A containerized diesel generator set
The innovative design of sliding and folding panels with a T-shaped rail system addresses the maintenance challenges of containerized diesel generators by expanding operational space and simplifying lifting paths, enhancing maintenance efficiency.
Patent Information
- Application Number
- CN202510559306.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-30
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2045-04-30
AI Technical Summary
The internal layout of the traditional container diesel generator set is compact, resulting in insufficient operating space for disassembly tools and complex lifting paths, which makes maintenance personnel face difficulties.
The top slide plate split sliding and side plate tilt design are adopted, combined with the cooperation of the T-type track and the track extension section, a three-dimensional working space is formed, the lifting path is simplified, and the side plates are rotated simultaneously through the linkage components to enhance structural stability and sealing.
It improves the convenience and efficiency of maintenance and lifting, reduces dependence on lifting equipment, and enhances the waterproof and rainproof performance of the box.
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Figure CN120083596B_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of diesel generator sets, and particularly to a containerized diesel generator set. Background Art
[0002] At present, a diesel generator set is a power generation device that uses diesel as the main fuel. It uses a diesel generator as the prime mover to drive the generator to generate electricity, and is a mechanical device that converts kinetic energy into electrical energy and heat energy. As an integrated and modular power generation device, the containerized diesel generator set has been widely used in fields such as communications, data centers, oil fields, and mines in recent years. Its core design concept is to achieve efficient transportation, rapid deployment, and optimized environmental adaptability of the generator set through the standardized structure of the container.
[0003] However, for traditional containerized diesel generator sets, the internal layout of the box body is compact, and the spacing between heavy components such as diesel engines and generators is narrow, resulting in insufficient operating space for disassembly tools. The hoisting of generator set components relies on external lifting equipment, but there is a spatial interference between the hoisting opening on the top of the box and the positioning of internal equipment, increasing the complexity of the hoisting path. This makes it difficult and inconvenient for maintenance personnel to perform equipment maintenance and component replacement. Summary of the Invention
[0004] In order to improve the equipment maintenance problem of diesel generators, this application provides a containerized diesel generator set.
[0005] This application provides a containerized diesel generator set, adopting the following technical solutions:
[0006] A containerized diesel generator set includes a box body and a generator set installed in the box body. The box body includes a frame body and a conveying component installed in the frame body. The surface of the frame body is covered with a top box plate, a bottom box plate, side box plates on the left and right sides, and door components at the front and rear ends. The frame body includes a top frame, a bottom frame, and four groups of columns vertically connecting the corresponding corner points of the top and bottom frames. The top frame is formed by enclosing two transverse frame bars and two longitudinal frame bars; the generator set is fixedly installed on the bottom box plate; the top box plate includes two half-sliding plates, and the two sliding plates are slidably connected between the two longitudinal frame bars; the side box plates include two half-side plates, and the two ends of the two side plates away from each other are respectively rotatably connected to the columns; the frame body is also provided with a box door lock component for fixing the side plates when the two side plates are closed; the conveying component includes an electric hoist and a T-shaped track. The T-shaped track is fixed in the middle of the top frame and extends to the positions of the two end doors. The electric hoist is installed on the T-shaped track; a track extension section for connecting with the T-shaped track is slidably connected to the two sliding plates. When the two sliding plates move in opposite directions to the farthest ends, the track extension section slides down to form a connection with the T-shaped track.
[0007] By adopting the above technical solution, a three-dimensional working space is formed through the split sliding opening of the top slide plate and the outward turning of the side plates; the cooperation between the T-shaped track and the track extension section realizes the linear extension of the lifting path, solving the problem of interference between the top lifting opening of the traditional container and the internal equipment space.
[0008] Optionally, the track extension section includes a lower support plate and an upper support plate that are parallel to each other, and a web connecting the upper support plate and the lower support plate. The lower support plate and the web form a T-shaped structure that is connected to the T-shaped track. The web is slidably connected up and down in the slide plate. The upper support plate is located above the slide plate. Two groups of support rods are rotatably connected to the part of the web extending out of the upper end face of the slide plate. The support rods are leaned against the longitudinal frame bars; when the support rods rotate to contact the lower surface of the upper support plate, the lower support plate is in a position where it is connected to the T-shaped track; when the side plate is turned outward to the maximum position parallel to the longitudinal frame bars, the upper end face of the side plate is at the same horizontal height as the longitudinal frame bars for supporting the support rods.
