Design and Analysis of Non-Contact Gripper Using Swirl Force

被引:0
|
作者
Dinesh, J. [1 ]
Munusami, V. [1 ]
Ragunathan, S. [1 ]
机构
[1] Jayalakshmi Inst Technol, Dept Mech Engn, Thoppur 636352, Dharmapuri, India
关键词
Swirling force; Negative pressure distribution; Lifting force; Soft material; Air flow; Swirl chimney; BERNOULLI PRINCIPLE; WAFERS; AIR;
D O I
暂无
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
In general, the gripppers are used to pick and place the products in the automation industries. Major challenges in this area is to handle the soft materials. At this juncture we design a non-contact gripper called a swirl gripper, which is to be generates swirling air flow to create an upward lifting force. A negative pressure is caused by the centrifugal force of the swirling air flow and is distributed like a parabolic curve to apply a lifting force. This force can be used to pick up the object placed underneath the swirl gripper without any contract. In comparision with conventional pneumatic noncontact grippers, the uniqueness of the new gripper lies in that it is electrically (rather than pneumatically) activated. This paper presents a systematic approach to design and analyze the grapper during material handling and to calculate the lifting fore and stress state produced in the soft materials. The design to be experimentally investigate the characteristics of the pressure distribution, based on which a theoretical analysis on teh swirling flow. Furthermore, we measure the relationship between the lifting force and gap clearance and reveal that exists a leviation zone where an object can maintain a stable levitation. By using this swirl force we attempt to utilize the solar energy in new way. A pyramid shape air tight glass structure with extended chimney to be constructed. At top end of chemnery a small turibine with a generator is mounted, from the sun light convective heat transfer takes place inside the sturucture. Dut to rise of temperature inside the structure air is heated and moves upward direction that time the swirl force will rotate the generator. The results obtained from the theoretical approaches to be validate with the experiment results.
引用
收藏
页码:S473 / S476
页数:4
相关论文
共 50 条
  • [31] Non-contact internal-MMIC measurement using scanning force probing
    Falkingham, CJ
    Edwards, IH
    Bridges, GE
    2000 IEEE MTT-S INTERNATIONAL MICROWAVE SYMPOSIUM DIGEST, VOLS 1-3, 2000, : 1619 - 1622
  • [32] Analysis of non-contact finger seal force based on deformation of the finger pad
    Wei, Yuan
    Ma, Bowen
    Chen, Xiangyan
    Xu, Fanyi
    Guo, Jia
    Liu, Shulin
    Dou, Wei
    JOURNAL OF MECHANICAL SCIENCE AND TECHNOLOGY, 2024, 38 (09) : 4721 - 4732
  • [33] Non-contact modal analysis by laser excitation: estimation of the "equivalent" input force
    Castellini, P
    Revel, GM
    Scalise, L
    NOISE AND VIBRATION ENGINEERING, VOLS 1 - 3, PROCEEDINGS, 2001, : 1051 - 1061
  • [34] Thermally driven non-contact atomic force microscopy
    Gannepalli, A
    Sebastian, A
    Cleveland, J
    Salapaka, M
    APPLIED PHYSICS LETTERS, 2005, 87 (11)
  • [35] Quantitative non-contact dynamic Casimir force measurements
    Jourdan, G.
    Lambrecht, A.
    Comin, F.
    Chevrier, J.
    EPL, 2009, 85 (03)
  • [36] Quantitative methods for non-contact electrostatic force microscopy
    Baird, PJS
    Bowler, JR
    Stevens, GC
    ELECTROSTATICS 1999, 1999, 163 : 381 - 386
  • [37] MODELING AND SIMULATION OF NON-CONTACT ATOMIC FORCE MICROSCOPE
    Bahrami, Mohammadreza
    Ramezani, Asghar
    Osquie, Kambiz Ghaemi
    PROCEEDINGS OF THE ASME 10TH BIENNIAL CONFERENCE ON ENGINEERING SYSTEMS DESIGN AND ANALYSIS, 2010, VOL 5, 2010, : 565 - 569
  • [38] Non-contact chronic wound analysis using deep learning
    Chairat, Sawrawit
    Dissaneewate, Tulaya
    Wangkulangkul, Piyanun
    Kongpanichakul, Laliphat
    Chaichulee, Sitthichok
    13TH BIOMEDICAL ENGINEERING INTERNATIONAL CONFERENCE (BMEICON 2021), 2018,
  • [39] Quantitative assessment of contact and non-contact lateral force calibration methods for atomic force microscopy
    Bien Cuong Tran Khac
    Chung, Koo-Hyun
    ULTRAMICROSCOPY, 2016, 161 : 41 - 50
  • [40] Non-contact electrostatic surface force imaging of single protein filaments using intermolecular force microscopy
    Aoki, T
    Sowa, Y
    Yokota, H
    Hiroshima, M
    Tokunaga, M
    Ishii, Y
    Yanagida, T
    SINGLE MOLECULES, 2001, 2 (03) : 183 - 190