中国科技核心期刊
中国建筑科学领域高质量科技期刊分级目录T2级期刊
RCCSE中国核心学术期刊
美国化学文摘社(CAS)数据库 收录期刊
日本JST China 收录期刊
世界期刊影响力指数(WJCI)报告 收录期刊

留言板

尊敬的读者、作者、审稿人, 关于本刊的投稿、审稿、编辑和出版的任何问题, 您可以本页添加留言。我们将尽快给您答复。谢谢您的支持!

姓名
邮箱
手机号码
标题
留言内容
验证码

用于月面工程建造研究的TC-1C模拟月壤研制

包查润 张道博 郅晓 马忠诚 冯鹏 吴浩

包查润, 张道博, 郅晓, 马忠诚, 冯鹏, 吴浩. 用于月面工程建造研究的TC-1C模拟月壤研制[J]. 工业建筑, 2025, 55(1): 176-181. doi: 10.3724/j.gyjzG24110702
引用本文: 包查润, 张道博, 郅晓, 马忠诚, 冯鹏, 吴浩. 用于月面工程建造研究的TC-1C模拟月壤研制[J]. 工业建筑, 2025, 55(1): 176-181. doi: 10.3724/j.gyjzG24110702
BAO Charun, ZHANG Daobo, ZHI Xiao, MA Zhongcheng, FENG Peng, WU Hao. Preparation of a Lunar Regolith Simulant for In-Situ Construction Research: TC-1C[J]. INDUSTRIAL CONSTRUCTION, 2025, 55(1): 176-181. doi: 10.3724/j.gyjzG24110702
Citation: BAO Charun, ZHANG Daobo, ZHI Xiao, MA Zhongcheng, FENG Peng, WU Hao. Preparation of a Lunar Regolith Simulant for In-Situ Construction Research: TC-1C[J]. INDUSTRIAL CONSTRUCTION, 2025, 55(1): 176-181. doi: 10.3724/j.gyjzG24110702

用于月面工程建造研究的TC-1C模拟月壤研制

doi: 10.3724/j.gyjzG24110702
基金项目: 

中国建材集团攻关专项资助(JT_CORE-202311-000012)

国家自然科学基金项目(42241109)

中国博士后科学基金面上项目(2024M751700)。

博士后创新人才支持计划项目(BX20240198)

详细信息
    作者简介:

    包查润,主要从事月壤袋结构、月面建造技术研究。

    通讯作者:

    冯鹏,fengpeng@tsinghua.edu.cn

    吴浩,whqxq@163.com。

Preparation of a Lunar Regolith Simulant for In-Situ Construction Research: TC-1C

