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The working principle of pressure sensors
- Categories:Technical knowledge
- Time of issue:2020-12-31 13:50
(Summary description)Pressure sensors are actually receiving more and more attention due to their simple construction, excellent linearity and stability as well as high output accuracy. The sensitive elements used in pressure transducers are elastic test elements and the body is an elastomer. Among other things, the structural shape of the elastomer and the associated dimensions have a significant influence on the performance of the force transducer.
The working principle of pressure sensors
(Summary description)Pressure sensors are actually receiving more and more attention due to their simple construction, excellent linearity and stability as well as high output accuracy. The sensitive elements used in pressure transducers are elastic test elements and the body is an elastomer. Among other things, the structural shape of the elastomer and the associated dimensions have a significant influence on the performance of the force transducer.
- Categories:Technical knowledge
- Time of issue:2020-12-31 13:50
- Views:
Pressure sensors are actually receiving more and more attention due to their simple construction, excellent linearity and stability as well as high output accuracy. The sensitive elements used in pressure transducers are elastic test elements and the body is an elastomer. Among other things, the structural shape of the elastomer and the associated dimensions have a significant influence on the performance of the force transducer.
The design of pressure transducer elastomers is basically within the scope of mechanical construction design, but because of the force measuring properties required, their construction differs from that of ordinary mechanical parts. In general, ordinary mechanical parts must achieve strength and stiffness with a sufficiently large safety factor and there are no strict requirements on the stress distribution of the part under force conditions.
However, in the case of elastomers, in addition to meeting the requirements for mechanical strength and stiffness, the stress (strain) and load (force) in the area where the resistive strain gauge is mounted on the elastomer, also known as the elastomer, (measurement) is kept in strict communication. At the same time, the patch area needs to achieve a high stress level in order to improve the sensitivity of the force measuring sensor.
In short, the elastomer of a pressure sensor must meet two requirements in the selection process:
(1) The stress (strain) in the patch part must remain in exact correspondence with the measured force, which provides a true reflection of the measured part deformation.
(2) The pressure transducer must increase the stress (strain) level of the patch part. It reflects the function of the component in time.
In order to meet these two requirements, the principle of "stress concentration" is often used when selecting the elastic part of a pressure transducer. The relatively high stress (strain) level in the patch part corresponds exactly to the measured force, in order to increase the sensitivity and design accuracy of the sensor.
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