[0009] By adopting the above technical solution, the double support plate structure of the track extension section and the design of the rotation of the support rods not only ensure the stability of the track connection, but also utilize the support surface after the side plates are unfolded to form a double load-bearing structure, improving the lifting safety.
[0010] Optionally, a linkage component for synchronous rotation is provided between the sides of the two side box plates.
[0011] By adopting the above technical solution, the synchronous rotation of the side plates is realized, improving the operation efficiency.
[0012] Optionally, the linkage component includes two pulleys and a crossed belt connecting the two pulleys. One end of the side plate is rotatably connected to the column through a rotating shaft, and the pulley is coaxially and fixedly connected to the lower end of the rotating shaft.
[0013] By adopting the above technical solution, the crossed belt drive design realizes two-way synchronization in a limited space.
[0014] Optionally, a sleeve is sleeved on the upper end of the rotating shaft. A limiting plate is fixedly connected between adjacent sleeves. A curve groove extending along the axial direction of the sleeve is provided on the inner peripheral side of the sleeve. A guiding column adapted to the curve groove is fixed on the outer wall of the rotating shaft; when the side plate is completely closed, the sleeve moves down along the track of the curve groove until the limiting plate blocks the sliding path of the track extension section; when the side plate is completely opened, the sleeve moves up along the track of the curve groove until the limiting plate forms an avoidance space with the moving direction of the track extension section.
[0015] By adopting the above technical solution, the cooperation between the curved groove and the guide post forms a double limiting mechanism, which not only ensures the fixation of the sliding plate and the extended section of the track when the side plate is closed, but also realizes the movement avoidance during opening, improving the structural reliability.
[0016] Optionally, on one side of the two longitudinal frame bars close to each other, a sliding groove for the sliding plate to slide is provided, and the transverse frame bar is provided with a communication port communicating with the sliding groove for the sliding plate to slide out; in the longitudinal frame bar located in the sliding groove, a sealing plate extending along the length direction of the sliding groove is provided, a sealing gasket is fixed on the side of the sealing plate close to the sliding plate, and a plurality of guide rods are vertically and fixedly connected to the side of the sealing plate away from the sealing gasket; on the sides of the two longitudinal frame bars away from each other, a connection hole communicating with the sliding groove for the guide rods to extend out is provided; when the side plate is closed and locked, the side plate pushes the guide rods to make the sealing gasket on the sealing plate abut against and seal the sliding plate.
[0017] By adopting the above technical solution, the dynamic sealing design of the sealing plate automatically presses the sealing gasket when the side plate is closed, solving the problem of rainwater leakage at the sliding gap of the traditional container.
[0018] Optionally, a waterproof pad is provided on the side of the sliding plate facing the lower support plate.
[0019] By adopting the above technical solution, the waterproof performance of the top of the box body is further enhanced.
[0020] Optionally, a reinforcing bar parallel to the transverse frame bar is fixed in the middle of the two longitudinal frame bars, and a groove for the sliding plate to insert is provided on the side wall of the reinforcing bar facing the transverse frame bar.
[0021] By adopting the above technical solution, the groove design of the reinforcing bar not only enhances the anti-deformation ability of the frame, but also provides a guiding reference for the sliding plate, ensuring the accuracy of the sliding track.
[0022] Optionally, a rainproof cloth is connected between adjacent support rods.
[0023] By adopting the above technical solution, the rainproof performance of the top of the box body is further enhanced, preventing rainwater from penetrating.
[0024] In summary, the present application includes at least one of the following beneficial effects:
[0025] By optimizing the internal layout of the box body, the operating space for disassembly tools is increased, the hoisting path is simplified, and the dependence on lifting equipment is reduced, thus significantly improving the convenience and efficiency of maintenance personnel during equipment maintenance and component replacement. BRIEF DESCRIPTION OF THE DRAWINGS
[0026] Figure 1 is the overall structural schematic diagram of this embodiment;
[0027] Figure 2It is a schematic structural diagram of the box body expansion in this embodiment;
[0028] Figure 3 It is a side view of the box body expansion in this embodiment;
[0029] Figure 4 It is a schematic cross-sectional view showing the track extension section in this embodiment;
[0030] Figure 5 It is a schematic structural diagram showing the conveying component in this embodiment;
[0031] Figure 6 It is a schematic diagram showing the connection relationship between the track extension section and the sliding plate in this embodiment;
[0032] Figure 7 It is a partial schematic diagram showing the side plate linkage structure in this embodiment;
[0033] Figure 8 It is a schematic cross-sectional view of the sleeve and the rotating shaft in this embodiment;
[0034] Figure 9 It is an exploded schematic diagram showing the sealing plate in this embodiment.