  • 摘要: 人类探月活动的核心目标已从"认识月球"转变为"认识与利用并重",为了满足月面原位工程建造研究对月壤材料的需要,提出了一种模拟月壤制备与评价的具体方法,以嫦娥五号月球样品为模拟对象研发了模拟月壤TC-1C(Tsinghua-China Building Materials Academy-type1 for Construction),测试了模拟月壤在物相组成、粒径分布、颗粒形态和密度等4项关键指标的相似度,结果显示其与嫦娥五号真实月壤的相似度均超过0.94。
  • [1] 吴伟仁, 于登云, 王赤, 等. 月球极区探测的主要科学与技术问题研究 [J]. 深空探测学报, 2020, 7(3): 223-40.
    [2] WEIBLEN P, GORDON K. Characteristics of a simulant for lunar surface materials[C]//Proceedings of the Second Conference on Lunar Bases and Space Activities of the 21st Century. Houston:1988.
    [3] DESAI C S. Development and mechanical properties of structural materials from lunar simulant [J]. NASA Space Engineering Research Center for Utilization of Local Planetary Resources, 1991,2:297-324.
    [4] MCKAY D S, CARTER J L, BOLES W W, et al. JSC-1: a new lunar soil simulant [J]. Engineering, Construction, and Operations in Space IV, 1994, 2: 857-866.
    [5] KANAMORI H, UDAGAWA S, YOSHIDA T, et al. Properties of lunar soil simulant manufactured in Japan [M]. Albuquerque:Space 98, 1998: 462-468.
    [6] BATTLER M M, SPRAY J G. The Shawmere anorthosite and OB-1 as lunar highland regolith simulants [J]. Planetary and Space Science, 2009, 57(14/15): 2128-2131.
    [7] LI Y, LIU J, YUE Z. NAO-1: Lunar highland soil simulant developed in China [J]. Journal of Aerospace Engineering, 2009, 22(1): 53-7.
    [8] ZHENG Y, WANG S, OUYANG Z, et al. CAS-1 lunar soil simulant [J]. Advances in Space Research, 2009, 43(3): 448-54.
    [9] SONG L, XU J, TANG H, et al. Vacuum sintering behavior and magnetic transformation for high-Ti type basalt simulated lunar regolith [J]. Icarus, 2020, 347, 113810.
    [10] SONG L, XU J, FAN S, et al. Vacuum sintered lunar regolith simulant: Pore-forming and thermal conductivity [J]. Ceramics International, 2019, 45(3): 3627-3633.
    [11] 蒋明镜, 李立青. TJ-1模拟月壤的研制 [J]. 岩土工程学报, 2011, 33(2): 209-214.
    [12] 邹猛, 李建桥, 刘国敏, 等. 模拟月壤地面力学性质试验研究 [J]. 岩土力学, 2011, 32(4): 1057-61.
    [13] 贺新星, 肖龙, 黄俊, 等. 模拟月壤研究进展及CUG-1A模拟月壤 [J]. 地质科技情报, 2011,30(4):137-142.
    [14] 王凯. 钻进取样模拟月壤的主要物理力学性质试验研究[D]. 北京: 清华大学, 2012.
    [15] CESARETTI G, DINI E, DE KESTELIER X, et al. Building components for an outpost on the Lunar soil by means of a novel 3D printing technology [J]. Acta Astronautica, 2014, 93: 430-50.
    [16] RYU B H, WANG C C, CHANG I. Development and geotechnical engineering properties of KLS-1 lunar simulant [J]. Journal of Aerospace Engineering, 2018, 31(1), 04017083.
    [17] LI C, XIE K, LIU A, et al. The Preparation and characterization of NEU-1 lunar soil simulants [J]. Jom, 2019, 71(4): 1471-1476.
    [18] ZHOU S, LU C, ZHU X, et al. Preparation and characterization of high-strength geopolymer based on BH-1 lunar soil simulant with low alkali content [J]. Engineering, 2021, 7(11): 1631-1645.
    [19] ZHOU S, YANG Z, ZHANG R, et al. Preparation and evaluation of geopolymer based on BH-2 lunar regolith simulant under lunar surface temperature and vacuum condition [J]. Acta Astronautica, 2021, 189: 90-98.
    [20] LI R, ZHOU G, YAN K, et al. Preparation and characterization of a specialized lunar regolith simulant for use in lunar low gravity simulation [J]. International Journal of Mining Science and Technology, 2022, 32(1): 1-15.
    [21] RUAN R, YANG W, ZHANG D, et al. A moderate-Ti lunar mare soil simulant: IGG-01 [J]. Acta Astronautica, 2024, 224: 148-60.
    [22] 胡家骏, 俞可权, 郭晓潞. 基于"嫦娥五号"月壤的TJC-1模拟月壤研制 [J]. 航天器环境工程, 2024, 41(4): 389-396.
    [23] 裴照宇, 王琼. 国际月球科研站资源利用发展路线战略构想 [J]. 宇航学报, 2024, 45(4): 625-637.
    [24] SMITHERS G A, NEHLS M K, HOVATER M A, et al. A one-piece lunar regolith bag garage prototype [R]. Huntsville: Marshall Space Flight Center,2007.
    [25] HOELZER H D, FOURROUX K A, RICKMAN D L, et al. Figures of merit software: description, user’s guide, installation notes, versions description, and license agreement [R]. Huntsville:Marshall Space Flight Center, 2011.
    [26] ISO. Space systems:Lunar simulants: ISO 10788:2014[S]. Geneva:International Organization Standardization,2014.
    [27] ZHANG H, ZHANG X, ZHANG G, et al. Size, morphology, and composition of lunar samples returned by Chang’E-5 mission [J]. Science China Physics, Mechanics & Astronomy, 2021, 65(2),229511.
    [28] LI C, HU H, YANG M F, et al. Characteristics of the lunar samples returned by the Chang’E-5 mission [J]. National Science Review, 2022, 9(2), nwab188.
    [29] CARRIER III W D, OLHOEFT G R, MENDELL W. Physical properties of the lunar surface [M]. London:Cambridge University Press,1991.
  • 加载中
计量
  • 文章访问数:  133
  • HTML全文浏览量:  75
  • PDF下载量:  2
  • 被引次数: 0
出版历程
  • 收稿日期:  2024-11-07
  • 网络出版日期:  2025-03-28

目录

    /

    返回文章
    返回