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相关概念视频

Spindle Assembly02:50

Spindle Assembly

Spindle assembly occurs through three, often coexisting, pathways – the centrosome-mediated pathway, the chromatin-mediated pathway, and the microtubule-mediated pathway – collectively contributing to form a robust spindle apparatus.
In most cells, centrosomes are the primary microtubule nucleation centers. In the centrosome-mediated pathway, the G2-prophase transition triggers centrosome maturation and increased microtubule nucleation. Progressive nucleation results in a microtubule array...
Quality Control01:05

Quality Control

Quality control is one of the three cyclical quality assurance activities that help keep a system under statistical control. Typical quality control activities include creating quality control charts, conducting proficiency testing, and documenting and archiving results.
Quality control helps track data, visualize trends, and identify variations, making it easier to detect deviations that may affect the accuracy of an analysis. One way to do this is by generating a quality control chart, which...
Quality Assurance01:19

Quality Assurance

Quality assurance is the overarching term used to describe the activities employed to ensure the proper performance of a system. These activities can be classified into three categories: quality control, quality assessment, and internal corrective measures. Typically, these activities work cyclically: quality control is performed before and during the analysis, while quality assessment occurs during and after the investigation. Internal corrective measures are implemented based on the findings...
Production of Formed Elements01:34

Production of Formed Elements

Hemangioblasts are multipotent stem cells originating from the mesoderm. They give rise to hematopoietic stem cells (HSCs), which undergo hematopoiesis to produce all the formed elements of blood. This process is regulated by a complex network of hematopoietic growth factors, including transcription factors, growth factors, and cytokines. These factors stimulate the HSCs to divide and differentiate, though some HSCs remain undifferentiated to maintain a self-renewing pool.
Most HSCs commit to...
Steel Manufacturing01:26

Steel Manufacturing

Steel manufacturing is a multi-stage process that begins by smelting iron ore into cast iron in a blast furnace. This initial stage involves layering iron ore with coke, a type of fuel, and crushed limestone within the furnace. The coke is ignited with a high volume of air, leading to the creation of carbon monoxide, which acts to reduce the iron ore to pure iron.
During this smelting process, limestone plays a crucial role by forming slag. Slag captures impurities within the molten iron, such...
Good Manufacturing Practices01:26

Good Manufacturing Practices

Good Manufacturing Practices (GMP) constitute a foundational set of guidelines that ensure the production of safe, consistent, and high-quality products, particularly in industries such as pharmaceuticals, biotechnology, and food processing. These protocols encompass all aspects of production, from the sourcing of raw materials to the final distribution of the finished product.A core pillar of GMP is stringent hygiene and sanitation across all production environments. This includes routine...

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相关实验视频

Updated: Jul 14, 2026

Multi-material Ceramic-Based Components – Additive Manufacturing of Black-and-white Zirconia Components by Thermoplastic 3D-Printing (CerAM - T3DP)
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增材制造:一个全面的审查

Longfei Zhou1, Jenna Miller1, Jeremiah Vezza1

  • 1Department of Biomedical, Industrial and Systems Engineering, School of Engineering and Computing, College of Engineering and Business, Gannon University, Erie, PA 16541, USA.

Sensors (Basel, Switzerland)
|May 11, 2024
PubMed
概括

增材制造 (AM) 通过定制,减少浪费的生产来改变行业. 这项调查探讨了AM技术,工作流程和未来的创新,如3D生物打印和人工智能,强调其革命性的影响.

关键词:
通过3D打印打印3D打印.在这里,我们可以看到CAD,CAD,CAD.增值税的聚合方式添加剂制造 添加剂制造 添加剂制造粘合剂喷射 粘合剂喷射化沉积物的建模.材料挤出 材料挤出材料喷射 材料喷射 材料喷射电源床的融合方式审查 审查 审查 审查 审查 审查

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科学领域:

  • 制造业 工程 制造工程
  • 材料科学 材料科学 材料科学
  • 工业技术 工业技术 工业技术 工业技术

背景情况:

  • 增材制造 (AM) 已经从快速原型制造演变为通用制造解决方案.
  • 增材制造可以创建复杂的几何形状,具有高度定制性和减少材料浪费.
  • 该技术支持各种材料,包括聚合物,金属,陶和复合材料.

研究的目的:

  • 提供对增材制造工作流程的全面概述.
  • 探索各种增材制造技术,它们的原理,优缺点和应用.
  • 预测未来的趋势和AM的潜在进展,包括生物打印,食品打印和AI集成.

主要方法:

  • 审查和综合现有关于增材制造的文献.
  • 分类和详细检查各种AM工艺 (例如,材料挤出,增值税聚合,粉床融合).
  • 对每个技术的材料兼容性,应用和发展趋势的分析.

主要成果:

  • 增材制造在各个行业的定制,复杂性和废物减少方面提供了显著的优势.
  • 有广泛的AM技术存在,每个都有特定的优点,弱点和材料限制.
  • 新兴趋势表明,AM专业应用和人工智能驱动的流程在未来将显著增长.

结论:

  • 增材制造是全球制造业的变革力量,提供创新解决方案并推动工业进化.
  • 在AM领域的持续挑战包括材料开发,流程优化和可扩展性.
  • 在3D生物打印,4D打印和AI等领域的未来进展有望进一步扩大增材制造的能力和影响.