王立新,周强.基于猪笼草叶笼滑移区仿生的蝗虫捕集滑板功效测试[J].农业机械学报,2011,42(5):222-225.
Wang Lixin,Zhou Qiang.Function Testing of Locust Slippery Plate Manufactured Based on Waxy Zone of Nepenthes Pitchers[J].Transactions of the Chinese Society for Agricultural Machinery,2011,42(5):222-225.
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基于猪笼草叶笼滑移区仿生的蝗虫捕集滑板功效测试   [下载全文]
Function Testing of Locust Slippery Plate Manufactured Based on Waxy Zone of Nepenthes Pitchers   [Download Pdf][in English]
  
DOI:10.3969/j.issn.1000-1298.[year].[issue].[sequence]
中文关键词:  蝗虫  捕集滑板  猪笼草叶笼滑移区  仿生  附着力
基金项目:国家自然科学基金资助项目 (50775214)和中国农业大学研究生科研创新专项资助项目(kycx09099)
作者单位
王立新 中国农业大学 
周强 中国农业大学 
中文摘要:为测试基于猪笼草(Nepenthes)叶笼滑移区表面结构与超滑功能仿生制备的蝗虫滑移捕集滑板的功效,利用蝗虫附着力测试系统进行了蝗虫在叶笼滑移区与滑移捕集滑板上的附着力测试试验,并利用光电诱导蝗虫滑移捕集机进行了滑移捕集滑板的滑移功能验证试验。结果表明,蝗虫在捕集滑板上的最大附着力与在叶笼滑移区表面的最大附着力之比是0.94~1.05;滑移捕集滑板以32°倾斜角安装时,对蝗虫的滑移捕集率可达82.4%。相似的附着力和较高的滑移捕集率表明仿生制备的滑移捕集滑板与猪笼草叶笼滑移区具有相近的滑移功能,达到了良好的仿生效果,能够满足灾害蝗虫光电诱导滑移捕集治理的技术需求。
Wang Lixin  Zhou Qiang
China Agricultural University;China Agricultural University
Key Words:Locust, Slippery plate, Waxy zone of Nepenthes pitcher, Bionics, Attachment force
Abstract:To test the function of the slippery plate bionic-manufactured based on the surface structure and function of waxy zone in Nepenthes pitchers, attachment force of locust on the slippery plate and the waxy zone was measured by utilizing attachment force measurement system for locust. The experiment of verifying the slippery function of the slippery plate with photoelectric inducing plague locust machine was carried out. The experiments results showed that the attachment force of locust on the slippery trapping plate was 0.94~1.05 times of that on the waxy zone. The slippery trapping ratio was reached to 82.4% when the slanting angle of the slippery plate was 32°. Similarity of the attachment force and considerable slippery trapping ratio probably indicates that the slippery plate bears similar function with the waxy zone, and can satisfy the technical demand of photoelectric inducing and slippery trapping plague locust.

Transactions of the Chinese Society for Agriculture Machinery (CSAM), in charged of China Association for Science and Technology (CAST), sponsored by CSAM and Chinese Academy of Agricultural Mechanization Science(CAAMS), started publication in 1957. It is the earliest interdisciplinary journal in Chinese which combines agricultural and engineering. It always closely grasps the development direction of agriculture engineering disciplines and the published papers represent the highest academic level of agriculture engineering in China. Currently, nearly 8,000 papers have been already published. There are around 3,000 papers contributed to the journal each year, but only around 600 of them will be accepted. Transactions of CSAM focuses on a wide range of agricultural machinery, irrigation, electronics, robotics, agro-products engineering, biological energy, agricultural structures and environment and more. Subjects in Transactions of the CSAM have been embodied by many internationally well-known index systems, such as: EI Compendex, CA, CSA, etc.

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