Supporting device of container type generator set
By combining guide rails, guide rods, sliders, support rings, and support plates, the stability problem of the crossbeam of the containerized generator set during sliding and fixing is solved, realizing the stable installation and position adjustment of the crossbeam to meet the needs of different models of generator sets.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- XIAMEN AOSIF POWER TECHNOLOGY CO LTD
- Filing Date
- 2026-03-02
- Publication Date
- 2026-04-21
AI Technical Summary
The crossbeams of existing containerized generator sets are difficult to maintain a stable fixed state during sliding and fixing processes, and cannot meet the installation requirements of different models of generator sets.
The system employs a combination structure of guide rails, guide rods, sliders, support rings, and support plates. The crossbeam is stably fixed by the compression of springs and the contact of support rings. The limiting function of support plates and pressure strips ensures that the crossbeam is stably installed on the guide rails and guide rods.
It achieves stable fixing and position adjustment of the crossbeam, adapts to the installation requirements of different generator sets, ensures that the crossbeam remains stable in any position, and facilitates fine-tuning and overall adjustment.
Smart Images

Figure CN121897458A_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of containerized generator set installation, and in particular to a support device for a containerized generator set. Background Technology
[0002] Containerized low-noise generator sets are industrial equipment that house generator sets within customized containers. The fully enclosed container structure provides protection against rain, snow, and dust, enabling stable operation even in harsh environments.
[0003] The generator set is installed inside the container. Multiple crossbeams are installed on the same horizontal plane inside the container to support the generator or terminals. The crossbeams can be fixed or sliding and can be equipped with guide rails to allow the crossbeams to slide smoothly. The spacing between adjacent crossbeams can be changed to accommodate different generator models.
[0004] Before the generator is installed on the crossbeam, it can slide and stop freely on the guide rail by pushing the crossbeam. The crossbeam is generally fixed on the guide rail by the friction between itself and the guide rail. After the generator or terminal is installed on the crossbeam, the crossbeam remains stationary. Summary of the Invention
[0005] In order to maintain a better fixed state when the crossbeam stops sliding, this application provides a support device for a containerized generator set.
[0006] This application provides a support device for a containerized generator set, which adopts the following technical solution: A support device for a containerized generator set, installed inside a container, includes: Guide rails are symmetrically installed on the inner wall of the container; Multiple crossbeams are provided, and each end of the crossbeam is connected to an abutment block, which is slidably mounted on the upper surface of the guide rail. A guide rod connected end to end, the guide rod including a support section, the extension direction of the support section being the same as the length direction of the guide rail; A slider is slidably mounted on the guide rod, and the slider is arranged along the extension direction of the guide rod; A support ring and a slider are located inside the support ring. A spring is connected between the support ring and the slider. When the slider of the crossbeam is grounded on the guide rail, the crossbeam presses down on part of the support ring. The spring inside the pressed support ring is compressed, and the support ring located outside the crossbeam is attached to the side wall of the crossbeam. A support plate is located below the guide rod and extends along the length of the guide rail. The support plate is fixedly installed on the inner wall of the container by a connecting rod. After the support ring compresses the spring, it slides into the support plate from one end along the length of the support plate, and the support ring at the other end along the length of the support plate slides away from the support plate.
