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功能梯度混凝土圆筒结构研究进展
Research Progress of Functionally Graded Concrete Cylinder Structures

DOI: 10.12677/HJCE.2022.113037, PP. 336-345

Keywords: 功能梯度材料,混凝土圆筒结构,立井井壁,地铁隧道衬砌,3D打印
Functionally Graded Materials
, Concrete Cylinder Structure, Shaft Wall, Subway Tunnel Lining, 3D Printing

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Abstract:

功能梯度材料组成成分可以产生连续变化,材料性能也可以根据需求呈现梯度变化,对于土木工程领域,特别对于深部地下,面对复杂的地质应力环境,使用功能梯度圆筒结构有着独特的优势。本文介绍了功能梯度混凝土圆筒的研究背景,重点分析了功能梯度混凝土圆筒在力学特性、立井井壁应用、地铁隧道衬砌应用、制备方法等方面的研究进展,并进一步展望3D打印制备功能梯度混凝土圆筒结构。
The composition of functionally gradient materials can produce continuous changes, and the material properties can also show gradient changes according to the demand. For civil engineering, especially for deep underground, when facing complex geological stress environment, the use of functionally gradient cylinder structure has unique advantages. In this paper, the research background of functional gradient concrete cylinder is introduced, the research progress of functional gradient concrete cylinder in mechanical properties, shaft wall application, subway tunnel lining application and preparation method is analyzed and the 3D printing preparation of functional gradient concrete cylinder is further forecasted.

