高效連續(xù)真空低溫式魚(yú)粉干燥設(shè)備的研究
[Abstract]:The fish meal is rich in nutrition and is an integral part of the water-producing feed. The high-quality fish meal product is obtained by adopting a vacuum low-temperature drying to lower the boiling point of the water and effectively avoiding the oxidation degree of the high-temperature to the protein. In this paper, the high-efficiency continuous low-temperature vacuum drying equipment is studied, the drying process of vacuum drying equipment is determined, the key technology of the vacuum equipment is designed, and the vacuum environment required in the vacuum drying process is guaranteed. According to the production condition of fish meal and the working condition of the environment, the structure research and design of the vacuum drying machine of the vacuum drying equipment are given. In addition, the main shaft of the vacuum dryer was subjected to thermal stress analysis. The key problem of vacuum drying is to solve the sealing problem. This paper studies the two aspects of the auxiliary equipment and the local structure of the dryer from the vacuum inlet and outlet. On the one hand, by studying the feeding and discharging process, the sealing device such as a vacuum inlet and outlet machine, a sealing auger, an off fan and the like is researched, the outside air is isolated when the fish meal is in and out of the material, and the vacuum state is ensured; on the other hand, the sealing structure design between the main shaft and the dryer cylinder body is carried out, So as to ensure that the inside of the dryer barrel reaches and maintains the vacuum state of the production requirement during operation. according to the design basic parameters, the total heat transfer area required by the vacuum dryer to finish the production task is calculated through the material balance calculation and the heat balance calculation, the overall dimension of the equipment is preliminarily determined, and the specific structural dimension design of each component is finished according to the structural relationship among the parts, It mainly includes the design of the barrel combination, the main shaft coupling, the transmission system and the vacuum system. And the heating area is calibrated after the design of the whole structure is finished, so that the design requirement is met. In addition, according to the thermal stress calculation theory of the temperature field, the main shaft is subjected to thermal stress analysis through the patran software. Because the length of the main shaft is long, and the coil distribution is dense and regular, the main shaft part of the steam inlet end is selected to be analyzed and calculated to obtain the temperature distribution cloud image, the thermal stress cloud image and the thermal deformation cloud image of the main shaft heating coil.
【學(xué)位授予單位】:浙江海洋學(xué)院
【學(xué)位級(jí)別】:碩士
【學(xué)位授予年份】:2015
【分類(lèi)號(hào)】:S817.12
【參考文獻(xiàn)】
相關(guān)期刊論文 前10條
1 吳維qG;何綺霞;;魚(yú)粉的質(zhì)量現(xiàn)況和分析[J];廣東飼料;2010年06期
2 徐成海;張世偉;趙雨霞;王喜鵬;;真空干燥設(shè)備的國(guó)內(nèi)外發(fā)展動(dòng)態(tài)[J];干燥技術(shù)與設(shè)備;2006年04期
3 徐成海;張志軍;張世偉;何翔;;塔型連續(xù)式真空干燥設(shè)備結(jié)構(gòu)的探討[J];干燥技術(shù)與設(shè)備;2007年05期
4 徐成海;張志軍;張世偉;彭潤(rùn)玲;張斌;;真空干燥現(xiàn)狀與發(fā)展趨勢(shì)分析[J];干燥技術(shù)與設(shè)備;2009年05期
5 閆一野;;普通真空干燥設(shè)備綜述[J];干燥技術(shù)與設(shè)備;2011年02期
6 陳翠蓮;黃承德;申斌;;魚(yú)品種及加工方式對(duì)魚(yú)粉質(zhì)量的影響[J];廣東飼料;2010年09期
7 陳海波;丘錦榮;;空心槳葉干燥機(jī)在印染污泥干化工藝中的應(yīng)用實(shí)例[J];廣東化工;2013年04期
8 劉娟花;;魚(yú)粉加工工藝研究進(jìn)展[J];廣東飼料;2013年05期
9 李曉川,王聯(lián)珠;國(guó)家標(biāo)準(zhǔn)《魚(yú)粉》(GB/T19614—2003)實(shí)施指南[J];飼料工業(yè);2004年08期
10 林茂發(fā);;甲魚(yú)配合飼料主要原料品質(zhì)管理技術(shù)探討[J];廣東飼料;2012年03期
相關(guān)會(huì)議論文 前2條
1 趙祥濤;唐學(xué)軍;張明學(xué);;大型真空干燥設(shè)備的研究開(kāi)發(fā)及應(yīng)用[A];真空工程學(xué)術(shù)交流會(huì)論文集[C];2009年
2 王偉;謝永和;;大氣溫度對(duì)瀝青船溫度應(yīng)力場(chǎng)分布的影響研究[A];第七屆長(zhǎng)三角地區(qū)船舶工業(yè)發(fā)展論壇論文集[C];2011年
相關(guān)博士學(xué)位論文 前1條
1 米海峰;不同蛋白源和大豆抗?fàn)I養(yǎng)因子對(duì)牙鲆蛋白消化酶的活性與基因表達(dá)的影響[D];中國(guó)海洋大學(xué);2008年
相關(guān)碩士學(xué)位論文 前10條
1 韓璐;干盤(pán)管加獨(dú)立新風(fēng)空調(diào)系統(tǒng)的研究[D];哈爾濱工業(yè)大學(xué);2011年
2 楊鹿;生物質(zhì)低溫干燥特性實(shí)驗(yàn)研究[D];南京理工大學(xué);2012年
3 趙進(jìn)鋒;高墩大跨徑彎連續(xù)剛構(gòu)橋施工仿真分析及控制[D];河海大學(xué);2005年
4 宋鵬;微生物發(fā)酵生產(chǎn)肉豬菌體蛋白飼料的研究與應(yīng)用[D];西北大學(xué);2005年
5 陳茗;污泥真空干燥特性研究[D];沈陽(yáng)航空工業(yè)學(xué)院;2006年
6 房玉慧;不銹鋼艙化學(xué)品船溫度場(chǎng)及溫度應(yīng)力分析[D];大連理工大學(xué);2007年
7 張磊;魚(yú)粉特性的研究[D];江南大學(xué);2008年
8 宋蕓;微波真空與真空冷凍干燥組合生產(chǎn)脫水果蔬[D];江南大學(xué);2008年
9 杜華明;不同艙壁形式瀝青船溫度場(chǎng)和應(yīng)力有限元分析[D];武漢理工大學(xué);2008年
10 史元芝;間接換熱式列管回轉(zhuǎn)干燥機(jī)干燥特性的實(shí)驗(yàn)研究及設(shè)備開(kāi)發(fā)[D];天津大學(xué);2008年
,本文編號(hào):2508849
本文鏈接:http://www.wukwdryxk.cn/yixuelunwen/dongwuyixue/2508849.html