[0007] By adopting the above technical solution, the abutment block of the crossbeam is slidably installed on the upper end surface of the guide rail, so the crossbeam can move upward away from the guide rail and fall on any position on the guide rail as needed. When the abutment block of the crossbeam falls on the guide rail, the crossbeam presses down on the support ring, the spring is compressed and the support ring moves downward, the support ring outside the crossbeam fits against the side wall of the crossbeam, and the crossbeam is embedded in the guide rod. The support plate serves to support the entire guide rod, the slider on the guide rod, and the support ring. The spring inside the support ring, which is in contact with the support plate, is also in a compressed state. If the slider needs to slide, the support ring located outside the support plate and closest to the support plate must be pressed to make the support ring slide into the support plate, so that the slider on the entire guide rod can be pushed to move in a cycle. Therefore, the support plate can also limit the slider, so that the slider will not easily move on the guide rod. When the crossbeam falls into the guide rail and the guide rod, the horizontal position of the crossbeam is limited, thus determining the installation position of the crossbeam. When it stops sliding, it is fixed in the horizontal direction. Since the slider cannot slide at will, a stable fixing effect can be maintained. When the generator or terminal block is not installed on the crossbeam, the position of the crossbeam can be adjusted by directly lifting the crossbeam upwards and then lowering it into the determined position. The crossbeam presses down on the corresponding support ring. If it is necessary to fine-tune the crossbeam or all the crossbeams, the support ring is pressed down to make it slide into the support plate from one end, so that all the sliders move along the length of the guide rail and change the position of all the crossbeams. Both the guide rail and the guide rod serve to support and guide the sliding of the crossbeam, and can be adapted to the installation requirements of different models of generator sets.
[0008] Optionally, the support segment has two sections, which are distributed vertically. The guide rod also includes two semi-circular transition sections, the two ends of which are respectively connected to one of the support segments. The support plate is in contact with the support ring on the lower support segment.
[0009] By adopting the above technical solution, the guide rod is spliced together by two support sections and two transition sections to form a closed loop.
[0010] Optionally, the two ends of the transition section are connected to insert rods, and the end of the support section is provided with an insertion hole, into which the insert rod is inserted.
[0011] By adopting the above technical solution, the transition section and the support section are spliced and fixed, and the slider on the guide rod can be replaced.
[0012] Optionally, the crossbeam has a through slot, and both support sections and the support plate pass through the through slot. The support plate and the bottom wall of the through slot are always spaced apart. The support ring of the upper support section contacts the top wall of the through slot and the vertical side walls.
[0013] By adopting the above technical solution, the support ring contacts the top wall of the slot and the vertical side walls, and the crossbeam limits the guide rod through the slot, so that the two support sections maintain a vertical vertical distribution.
[0014] Optionally, the side wall of the support plate is provided with a positioning groove, and a pressure strip is rotatably installed on the outer wall of the crossbeam. Rotating the pressure strip drives the pressure strip to rotate onto the positioning groove.
[0015] By adopting the above technical solution, the beam is limited in the vertical direction by inserting the pressure strip into the positioning groove.
[0016] Optionally, the pressure strip is an arc-shaped strip structure.
[0017] By adopting the above technical solution, the pressure strip can rotate around its own central axis and enter the positioning groove.
[0018] Optionally, the upper and lower support rings located within the groove abut against each other.
[0019] By adopting the above technical solution, the crossbeam applies force to the support plate through the upper and lower support rings, and the springs on the support rings can also provide a certain buffering effect for the crossbeam.
[0020] Optionally, the inner wall of the support ring is connected to a mounting rod, the spring is sleeved on the mounting rod, and the mounting rod and the slider are inserted into each other.
[0021] By adopting the above technical solution, the insertion rod can guide the support ring to maintain stable up and down movement.
[0022] Optionally, the connecting rods are installed at both ends along the length of the support section, and the plurality of crossbeams are located between the connecting rods.
[0023] By adopting the above technical solution, the horizontal movement range of the crossbeam is limited.
