SURFACE SEAMLESS STEEL RAIL
20220412015 · 2022-12-29
Inventors
Cpc classification
International classification
Abstract
A surface-seamless steel rail is provided in the present invention. Said surface-seamless steel rail includes a right connecting part located on one side of said steel rail, a left connecting part located on the other side of said steel rail, and a seamless spring piece located on the top side of said steel rail. Both said left connecting part and said right connecting part include a plug portion in embedded engagement with each other. Said seamless spring piece includes a fixed portion at one end and a free portion at the other end, said fixed portion is fixedly connected on top side of said plug portion of one of said left connecting part and said right connecting part. The other of said left connecting part and said right connecting part is provided with an arc-shaped channel at its interior body, said free portion of said seamless spring piece is suitably inserted into said arc-shaped channel.
Claims
1. A surface-seamless steel rail, comprising: a right connecting part located on one side of said steel rail; a left connecting part located on the other side of said steel rail; and a seamless spring piece located on the top side of said steel rail, wherein both said left connecting part and said right connecting part include a plug portion in embedded engagement with each other, said seamless spring piece includes a fixed portion at one end and a free portion at the other end, said fixed portion is fixedly connected on the top side of said plug portion of one of said left connecting part and said right connecting part, the other of said left connecting part and said right connecting part is provided with an arc-shaped channel at its interior body, said free portion of said seamless spring piece is suitably inserted into said arc-shaped channel.
2. The surface-seamless steel rail according to claim 1, wherein the fixed connection of said seamless spring piece is obtained by welding.
3. The surface-seamless steel rail according to claim 1, wherein said seamless spring piece is comprised of a plurality of spring sheet layers that are flatly stacked at said fixed portion and welded together, and the end of said free portion of said seamless spring piece has a shape that fits into said arc-shaped channel.
4. The surface-seamless steel rail according to claim 3, wherein the end of said free portion of said seamless spring piece has an angle less than 90 degrees.
5. The surface-seamless steel rail according to claim 1, wherein said left connecting part and said right connecting part have the same overall height, and said plug portions of said left connecting part and said right connecting part have the same height and the same length.
6. The surface-seamless steel rail according to claim 5, wherein the height of said plug portion is less than the height of said left connecting part and said right connecting part, wherein the difference in height equals to the thickness of said seamless spring piece.
7. The surface-seamless steel rail according to claim 1, wherein the top edge of said arc-shaped channel coincides with the top of said left connecting part or said right connecting part that is immediately adjacent to said plug portion.
8. The surface-seamless steel rail according to claim 1, wherein the fit tolerance between said free portion of said seamless spring piece and said arc-shaped channel is in the range of 0.03 mm to 0.1 mm interference fit that corresponds to a thickness value by which the thickness of said seamless spring piece is greater than the breadth of said arc-shaped channel.
9. The surface-seamless steel rail according to claim 1, wherein the length of said fixed portion of said seamless spring piece is the same as said plug portions of said left connecting part and said right connecting part.
10. The surface-seamless steel rail according to claim 1, wherein the length of said free portion of said seamless spring piece is determined by the product of the segment rail length, the rail thermal expansion coefficient, the regional maximum temperature difference and a correction factor.
11. The surface-seamless steel rail according to claim 10, wherein said correction factor is selected between 1.05 and 1.2, preferably 1.1.
12. The surface-seamless steel rail according to claim 1, wherein said surface-seamless steel rail has the same cross-section as the cross-section of the top of the steel rail with the same height.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Now, a detailed description of the present invention will be provided with reference to the accompanying drawings.
[0020]
[0021]
[0022]
[0023]
[0024]
[0025]
EMBODIMENTS OF THE INVENTION
[0026] To better understand the present invention, the content of the present invention is further illustrated below in conjunction with the embodiments, but the present invention is not limited to the following specific embodiments.
[0027]
[0028] In this embodiment, the left connecting part 101 is provided with an arc-shaped channel 105 and has a left plug portion 103, and the overall shape of the left connecting part 101 is similar to the shape of the steps of a staircase. The plug portion 103 is located at the right end of the left connecting part 101, and is located on the right side of the arc-shaped channel 105, and its height is slightly lower than the height of the left half of the left connecting part 101. Therefore, the left connecting part 101 as a whole presents a shape with a high step on the left and a low step on the right. The arc-shaped channel 105 is in the shape of a circular arc, which is located in the middle of the left connecting part 101, and the top of the outer edge of the arc-shaped channel 105 is consistent with the top plane of the left connecting part.
