Ball Spline,Heavy Duty Spline,Spline Nut,Factory Direct Sales Spline Shaft,customize Shaft,Shaft end machining

news_banner
China Focus: Chinese scientists refine lunar global chemistry mapping using farside ground truth information
Mar 11th, 2026

BEIJING, March 10 (Xinhua) -- A team of Chinese scientists has unveiled a high-resolution atlas detailing the global distribution of lunar surface chemistry, a significant advance that fills a critical data gap in the geological study of the moon's far side.

Mapping the chemistry across the lunar global surface is essential for understanding the moon's magmatic evolution and geological history, and holds profound implications for studying the Earth-moon system.

Previous estimates of elemental abundances relied primarily on remote sensing data calibrated with sample-based ground truth information from the lunar nearside, according to a recent research article published in the journal Nature Sensors. This left the far side of the moon largely unconstrained, introducing substantial uncertainties in geological models for terrains with complex compositions, especially within the scientifically vital South Pole-Aitken (SPA) basin.

To overcome this long-standing challenge, the research team, led by the Shanghai Institute of Technical Physics of the Chinese Academy of Sciences, developed an intelligent inversion framework for lunar chemical components leveraging a residual convolutional neural network, on the basis of farside ground truth data from the samples taken back by the Chang'e-6 mission and combining high-resolution visible-to-near-infrared multispectral-band image data from the lunar orbiter.

By employing a model-fine-tuning strategy to optimally calibrate elemental abundances, the team generated high-precision global maps of major elemental oxides that incorporate farside ground truth information.

This breakthrough successfully constrains the extent and composition of farside terranes and precisely reveals deep-seated materials exposed within the SPA basin and highlands.

The maps quantitatively demonstrate that the proportion of exposed magnesian anorthosite in the farside highlands is significantly higher than on the nearside. This provides new measured evidence supporting the hypothesis of asymmetric crystallization and differentiation of the lunar magma ocean between the two hemispheres.

By integrating farside ground truth information into global geochemical mapping, this study deepens the understanding of crust-mantle structure, hemispherical evolutionary differences, and the formation and evolution of the SPA basin.

It provides high-precision, quantitative guidance for future landing site selection, resource exploration, and the planning of lunar exploration missions.

The Chang'e-6 probe was launched by China on May 3, 2024. On June 25, 2024, its returner landed in north China, bringing back 1,935.3 grams of samples from the far side of the moon. 

SCR01605GC5-550  SCR01605GC5-745.5  SCR01605GC5-300  SFNUR02505T4DGC5-1035      TBI-XSNHR02510C1D   SFNUR03210T4DFC7-578   TBI   SFDC3205D+1379LRC7 

SFAR1605C1DGC5-234L    SFAR1605C1DGC5-234L   SCR01605GC5-550 SCR01605GC5-745.5 

SCR01605GC5-300 SFNHR3232-DFC7-2057-P1 SFAR03232A1DFC7-2057   SFAR02510C1DFC7-400 SFAR02525B1DGC5-994 SFAR02510C1DFC7-400  SFNHR01620A1DFC7-1144  SFAR02020B1DFC7-1310  SFNUR02510T4DFC7-250 SFNUR03210T4DFC7-305  SFYAR02525A2DFC7-814  SFAR02005C1DFC7-968  SFVR04020B1DFC5-340  SFAR01205B1DFC7-150  SFAR02010C1DFC7-550  SFAR01610B1D  SFAR01620A1D SFSR1632  SFAR02010C1D=132.00  SFAR02020A1D  SFYR02040T2D SFNUR02510T4DFC7-206  SFAR02020A1DFC7-802  B859430676 B951800068 SFAR01210B1DFC7-305  TRS20VN-3-700-N-Z0  SFAR03210C1D TBI SFKR01202T4DGC5-217.5-P1 SFAR02510C1D SFNUR01610T3DF-365-P1+SS  

SFAR2525A1D TRH25VN-XN-N-Z0  SFAR02020A1D=12个193.00  SFAR02510C1D  SFAR02510C1DFC7-440

SFAR02525A1D  SFBR01620A1D  SFAR02005C1D SFAR02010C1D SFAR02010C1D  SFAR02010C1D

SFAR02020A1D  SFAR02020A1D  SFAR02020A1DFC7-914  SFAR02510C1D  SFAR2525A1D  SFAR03210C1D

SFAR03220B1D  SFAR01610B1DFC7-360  SFAR02020A1D  SFAR02020A1D  SFAR02510C1D  SFAR03220B1D

SFAR01610B1D  SFAR02010C1D  SFAR03232A1D  SFAR03210C1DFC7-519.5  SFAR05020C1DFC7-522.5

SFNIR01610T3D  SFKR01202T4D  SFAR03232A1D  SFAR02510C1D  SFAR02010C1D  SFAR02020A1D

SFAR03232A1D  SFNU01605T4DF-490-P1+SS    TBI SFNUL02005TDGC5-185.5   

Husillo de baleros con ranura(或 “Splina de bolas”) Splina de bolas de precisión micrométrica Eje con bolas y ranuras(Eje ranuras) Splina de bolas estándar Splina de bolas de alta carga

شفت بالداخلية المُشعبة

شفت الداخلية المُشعبة عالية الدقة

محور مع مُشعبات

شفت  المُشعبة المعياري الدولي 

شفت المُشعبة الخفيفة التحميل

Rosca spline de bolas Splina de bolas de rolagem Eixo com bolas e splines Splina de bolas padrão Splina de bolas industrial Splina de bolas de precisão alta

Шарнирный шпиндель с пазами Шарнирный шпиндель с пазами военного стандарта Шпиндель с bolas и пазами Шарнирный шпиндель с пазами высокой нагрузки Шарнирный шпиндель с пазами легкой нагрузки

ボールスプライン 超精密ボールスプライン スプラインボール 高負荷ボールスプライン ボールスプライン部品 小型ボールスプライン

Kugelspline Kugelspline für Automobilbau Kugelspline standard Präzisions-Kugelspline Hochlast-Kugelspline

Spline à billes Spline à billes aéronautique Arbre avec billes et splines Spline à rouleaux de billes Spline à billes standard Spline à billes à faible charge

สปไลน์บอล สปไลน์บอลความแม่นยำสูง บอลสปไลน์ สปไลน์บอลมาตรฐานสากล ส่วนสปไลน์บอล สปไลน์บอลรับน้ำหนักสูง

Spline có hạt Spline có hạt độ chính xác cao Hạt spline Spline hạt lăn Spline hạt tải nhẹ

볼 스플라인 산업용 볼 스플라인 볼스플 초정밀 볼 스플라인 자동차용 볼 스플라인


Wechat
wechat
Email Whatsapp Skype TOP