[0024] In summary, this application includes at least one of the following beneficial effects: 1. When the crossbeam and the support ring come into contact and are pressed down, the horizontal position of the crossbeam is fixed. Then, by rotating the pressure strip, the vertical movement of the crossbeam is also limited, so that the crossbeam can be stably installed between the guide rail and the guide rod. 2. The crossbeams can be placed at any position on the guide rail, allowing the position adjustments of multiple crossbeams to be independent of each other, or they can be adjusted uniformly along with the sliding of the slider. Attached Figure Description
[0025] Figure 1 This is a schematic diagram of the overall structure of the embodiment of this application installed inside a container; Figure 2 This is a schematic diagram of the overall structure of the support device according to an embodiment of this application; Figure 3 This is a schematic cross-sectional view of the guide rail according to an embodiment of this application; Figure 4 This is a partial exploded view of an embodiment of this application; Figure 5 This is a schematic diagram illustrating the overall structure of the support plate and support ring in an embodiment of this application; Figure 6 yes Figure 3 Enlarged view of point B; Figure 7 This is a cross-sectional view illustrating the support ring located within the through groove in an embodiment of this application; Figure 8 yes Figure 2 Enlarged view of point A.
[0026] Explanation of reference numerals in the attached drawings: 10, container; 20, guide rail; 30, crossbeam; 31, through groove; 32, protrusion; 33, pressure strip; 40, abutment block; 50, guide rod; 51, support section; 511, insertion hole; 52, transition section; 521, insertion rod; 53, slide groove; 60, slider; 61, clearance groove; 62, slide rod; 70, support ring; 71, spring; 72, mounting rod; 80, support plate; 81, connecting rod; 82, arc groove; 83, positioning groove. Detailed Implementation
[0027] The following is in conjunction with the appendix Figures 1-8 This application will be described in further detail.
[0028] This application discloses a support device for a containerized generator set. (Refer to...) Figure 1 and Figure 2 A support device for a containerized generator set is installed inside a container 10, including a guide rail 20 and a crossbeam 30. The guide rail 20 is symmetrically installed on the inner wall of the container 10 and, after installation, forms a rectangular strip structure protruding from the inner wall of the container 10. The crossbeam 30 is also a rectangular strip structure, and multiple crossbeams are provided. The two ends of the crossbeam 30 in the length direction are respectively connected to abutment blocks 40. The abutment blocks 40 slide on the upper surface of the guide rail 20, and the crossbeam 30 can move upward away from the guide rail 20.
[0029] Furthermore, refer to Figure 2 and Figure 3 A guide rod 50 is provided between the two guide rails 20, which are connected end to end. The guide rod 50 includes two support sections 51 and two transition sections 52. The length direction of the support section 51 is the same as that of the guide rail 20. The transition section 52 has a semi-circular ring structure. The two ends of the transition section 52 are connected to the insertion rod 521. The end of the support section 51 is provided with an insertion hole 511. The insertion rod 521 is inserted into the insertion hole 511. The guide rod 50 forms a closed ring.
[0030] Reference Figure 4 A slider 60 is slidably mounted on the guide rod 50. The slider 60 has a clearance groove 61, and two sliding rods 62 are connected to the inner walls of opposite sides of the clearance groove 61. The guide rod 50 also has sliding grooves 53 on opposite sides for the sliding rods 62. Both the guide rod 50 and the slider 60 are made of deformable plastic. When the slider 60 slides on the guide rod 50, it has a slight deformation capability to better accommodate the sliding of the slider 60 in the transition section 52. The slider 60 has a cuboid structure and is partially chamfered. The sliders 60 are arranged and mounted on the guide rod 50, with adjacent sliders 60 in contact with each other. A support ring 70 is fitted onto the slider 60, and the slider 60 is located inside the support ring 70. The slider 60 and the support ring 70 are connected by a spring 71. A mounting rod 72 is installed on the inner wall of the support ring 70, and the spring 71 is sleeved on the mounting rod 72. One end of the mounting rod 72 is always inserted into the slider 60, sliding and engaging within the slider 60 as the support ring 70 moves. The slider 60 can only slide along the extension direction of the guide rod 50. The spring 71 connected to the mounting ring of the upper support section 51 is located above the slider 60. When the slider 60 slides along the guide rod 50 to the lower support section 51, the spring 71 is located below the slider 60.
