Our country’s people have always regarded orchids as a symbol of elegance and elegance. There are also orchids that express pure love. Therefore, orchids are deeply loved by the Chinese people and have a high economic value. In the process of orchid cultivation, orchids are not well grown due to the orchid virus. In the past, it was only through observation of symptoms and then prevention and control. The effect was not obvious, but crop viruses are now used. The detector detects the orchid virus and truly prevents it. The orchid virus disease is contained at a relatively small level and ensures the development of the orchid cultivation industry.
Although the diagnosis of orchid virus in the past has been used to observe symptoms, it is generally believed that symptoms are of little significance for diagnosis and can only be used as reference data. This is because there are many varieties of orchids, the symptoms are unstable, and there are hidden symptoms. The cultivation environment also has some influence on the symptoms. Therefore, the best method is to diagnose from the perspective of plant physiology, and the application of the crop virus detector in orchid virus detection is actually a stable and reliable solution for diagnosing orchid virus disease, and is more conducive to discovery. The potential virus harm of orchids is of great significance in preventing the large area of ​​orchid virus damage.
Frequent occurrence of orchid virus damage will seriously reduce the economic value of orchids. At present, the viruses that can be used to infect orchids include tomato spotted virus, genus X virus, tobacco mosaic virus, and cucumber mosaic virus, for a total of 20 Variety. Among them, the most widespread and the most serious ones are the Jianlanye virus and the Tochilesan ring spot virus. In recent years, with the ever-increasing scale of orchid production and increasing trade, it is urgent to establish a rapid and simple virus detection technology to ensure the safety of orchid planting. The crop virus detector can provide an efficient detection method for orchid virus disease quarantine and control. To meet the needs of orchid industry development.
Thermoforming is a manufacturing process used to shape plastic sheets into various custom design products. It involves heating a plastic sheet until it becomes pliable, then using a mold or a vacuum to form it into the desired custom shape.
Thermoforming and vacuum forming are both processes used to shape plastic sheets into specific forms. However, there are some differences between the two techniques:
1. Process: In thermoforming, a plastic sheet is heated until it becomes pliable, and then it is pressed against a mold using pressure or a vacuum. Vacuum forming, on the other hand, relies solely on the use of a vacuum to draw the heated plastic sheet onto the mold.
2. Mold complexity: Thermoforming is typically used for more complex shapes and intricate molds, as it allows for greater detail and precision. Vacuum forming, on the other hand, is better suited for simpler shapes and molds that do not require as much detail.
3. Material thickness: Thermoforming is often used for thicker plastic sheets, typically ranging from 0.030 to 0.250 inches in thickness. Vacuum forming is more commonly used for thinner plastic sheets, typically ranging from 0.005 to 0.060 inches in thickness.
4. Production volume: Thermoforming is generally more suitable for high-volume production due to its faster cycle times and ability to handle larger sheets of plastic. Vacuum forming is better suited for low to medium volume production, as it has slower cycle times and is limited by the size of the vacuum forming machine.
5. Cost: Thermoforming typically requires more expensive equipment and molds, making it a more costly process compared to vacuum forming. Vacuum forming, on the other hand, is a more cost-effective option for smaller production runs or prototypes.
Overall, thermoforming is a more advanced and versatile process that offers greater precision and complexity, while vacuum forming is a simpler and more cost-effective option for less complex shapes and smaller production volumes.
Thermoforming is a versatile process that is widely used in industries such as packaging, automotive, aerospace, and medical. It offers advantages such as cost-effectiveness, quick turnaround times, and the ability to produce complex shapes with high precision.
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