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畢業(yè)論文-真空吸鑄tial基合金亞快速凝固行為的研究(文件)

 

【正文】 s 1999, TMS, 1999, p. 35. [13] D. Rugg, in: . Kim, . Dimiduk, . Loretto (Eds.), GammaTitanium Aluminides 1999, TMS, 1999, p. 11. 14] . Varma, C. Hernandez, E. Corral, A. Chan, R. Mahapatra, in: . Kim, . Dimiduk, . Loretto (Eds.), Gamma TitaniumAluminides 1999, TMS, 1999, p. 823. 第 37 頁(yè) 共 34 頁(yè) [15] 傅恒志,丁宏升,陳瑞潤(rùn) .鈦鋁合金電磁冷坩堝定向凝固技術(shù)的研究 . 稀有金屬材料與工程 . 2021,37(4):565~ 570 [16] 江和甫 . 燃?xì)鉁u輪發(fā)動(dòng)機(jī)發(fā)展與制造技術(shù) . 航空制造技術(shù) . 2021,5:36~ 39 [17] 王建國(guó),周中波,王一川,商國(guó)強(qiáng),李金山 .TiAl 合金鑄造工藝數(shù)值模擬及分析 .特種鑄造 . 2021,30(8):1054~ 1057 [18] H. Razavi, P. Davami, Solidi?cation simulation of gravity casting of Al–12% Si in permanent mould with puter simulation of heat transfer in air gap, in: Proceedings of the 59th World Foundry Congress, CIATF, 1992. [19] . Nichols, . Hirt, Lost foam casting simulation, Flow Science Inc. Available at [20] P. Davami, . Mirbagheri, Solidi?cation simulation of parts casting. Available at [21] . Lipinski, Mould ?lling simulation for casting processes, . Thesis, Rheinischwestfalischen Technischen Hochschule Aachen, Germany, 1996 (in English). [22] C. Wang, Computer modelling of ?uid ?ow and heat transfer in metal casting, . Thesis, Pittsburgh University, USA, 1990. 第 38 頁(yè) 共 34 頁(yè) a 您好,為你提供優(yōu)秀的畢業(yè)論文參考資料,請(qǐng)您刪除以下內(nèi)容, O(∩_∩)O 謝謝!?。 national survey was recently launched to evaluate the eye health of Chinese children June 6, China39。s work can be a way to unwind. It is true for He Wenjun, whose workplace is right near the forest park. She discovered her athletic aptitude at the age of seven, when she began playing tennis. Then she turned to jogging, and she has persevered with it for 10 years. I e to jog almost every day after work, whenever I have time. I think jogging is good for my health. And for me, a girl, it helps me to achieve to eternal goal, to keep slim, He said. He says she prefers jogging alone, so she can focus better. She loves jogging, even during Beijing39。s health. Poor technique harms the muscles and skeleton, and can cause secondary injures. And, jogging in a bad environment can cause circulation problems, said Lu Zhiyong, attending doctor, Sports Hospital, General Admin. of . Lu has some tips for joggers, and those who are thinking of 。