14.1.- BIOMEKANIKA

Biomekanik mempelajari mekanisme pergerakan makhluk hidup, di antaranya gerakan tubuh manusia. Penelitian ini berkisar dari gerakan yang paling sederhana dalam kehidupan sehari-hari, seperti Kerja atau olah raga, hingga pergerakan beberapa organ dalam, seperti jantung. Untuk mempelajari kinetika tubuh manusia, biomekanik menerapkan prinsip mekanika dan pengetahuan tentang anatomi dan fisiologi, yang memungkinkan rancangan instrumen diagnostik dan perawatan baru serta pengembangan implan dan yang lebih baik prostesis desain.

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Saat ini, Biomekanik menganalisis gerakan kombinasi sendi dan otot. Analisis ini memungkinkan kita untuk mempelajari beban dan upaya yang dilakukan tubuh manusia. Pengetahuan tentang kinetika manusia memungkinkan perawatan cedera dan rehabilitasi selanjutnya, desain prostesis yang memungkinkan fleksibilitas gerakan, pencarian teknik olahraga baru untuk meningkatkan kinerja aktivitas fisik atau pencegahan kerusakan organisme saat melakukan aktivitas di tempat kerja dan di rumah. Pengetahuan ini dapat dibagi menjadi beberapa bidang Biomekanik: Biomekanik Medis, Biomekanik Olahraga dan Biomekanik Kerja. Aplikasi lain dari Biomekanik adalah desain aplikasi robotik. Gerakan yang dilakukan oleh lengan robot atau kapasitas perpindahan beberapa orang melalui sistem lokomotor elektro-mekanis didasarkan pada mekanisme makhluk hidup.

Studi berkelanjutan tentang perilaku mekanis organisme mengarahkan aplikasi biomekanik untuk mengembangkan prostesis bionik dan organisme buatan yang mensimulasikan fungsi normal organisme nyata dan dapat bereaksi terhadap rangsangan. Selain itu, peningkatan teknologi exoskeletons akan meningkatkan mobilitas orang-orang dengan mobilitas terbatas dan meningkatkan kapasitas fisik saat melakukan aktivitas yang berat.

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BIOMEKANIKA UNITS
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BASIC MECHANICS INTEGRATED LABORATORY - LIMEBA
  • LIMEBA
Available
7.1.1.- MECHANICS FUNDAMENTALS KITS
LIMEBA
Basic Mechanics Integrated Laboratory
The Integrated Basic Mechanics Laboratory, "LIMEBA," designed by EDIBON, allows for the construction of various experiments on the base panel, where length measurements are possible thanks to the distance between the centers of the perforations...
PANEL AND COMMON ELEMENTS CASE FOR LIMEBA - MECA/EC
Available
7.1.1.- MECHANICS FUNDAMENTALS KITS
MECA/EC
Panel dan Koper dengan Elemen Umum untuk LIMEBA
Aksesori dari LIMEBA
It is the supporting structure where the modules’s elements are mounted in order to undertake the experiments and hence, the basepanel is necessary along with any module.The panel is pierced with equidistant holes that help students to take...
STATICS EXPERIMENTS - MECA1
Available
7.1.1.- MECHANICS FUNDAMENTALS KITS
MECA1
Statics Experiments
Aksesori dari LIMEBA
Statics is the part of Mechanics that studies any kind of structure or element in balance-equilibrium.Basically the module consist on experiments in which the student shall learn to deduce the main principles of Statics and its most important...
TRANSMISSIONS EXPERIMENTS - MECA3
Available
7.1.1.- MECHANICS FUNDAMENTALS KITS
MECA3
Transmissions Experiments
Aksesori dari LIMEBA
Most recent machines require the transmission of motion between elements to obtain the desired mechanical result. The mechanisms studied in this module are those that transmit motion between two axles.
DYNAMICS EXPERIMENTS - MECA4
Available
7.1.1.- MECHANICS FUNDAMENTALS KITS
MECA4
Dynamics Experiments
Aksesori dari LIMEBA
Dynamics is the part of Mechanics that analyzes the motion of an element or mechanism caused by a force. Thus the study is concentrated on the basic laws of Dynamics.
FRICTION EXPERIMENTS - MECA5
Available
7.1.1.- MECHANICS FUNDAMENTALS KITS
MECA5
Friction Experiments
Aksesori dari LIMEBA
This module considers the most important phenomenon of Dynamics: Friction. It is a manifestation of the energy loss due to contact, effect that happens in every real-world mechanism.
SPECIAL MECHANISMS EXPERIMENTS - MECA6
Available
7.1.1.- MECHANICS FUNDAMENTALS KITS
MECA6
Special Mechanisms Experiments
Aksesori dari LIMEBA
This module considers various mechanisms frequently used in industrial processes, without them some operations would not be possible with the same efficiency. Here these mechanisms are shown and their function analyzed.
SLIDER CRANK MECHANISM - MBD
  • MBD
Available
7.1.2.1.- MEKANISME
MBD
Slider Crank Mechanism
The Slider Crank Mechanism, "MBD", designed by EDIBON, is an example of slider-crank mechanism.This mechanism is made of aluminum and consists of a rotary element (graduated disc), called crank, connected to a rigid bar, calledconnecting rod. When...
SCOTCH YOKE MECHANISM - MYE
  • MYE
Available
7.1.2.1.- MEKANISME
MYE
Scotch Yoke Mechanism
The Scotch Yoke Mechanism, "MYE", designed by EDIBON, is an example of slider-crank mechanism for converting the linear motion of a slider into rotational motion or vice versa.It is made of aluminum and consists of a rotary element, called crank,...
SLOTTED LINK MECHANISM - MBM1
  • MBM1
Available
7.1.2.1.- MEKANISME
MBM1
Slotted Link Mechanism
The Slotted Link Mechanism, "MBM1", is an example of a quick-return mechanism, capable of transforming circular motion into reciprocating motion. It is made of aluminum and consists of a rotary element (graduated disk), called crank, connected to...
WHITWORTH QUICK RETURN MECHANISM - MBM2
  • MBM2
Available
7.1.2.1.- MEKANISME
MBM2
Whitworth Quick Return Mechanism
The Whitworth Quick Return Mechanism, "MBM2", is a mechanism able to transform circular movement into reciprocating movement. It ismade of aluminum and consists of a rotary element, called crank, with a graduated disk, connected to a rigid bar,...
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