Fluid container transportation equipment connecting structure and transportation equipment applying fluid container transportation equipment connecting structure
A fluid container and connection structure technology, which is applied in the field of fluid container transportation equipment connection structure and transportation equipment using it, can solve problems such as complicated installation, cracked container surface, and cumbersome structure of connecting brackets, so as to improve production efficiency and eliminate stress concentration , the effect of simple structure
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Embodiment 1
[0052] In an exemplary embodiment of the present application, a fluid container transportation equipment frame connection structure is provided. like figure 1 , figure 2 As shown, the fluid container 1 is arranged horizontally, at least including a side and a head, the side is located in the middle of the device, and the heads are respectively located at both ends of the side. Preferably, the head and the side enclose a fluid container structure, wherein the side is a cylindrical surface, the head covers both ends of the side, and a closed fluid container is formed between the side and the head. A frame is also installed on the fluid container transportation equipment, and the frame includes an end frame 6 and a transverse frame 7; the end frame 6 is arranged at both ends of the fluid container, and the transverse frame surrounds the fluid container and is connected to the end frames at both ends.
[0053] like image 3 As shown, the end of the fluid container is welded wi...
Embodiment 2
[0060] In the case that other technical solutions are all the same as in Embodiment 1, the bottom of the connecting ring 5 is disconnected, and the first fixed piles 51a are respectively welded on the two ends 55 of the disconnected bottom of the connecting ring 5, and the connecting plate 54 is connected to the first fixed pile. The welded end of 51a is bent into a first bent end 541. The first bent end 541 is arc-shaped and has the same radius as the connecting ring 5. The first bent end 541 and the connecting ring 5 are overlapped and welded, and the first fixing pile 51a is welded on either side of the bend of the connecting plate, such as Figure 5 As shown, it can be welded close to the end of the connecting ring 5 , or indirectly welded to the end of the connecting ring 5 via the connecting plate 54 .
Embodiment 3
[0062] Under the situation that other technical schemes are all the same as Embodiment 1, such as Figure 6 As shown, the lower part of the connecting ring 5 is disconnected, and the first fixing piles 51a are respectively welded in the middle position of the left and right lower parts of the connecting ring 5 so that the left and right ends of the connecting ring 5 are separated into arcs. The welding end of the connecting plate 54 and the first fixing pile 51 a is bent into a second bent end 542 , and the second bent end 542 is superimposedly welded with the end of the connecting ring 5 . The gasket 53, the connecting plate 54, the upper arc of the connecting ring 5 and the arc of the end are welded and connected to the lowermost fixed pile 51 at the same time, so that the force on the fixed pile 51 is more uniform, and the stress dispersion is not easy to cause the container to break .
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