OEM Factory for High Temperature Wax to Angola Manufacturer
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OEM Factory for High Temperature Wax to Angola Manufacturer Detail:
Automatic Temperature Regulating Agent Series is a kind of thermal expansion materials, which depends on principles that the substance expands when it is heated and constricts when it is cooled and a liquid is incompressible. It can automatically regulate temperature. When the ambient temperature goes up to the special value, Automatic Temperature Regulating Agent goes up to the special temperature with the ambient temperature, its unit volume increases. When the ambient temperature falls down to special value, Automatic Temperature Regulating Agent also falls down to the special temperature with the ambient temperature, its unit volume reduces. The agent is loaded in the purpose-made thermostatic element. The variation of ambient temperature takes a pressure and the thermostatic element takes a change, and this change brings the movement of either the appurtenance of the thermodynamic component or itself, thereby carrying out the automatic opening & closing function. All sorts of temperature controllers and the electrical switches are developed depending on the physical feature of Automatic Temperature Regulating Agent. It has been widely used in the fields of refrigeration, auto-control system, automobile industry, petrochemical industry, sanitary ware, heating and ventilating, electric electron, building, space & aviation etc.
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Model Number |
Appearance (Normal Temperature) |
Quality Standard |
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Range of Temperature Control |
Effective Distance Travel |
Water-Solubility Acid and Alkali |
Mechanical Impurity |
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A98 |
Powder, Slice , Column |
98/111 |
8 |
Non. |
Non. |
|||
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A100 |
Powder, Slice , Column |
100/110 |
3 |
Non. |
Non. |
|||
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A100-1 |
Powder, Slice , Column |
100/110 |
7 |
Non. |
Non. |
|||
|
A100-2 |
Powder, Slice , Column |
100/120 |
8 |
Non. |
Non. |
|||
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A105 |
Powder, Slice , Column |
105/120 |
6 |
Non. |
Non. |
|||
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A108 |
Powder, Slice , Column |
108/116 |
8 |
Non. |
Non. |
|||
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A110 |
Powder, Slice , Column |
110/120 |
5 |
Non. |
Non. |
|||
|
A110-1 |
Powder, Slice , Column |
110/120 |
7 |
Non. |
Non. |
|||
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A120 |
Powder, Slice , Column |
120/140 |
6 |
Non. |
Non. |
|||
|
A120-1 |
Powder, Slice , Column |
120/160 |
8 |
Non. |
Non. |
|||
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A145 |
Powder, Slice , Column |
145/165 |
7 |
Non. |
Non. |
|||
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A160 |
Powder, Slice , Column |
160/180 |
4 |
Non. |
Non. |
|||
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A160-1 |
Powder, Slice , Column |
160/200 |
10 |
Non. |
Non. |
|||
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A200 |
Powder, Slice , Column |
200/220 |
7 |
Non. |
Non. |
|||
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A200-1 |
Powder, Slice , Column |
200/230 |
7 |
Non. |
Non. |
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"Control the standard by the details, show the power by quality". Our business has strived to establish a highly efficient and stable team staff and explored an effective good quality regulate course of action for OEM Factory for High Temperature Wax to Angola Manufacturer, The product will supply to all over the world, such as: Saudi Arabia , Uruguay , Rome , Our qualified engineering team will usually be prepared to serve you for consultation and feedback. We are able to also deliver you with absolutely free samples to meet your needs. Best efforts might be made to offer you the ideal service and products. For anyone who is interested in our company and items, please make contact with us by sending us emails or contact us right away. In order to know our solutions and organization. ar more, you can come to our factory to determine it. We are going to usually welcome guests from around the globe to our corporation. o create small business relations with us. Please really feel no cost to speak to us for enterprise. nd we believe we are going to share the most effective trading practical experience with all our merchants.
“Design, development, and evaluation of an MRI-guided SMA spring-actuated neurosurgical robot”
by Mingyen Ho, Yeongjin Kim, Shing Shin Cheng, Rao Gullapalli and Jaydev P. Desai
International Journal of Robotics Research, 34(8): 1147-1163
https://bit.ly/1pr2f0x
ABSTRACT: In this paper, we present our work on the development of a magnetic resonance imaging (MRI)-compatible minimally invasive neurosurgical intracranial robot (MINIR) comprising shape memory alloy (SMA) spring actuators and tendon–sheath mechanisms. We present the detailed modeling and analysis along with experimental results of the characterization of SMA spring actuators. Furthermore, to demonstrate image-feedback control, we used the images obtained from a camera to control the motion of the robot so that eventually continuous MR images could be used in the future to control robot motion. Since the image tracking algorithm may fail in some situations, we also developed a temperature feedback control scheme which served as a backup controller for the robot. Experimental results demonstrated that both image feedback and temperature feedback can be used to control the motion of MINIR. A series of MRI compatibility tests was performed on the robot and the experimental results demonstrated that the robot is MRI-compatible and no significant visual image distortion was observed in the MR images during robot operation.