[0029] The right connecting part 102 has a plug portion 104 on the side opposite to the plug portion 103. The right connecting part 102 also has a stepped shape similar to a staircase but is opposite to the stepped shape of the left connecting part 101, showing a shape with a higher right portion but a lower left portion. The top 106 of the plug portion 104 is used for welding with the seamless spring piece 201, while the side of the right connecting part 102 with height difference from the plug portion 104 also needs to be welded to the seamless spring piece 201 during welding in order to make the steel rail surface seamless.
[0030] The overall heights of the left connecting part 101 and the right connecting part 102 are the same, both are height A. The length and height of the plug portion 103 and the plug portion 104 are also the same to match to be cross-embedded with each other, their lengths are both S, and their heights are both B. Wherein, the length S is the product of the segment rail length, the thermal expansion coefficient of the steel rail, the regional maximum temperature difference and a correction factor. The correction factor is selected between 0.9 and 1.2, preferably 1.
[0031] The height B of the plug portion 103 and the plug portion 104 is smaller than the overall height A of the left connecting part 101 and the right connecting part 102, and the height difference is the breadth of the arc-shaped channel 105, which is also the thickness of the seamless spring piece 201. The left edge and the right edge of the arc-shaped channel 105 are two concentric arc edges. In this embodiment, the left edge of the arc-shaped channel 105 is slightly longer than the right edge, and the length of the outer edge is slightly longer than the length S of the plug portion.
[0032]
[0033]
[0034] In this embodiment, the seamless spring piece 201 is formed by flatly stacking three layers of spring sheets and then welded on the fixed portion 204, while the free portion 202 does not require welding. In
[0035] In this embodiment, the fixed portion 204 of this seamless spring piece 201 has the same length S to match the plug portion 104, and the length of the free portion 202 of the seamless spring piece 201 including its head 203 is slightly longer than the length S. In order to facilitate the embedding, the head 203 has an inclination angle of about 30 degrees. The width of the seamless spring piece 201 is the same as the width W of the left connecting part 101 and the right connecting part 102 and its cross-section is identical to the cross-section of the top of the steel rail so that a complete smooth top plane can be formed after the coupling of the left connecting part 101 and the right connecting part 102.
[0036]
[0037] It can be seen from the figures that the sum of the thickness of the seamless spring piece 201 and the height B of the plug portion 103 and the plug portion 104 exactly matches the height A of the left connecting part 101 and the right connecting part 102, so that when this seamless spring piece 201 is welded to the top 106 of the plug portion 104 of the right connecting part 102, the top of the right connecting part 102 forms a smooth, seamless surface of the steel rail.
[0038] When the left connecting part 101 connects with the right connecting part 102, the plug portion 103 and the plug portion 104 are cross-embedded with each other, and at the same time, the free portion 202 of the seamless spring piece 201 slides into the arc-shaped channel 105 of the left connecting part 101, and the arc-shaped channel 105 can cooperate to accommodate the free portion 202 of the seamless spring piece 201, and the left edge of arc-shaped channel 105 mates with the top surface 107 (immediately adjoin to the plug portion 103) of the left connecting part 101, so that when the seamless spring piece 201 is inserted into the arc-shaped channel 105, the seamless spring piece 201 can form a seamless fit with the top surface, therefore, after the left connecting part 101 is connected with the right connecting part 102, the top of the left connecting part 101 is a smooth, seamless surface. The fit tolerance between the seamless spring piece 201 and the arc-shaped channel 105 ranges between +0.05 mm and 0.1 mm.
[0039] Whether in wintertime, during low temperature, summertime, or during high temperature, the free portion 202 of the seamless spring piece 201 can be extended or shortened, due to thermal expansion and contraction, within the arc-shaped channel 105, and will not come out of the arc-shaped channel 105 or be too long to push again the arc-shaped channel 105. Due to the characteristics of the spring piece, the seamless spring piece 201 will always keep a seamless fit with the top of the left connecting part 101, so as to ensure that the top of the left connecting part 101 and the top of the right connecting part 102 are always smooth and seamless. At the same time, because the plug portion 103 and the plug portion 104 have a dynamic fit accuracy of approximately 0.1 mm, it can ensure that the left connecting part 101 and the right connecting part 102 will not be affected by thermal expansion and contraction.
[0040] The present invention ensures that the entire rail is a smooth and seamless rail whether in cold or in hot weather, so as to ensure that any risks, bumps and noises due to thermal expansion and contraction will not occur when the train passes by, and at the same time, it dramatically reduces the costs of maintaining the rail. According to the present invention, the existing rail system can be rapidly and cost-effectively reconstructed, so that the locomotive can run more smoothly and noiselessly, the maintenance and management costs can be reduced, and the running speed can be significantly increased, even to the level of high-speed trains.