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2018 | OriginalPaper | Buchkapitel

On the Design of the Gravity Balancer Using Scotch Yoke Derivative Mechanism

verfasst von : Hong-Nguyen Nguyen, Win-Bin Shieh

Erschienen in: New Advances in Mechanism and Machine Science

Verlag: Springer International Publishing

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Abstract

Design of the gravity balancer prototypes based on the modified Scotch yoke type spring mechanism is presented. Followed by the brief description of the conceptual design and validation of the method, design of a one degree-of-freedom (dof) rotary system is proposed. In the 1st generation prototype model, the spring-gravity system is designed as a whole, while, in the 2nd generation model, the gravity balancer is designed as a modular unit for easy adjustment and simple replacement. The friction force due to the prismatic joints of a Scotch yoke derivative mechanism for the latter model has been greatly reduced by using a bushing bearing along with a guidance pole. As a consequence, by showing the equilibrium of the rotary system being sensitive to the fine-tuned position of the end-effector payload, the 2nd prototype model successfully demonstrates the gravity balancing capability of the entire system at all configurations within its range of motion. The issues related to the design of the one-dof gravity balancer are discussed, and the potential use of such balancers in the multiple-dof system is also proposed.

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Literatur
1.
Zurück zum Zitat Agrawal SK, Fattah A (2004) Gravity-balancing of spatial robotic manipulator. Mech Mach Theory 39(12):1331–1344MathSciNetCrossRef Agrawal SK, Fattah A (2004) Gravity-balancing of spatial robotic manipulator. Mech Mach Theory 39(12):1331–1344MathSciNetCrossRef
2.
Zurück zum Zitat Barents R, Schenk M, Van Dorsser WD, Wisse BM, Herder JL (2011) Spring-to-spring balancing as energy-free adjustment method in gravity equilibrators. ASME J Mech Des 133(6):061010(1–10) Barents R, Schenk M, Van Dorsser WD, Wisse BM, Herder JL (2011) Spring-to-spring balancing as energy-free adjustment method in gravity equilibrators. ASME J Mech Des 133(6):061010(1–10)
3.
Zurück zum Zitat Fattah A, Agrawal SK, Catlin G, Hamnett J (2006) Design of a passive gravity-balanced assistive device for sit-to-stand tasks. Trans ASME J Mech Des 128(5):1122–1129CrossRef Fattah A, Agrawal SK, Catlin G, Hamnett J (2006) Design of a passive gravity-balanced assistive device for sit-to-stand tasks. Trans ASME J Mech Des 128(5):1122–1129CrossRef
4.
Zurück zum Zitat Herder JL (1998) Design of spring force compensation systems. Mech Mach Theory 33(1):151–161CrossRef Herder JL (1998) Design of spring force compensation systems. Mech Mach Theory 33(1):151–161CrossRef
5.
Zurück zum Zitat Lee JH et al (2012) Adjustable spring mechanisms inspired by human musculoskeletal structure. Mech Mach Theory 54:76–98CrossRef Lee JH et al (2012) Adjustable spring mechanisms inspired by human musculoskeletal structure. Mech Mach Theory 54:76–98CrossRef
6.
Zurück zum Zitat Lenzo B, Fontana M, Marcheschi S, Salsedo F, Frisoli A, Bergamasco M (2016) Trackhold: a novel passive arm-support device. J Mech Rob 8(9):021007 Lenzo B, Fontana M, Marcheschi S, Salsedo F, Frisoli A, Bergamasco M (2016) Trackhold: a novel passive arm-support device. J Mech Rob 8(9):021007
7.
Zurück zum Zitat Lin PY, Shieh WB, Chen DZ (2009) Design of a gravity-balanced general spatial serial-type manipulator. ASME J Mech Rob 2(3):031003CrossRef Lin PY, Shieh WB, Chen DZ (2009) Design of a gravity-balanced general spatial serial-type manipulator. ASME J Mech Rob 2(3):031003CrossRef
8.