[0035] Explanation of reference numerals: 1. Box body; 2. Generator set; 3. Frame body; 4. Conveying component; 5. Top box plate; 6. Bottom box plate; 7. Side box plate; 8. Door assembly of the box; 9. Lock assembly of the box door; 13. Top frame; 14. Bottom frame; 15. Column; 16. Horizontal frame bar; 17. Vertical frame bar; 18. Sliding plate; 19. Chute; 20. Communication port; 21. Side plate; 22. Electric hoist; 23. T-shaped track; 24. Track extension section; 25. Lower support plate; 26. Upper support plate; 27. Web; 28. Support rod; 29. Pulley; 30. Cross belt; 31. Rotating shaft; 32. Sleeve; 33. Limiting plate; 34. Curved groove; 35. Guide post; 36. Sealing plate; 37. Sealing gasket; 38. Guide rod; 39. Connection hole; 40. Reinforcing strip; 41. Groove; 44. Rainproof cloth; 45. Strip-shaped groove; 46. Embedded groove. Detailed implementation manners
[0036] The following further elaborates on this application with reference to the accompanying drawings.
[0037] This embodiment provides a containerized diesel generator set, the core of which is to improve the convenience of maintenance and hoisting of the diesel generator set by optimizing the internal layout of the box body and the hoisting path.
[0038] Refer to Figure 1 、 2, The container structure for a diesel generator set includes a box body 1 and a generator set 2 installed inside the box body 1. The box body 1 includes a frame body 3 and a conveying component 4 installed inside the frame body 3. The conveying component 4 is used to hoist relevant components during the maintenance of the generator set 2.
[0039] Refer to Figure 1 , 2 , The surface of the frame body 3 is covered with a top box plate 5, a bottom box plate 6, side box plates 7 on the left and right sides, and a box door assembly 8 at the front and rear ends. The frame body 3 includes a top frame 13, a bottom frame 14, and four columns 15 vertically connecting the corresponding corner points of the top frame 13 and the bottom frame 14. The top frame 13 is formed by enclosing two transverse frame bars 16 and two longitudinal frame bars 17, forming a stable top support structure. The generator set 2 is fixedly installed on the bottom box plate 6.
[0040] Refer to Figure 2 , 3 , 4, the top box plate 5 is composed of two sliding plates 18. The sliding plates 18 are slidably connected between the two longitudinal frame bars 17. Specifically, on the side of the two longitudinal frame bars 17 close to each other, there are sliding grooves 19 for the sliding plates 18 to slide, and the transverse frame bar 16 is provided with a communication port 20 communicating with the sliding grooves 19 for the sliding plates 18 to slide out. This enables the sliding plates 18 to slide smoothly along the sliding grooves 19, so that the top box plate 5 can be opened when needed to form a larger working space.
[0041] Refer to Figure 1 , 2 , The side box plate 7 is composed of two side plates 21. One end of the two side plates 21 away from each other is rotatably connected to the column 15 respectively. When the side plates 21 are closed, they are fixed by a box door lock assembly 9. The box door lock assembly 9 includes a lock rod rotatably connected to the side plate 21, lock heads fixed at the upper and lower ends of the lock rod, and a lock seat fixed on the frame body 3. The locking and opening of the lock head and the lock seat are driven by the rotation of the lock rod. This box door lock assembly 9 is a prior art, so it will not be elaborated in this application.
[0042] Refer to Figure 5 , The conveying component 4 includes an electric hoist 22 and a T-shaped track 23. The T-shaped track 23 is fixed in the middle of the top frame 13 and extends to the positions of the two end box doors. The electric hoist 22 is installed on the T-shaped track 23 and can move along the T-shaped track 23, thus facilitating the hoisting operation of the generator set 2.
[0043] Refer to Figure 4 , 5 , A track extension section 24 for connecting with the T-shaped track 23 is slidably connected to the two sliding plates 18. When the two sliding plates 18 move to the farthest ends in opposite directions, the track extension section 24 slides down to form a connection with the T-shaped track 23, thereby expanding the moving range of the electric hoist 22.