[0031] Reference Figure 5 A support plate 80 is installed below the guide rod 50. The length direction of the support plate 80 is the same as that of the guide rail 20. Both ends of the support plate 80 are connected to connecting rods 81, which are fixedly installed on the inner wall of the container 10, providing support and fixation for the support plate 80. The upper surface of the support plate 80 contacts a portion of the support ring 70 on the lower support section 51. An arc groove 82 is formed on the upper surface of the support plate 80 for mating with the outer wall of the support ring 70.
[0032] Since the guide rod 50 abuts against the support plate 80 through the support ring 70, the support plate 80 supports and guides the entire guide rod 50, as well as the slider 60 and support ring 70 on the guide rod 50. Therefore, the support ring 70, which is in contact with the support plate 80, compresses the spring 71 and pushes the slider 60. When the support ring 70 approaches the support plate 80, the center height of the support ring 70 outside the support plate 80 is lower than the center height of the support ring 70 inside the support plate 80. The slider 60 can only continue to move after the support ring 70 is pushed upward (compressing the spring 71). The support ring 70 slides into the support plate 80 along with the slider 60. Therefore, the support plate 80 also plays a certain limiting role for the slider 60.
[0033] Reference Figure 6 The crossbeam 30 has a through slot 31 through which both support sections 51 and the support plate 80 pass. A gap is always maintained between the support plate 80 and the bottom wall of the through slot 31. All crossbeams 30 are located between the connecting rods 81 at both ends of the support plate 80, thus limiting the horizontal range of motion of the crossbeams 30. When the crossbeam 30 rests on the upper support section 51, the support ring 70 on the upper support section 51 is located within the through slot 31 and is pressed down, causing the upper and lower support rings 70 within the through slot 31 to abut against each other. The support plate 80 can also indirectly support the crossbeam 30.
[0034] Reference Figure 7 When the support ring 70 is located in the through groove 31, the two vertical sidewalls of the support ring 70 and the through groove 31 are tangent to each other. The through groove 31 plays a limiting role on the entire guide rod 50, so that the two support sections 51 are kept vertically distributed and parallel to each other.
[0035] Reference Figure 6 and Figure 7 When the abutting block 40 of the crossbeam 30 abuts against the guide rail 20, the crossbeam 30 presses down on the support ring 70, and the support ring 70 located in the through groove 31 is an integer multiple. In this embodiment, the crossbeam 30 presses down on only one support ring 70. The support ring 70 located outside the through groove 31 and closest to the crossbeam 30 abuts against the outer wall of the crossbeam 30, thereby limiting the crossbeam 30, so that the crossbeam 30 is supported by the guide rod 50 and the guide rail 20 while also being limited.
[0036] When adjusting the position of the crossbeam 30 on the guide rail 20, it is generally done by lifting the crossbeam 30 directly, rather than pushing the slider 60. If fine-tuning of the crossbeam 30 is required, manually press the support ring 70 closest to the door end of the support plate 80 upwards while pushing the support ring 70 into the upper surface of the support plate 80. The support ring 70 can be partially inside the support plate 80 and partially outside the support plate 80, thus achieving the fine-tuning function.
[0037] Reference Figure 8A protrusion 32 is connected to the outer wall of the crossbeam 30. An arc-shaped pressure strip 33 is rotatably installed inside the protrusion 32. When the pressure strip 33 is manually pushed, it rotates around its own central axis. A positioning groove 83 is provided on the side wall of the support plate 80. The positioning groove 83 extends along the length of the support plate 80. Rotating the pressure strip 33 drives it into the positioning groove 83. The pressure strip 33 has the function of limiting the upper and lower positions of the crossbeam 30.
