The woven bag cutting machine is used for the division and cutting of the woven bag manufacturing industry. It does not need any mold; it is controlled by the system software, and then the product is directly cut, as long as the corresponding parameters are set on the operating platform, the computer The corresponding command is transmitted to the cutting machine; the cutting machine performs rapid cutting according to the accepted design artwork, and the automatic program is high and the operation is simple. The woven bag cutting machine is mainly designed to facilitate cutting various types of plates; it is very practical and is an important production type equipment; it is welcomed by many enterprises, and the domestic cutting machine should be more precise. The direction of higher speed is developing. Today, China Plastics Network - Jiuzhi Plastics Co., Ltd. introduces the working characteristics of the woven bag cutting machine:
What are the working characteristics of the woven bag cutting machine?
1. The cutting seam is fine: the slit of the laser cutting is generally 0.10mm-0.20mm;
2. The cutting surface is smooth: the laser-cut cutting surface has no burr method;
3. Small thermal deformation: laser processing laser slits are fine, fast, and energy concentrated, so the heat transferred to the material to be cut is small, causing the deformation of the material to be very small;
4. Suitable for the processing of large-sized products: the mold manufacturing cost of large-sized products is very high, laser processing does not require any mold manufacturing, and laser processing completely avoids the collapse formed when the material is punched and sheared, which can greatly reduce the production cost of the enterprise. Improve the grade of the product;
5. It is very suitable for the development of new products, shortening the development cycle: once the product drawings are formed, laser processing can be performed immediately, and you can get the new products in the shortest time;
6. Material saving: The laser processing adopts computer programming, which can set the materials of different shapes to maximize the utilization of materials.
Copper(II) Acetate, also referred to as Cupric Acetate, is the chemical compound with the formula Cu(OAc)2 where AcO− is acetate (CH3CO−2). The hydrated derivative, which contains one molecule of water for each Cu atom, is available commercially. Anhydrous Cu(OAc)2 is a dark green crystalline solid, whereas Cu2(OAc)4(H2O)2 is more bluish-green. Since ancient times, copper acetates of some form have been used as fungicides and green pigments. Today, copper acetates are used as reagents for the synthesis of various inorganic and organic compounds.
Copper(II) acetate has found some use as an oxidizing agent in organic syntheses. In the Eglinton reaction Cu2(OAc)4 is used to couple terminal alkynes to give a 1,3-diyne.
Copper Acetate
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