Araştırma Makalesi

Investigation of Discharge Characteristics of Hinges Produced with 3D Printing for Prosthetic Fingers

Cilt: 24 Sayı: 2 1 Haziran 2021
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Investigation of Discharge Characteristics of Hinges Produced with 3D Printing for Prosthetic Fingers

Öz

Flexible hinges are joint mechanisms made of soft or flexible materials. The aim of this study is to determine the discharge characteristics of the flexible hinges used in prosthetic hands and fingers according to the production techniques and to determine the most appropriate hinge production parameters. The speed of the opening process and the energy consumption during the closing process directly depend on the structure of the flexible hinge. For this reason, it is important to examine the relationship between the change of the flexible hinge structure and its discharge in terms of oscillation and energy requirement. In the method of the study, primarily flexible hinge samples are produced using different printing parameters. In the next step, a finger-like test system is designed that uses accelerometers to measure discharge oscillations on the fingers. The test mechanism has a body and a free accelerometer. The body sensor is used to distinguish body vibrations transmitted to the free accelerometer. As a result of the measurements made with the test system, it is observed that the honeycomb shape produced higher frequency vibrations than the linear shape in terms of filling the shape. This indicates that the honeycomb filler can store a higher amount of energy as a result of stretching. As the percentage of inner fill or the number of outer shells increased, the frequency of vibration of the flexible hinge when released is found to be higher. It has been concluded that the hinge, which has the highest energy storage capacity at the lowest cost, will have a honeycomb filling shape, 30% filler, and four shells. Finally, a system that measures the power consumed for finger closing operations is presented. As a result of energy consumption levels with hinges, it has been observed that energy consumption increases as infill density and number of shell values increase. It is seen that these values are compatible with oscillation values. With this system, it is aimed to be used for parameter selection in robotic prosthetic finger application which is planned to be produced by 3D printing in the future.

Anahtar Kelimeler

Destekleyen Kurum

Uşak Üniversitesi

Proje Numarası

UBAP06 2015/TP005

Teşekkür

This study is performed under the project named Limb Design with Wearable Soft Robotic Actuator for Amputees”, UBAP06 2015/TP005 Project in Uşak University. The 3D printer and other measurement instruments are supplied from the Electronics Laboratory of Uşak University Technical Sciences Vocational School.

Kaynakça

  1. [1] N. Lobontiu, Compliant mechanisms: design of flexure hinges. CRC press, (2002).
  2. [2] R. Mutlu, G. Alici, M. in het Panhuis, and G. Spinks, “Effect of flexure hinge type on a 3D printed fully compliant prosthetic finger,” in 2015 IEEE International Conference on Advanced Intelligent Mechatronics (AIM), 790–795, (2015).
  3. [3] R. Mutlu, G. Alici, M. in het Panhuis, and G. M. Spinks, “3D printed flexure hinges for soft monolithic prosthetic fingers,” Soft Robotics, 3(3):120–133, (2016). [4] J. C. S. Terry, “Plastic hinge and method of making the same,” , (1961).
  4. [5] B. T. Cheok, K. Y. Foong, A. Y. C. Nee, and C. H. Teng, “Some aspects of a knowledge-based approach for automating progressive metal stamping die design,” Computers in Industry, 24(1):81–96, (1994).
  5. [6] K. S. Pister, M. W. Judy, S. R. Burgett, and R. S. Fearing, “Microfabricated hinges,” Sensors and Actuators A: Physical, 33(3): 249–256, (1992).
  6. [7] H. Ding, S. J. Chen, and K. Cheng, “Two-dimensional vibration-assisted micro end milling: cutting force modelling and machining process dynamics,” Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture, 224(12): 1775–1783, (2010).
  7. [8] K. Suzuki, I. Shimoyama, and H. Miura, “Insect-model based microrobot with elastic hinges,” Journal of Microelectromechanical Systems, 3(1):4–9,(1994).
  8. [9] K. Cai, Y. Tian, F. Wang, D. Zhang, and B. Shirinzadeh, “Development of a piezo-driven 3-DOF stage with T-shape flexible hinge mechanism,” Robotics and Computer-Integrated Manufacturing, 37:125–138, (2016).

Ayrıntılar

Birincil Dil

İngilizce

Konular

Mühendislik

Bölüm

Araştırma Makalesi

Yayımlanma Tarihi

1 Haziran 2021

Gönderilme Tarihi

3 Mart 2020

Kabul Tarihi

6 Mayıs 2020

Yayımlandığı Sayı

Yıl 2021 Cilt: 24 Sayı: 2

Kaynak Göster

APA
Seçkin, M., Seçkin, A. Ç., & Yaman Turan, N. (2021). Investigation of Discharge Characteristics of Hinges Produced with 3D Printing for Prosthetic Fingers. Politeknik Dergisi, 24(2), 575-583. https://doi.org/10.2339/politeknik.698316
AMA
1.Seçkin M, Seçkin AÇ, Yaman Turan N. Investigation of Discharge Characteristics of Hinges Produced with 3D Printing for Prosthetic Fingers. Politeknik Dergisi. 2021;24(2):575-583. doi:10.2339/politeknik.698316
Chicago
Seçkin, Mine, Ahmet Çağdaş Seçkin, ve Necla Yaman Turan. 2021. “Investigation of Discharge Characteristics of Hinges Produced with 3D Printing for Prosthetic Fingers”. Politeknik Dergisi 24 (2): 575-83. https://doi.org/10.2339/politeknik.698316.
EndNote
Seçkin M, Seçkin AÇ, Yaman Turan N (01 Haziran 2021) Investigation of Discharge Characteristics of Hinges Produced with 3D Printing for Prosthetic Fingers. Politeknik Dergisi 24 2 575–583.
IEEE
[1]M. Seçkin, A. Ç. Seçkin, ve N. Yaman Turan, “Investigation of Discharge Characteristics of Hinges Produced with 3D Printing for Prosthetic Fingers”, Politeknik Dergisi, c. 24, sy 2, ss. 575–583, Haz. 2021, doi: 10.2339/politeknik.698316.
ISNAD
Seçkin, Mine - Seçkin, Ahmet Çağdaş - Yaman Turan, Necla. “Investigation of Discharge Characteristics of Hinges Produced with 3D Printing for Prosthetic Fingers”. Politeknik Dergisi 24/2 (01 Haziran 2021): 575-583. https://doi.org/10.2339/politeknik.698316.
JAMA
1.Seçkin M, Seçkin AÇ, Yaman Turan N. Investigation of Discharge Characteristics of Hinges Produced with 3D Printing for Prosthetic Fingers. Politeknik Dergisi. 2021;24:575–583.
MLA
Seçkin, Mine, vd. “Investigation of Discharge Characteristics of Hinges Produced with 3D Printing for Prosthetic Fingers”. Politeknik Dergisi, c. 24, sy 2, Haziran 2021, ss. 575-83, doi:10.2339/politeknik.698316.
Vancouver
1.Mine Seçkin, Ahmet Çağdaş Seçkin, Necla Yaman Turan. Investigation of Discharge Characteristics of Hinges Produced with 3D Printing for Prosthetic Fingers. Politeknik Dergisi. 01 Haziran 2021;24(2):575-83. doi:10.2339/politeknik.698316

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