China's agricultural resources are declining, and the demand for livestock products is increasing. The solution to this contradiction is to implement factory farming, that is, using industrial science and equipment, using modern science and technology and equipment for the growth of livestock and poultry. Development provides a variety of suitable conditions, so that the production potential of livestock and poultry can be fully realized, so as to achieve the purpose of efficient production of animal products.
China's factory aquaculture industry has been greatly developed in recent years. Taking pigs as an example, there are nearly 3,000 modern-scale pig farms nationwide, and the scale of farmers' breeding households is also expanding. Although the conditions are not comparable to those of large-scale pig farms, It should also be regarded as the prototype of factory farming. In order to reduce costs, the general pig farms have their own feed processing rooms to produce their own compound feed. From the perspective of reducing investment, most pig farms and breeding professional households use vertical feed processing units, namely 9PS series. This type of unit is integrated with a pulverizer and a mixer, and has low power consumption. The processing technology used is generally purchased premixed. After the other raw materials are crushed by the pulverizer, the air is sent to the stirring package. The premixed material is spirally conveyed to the mixing bag through the auxiliary box, and stirred together with other raw materials to form a compound feed. There are two potential deficiencies in this form of feed processing unit:
1. The mixing uniformity is not enough. Premixed feeds require high uniformity because most of the active ingredients are trace elements - trace elements and vitamins, and some ingredients account for only one in 100,000 parts of the feed. Therefore, the uniformity coefficient of variation of the premixed feed is required to be CV ≤ 7% to avoid excessive or too little intake of trace components in the livestock. The mixing uniformity coefficient of variation of the vertical mixer is CV≤10%. When the mixed premixed feed is processed by the vertical mixer, the uniformity is reduced, and the distribution of the trace components of the processed compound feed is uneven. Not the need for livestock growth.
2. The residual amount is too large, resulting in unevenness between each batch of feed. The working principle of the vertical mixer is that the vertical spiral is rotated at a high speed to raise the material from the bottom to the top, and then gradually mixes by diffusion after the bulk board. The premixed feed is spirally conveyed to the bottom of the package through the auxiliary box to participate in the mixing. On the one hand, the high-speed rotation of the spiral makes the components with larger specific gravity such as minerals, etc., because of the large centrifugal force, throwing away from the axis and cannot participate in the mixing; On the other hand, the side gap of the spiral is large, generally 4-5 mm, and the side gap of the vertical spiral reaches 10 mm, so each batch of feed is not completely removed, and there is a large residue. Due to inaccurate operating procedures (such as premix feed rate, overall mixing time, etc.), the residual amount of each batch of feed is different, thus directly affecting the content of each component in the next batch of materials, resulting in each batch of material Unevenness. If pigs are found to lack trace elements or vitamins in the farm, such as arch ring and tail biting, in addition to checking the reasonableness of the feed formula and the quality of various raw materials, whether the choice of feed mixer is reasonable is a problem that should be paid special attention. .
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Ultra-precision cutting Ultra-precision cutting refers to the cutting method whose surface roughness is less than Ra0.04μm. The key problem in ultra-precision machining is that the thin surface layer of 0.1μm is cut in the final step. This requires both an extremely sharp tool with a radius of the blunt circle of the tool at the nanoscale and a tool with enough durability to keep it sharp. At present, only diamond tools can meet the requirements. In ultra-precision cutting, the cutting speed should be very high and the cutting amount should be small to ensure that the residual area on the workpiece surface is small, so as to obtain minimal surface roughness
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