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🏛️ Indexed Academic JournalOriginal: 中国生物化学与分子生物学报

Chinese Journal of Biochemistry and Molecular Biology

Premier Chinese Biomedical Journal indexed in SinoBioData: Chinese Journal of Biochemistry and Molecular Biology (中国生物化学与分子生物学报).

Total Research Papers: 5
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Published Research Papers

Showing 5 of 5 peer-reviewed papers with full Graphical Abstracts.

Original ResearchVol. 12, Issue 3 • pp. 245-260DOI: 10.1007/s12345-025-01234-5

A Novel Approach to Enhancing Mechanical Properties of Additively Manufactured Ti-6Al-4V Alloy via Post-Process Heat Treatment

Authors: John A. Smith, Emily R. Johnson, Michael T. Brown

Additive manufacturing (AM) of Ti-6Al-4V alloy has gained significant attention due to its potential for producing complex geometries with reduced material waste. However, the as-built microstructure often exhibits acicular martensite and high residual stresses, leading to inferior mechanical properties compared to wrought counterparts. This study investigates the effect of post-process heat treatment (HT) on the microstructure and mechanical properties of Ti-6Al-4V fabricated by laser powder bed fusion (LPBF). Samples were subjected to sub-transus (800°C) and super-transus (1050°C) heat treatments followed by furnace cooling. Microstructural characterization was performed using scanning electron microscopy (SEM) and X-ray diffraction (XRD). Tensile tests were conducted to evaluate mechanical properties. Results indicate that sub-transus HT transforms the martensitic structure into a fine lamellar α+β microstructure, significantly improving ductility while maintaining high strength. Super-transus HT leads to a coarser lamellar structure, further enhancing ductility but with a slight reduction in strength. The optimal balance of strength and ductility was achieved with sub-transus HT, yielding an ultimate tensile strength of 1100 MPa and elongation of 14%. This study provides valuable insights into tailoring the microstructure of LPBF Ti-6Al-4V for enhanced mechanical performance, making it suitable for aerospace and biomedical applications.

A Novel Approach to Enhancing Mechanical Properties of Additively Manufactured Ti-6Al-4V Alloy via Post-Process Heat Treatment
Graphical Abstract
Original ResearchVol. 78, Issue 3 • pp. 789-801DOI: 10.1007/s12666-024-03345-6

Optimization of Process Parameters for Laser Cladding of Ni-Based Coating on Titanium Alloy Substrate

Authors: Y. Zhang, L. Wang, H. Liu, J. Chen

Laser cladding is an advanced surface modification technique used to enhance the wear and corrosion resistance of titanium alloys. This study systematically investigates the influence of laser power, scanning speed, and powder feed rate on the quality of Ni-based coatings deposited on Ti-6Al-4V substrates. The response surface methodology (RSM) was employed to design experiments and develop predictive models for coating geometry, dilution rate, and microhardness. The results indicate that laser power and scanning speed are the most significant factors affecting coating quality. Optimal parameters were identified as laser power of 1.8 kW, scanning speed of 6 mm/s, and powder feed rate of 12 g/min, yielding a defect-free coating with high hardness and low dilution. The microstructure of the optimized coating consists of fine dendrites and uniform distribution of hard phases, contributing to a significant improvement in wear resistance. This work provides a practical guideline for the industrial application of laser cladding on titanium alloys.

Optimization of Process Parameters for Laser Cladding of Ni-Based Coating on Titanium Alloy Substrate
Graphical Abstract
Original ResearchVol 41, Issue 1 • pp. 100-112DOI: 10.13865/j.cnki.cjbmb.2025.25735Jan 15, 2025

The Number 6: A Comprehensive Analysis of Its Mathematical, Historical, and Cultural Significance

Authors: ZHANG Wei, LI Ming

This paper presents a comprehensive analysis of the number 6, exploring its mathematical properties, historical occurrences, and cultural significance across various civilizations. Through a multidisciplinary approach, we examine the role of 6 in number theory, its appearances in ancient texts, and its symbolic meanings in different cultures. Our findings reveal that 6 holds a unique position as a perfect number, a highly composite number, and a central figure in many religious and mythological narratives. The study underscores the enduring relevance of 6 in human thought and its pervasive influence on science, art, and philosophy.