ll hold off jogging for a while. But if I really want to get away from work, I39。s digitized society, will also be attached on the report.Myopia is not only a disease that makes people see things blurrily, but also leads to severeplications, such as glaua (increased pressure within the eyeball), and can causeblindness, said Zhou Yuehua, an established eye care specialist with Beijing TongrenHospital.It is very important for parents and children to know about the risk and care for their eyes.There are about 450 million myopia patients in China. Among Chinese myopia patients,30million are severe patients, according to ZhouThe prevalence of myopia among high school and college students is more than 70 percent,and the situation is continuously worsening, he Zhu, director with the China Youth Development Service Center, said long hours ofstudy, lack of exercise, especially outdoor activities, and attachment to electronic screen aresome of the top reasons behind the widespread myopia problems, and the increase ofyounger patients, although China has made great progress in improving the hardwarefacilities and lighting conditions in said he hopes the survey will alert people on the threatening situation, and also helpmedical experts to better guideline parents and children39。畢業(yè)論文的完成,同樣也意味著新、生活的開(kāi)始。 其次,還要感謝這四年來(lái)教我知識(shí)的每位老師們,畢 業(yè)論文能夠順利完成,你們也都有很大的功勞。每次遇到難題,我最先做的就是向葉喜蔥老師尋求幫助,而葉老 師每次不管忙或閑,總會(huì)抽空來(lái)找我面談,或說(shuō)定時(shí)間讓我去找他,然后教我如何解決。 第 35 頁(yè) 共 34 頁(yè) 致謝 畢業(yè)設(shè)計(jì)已經(jīng)接近了尾聲,這也意味著我的大學(xué)生活就要結(jié)束了,大學(xué)生活一晃而過(guò),回首走過(guò)的歲月,心中倍感充實(shí),當(dāng)我寫(xiě)完這篇畢業(yè)論文的時(shí)候,有一種如釋重負(fù)的感覺(jué),感慨良多。 第 34 頁(yè) 共 34 頁(yè) 圖 總結(jié),從圖 32圖 32圖 326 和圖 327 這四幅圖很容易看出,晶粒尺寸隨著組織距離薄板底部的距 離增大而普遍增大,片層間距也隨著組織距離薄板底部的距離增大而普遍增大。當(dāng)在距離薄板底部 15mm 到 27mm 這段距離時(shí),片層間距增長(zhǎng)率最大,并且成直線式上升。 (2) 變質(zhì)處理也稱(chēng)調(diào)質(zhì)處理:即在金屬液結(jié)晶前,向金屬液中加入某些物質(zhì)(稱(chēng)為變質(zhì)劑),這些物質(zhì)將分散在金屬液中,形成大量的非自發(fā)形核界面,或起阻礙晶體長(zhǎng)大的作用,從而使得晶粒組織比較小,這種細(xì)化晶粒的方法,稱(chēng)為變質(zhì)處理。組織越細(xì)小,晶粒則越小,單位體積的晶粒數(shù)越多,當(dāng)材料收到一定作用力時(shí)分配到各晶粒的力就越小,組織性能就越好。組織越粗大,相應(yīng)的晶粒越大。 