设计,建模和实验验证一个完全脱的肌驱动的人形手臂
Diwei Huang1, Hao Li1, Xiao Jiang1
1School of Advanced Manufacturing, Sun Yat-sen University, No. 66, Gongchang Road, Guangming District, Shenzhen 518107, China.
Biomimetics (Basel, Switzerland)
|February 26, 2026
概括
这项研究引入了一种具有机械关节脱的新型人形手臂,模仿人类四肢功能. 仿生设计可以实现精确,快速的动作,以实现人与人交互的机器人.
科学领域:
- 机器人技术 机器人技术 机器人技术
- 生物模拟学是一种生物模拟学.
- 机械工程 机械工程
背景情况:
- 人的上肢运动依赖于对抗性的肌肉动作来控制运动.
- 现有的机器人手臂通常需要复杂的模型来共同控制空间.
- 仿生设计为更直观,更有效的机器人操纵提供了潜力.
研究的目的:
- 提出一种完全脱的肌驱动型人形手臂 (FDTDH-Arm),灵感来自人类上肢机制.
- 在机械层面实现关节空间脱,减少对复杂控制算法的依赖.
- 通过实验测试来验证原型FDTDH-Arm的性能.
主要方法:
- 开发了一种新型的FDTDH-Arm,利用对抗式驱动和联合调节进行机械解.
- 建立了关节层和全臂运动模型,以分析在滚动约束下的运动行为.
- 构建并通过实验验证了拟议的人形手臂的原型.
主要成果:
- 在FDTDH-Arm原型中证明了有效的机械关节空间脱.
- 实现了与人类上肢相提并论的被动关节刚性.
- 记录了0.40毫米的平均定位误差和3.62米/秒的最大端效应器速度.
结论:
- FDTDH-Arm提供了一种机械实现的生物仿真解决方案,用于人形操纵.
- 该设计允许精确和快速的运动,适合人与人互动的环境.
- 通过对抗式启动进行机械关节脱是先进机器人臂的可行策略.
更多相关视频
03:55Author Spotlight: Enhancing Grasping Abilities for Hemiplegic Patients with Flexible Robotic Limbs
Published on: October 27, 2023
2.9K
11:16Engineering Platform and Experimental Protocol for Design and Evaluation of a Neurally-controlled Powered Transfemoral Prosthesis
Published on: July 22, 2014
16.7K
相关概念视频
Development of the Limb Synovial Joints
2.5K
Joints form during embryonic development in conjunction with the formation and growth of the associated bones. The embryonic tissue that gives rise to all bones, cartilage, and connective tissues of the body is called mesenchyme.
The mesenchymal stem cells differentiate into chondrocytes that form the hyaline cartilage, and later the cartilaginous model of the bone. This model further transforms into a bone. This process is known as endochondral ossification.
During development, the limbs...
The mesenchymal stem cells differentiate into chondrocytes that form the hyaline cartilage, and later the cartilaginous model of the bone. This model further transforms into a bone. This process is known as endochondral ossification.
During development, the limbs...
2.5K
Muscles that Move the Arm
5.0K
Nine muscles are involved in arm movements. Two of these, the pectoralis major and latissimus dorsi, originate from the axial skeleton and are called axial muscles. The other seven originate from the scapula and are called the scapular muscles.
The pectoralis major has two origins. Its clavicular head originates on the medial half of the clavicle. In contrast, the sternocostal head originates on the costal cartilages of ribs 1-6, the sternum, and the aponeurosis of the external oblique of the...
The pectoralis major has two origins. Its clavicular head originates on the medial half of the clavicle. In contrast, the sternocostal head originates on the costal cartilages of ribs 1-6, the sternum, and the aponeurosis of the external oblique of the...
5.0K
Design Example: Frog Muscle Response
634
A student is tasked to work on an intriguing experiment involving an RL (Resistor-Inductor) circuit to study the muscle response of a frog's leg to electrical stimulation. The RL circuit plays a crucial role in this experiment, providing the means to control and measure the electrical impulses that trigger muscle contraction.
When the switch connecting the RL circuit is closed, a brief muscle contraction is observed. This is because, at a steady state, the inductor acts like a short...
When the switch connecting the RL circuit is closed, a brief muscle contraction is observed. This is because, at a steady state, the inductor acts like a short...
634
Three-Dimensional Force System:Problem Solving
1.4K
A three-dimensional force system refers to a scenario in which three forces act simultaneously in three different directions. This type of problem is commonly encountered in physics and engineering, where it is necessary to calculate the resultant force on the system, which can then be used to predict or analyze the behavior of the object or structure under consideration.
To solve a three-dimensional force system, first resolve each force into its respective scalar components. Do this using...
To solve a three-dimensional force system, first resolve each force into its respective scalar components. Do this using...
1.4K
Bones of the Upper Limb: Humerus
13.0K
The upper limb consists of the arm, forearm, wrist, and hand bones. The humerus is the single bone of the upper arm region. Proximally, it has a large, spherical, smooth head that articulates with the glenoid cavity of the scapula to form the glenohumeral or shoulder joint. The margin of the head is the anatomical neck, a residual epiphyseal plate. Laterally it extends to form bony projections called the greater tubercle and the lesser tubercle. Next to the tubercles is the surgical neck, a...
13.0K
Three-Dimensional Force System
2.9K
In mechanical engineering, a three-dimensional force system is a system of forces acting in three dimensions, with forces applied along the x, y, and z coordinate axes. The three-dimensional force system is an important concept in mechanical engineering, as it allows engineers to understand and analyze the behavior of objects and structures in three dimensions. By understanding the forces acting on a system, engineers can design more efficient and effective mechanical systems that can withstand...
2.9K