[0044] Referring to Figure 5 and 6 , specifically, the track extension section 24 includes a lower support plate 25 and an upper support plate 26 that are parallel to each other, and a web 27 fixedly connecting the upper support plate 26 and the lower support plate 25. The lower support plate 25 and the web 27 form a T-shaped structure that connects to the T-shaped track 23, ensuring the stability of the connection. A strip-shaped groove 45 for the sliding connection of the web 27 is provided on the skateboard 18, and the web 27 is slidably connected up and down in the strip-shaped groove 45 of the skateboard 18, and the upper support plate 26 is located above the skateboard 18. Two groups of support rods 28 are rotatably connected to the part of the web 27 extending out of the upper end surface of the skateboard 18. The number of support rods 28 in each group is at least two and extends along the length direction of the web 27. One end of the support rod 28 rests on the longitudinal frame bar 17. The transverse frame bar 16 is provided with a notch for the web 27 to slide out.
[0045] Referring to Figure 2 and 6 , when the support rod 28 rotates to contact the lower surface of the upper support plate 26, the support rod 28 is in a horizontal position, and the lower support plate 25 is in a position where it connects to the T-shaped track 23. When the side plate 21 is turned outwards to the maximum position parallel to the longitudinal frame bar 17, the upper end surface of the side plate 21 is at the same horizontal height as the longitudinal frame bar 17. At this time, the support rod 28 can rest on the side plate 21, thereby enhancing the stability of the track extension section 24.
[0046] When it is necessary to hoist the components of the generator set 2, the skateboard 18 slides to the farthest end, and the track extension section 24 slides down to connect with the T-shaped track 23. The electric hoist 22 hoists the components of the generator set 2 out of the box along the T-shaped track 23 and the track extension section 24 to complete the hoisting operation. When maintenance is required, the side plate 21 is turned outwards to a position parallel to the longitudinal frame bar 17, and maintenance personnel can enter the interior of the box 1 through the box door to perform equipment maintenance and component replacement.
[0047] Referring to Figure 7 , in order to further improve the operation efficiency, a linkage assembly for synchronous rotation is provided between the sides of the two side box plates 7. The linkage assembly includes two belt pulleys 29 and a cross belt 30 connecting the two belt pulleys 29. One end of the side plate 21 is rotatably connected to the column 15 through a rotating shaft 31, and the belt pulley 29 is coaxially and fixedly connected to the lower end of the rotating shaft 31. Such a design realizes the synchronous rotation of the side plate 21. By operating only one side of the side plate 21, the other side of the side plate 21 can rotate synchronously. In other embodiments, the linkage assembly can also be replaced by a bevel gear set, that is, through a linkage rod rotatably connected to the bottom frame 14, main bevel gears are coaxially fixed at both ends of the linkage rod, and a sub-bevel gear meshing with the main bevel gear is fixedly connected to the bottom of the rotating shaft 31 of the side plate 21, thereby forming a linkage between the two side plates 21.
[0048] Reference Figure 7 、 8 At the upper end of the rotating shaft 31, a sleeve 32 is sleeved, and a limiting plate 33 is fixedly connected between two sleeves 32 on adjacent sides. A curved groove 34 extending along the axial direction of the sleeve 32 is provided on the inner circumferential side of the sleeve 32, and a guiding post 35 adapted to the curved groove 34 is fixed on the outer wall of the rotating shaft 31. When the rotating shaft 31 rotates, driven by the guiding post 35, the sleeve 32 will slide up and down along the track of the curved groove 34.
[0049] Reference Figure 1 、 2 When the side plate 21 is completely closed, the sleeve 32 moves down along the track of the curved groove 34 until the limiting plate 33 blocks the sliding path of the track extension section 24, thereby preventing the track extension section 24 and the sliding plate 18 from accidentally sliding during transportation and use. When the side plate 21 is completely opened to a position parallel to the longitudinal frame bar 17, the sleeve 32 moves up along the track of the curved groove 34 until the limiting plate 33 forms an avoidance space with the moving direction of the track extension section 24, allowing the sliding plate 18 and the track extension section 24 to pass through together. In other embodiments, the curved groove 34 can also be replaced by an inclined groove with a certain upward inclination angle, and the inclination angle of the inclined groove satisfies the moving distance of the limiting plate.