References

[1]  Koizumi, M. (1997) FGM Activities in Japan. Composites Part B: Engineering, 28, 1-4.
https://doi.org/10.1016/S1359-8368(96)00016-9
[2]  Gupta, A. and Talha, M. (2015) Recent Development in Modeling and Analysis of Functionally Graded Materials and Structures. Progress in Aerospace Sciences, 79, 1-14.
https://doi.org/10.1016/j.paerosci.2015.07.001
[3]  Jha, D.K., Kant, T. and Singh, R.K. (2013) A Critical Review of Recent Research on Functionally Graded Plates. Composite Structures, 96, 833-849.
https://doi.org/10.1016/j.compstruct.2012.09.001
[4]  Nie, G.J., Zhong, Z. and Batra, R.C. (2011) Material Tailoring for Functionally Graded Hollow Cylinders and Spheres. Composites Science and Technology, 71, 666-673.
https://doi.org/10.1016/j.compscitech.2011.01.009
[5]  Li, X.F. and Peng, X.L. (2009) A Pressurized Functionally Graded Hollow Cylinder with Arbitrarily Varying Material Properties. Journal of Elasticity, 96, 81-95.
https://doi.org/10.1007/s10659-009-9199-z
[6]  Shi, Z., Zhang, T. and Xiang, H. (2007) Exact Solutions of Heterogeneous Elastic Hollow Cylinders. Composite Structures, 79, 140-147.
https://doi.org/10.1016/j.compstruct.2005.11.058
[7]  Xiang, H.J., Shi, Z.F. and Zhang, T.T. (2006) Elastic Analyses of Heterogeneous Hollow Cylinders. Mechanics Research Communications, 33, 681-691.
https://doi.org/10.1016/j.mechrescom.2006.01.005
[8]  Yang, Y.Y. (2000) Time-Dependent Stress Analysis in Functionally Graded Materials. International Journal of Solids and Structures, 37, 7593-7608.
https://doi.org/10.1016/S0020-7683(99)00310-8
[9]  Horgan, C.O. and Chan, A.M. (1999) The Pressurized Hollow Cylinder or Disk Problem for Functionally Graded Isotropic Linearly Elastic Materials. Journal of Elasticity, 55, 43-59.
https://doi.org/10.1023/A:1007625401963
[10]  宋曰新. 功能梯度圆筒在力学荷载作用下的理论与数值分析[D]: [硕士学位论文]. 北京: 北京交通大学, 2015.
[11]  Tutuncu, N. and Ozturk, M. (2001) Exact Solutions for Stresses in Functionally Graded Pressure Vessels. Composites Part B: Engineering, 32, 683-686.
https://doi.org/10.1016/S1359-8368(01)00041-5
[12]  张通通, 崔振东, 王苏扬. 功能梯度深埋地铁隧道衬砌结构变形特性[J]. 天津大学学报(自然科学与工程技术版), 2019, 52(S1): 135-140.
[13]  Batra, R.C. (2008) Optimal Design of Functionally Graded Incompressible Linear Elastic Cylinders and Spheres. AIAA Journal, 46, 2050-2057.
https://doi.org/10.2514/1.34937
[14]  You, L.H., Zhang, J.J. and You, X.Y. (2004) Elastic Analysis of Internally Pressurized Thick-Walled Spherical Pressure Vessels of Functionally Graded Materials. International Journal of Pressure Vessels and Piping, 82, 347-354.
https://doi.org/10.1016/j.ijpvp.2004.11.001
[15]  Sburlati, R. (2012) Analytical Elastic Solutions for Pressurized Hollow Cylinders with Internal Functionally Graded Coatings. Composite Structures, 94, 3592-3600.
https://doi.org/10.1016/j.compstruct.2012.05.018
[16]  Chen, Y.Z. and Lin, X.Y. (2009) Elastic Analysis for Thick Cylinders and Spherical Pressure Vessels Made of Functionally Graded Materials. Computational Materials Science, 44, 581-587.
https://doi.org/10.1016/j.commatsci.2008.04.018
[17]  Chen, Y.Z. and Lin, X.Y. (2010) An Alternative Numerical Solution of Thick-Walled Cylinders and Spheres Made of Functionally Graded Materials. Computational Materials Science, 48, 640-647.
https://doi.org/10.1016/j.commatsci.2010.02.033
[18]  Durodola, J.F. and Attia, O. (2000) Deformation and Stresses in Functionally Graded Rotating Disks. Composites Science and Technology, 60, 987-995.
https://doi.org/10.1016/S0266-3538(99)00197-9
[19]  Eraslan, N.A. and Akis, T. (2005) Elastoplastic Response of a Long Functionally Graded Tube Subjected to Internal Pressure. Turkish Journal of Engineering and Environmental Sciences, 29, 361-368.
[20]  Mohammadi, M. and Dryden, J.R. (2009) Influence of the Spatial Variation of Poisson’s Ratio upon the Elastic Field in Nonhomogeneous Axisymmetric Bodies. International Journal of Solids & Structures, 46, 788-795.
https://doi.org/10.1016/j.ijsolstr.2008.09.030
[21]  李昊. 功能梯度圆环/筒的弹性理论分析及其应用[D]: [博士学位论文]. 合肥: 合肥工业大学, 2013.
[22]  欧阳鬯, 徐林林. 有限空心圆柱体的三维非轴对称变形分析[J]. 力学学报, 1986, 18(2): 115-122.
[23]  吴庆良. 具有功能梯度特性多层混凝土厚壁圆筒的应力分析[D]: [硕士学位论文]. 北京: 华北电力大学, 2010.
[24]  高永涛, 吴庆良, 吕爱钟. 一类非均布荷载作用下双层厚壁圆筒光滑接触时的应力解析解[J]. 工程力学, 2013, 30(10): 93-99.
[25]  姚直书, 程桦, 荣传新. 深冻结井筒内层钢板高强钢筋混凝土复合井壁试验研究[J]. 岩石力学与工程学报, 2008, 27(1): 158-165.
[26]  Zhang, N., Lu, A., Li, C.C., et al. (2017) Support Performance of Functionally Graded Concrete Lining. Construction and Building Materials, 147, 35-47.
https://doi.org/10.1016/j.conbuildmat.2017.04.161
[27]  张宁, 张雨辰, 吕爱钟, 陈旭光. 一种功能梯度混凝土复合井壁及制作方法[P]. 中国专利, CN111287754A. 2020-06-16.
[28]  张宁. 功能梯度混凝土立井井壁承载性能研究[D]: [博士学位论文]. 北京: 华北电力大学, 2012.
[29]  李德春, 许冲, 崔振东, 张通通, 杨杰, 宋刚, 杨金宏, 陈金明, 徐香庆, 张照伟. 一种多层功能梯度立井井壁结构及施工工艺[P]. 中国专利, CN112031777A. 2020-12-04.
[30]  任彦龙. 径向可缩井壁的力学特性和设计理论研究[D]: [博士学位论文]. 徐州: 中国矿业大学, 2009.
[31]  李德春, 张通通, 崔振东, 等. 弹性模量环向梯度变化的功能梯度井壁结构及施工方法[P]. 中国专利, CN112360467A. 2021-02-12.
[32]  吕爱钟, 张路青. 用于提高立井井壁弹性极限承载力的梯度功能材料反演[C]//中国岩石力学与工程学会. 第十届全国岩石力学与工程学术大会论文集: 2008年卷. 北京: 中国电力出版社, 2008: 138-144.
[33]  许冲. 功能梯度立井井壁力学性能及其设计理论研究[D]: [硕士学位论文]. 徐州: 中国矿业大学, 2021.
[34]  张通通. 深埋地铁隧道功能梯度衬砌力学特性与设计方法研究[D]: [硕士学位论文]. 徐州: 中国矿业大学, 2021.
[35]  马保国, 高英力, 王信刚, 金宇. 功能梯度混凝土管片的设计及材性研究[C]//中国硅酸盐学会. 第三届全国商品混凝土信息技术交流大会暨2006全国商品混凝土年会论文集: 2006年卷. 杭州: 中国硅酸盐学会, 2006: 96-101.
[36]  马保国, 王信刚, 王凯, 高英力, 金宇, 罗忠涛. 一种功能梯度盾构管片及其制备方法[P]. 中国专利, CN1888393B. 2010-05-12.
[37]  孔德玉, 姜俊, 王晓栋. 一种高性能梯度功能盾构衬砌管片及其制备方法[P]. 中国专利, CN102207000B. 2013-06-05.
[38]  赖建中, 郑晓博, 王强, 杨浩若, 杨继全, 乔羽, 谭诚, 杨晓玉, 张跃林. 用于3D打印的功能梯度及密度梯度混凝土材料及其制备方法[P]. 中国专利, CN107555895B. 2020-04-17.
[39]  董赛阳, 朱敏涛, 吴杰, 卞成辉, 朱峰. 3D打印混凝土打印支撑装置及打印支撑方法[P]. 中国专利, CN113021561A. 2021-06-25.
[40]  董赛阳. 3D打印功能梯度混凝土的制备及性能研究[D]: [硕士学位论文]. 南京: 南京理工大学, 2020.
[41]  蒋友宝, 胡佳鑫, 周浩, 贺昊轩. 起始点逐层等角度移动时3D打印混凝土圆环构件可连续打印高度[J/OL]. 建筑结构学报.
https://doi.org/10.14006/j.jzjgxb.2021.0288, 2021-10-08.

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