[0038] The implementation principle of a support device for a containerized generator set in this application embodiment is as follows: When the abutting block 40 abuts against the guide rail 20 and the crossbeam 30 presses down on the support ring 70, the support ring 70 outside the crossbeam 30 fits against the side wall of the crossbeam 30 to achieve horizontal limitation; the support plate 80 below the guide rod 50 is fixed to the inner wall of the container 10, which provides support and limitation for the guide rod 50, the slider 60 and the support ring 70; rotating the arc-shaped pressure strip 33 on the outer wall of the crossbeam 30 can press down the support ring 70 to limit the up and down movement of the crossbeam 30, so as to realize the independent or overall flexible adjustment of the position of the crossbeam 30, adapt to the installation requirements of different models of generator sets, and maintain a stable and fixed state after adjustment.
[0039] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.
Claims
1. A support device for a containerized generator set, characterized in that, Installed inside container (10), including: Guide rails (20) are symmetrically installed on the inner wall of the container (10); A crossbeam (30) is provided in multiple parts, and abutment blocks (40) are respectively connected to both ends of the crossbeam (30). The abutment blocks (40) are slidably installed on the upper end surface of the guide rail (20). The guide rod (50) is connected end to end. The guide rod (50) includes a support section (51). The extension direction of the support section (51) is the same as the length direction of the guide rail (20). A slider (60) is slidably mounted on the guide rod (50), and the slider (60) is arranged along the extension direction of the guide rod (50); A support ring (70) and a slider (60) are located inside the support ring (70). A spring (71) is connected between the support ring (70) and the slider (60). When the slider (60) of the crossbeam (30) is grounded on the guide rail (20), the crossbeam (30) presses down on part of the support ring (70). The spring (71) inside the pressed support ring (70) is compressed, and the support ring (70) located outside the crossbeam (30) is attached to the side wall of the crossbeam (30). A support plate (80) is located below the guide rod (50). The support plate (80) extends along the length direction of the guide rail (20). The support plate (80) is fixedly installed on the inner wall of the container (10) by a connecting rod (81). After the support ring (70) compresses the spring (71), it slides into the support plate (80) from one end in the length direction. The support ring (70) at the other end of the support plate (80) slides away from the support plate (80).
2. The support device for a containerized generator set according to claim 1, characterized in that, The support section (51) has two sections, and the two support sections (51) are distributed vertically. The guide rod (50) also includes two semi-circular transition sections (52), the two ends of which are connected to one of the support sections (51) respectively. The support plate (80) is in contact with the support ring (70) on the support section (51) located below.
3. The support device for a containerized generator set according to claim 2, characterized in that, The two ends of the transition section (52) are connected to the insertion rods (521), and the end of the support section (51) is provided with the insertion hole (511), and the insertion rods (521) are inserted into the insertion hole (511).
4. The support device for a containerized generator set according to claim 2, characterized in that, The crossbeam (30) has a through groove (31), and both support sections (51) and the support plate (80) pass through the through groove (31). The bottom wall of the support plate (80) and the through groove (31) always maintains a gap. The support ring (70) of the upper support section (51) contacts the top wall of the through groove (31) and the vertical side walls.
5. The support device for a containerized generator set according to claim 4, characterized in that, The side wall of the support plate (80) is provided with a positioning groove (83), and the outer wall of the crossbeam (30) is rotatably installed with a pressure strip (33). Rotating the pressure strip (33) drives the pressure strip (33) to rotate onto the positioning groove (83).
6. The support device for a containerized generator set according to claim 5, characterized in that, The pressure strip (33) has an arc-shaped structure.
7. The support device for a containerized generator set according to claim 4, characterized in that, The upper and lower support rings (70) located in the groove (31) abut against each other.
8. The support device for a containerized generator set according to claim 2, characterized in that, The inner wall of the support ring (70) is connected to an installation rod (72), the spring (71) is sleeved on the installation rod (72), and the installation rod (72) and the slider (60) are inserted into each other.
9. A support device for a containerized generator set according to claim 1, characterized in that, The connecting rod (81) is installed at both ends of the support section (51) along its length, and the plurality of crossbeams (30) are located between the connecting rod (81).