[0050] Reference Figure 9 In order to enhance the sealing performance of the box body 1, a sealing plate 36 extending along the length direction of the sliding groove 19 is provided in the longitudinal frame bar 17 located in the sliding groove 19. A sealing gasket 37 is fixed on the side of the sealing plate 36 close to the sliding plate 18, and a plurality of guiding rods 38 are vertically fixedly connected to the side of the sealing plate 36 away from the sealing gasket 37. Connecting holes 39 communicating with the sliding groove 19 for the guiding rods 38 to extend out are provided on the sides of the two longitudinal frame bars 17 away from each other, and the guiding rods 38 are slidably connected in the connecting holes 39. When the side plate 21 is closed and locked, the side plate 21 pushes the guiding rods 38, so that the sealing gasket 37 on the sealing plate 36 abuts tightly against the side wall of the sliding plate 18 for sealing, thereby preventing rainwater from leaking.
[0051] Reference Figure 2 In the middle of the two longitudinal frame bars 17, a reinforcing bar 40 parallel to the transverse frame bar 16 is fixed, and a groove 41 for inserting the sliding plate 18 is provided on the side wall of the reinforcing bar 40 facing the transverse frame bar 16. The design of the reinforcing bar 40 and the groove 41 not only enhances the anti-deformation ability of the frame, but also provides a guiding reference for the sliding plate 18 to ensure the accuracy of the sliding track. A rubber pad is installed at the bottom of the groove 41 to improve the sealing between the sliding plate 18 and the reinforcing bar 40.
[0052] In addition, reference Figure 6, on one side of the skateboard 18 facing the lower support plate 25, an embedding groove 46 for the lower support plate 25 to enter is provided. The embedding groove 46 is communicated with the strip groove 45. A waterproof pad is arranged in the embedding groove 46, further enhancing the waterproof performance of the top of the box body 1. In this embodiment, the waterproof pad, the sealing pad 37, and the rubber pad can all be made of materials with sealing and waterproof functions such as rubber.
[0053] Refer to Figure 6 , a rainproof cloth 44 is also connected between adjacent support rods 28, further enhancing the rainproof performance of the top of the box body 1 and preventing rainwater from penetrating into the interior of the box body 1. At the same time, after the skateboard 18 is retracted into the top frame 13 and sealed, the support rod 28 is in a state of being inclined and leaning on the top frame 13. At this time, the rainproof cloth 44 is in an inclined state, which is convenient for water drainage and reduces the staying time of rainwater on the top box plate 5.
[0054] The implementation steps of an embodiment of a containerized diesel generator set in this application are as follows:
[0055] 1. Open the side plate 21: Flip the side plate 21 outwards so that it is parallel to the longitudinal frame bar 17 to form a larger operation space.
[0056] 2. Slide the skateboard 18: Slide the two skateboards 18 of the top box plate 5 along the longitudinal frame bar 17 until the skateboard 18 slides to the farthest end, providing enough space for the hoisting operation. At the same time, the track extension section 24 is connected to the T-shaped track 23.
[0057] 3. Hoisting operation: Use the electric hoist 22 to move along the T-shaped track 23 to the hoisting position, hoist the components of the diesel generator set 2, and hoist the unit components outside the box body 1 through the track extension section 24.
[0058] 4. Lift the track extension section 24: After the hoisting is completed, lift the track extension section 24 to separate it from the T-shaped track 23 and restore it to the initial position.
[0059] 5. Recover the skateboard 18: Slide the skateboard 18 back to its original position to ensure that the top box plate 5 is closed.
[0060] 6. Close the side plate 21: Flip the side plate 21 back to its original position and fix it through the box door lock assembly 9.
[0061] The above are all the preferred embodiments of this application. The protection scope of this application is not limited by this. Therefore, all equivalent changes made according to the structure, shape, and principle of this application should be covered within the protection scope of this application.