模擬后的薄板組織 由圖 31 31 321 凝固 分?jǐn)?shù)圖可以看出,同一時(shí)刻的凝固分?jǐn)?shù),薄板下部凝固分?jǐn)?shù)比較高,上部凝固分?jǐn)?shù)比較低,從側(cè)面可以反映出,金屬液在凝固過(guò)程中,薄板下部首先凝固,隨后上部才凝固,也可以反映出,下部凝固速度快,上部凝固速度慢。理論上澆鑄溫度越高,合金液流動(dòng)性越強(qiáng),雖然有利于充型,但澆鑄溫度太高,會(huì)造成粘砂,縮松、縮孔,熱烈,局部氧化,反應(yīng)氣孔偏多等危害。 圖 ,澆鑄速度 a) 、 b) 、 d) 圖 ,澆鑄速度 a) 、 b) 、 d) a) c) b) a) c) b) 第 30 頁(yè) 共 34 頁(yè) 圖 、縮孔圖,澆鑄速度 a) 、 b) 、 d) 對(duì)澆鑄速度對(duì)充型的影響進(jìn)行分析,從圖 321 凝固分?jǐn)?shù)圖可看出隨著澆鑄速度越來(lái)越小,凝固分?jǐn)?shù)小的區(qū)域越來(lái)越小,并且還越趨近與澆口部位,這種趨勢(shì)使得凝固分?jǐn)?shù)較小區(qū)域在后期凝固時(shí)等及時(shí)得到澆口部位合金液的補(bǔ)縮,縮松、縮孔缺陷得到減小。鑄型溫度為 0℃時(shí),縮松、縮孔比較分散,雖然面積不大,但對(duì)薄板件的整體性能會(huì)有很大影響。當(dāng)鑄型溫度為 400℃時(shí),從凝固分?jǐn)?shù)圖中可以很明顯的看到澆口部位基本快要凝固,而薄板中還有很大面積凝固分?jǐn)?shù)比較小,后期凝固時(shí)得 不到合金液的補(bǔ)縮,就會(huì)造成薄板件中應(yīng)力比較大。理想中的冷卻趨勢(shì)是從底部逐漸凝固,澆口部位最后凝固,如果這樣的話,合金液在凝固過(guò)程中就能得到補(bǔ)縮,縮松、縮孔將減少。 b) a) c) d) 第 26 頁(yè) 共 34 頁(yè) 鑄型溫度對(duì)充型的影響 本次選取的工藝 參數(shù)為澆鑄溫度為 1550℃,澆鑄速度為 ,換熱系數(shù)為 1000 w/m2k,鑄型溫度分別為 600℃、 400℃、 200℃和 0℃進(jìn)行對(duì)比分析,從中選取一個(gè)比較好的鑄型溫度。當(dāng)澆鑄溫度為 1550℃和 1575℃時(shí),薄板只有中部凝固分?jǐn)?shù)比較小,其余基本完全凝固,并且面積也不是很大,而澆鑄溫度為 1600℃和 1625℃很明顯薄板中部凝固分?jǐn)?shù)比較小的面積明顯較前兩種大 ,尤其是澆鑄溫度為 1625℃時(shí),中部還有一大片凝固分?jǐn)?shù)非常小的區(qū)域,很明顯在后期凝固過(guò)程中,交口處合金液得不到補(bǔ)縮,四周凝固收縮,就會(huì)造成應(yīng)力就非常大,由圖也可以明顯的反映出來(lái),在下方有黃色區(qū)域,由對(duì)比卡可知,此處應(yīng)力更大。當(dāng)澆鑄溫度較高時(shí),很明顯,澆口部位計(jì)較寬,薄板在后期凝固時(shí)能夠得到澆口部位合金液的補(bǔ)縮。為了探究澆鑄溫度對(duì)鑄造成型的全過(guò)程的影響,選取的澆鑄速度為 ,換熱系數(shù)為1000w/m2k,鑄型溫度初步選取 600℃。 第 20 頁(yè) 共 34 頁(yè) 圖 %Al8%Nb 合金的密度與溫度之間的關(guān)系 圖 %Al 合金的密度與溫度之間的關(guān)系 第 21 頁(yè) 共 34 頁(yè) 由圖 310 為 %Al8%Nb 合金的導(dǎo)熱系數(shù)與溫度之間的關(guān)系與圖 311 為%Al 合金的導(dǎo)熱系數(shù)與溫度之間的關(guān)系可以看出,在溫度大于 1400℃時(shí) %Al合金的導(dǎo)熱系數(shù)明顯要比 %Al8%Nb 合金的導(dǎo)熱系數(shù)大,導(dǎo)熱系數(shù)越大,則保溫效果越差。如果在相同溫度情況下進(jìn)行澆鑄時(shí) %Al8%Nb 合金的過(guò)冷度大,金屬液流動(dòng)性好,有利于充型。與大多數(shù)合金均勻穩(wěn)定的微觀結(jié)構(gòu)一樣,可以用來(lái)為發(fā)動(dòng)機(jī)部件服務(wù)。材料的熱物性參數(shù)直接決定著溫度場(chǎng)模擬的準(zhǔn)確性,只有材料飛熱物性參數(shù)非常精確,模擬出來(lái)的溫度場(chǎng)才與實(shí)際才更加相近。另外網(wǎng)格步長(zhǎng)也是比較關(guān)鍵的,它決定模擬的精度。 (4) 模擬完成后進(jìn)入可視化結(jié)果分析。本課題模擬具體步驟如下: (1) 首先用 pro/e 建立三維模型,鑄型如圖 3鑄件如圖 33。利用凝固分?jǐn)?shù)及凝固時(shí)間來(lái)考察 TiAl 基合金在真空吸鑄過(guò)程中的凝固特性。首先控制澆鑄 速度、換熱系數(shù)和鑄型溫度不變,單量變換澆鑄溫
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