The plant has three major organs, namely, roots, stems, and leaves, where the roots are distinctly different from the stems and leaves. Because the roots are deeply buried and the morphological structure is complex, the study of the root system is more important than that of stems and leaves. It will be more difficult, and root-related research has been relatively rare. However, with the actual needs of agricultural development, root-related research work has become more and more frequent. To this end Topstone Yunnong has introduced a GXY-A root image analyzer, which is dedicated to the study of plant root systems. With this instrument, the analysis of plant roots becomes simple, accurate and efficient. The root is the supporting part of the crop growth system, and is closely related to the important processes of crop growth, yield formation, water use efficiency, and soil respiration. Therefore, if we can deeply study the root system of plants and associate it with their growth, it is possible. Based on this as a basis to scientifically improve the agricultural production process, promote the growth and development of crops, and then obtain higher agricultural output and better production quality, achieve the goal of increasing production and quality, and the arrival of the GXY-A root image analyzer is just right. Just right, it coincides with the development goals of agricultural modernization. The GXY-A Root Image Analyzer uses a fast and efficient method of acquiring root images, using computer vision for root morphology analysis. Using the GXY-A root image analyzer, one can quickly obtain the root length, root average diameter, total root area, total root volume, root tip count, branch number, crossover number, and root diameter grade of the root system. Data, using this instrument to measure, can not only save a lot of time, speed up the progress of plant root research, but also enrich the technology and methods of modern plant information detection, and accelerate the development of agriculture and forestry in our country and further expand the field of botanical research. An important role.
Sliding Bearing has characteristics as following:
1.finite-fatigue life subject to wide fluctuations.
2.larger space required in the radial direction.
3.low damping capacity.4.higher noise level.
5.more severe alignment requirements.
6.higher cost.
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