Claims
1. A containerized diesel generator set, comprising a box body (1) and a generator set (2) installed in the box body (1), characterized in that: The box body (1) includes a frame body (3) and a conveying component (4) installed inside the frame body (3). The surface of the frame body (3) is covered with a top box plate (5), a bottom box plate (6), side box plates (7) on the left and right sides, and door components (8) at the front and rear ends. The frame body (3) includes a top frame (13), a bottom frame (14), and four columns (15) vertically connecting the corresponding corner points of the top and bottom frames (14). The top frame (13) is enclosed by two transverse frame bars (16) and two longitudinal frame bars (17). The generator set (2) is fixedly installed on the bottom box plate (6). The top box plate (5) includes two half-sliding plates (18). The two sliding plates (18) are slidably connected between the two longitudinal frame bars (17). The side box plate (7) includes two half-side plates (21). One end of each of the two side plates (21) away from each other is rotatably connected to the column (15). A box door lock assembly (9) for fixing the side plates (21) is further provided on the frame body (3) when the two side plates (21) are closed. The conveying component (4) includes an electric hoist (22) and a T-shaped track (23). The T-shaped track (23) is fixed in the middle of the top frame (13) and extends to the positions of the two end doors. The electric hoist (22) is installed on the T-shaped track (23). A track extension section (24) for connecting with the T-shaped track (23) is slidably connected to the two sliding plates (18). When the two sliding plates (18) move in opposite directions to the farthest ends, the track extension section (24) slides down to form a connection with the T-shaped track (23). The track extension section (24) includes a lower support plate (25) and an upper support plate (26) parallel to each other, and a web (27) fixedly connecting the upper support plate (26) and the lower support plate (25). The lower support plate (25) and the web (27) form a T-shaped structure for connecting with the T-shaped track (23). The web (27) is slidably connected up and down in the sliding plate (18). The upper support plate (26) is located above the sliding plate (18). Two groups of support rods (28) are rotatably connected to the part of the web (27) extending out of the upper end surface of the sliding plate (18). The support rods (28) are leaned against the longitudinal frame bars (17). When the support rods (28) rotate to contact the lower surface of the upper support plate (26), the lower support plate (25) is in a position where it forms a connection with the T-shaped track (23). When the side plate (21) is turned outwards to the maximum position parallel to the longitudinal frame bar (17), the upper end surface of the side plate (21) is at the same horizontal height as the longitudinal frame bar (17) for supporting the support rods (28).
2. A containerized diesel generator set according to claim 1, characterized in that: A linkage component for synchronous rotation is provided between the sides of the two side box plates (7).
3. A containerized diesel generator set according to claim 2, characterized in that: The linkage component includes two belt pulleys (29) and a crossed belt (30) connected between the two belt pulleys (29). One end of the side plate (21) is rotatably connected to the column (15) through a rotating shaft (31). The belt pulley (29) is coaxially and fixedly connected to the lower end of the rotating shaft (31).
4. A containerized diesel generator set according to claim 3, characterized in that: A sleeve (32) is sleeved on the upper end of the rotating shaft (31). A limiting plate (33) is fixedly connected between two adjacent sleeves (32). A curved groove (34) extending along the axial direction of the sleeve (32) is formed on the inner peripheral side of the sleeve (32). A guiding column (35) adapted to the curved groove (34) is fixed on the outer wall of the rotating shaft (31). When the side plate (21) is completely closed, the sleeve (32) moves downward along the track of the curved groove (34) until the limiting plate (33) blocks the sliding path of the track extension section (24). When the side plate (21) is completely opened, the sleeve (32) moves upward along the track of the curved groove (34) until a clearance space is formed between the limiting plate (33) and the moving direction of the track extension section (24).
5. A containerized diesel generator set according to claim 1, characterized in that: Chute grooves (19) for the sliding plate (18) to slide are formed on one side of two adjacent longitudinal frame bars (17) close to each other. A communication port (20) communicating with the chute groove (19) for the sliding plate (18) to slide out is formed on the transverse frame bar (16). A sealing plate (36) extending along the length direction of the chute groove (19) is arranged in the chute groove (19) of the longitudinal frame bar (17). A sealing gasket (37) is fixed on one side of the sealing plate (36) close to the sliding plate (18). A plurality of guiding rods (38) are vertically fixedly connected to one side of the sealing plate (36) away from the sealing gasket (37). Connection holes (39) communicating with the chute groove (19) for the guiding rods (38) to extend out are formed on one side of two longitudinal frame bars (17) away from each other. When the side plate (21) is closed and locked, the side plate (21) pushes the guiding rods (38) to make the sealing gasket (37) on the sealing plate (36) press tightly against the sliding plate (18) for sealing.
6. A containerized diesel generator set according to claim 1, characterized in that: A waterproof pad is arranged on one side of the sliding plate (18) facing the lower support plate (25).
7. A containerized diesel generator set according to claim 6, characterized in that: Reinforcing bars (40) parallel to the transverse frame bar (16) are fixed in the middle of two adjacent longitudinal frame bars (17). Grooves (41) for the sliding plate (18) to be inserted are formed on the side wall of the reinforcing bar (40) facing the transverse frame bar (16).
8. A containerized diesel generator set according to claim 1, characterized in that: A rainproof cloth (44) is connected between adjacent support rods (28).
Citation Information
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