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1)  sintering stress
烧结应力
1.
45% (in mass) SiO 2 was added in the paste, the sintering stress was decreased to such a degree that it could not influence the substrate shrinkage.
45 %时 ,烧结应力减弱到充分小 ,使得AlN共烧基板达到足够的致密度和平整度 。
2)  reaction sintering
反应烧结
1.
Microstructure and properties of Mo_2FeB_2 cermets clad layer by reaction sintering;
反应烧结三元硼化物金属陶瓷覆层的组织与性能
2.
Densification of laser ignited reaction sintering of Ni-Al-Cu powder alloy;
Ni-Al-Cu粉末合金激光点火反应烧结的致密化研究
3.
The samples prepared by general sintering and reaction sintering are investigated by XRD,SEM and other testing means for their structure and performance.
采用常规烧结法和反应烧结法烧结制品,并利用XRD和SEM等测试手段对制品的结构与性能进行了分析研究。
3)  reactive sintering
反应烧结
1.
Preparation of cemented carbide having highly oriented WC grains by reactive sintering of W-Co-Nano carbon tubes;
W-Co-纳米碳管反应烧结制备高度取向硬质合金
2.
Densification behavior during reactive sintering of compacted Ti/Al composite powders prepared by high energy ball milling;
高能球磨Ti/Al复合粉体的反应烧结致密行为
3.
Temperature model of reactive sintering of Ni Al thermal spray layer;
Ni-Al喷涂层中温反应烧结的温度变化模型
4)  reaction-bonded
反应烧结
1.
Low density silicon nitride with about 55% porosity and globed macropores was prepared by reaction-bonded raw silicon powder and adding 30% in mass pore-forming agent of benzoic acid ball-like particles.
以硅粉为原料,添加质量分数为30%的成孔剂(苯甲酸)球形颗粒,反应烧结制备了气孔率为55%,具有球形宏观孔的低密度多孔氮化硅陶瓷。
2.
A near-net-shape SiC was prepared by reaction-bonded from a pure carbon perform which was fabricated by mould from graphite power as raw and phenolic resin as binder.
以石墨粉体为原料,酚醛树脂为粘接剂,采用模压成型工艺制备了全碳质素坯,反应烧结后得到S iC材料。
3.
The effects of carbon content, moulding pressure, and carbon particle size of green body on microstructure and properties of reaction-bonded silicon carbide (RBSC) have been investigated.
研究了反应烧结碳化硅陶瓷的显微组织和性能与生坯碳含量、成型压力以及碳粉粒度的关系。
5)  reaction bonded
反应烧结
1.
SiC platelets/C preform was infiltrated with liquid silicon to prepare reaction bonded silicon carbide(RBSC) materials.
以液Si浸渗SiC片晶和C的坯体制备了SiC片晶增韧反应烧结SiC陶瓷材料,讨论了SiC片晶的掺加分数及烧结温度对材料显微结构和力学性能的影响,并比较了所得材料与传统反应烧结材料的力学性能。
2.
The high temperature oxidation kinetics of a reaction bonded silicon carbide oxided in air at 1 300℃ were investigated.
研究了反应烧结碳化硅陶瓷在1300℃空气中的高温氧化行为,结果表明:高温氧化过程中在试样表面出现的非晶态SiO2晶化以及氧化膜起裂,使得该陶瓷氧化曲线遵循对数氧化规律。
3.
The relation between microstructure and resistivity of reaction bonded silicon carbide (RBSiC) is examined.
研究了反应烧结碳化硅及随后经1650℃和1800℃除硅处理后,材料的显微组织与电阻率之间的关系。
6)  reaction-sintering
反应烧结
1.
Si3N4-BN composite was prepared by using Si and BN as raw materials under nitrogen gas flow at 1 450℃by the reaction-sintering method.
以Si粉和BN粉为原料,Fe2O3为烧结助剂,采用反应烧结法于1450℃氮气气氛下制备了Si3N4-BN复合材料。
2.
The reaction-sintering process and microstructure of mullite-zirconia composites sintered and reacted in-situ were investigated.
研究了用锆英石和工业氧化铝合成锆莫来石材料的反应烧结过程和显微结构。
3.
Si3N4-BN composites were prepared by reaction-sintering method with Si and BN as raw materials under nitrogen atmosphere at 1450℃.
以Si粉和BN粉为原料,采用反应烧结法于1450℃氮气气氛下制备了Si3N4-BN复合材料。
补充资料:带式烧结机烧结


带式烧结机烧结
sintering by sinter strand

一种应用最广的铁矿石烧结方法。带式烧结机是钢铁工业的主要烧结设备,它的产量占世界烧结矿的”%。现代带式烧结机的烧结室的断面示于图1。烧结机是由铺设在钢结构上的封闭轨道和在轨道上连续运动的一系列烧结台车组成。首先将从烧结矿中分出的铺底料(10~Zomm)加在台车上,以保护台车算条和减少废气含灰量。然后再将烧结混合料经布料机加到台车上,并保持规定的高度。随之进行抽风点火烧结,随台车前进,烧结过程由料层表面不断向下进行。至机尾,烧结完成,台车翻转将烧结饼倾卸。空台车沿下部轨道运行至烧结机头部,再加料进行点火烧结,如此循环不断。烧结饼经破碎和筛出热返矿后,送冷却机冷却。从料层中抽出的废气经台车下的风箱至集气总管和除尘装置,由抽风机排向烟囱。dalshi shaojieji shaojie带式烧结机烧结(sintering by sinter strand)}馨爵鬓 森币乒、,一,,,,.、一,r,_, 图1现代抽风带式烧结机烧结室断面图 带式烧结机由烧结台车、密封装置、钢结构框架和3.om、3.sm、4.om及5.om几种。由于台车处于高温传动装置组成。台车是放置烧结料和进行抽风烧结的下工作,因之不仅要求材质能耐高温、而且要求结构合重要部件。它是由铸钢车体、侧板、算条和滚轮组成(见理减少高温变形的影响。在台车和风箱滑道之间有密图2)。按烧结机大小、台车宽度有1.sm、2.om、2.sm、封装置(水管式密封或弹簧式密封),对减少漏风和节 省电耗有很重要的作用。在机头和机尾的风箱隔板与 ‘卜~一一-一-2500—--,司 创盯一一一下台车之间用重锤连杆式密封。为保证台车在受热膨胀 .对胭奎至斋荞至幕筹拜三三三三三尸气润后仍能平稳运转,在机尾卸矿端设置专门的摆动机架 书阳~一一一即一一邵一二一一一.一-期d{丹一去或可水平移动的尾部星轮。烧结台车借助于机头部分 !毛一一一一,。。州泞的传动装置向前运动,传动装置是由电动机、减速机和 卜卜一一一一-—3216—一一一一月’传动大齿轮所组成。(见彩图插页第2、3页) (杨兆祥蔡法率)纂戳磷~ 图2烧结台车
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