Zurück zum Zitat Nathan RH (1985) A constant force generation mechanism. ASME J Mech Transm Autom Des 107(4):508–512 Nathan RH (1985) A constant force generation mechanism. ASME J Mech Transm Autom Des 107(4):508–512
9.
Zurück zum Zitat Radaelli G, Gallego JA, Herder JL (2010) An energy approach to static balancing of systems with torsion stiffness. In: Proceedings of the ASME design engineering technical conferences & computers and information in engineering conference, Montreal, Canada, 15–18 Aug 2010, DETC2010-28071 Radaelli G, Gallego JA, Herder JL (2010) An energy approach to static balancing of systems with torsion stiffness. In: Proceedings of the ASME design engineering technical conferences & computers and information in engineering conference, Montreal, Canada, 15–18 Aug 2010, DETC2010-28071
10.
Zurück zum Zitat Rahman T, Ramanathan R, Seliktar R, Harwin W (1995) A simple technique to passively gravity-balance articulated mechanisms. Trans ASME J Mech Des 117(4):655–658CrossRef Rahman T, Ramanathan R, Seliktar R, Harwin W (1995) A simple technique to passively gravity-balance articulated mechanisms. Trans ASME J Mech Des 117(4):655–658CrossRef
11.
Zurück zum Zitat Rahman T, Sample W, Seliktar R, Scavina MT, Clark AL, Moran K, Alexander MA (2007) Design and testing of a functional arm orthosis in patients with neuromuscular diseases. IEEE Trans Neural Syst Rehabil Eng 15(2):244–251CrossRef Rahman T, Sample W, Seliktar R, Scavina MT, Clark AL, Moran K, Alexander MA (2007) Design and testing of a functional arm orthosis in patients with neuromuscular diseases. IEEE Trans Neural Syst Rehabil Eng 15(2):244–251CrossRef
12.
Zurück zum Zitat Shieh WB, Chou BS (2015) A novel spring balancing device on the basis of a scotch yoke mechanism. In: 14th World congress in mechanism and machine science, Taipei, Taiwan Shieh WB, Chou BS (2015) A novel spring balancing device on the basis of a scotch yoke mechanism. In: 14th World congress in mechanism and machine science, Taipei, Taiwan
13.
Zurück zum Zitat Shieh WB, Chou BS (2015) Gravity Balancing of a spatial articulated manipulator based on a new spring mechanism. In: Proceedings of the ASME 2015 International design engineering technical conference & computers and information in engineering conference IDETC/CIE 2015, Boston Massachusetts, USA Shieh WB, Chou BS (2015) Gravity Balancing of a spatial articulated manipulator based on a new spring mechanism. In: Proceedings of the ASME 2015 International design engineering technical conference & computers and information in engineering conference IDETC/CIE 2015, Boston Massachusetts, USA
14.
Zurück zum Zitat Streit DA, Gilmore BJ (1989) Perfect equilibrators for rotatable bodies. ASME J Mech Transm Auto Des 111(4):451–458CrossRef Streit DA, Gilmore BJ (1989) Perfect equilibrators for rotatable bodies. ASME J Mech Transm Auto Des 111(4):451–458CrossRef
15.
Zurück zum Zitat Ulrich N et al (1991) Passive mechanical gravity compensation for robot manipulator. In: Proceedings of the 1991 IEEE international conference on robotics and automation, sacramento, pp 1536–1541 Ulrich N et al (1991) Passive mechanical gravity compensation for robot manipulator. In: Proceedings of the 1991 IEEE international conference on robotics and automation, sacramento, pp 1536–1541
16.
Zurück zum Zitat Wang J, Gosselin CM (1999) Static balancing of spatial three-degree-of-freedom parallel mechanisms. Mech Mach Theory 34(4):437–452MathSciNetCrossRef Wang J, Gosselin CM (1999) Static balancing of spatial three-degree-of-freedom parallel mechanisms. Mech Mach Theory 34(4):437–452MathSciNetCrossRef
Metadaten
Titel
On the Design of the Gravity Balancer Using Scotch Yoke Derivative Mechanism
verfasst von
Hong-Nguyen Nguyen
Win-Bin Shieh
Copyright-Jahr
2018
DOI
https://doi.org/10.1007/978-3-319-79111-1_2

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