<?xml version="1.0" encoding="UTF-8"?><rss version="2.0"><channel><title>毛工的润滑世界</title><description>特种润滑、工业应用与化工新材料技术内容。</description><link>https://maogong-lube.com/</link><item><title>润滑剂如何控制 Stick-Slip 粘滑异响？从摩擦机理到测试筛选</title><link>https://maogong-lube.com/articles/stick-slip-noise-lubricant-control/</link><guid isPermaLink="true">https://maogong-lube.com/articles/stick-slip-noise-lubricant-control/</guid><description>从 Stick-Slip 粘滑机理、Stribeck 曲线到 VDA 230-206 与 Ziegler 试验台，解析润滑剂如何控制低速摩擦异响，并给出工程筛选思路。</description><pubDate>Sat, 12 Sep 2026 00:00:00 GMT</pubDate><category>阻尼润滑与运动控制</category><category>Stick-Slip</category><category>NVH降噪</category><category>Stribeck</category><category>摩擦学</category><category>粘滑</category><category>异响控制</category><category>VDA 230-206</category><category>Ziegler</category></item><item><title>减摩涂层的“第二曲线”：从减摩到NVH降噪</title><link>https://maogong-lube.com/articles/anti-friction-coatings-nvh/</link><guid isPermaLink="true">https://maogong-lube.com/articles/anti-friction-coatings-nvh/</guid><description>本文从减摩涂层的传统可靠性价值出发，说明承载型干膜润滑体系如何通过稳定摩擦、抑制粘滑和降低摩擦激励源，扩展到汽车与精密机构的 NVH 降噪，并梳理材料、工艺、测试评价与应用边界等工程问题，为实际部件选型和性能验证提供参考。</description><pubDate>Sat, 22 Aug 2026 00:00:00 GMT</pubDate><category>减摩涂层</category><category>减摩涂层</category><category>干膜润滑</category><category>AFC</category><category>NVH降噪</category><category>Stick-Slip</category><category>摩擦学</category><category>表面工程</category></item><item><title>极致降本之后，汽车润滑迎来一个被低估的新问题</title><link>https://maogong-lube.com/articles/automotive-lubrication-material-compatibility/</link><guid isPermaLink="true">https://maogong-lube.com/articles/automotive-lubrication-material-compatibility/</guid><description>本文围绕汽车零部件材料极致降本后出现的塑料与润滑脂兼容性风险，分析应力开裂、溶胀、软化、强度下降和迁移等长期问题，说明硅脂、氟脂的适用边界，以及材料、结构与润滑协同验证的必要性，为汽车部件开发和长期可靠性评价提供参考。</description><pubDate>Sat, 22 Aug 2026 00:00:00 GMT</pubDate><category>材料兼容性</category><category>汽车润滑</category><category>材料兼容性</category><category>塑料润滑</category><category>硅脂</category><category>氟脂</category><category>PE</category><category>PP</category></item><item><title>阻尼脂：从润滑到运动控制——原理、选型、测试与典型应用</title><link>https://maogong-lube.com/articles/damping-grease-motion-control/</link><guid isPermaLink="true">https://maogong-lube.com/articles/damping-grease-motion-control/</guid><description>系统介绍阻尼脂从剪切阻力与流变特性出发实现运动控制的基本原理，说明温度、基础油、启动与运行扭矩等关键影响因素，并梳理典型应用、测试验证、选型逻辑、常见误区及客户需求调研要点。</description><pubDate>Sat, 22 Aug 2026 00:00:00 GMT</pubDate><category>阻尼润滑与运动控制</category><category>阻尼脂</category><category>运动控制</category><category>流变</category><category>扭矩测试</category><category>NVH降噪</category><category>汽车内饰</category><category>塑料齿轮</category></item><item><title>玻璃纤维增强塑料的摩擦学原理及润滑脂摩擦改进技术研究进展</title><link>https://maogong-lube.com/articles/glass-fiber-reinforced-plastics-tribology/</link><guid isPermaLink="true">https://maogong-lube.com/articles/glass-fiber-reinforced-plastics-tribology/</guid><description>系统阐述玻璃纤维增强塑料的摩擦学原理、主要磨损机制及润滑脂摩擦改进路径，结合汽车 NVH 润滑技术、测试评价方法与发展方向，说明材料、润滑脂、界面膜和第三体协同设计对可靠性的工程意义，并为相关部件选型与寿命评价提供参考。</description><pubDate>Sat, 22 Aug 2026 00:00:00 GMT</pubDate><category>材料兼容性</category><category>玻纤增强塑料</category><category>材料兼容性</category><category>摩擦学</category><category>润滑脂</category><category>NVH降噪</category><category>粘滑</category><category>磨损</category></item><item><title>五类流体与软材料流变机理统合阐述（真的很啰嗦版@蒸汽朋克）</title><link>https://maogong-lube.com/articles/rheology-of-fluids-and-soft-materials/</link><guid isPermaLink="true">https://maogong-lube.com/articles/rheology-of-fluids-and-soft-materials/</guid><description>以普通牛顿润滑油、润滑脂、硅油、胶粘剂和速率敏感软材料为对象，从内部微观结构在剪切、加载、流动变化和撤力恢复后的响应出发，统一解释材料流变行为、可逆性差异及其工程判断方法，帮助将静态材料特征转换为真实工况下的动态理解。</description><pubDate>Sat, 22 Aug 2026 00:00:00 GMT</pubDate><category>润滑剂流变学</category><category>润滑剂流变学</category><category>流变</category><category>润滑脂</category><category>硅油</category><category>胶粘剂</category><category>软材料</category><category>剪切稀化</category></item><item><title>轴承润滑脂选型与润滑管理计算指南</title><link>https://maogong-lube.com/articles/bearing-grease-selection-and-lubrication-management/</link><guid isPermaLink="true">https://maogong-lube.com/articles/bearing-grease-selection-and-lubrication-management/</guid><description>以化工离心机调心滚子轴承为例，说明基础油黏度、黏度比、初装加脂量、dmN、补脂量和补脂周期的计算与维护方法。</description><pubDate>Sun, 16 Aug 2026 00:00:00 GMT</pubDate><category>轴承润滑</category><category>轴承润滑</category><category>润滑脂选型</category><category>基础油黏度</category><category>黏度比</category><category>加脂量</category><category>补脂周期</category><category>润滑管理</category></item></channel></rss>