Dummy for simulation trunk load testing

A torso and simulation technology, which is applied in the field of simulation test devices, can solve the problems of no skin and muscles in the neck and a large difference in hardness.

A torso and simulation technology, which is applied in the field of simulation test devices, can solve the problems of no skin and muscles in the neck and a large difference in hardness.

CN104299501AActive Publication Date: 2015-01-21THE QUARTERMASTER EQUIPMENT RESEARCH INSTITUTE OF THE GENERAL LOGISITIC DEPARTME

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  • Dummy for simulation trunk load testing
  • Dummy for simulation trunk load testing
  • Dummy for simulation trunk load testing

Examples

Experimental program
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Effect test

Embodiment Construction

[0017] The present invention will be described in detail below in conjunction with the accompanying drawings and embodiments.

[0018] Such as figure 1 As shown, the present invention includes a simulated bone 1 and a simulated soft tissue 2; the simulated bone 1 includes a central axis bone 10, two symmetrically arranged upper limb bones 20 and lower limb bones 30.

[0019] Such as figure 1 , figure 2 , image 3 As shown, the central axis bone 10 of the present invention includes a skull 11 , a spine 12 , ribs 13 , a sternum 14 and a neck-shoulder-thoracic joint 15 . The spine 12 includes a cervical segment 121 , a thoracic segment 122 , a lumbar segment 123 and a sacral segment 124 . The ribs 13 include a first rib 131 , a second rib 132 , a third rib 133 , a fourth rib 134 , a fifth rib 135 , a sixth rib 136 and a seventh rib 137 arranged symmetrically on both sides.

[0020] The upper end of the cervical spine section 121 of the spine 12 is fixedly connected to the s...

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Abstract

The invention relates to a dummy for simulation trunk load testing. The dummy is characterized by comprising simulation skeletons and simulation soft tissues; the simulation skeletons include an axial skeleton, two symmetrically-arranged upper limbs and a lower limb; the axial skeleton comprises a skull, a spinal column, ribs, sternums and neck, shoulder and chest connecting pieces; the spinal column comprises a spinal column neck segment, a spinal column chest segment, a spinal column waist segment and a spinal column sacral segment; the ribs include two symmetrically-arranged first ribs, two symmetrically-arranged second ribs, two symmetrically-arranged third ribs, two symmetrically-arranged fourth ribs, two symmetrically-arranged fifth ribs, two symmetrically-arranged sixth ribs and two symmetrically-arranged seventh ribs; each upper limb comprises an upper limb girdle, humerus, radioulna, carpometacarpus, phalanxes, an adduction and abduction shaft, an elbow shaft and a wrist shaft; each upper limb girdle comprises a clavicle, a shoulder blade and a spina scapulae; each phalanx comprises a first phalanx body, a second phalanx body, a third phalanx body, a fourth phalanx body and a fifth phalanx body; the lower limb comprises a sacrum, two symmetrically-arranged hip bones, two closed holes, two thighbones and two installation fixing pieces; the simulation soft tissues comprise a head, a neck, a trunk, upper segments of thighs, the left upper limb and the right upper limb, and the head, the neck, the trunk and the upper segments of the thighs are wholly poured, curved and molded through silicone rubber. The dummy can be widely applied to various static or dynamic load testing processes.

Description

technical field [0001] The invention relates to a simulation test device, in particular to a dummy for the 50th percentile simulation trunk load test. Background technique [0002] In fields such as field survival, outdoor sports, student backpacks, army marches, and labor handling, people usually need to walk with a back load. Long-term human back load changes the position of the body's center of gravity, affecting people's gait and body posture, especially when the load is too large or walking with a long-term load can easily cause physical fatigue and injury. Therefore, in the field of sports biomechanics, scholars at home and abroad have extensively carried out physiological and biomechanical research on gait, posture, fatigue, energy consumption, etc. of human body load walking. At present, most of the studies on human load walking use the method of trial and error with real people, relying on the changes of human subjective fatigue or comfort, physiological and biomec...

Claims

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Application Information

Patent Timeline
21 Jan 2015
Publication
CN104299501A
IPC
G09B25/00
CPC
G09B25/00
Inventors
θ°ŒηŽ‰ηΊ’; 郑捷文