealth housing applicable to a diesel generator set system according to claim 1, characterized in that: The first driving member includes a first rotating motor (11) disposed between the connecting frame (7) and the bidirectional blade (8), and the first rotating motor (11) is horizontally arranged.

4. An infrared stealth housing applicable to a diesel generator set system according to claim 1, characterized in that: The second driving member includes an adapter seat (12) disposed on the connecting frame (7) and located between the bidirectional blade (8) and the shrapnel filter screen (6). A second rotating motor (13) is disposed on the adapter seat (12); an extension rod (14), the top end of the extension rod (14) is disposed at the rotating end of the second rotating motor (13), the bottom end of the extension rod (14) is provided with an adapter block (15), and the elastic ball (9) is disposed on the right end face of the adapter block (15).

5. An infrared stealth housing applicable to a diesel generator set system according to claim 1, characterized in that: The third driving member includes an adapter plate (16) disposed on the outer wall of the box body (2) and located on the right side of the shrapnel filter screen (6). A third rotating motor (17) connected to the unidirectional blade (10) is disposed on the adapter plate (16).

6. An infrared stealth housing applicable to a diesel generator set system according to claim 1, characterized in that: The shrapnel filter screen (6) includes elastic pieces (18) disposed on the box body (2) and located in the air inlet (4), and a plurality of filter holes (19) are disposed on the elastic pieces (18).

7. An infrared stealth housing applicable to a diesel generator set system according to claim 1, characterized in that: A linkage seat (20) is disposed in the air outlet (5) in a lifting manner, and a lifting driving member is disposed between the linkage seat (20) and the box body (2). A anti-entering net (21) is disposed on the top end face of the linkage seat (20). A plurality of through holes (22) are disposed on the linkage seat (20) and below the anti-entering net (21). An auxiliary blade (23) is rotatably disposed in the air outlet (5) above the linkage seat (20), and an auxiliary driving member is disposed between the linkage seat (20) and the auxiliary blade (23).

8. An infrared stealth housing applicable to a diesel generator set system according to claim 7, characterized in that: The lifting driving member includes a telescopic member (24) disposed on the bottom end face of the linkage seat (20), and a connecting frame (25) is disposed between the telescopic member (24) and the box body (2); The auxiliary driving member includes a fourth rotating motor (26) disposed inside the linkage seat (20), and the rotating end of the fourth rotating motor (26) passes through the linkage seat (20) and is connected to the auxiliary blade (23).

Citation Information

Patent Citations

  • Straight-hole ceramic filter

    CN114712955A

  • Gas inlet protection system of gas turbine

    CN117703594A

  • Heat dissipation structure of wind generating set

    CN216278306U

  • Mining smelting combustion-supporting equipment with filtering function

    CN216523182U

  • Box body structure of diesel generating set

    CN221524950U