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A far-infrared spectrum element content tester

A technology of element content and far-infrared light, used in instruments, measuring devices, scientific instruments, etc., can solve the problems of incomplete infrared spectrum data, errors, incomplete penetration detection of testers, etc., and achieve the effect of improving penetration detection. , to avoid the effect of excessive force

Active Publication Date: 2022-07-19
圆角科技发展(佛山)有限公司
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  • Summary
  • Abstract
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  • Application Information

AI Technical Summary

Problems solved by technology

[0002] The far-infrared spectrum element content tester is an instrument that uses the absorption characteristics of substances to infrared radiation of different wavelengths to analyze molecular structure and chemical composition. Infrared spectrometers are usually composed of light sources, monochromators, detectors and computer processing information systems. Through The overall diamond crystal and high-efficiency, total reflection optics, combined with a variety of interchangeable crystal plates, achieve durability and flexibility. However, in the process of testing jewelry with far-infrared spectrum element content testers, most of the jewelry has a spherical structure , spherical jewels are prone to displacement inside the tester, and at the same time, the thickness of the tester is limited and relatively flat, so it can only perform penetration testing on one end of the jewellery, resulting in incomplete penetration testing by the tester inside the spherical jewellery, resulting in a sphere The infrared spectrum data detected by jewelry is not comprehensive, and there are certain errors

Method used

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  • A far-infrared spectrum element content tester
  • A far-infrared spectrum element content tester
  • A far-infrared spectrum element content tester

Examples

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Embodiment 1

[0022] as attached figure 1 to the attached Figure 5 shown:

[0023] The present invention is a far-infrared spectral element content tester. Its structure includes a detection host 1, a support table 2, a display panel 3, and a viewing window 4. The lower end of the detection host 1 is fixedly installed on the upper end of the support table 2, and the front of the detection host 1 A display panel 3 is embedded and installed at the right end of the surface, and a window 4 is fixedly installed at the left end of the front surface of the detection host 1. The detection host 1 includes a main box 11, a detection head 12, a clamp 13, and a top device 14. The host The bottom of the box 11 is fixedly installed on the top of the support table 2, the detection head 12 is fixedly installed inside the main box 11, and the detection head 12 is electrically connected with the display panel 3, and the clamp 13 is fixedly installed at the left end of the main box 11, The bottom of the to...

Embodiment 2

[0030] as attached Image 6 to the attached Figure 7 shown:

[0031]The upper top device 14 includes a support shell 141, a cylinder 142, a top block 143, a connecting sleeve 144, a spring 145, and a sliding device 146. The bottom of the support shell 141 is welded to the inner bottom of the main box 11. The support shell A cylinder 142 is fixedly installed inside 141, the output end of the cylinder 142 is fixed with the bottom of the top block 143, the lower end of the connecting sleeve 144 is installed inside the upper end of the top block 143 by clearance fit, and a spring is provided inside the connecting sleeve 144 145, the lower end of the spring 145 is fixed with the top surface of the top block 143, the upper end of the connecting sleeve 144 is fixed with the bottom of the sliding device 146, the cylinder 142, the top block 143, the connecting sleeve 144 and the sliding device 146 are among the four They are installed at a vertical angle to ensure that the air cylin...

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Abstract

The invention discloses a far-infrared spectral element content tester. Its structure includes a detection host, a support table, a display panel, and a viewing window. The lower end of the detection host is fixedly installed on the upper end of the support table, and the spherical jewelry is attached to the inner surface of the left and right sides of the lamination plate. Fitting and clamping is performed. At this time, the sliding block slides on the guide rod, which drives the interlocking rod to perform interlocking offset. By rotating the ball, the auxiliary rotation effect is achieved to ensure that the rotating piece rotates smoothly inside the laminating plate, ensuring that the ball is rotated smoothly. The jewelry can rotate smoothly on the inside of the two fitting plates, which ensures that the detection head can penetrate the jewelry inside the spherical jewelry more comprehensively. The wheel rotates smoothly on the upper end of the bottom plate on the rolling wheel, so that the bottom of the sphere jewelry rotates smoothly, and the effect of the detection head for the penetration detection of the sphere jewelry is improved.

Description

technical field [0001] The invention relates to the field of rate testers, more particularly, to a far-infrared spectrum element content tester. Background technique [0002] The far-infrared spectrum element content tester is an instrument for analyzing the molecular structure and chemical composition by using the absorption characteristics of substances to infrared radiation of different wavelengths. The infrared spectrometer is usually composed of a light source, a monochromator, a detector and a computer processing information system. Integral diamond crystals and high-efficiency, total reflection optics, combined with a variety of interchangeable crystal plates, achieve durability and flexibility, but in the process of detecting jewelry by far-infrared spectrum element content tester, jewelry is mostly spherical structure , spherical jewelry is prone to displacement inside the tester, and the thickness of the tester is limited and relatively flat, and only one end of th...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G01N21/3563G01N21/3581
CPCG01N21/3563G01N21/3581
Inventor 明宗峰
Owner 圆角科技发展(佛山)有限公司
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