期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
A Study on Adhesive Properties of Materials Based on Biomimetic Results of Gecko′s Feet 被引量:1
1
作者 Stanislav Gorb 《Journal of Bionic Engineering》 SCIE EI CSCD 2004年第1期66-71,共6页
Many animals have a magic ability to move or hold on ceilings and walls because of the design of their adhesive pads. The experiments were carried out to study the effects of material properties (elastic modulus EM an... Many animals have a magic ability to move or hold on ceilings and walls because of the design of their adhesive pads. The experiments were carried out to study the effects of material properties (elastic modulus EM and chemical components CC) and contact geometry (surface roughness, connecting stiffness) on their adhesive properties. The adhesion of the lowest EM samples is the highest (15 kPa) and the surface roughness has strong effects on adhesion and the adhesion decreases to 1.5 kPa for the highest EM samples. The adhesive forces are heavily influenced by CC of polyurethane. Surface roughness heavily influences the adhesion and when the roughness is higher than R a 0.3 μm, the obtained adhesion of the samples is the same. The adhesion does not change with the normal forces when a sphere is used to contact with flat PU samples. But when the two matually contact surfaces are flat, the adhesion of a material increases with the normal load at first and then turns to slightly raise. The adhesion of them is the same for the contact angles from 1 to 3 degree when the samples are softly connected. But when they are adhesive hardly to each other the adhesion decreases with increase of the contact angle. 展开更多
关键词 adhesion polyurethane surface roughness connecting stiffness biomimetic
下载PDF
聚氨酯粘着性能的实验研究 被引量:10
2
作者 戴振东 Stanislav Gorb 《南京理工大学学报》 EI CAS CSCD 北大核心 2004年第1期48-51,56,共5页
用生物摩擦学实验系统研究聚氨酯材料的化学成分、试样连接刚度、试样间初始接触角等在不同法向载荷的粘着性能。结果表明,聚氨酯的化学成分对其粘着性能有重要影响,在多羟基化合物与MDI(二异氰酸酯)的组分比为1:2时,粘着力最大。连接... 用生物摩擦学实验系统研究聚氨酯材料的化学成分、试样连接刚度、试样间初始接触角等在不同法向载荷的粘着性能。结果表明,聚氨酯的化学成分对其粘着性能有重要影响,在多羟基化合物与MDI(二异氰酸酯)的组分比为1:2时,粘着力最大。连接刚度是影响粘着性能的另一主要因素。软连接情况下,不同接触角时,同样粗糙的表面上,材料的粘着性能相差不大。不同粗糙度的表面间的粘着力差异显著。刚性连接情况下,粘着力随接触角的增加而减小。在较光滑表面上降低的幅度大于粗糙表面上的幅度。上述实验结果为仿生足掌的设计提供了重要数据。 展开更多
关键词 粘着力 聚氨酯 联接刚度 表面粗糙度 仿生设计
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部