A device and method for measuring the degree of vacuum inside a hollow glass microsphere

A hollow glass microbead, vacuum degree technology, applied in measuring devices, vacuum gauges, measuring fluid pressure and other directions, can solve the problems of no measuring devices and methods, no good measuring methods, low accuracy, etc., and achieves effective testing methods, The effect of accurate, reliable and accurate measurement results

Active Publication Date: 2021-01-29
HEFEI UNIV OF TECH
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  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

The composition of hollow glass microspheres is similar to that of glass, which not only has the characteristics of non-combustibility and flame retardancy, but also has a wide range of operating temperatures (temperatures below 600°C are acceptable); in addition, hollow glass microspheres also have low vacuum requirements ( In the vacuum range of 0.01-10Pa, it shows good thermal insulation performance. The lower the vacuum degree in this range, the better the thermal insulation performance. You can choose the appropriate vacuum degree according to the thermal insulation requirements and the airtightness of the heat preservation container), and the vacuum holding capacity Well, it has a series of advantages such as low maintenance frequency and simplicity in the later stage, and has great potential application value; in recent years, it has also become one of the important materials in the fields of oil drilling, deep sea exploration, aerospace, heat insulation, etc. The important characterization indicators of beads mainly include: compressive strength, true density, floating rate, packing coefficient and particle size, etc., but the existing density measurement is not accurate, there is no good measurement method, and there is no effective realization of micro-nano Apparatus and method for measuring vacuum degree in vacuum container

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  • A device and method for measuring the degree of vacuum inside a hollow glass microsphere
  • A device and method for measuring the degree of vacuum inside a hollow glass microsphere
  • A device and method for measuring the degree of vacuum inside a hollow glass microsphere

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Embodiment Construction

[0032] The application will be described in further detail below in conjunction with the accompanying drawings. It is necessary to point out that the following specific embodiments are only used to further illustrate the application, and cannot be interpreted as limiting the protection scope of the application. The above application content makes some non-essential improvements and adjustments to this application.

[0033] Such as figure 1 Shown is a device for measuring the vacuum degree in hollow glass microspheres, including a measuring chamber 1 and a reference chamber 2, the measuring chamber 1 is fixed with a container 3, and the measuring chamber directly above the container 3 is The chamber 1 is provided with an extruding piston 11, and the outer diameter of the extruding piston 11 is in interference fit with the inner diameter of the container 3. The extruding piston 11 is connected with the hydraulic motor 9, and the extruding piston 11 is driven by the hydraulic mot...

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Abstract

The invention relates to a device and method for measuring the vacuum degree in hollow glass microspheres. Manometer, balance valve, reference chamber and other parts; because the vacuum glass beads are piled up in powder form, the powder pile not only contains the gas in the hollow glass beads, but also includes the accumulation gap between the glass beads, so this device needs to pass Two steps realize the measurement of the vacuum degree in the vacuum glass microspheres: 1. The accumulation powder porosity test; 2. The internal pressure test of the hollow glass microspheres; Indoor pressure changes avoid the difficulty of measuring a single micro-nano-sized vacuum container and the difficulty of low measurement accuracy.

Description

technical field [0001] The invention belongs to the field of devices for measuring vacuum degree, in particular to the field of measuring vacuum degree in hollow glass microspheres. Background technique [0002] Hollow glass microspheres are small hollow glass spheres with a size of about 15-150 microns and a wall thickness of 0.5-2 microns. They have light weight, low thermal conductivity, sound insulation, high dispersion, electrical insulation and good thermal stability. Advantages, when the interior of the hollow glass bead is vacuum, it has good thermal insulation performance, and is an excellent thermal insulation material; the hollow glass bead is a rigid hollow microsphere with good sphericity, and the particles are in point contact. The structure makes the heat conduction path longer, which can effectively reduce the contact heat conduction; the hollow glass microsphere is a closed-pore microsphere, which seals the gas inside the sphere, and prevents the gas flow an...

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G01L21/00
CPCG01L21/00
Inventor 张俊
Owner HEFEI UNIV OF TECH
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