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1.
铝基碳化硅颗粒增强型复合材料(SiC_p/Al复合材料)切削加工性能较差,其内螺纹的切削加工难度更大。在研究SiC_p/Al复合材料磨削加工性能的基础上,提出利用电镀超硬磨料成形砂轮进行SiC_p/Al复合材料内螺纹螺旋磨削加工的工艺方法,并研制了电镀CBN成形砂轮,进行了具体的内螺纹磨削试验。试验结果验证了SiC_p/Al复合材料内螺纹螺旋磨削加工方法的可行性和灵活性。在砂轮线速度v_s=5.86m/s、进给速度v_f=80mm/min的条件下,CBN成形砂轮对SiC_p/Al复合材料展现出较好的磨削能力,单个砂轮可以完成17个M8螺纹孔的螺旋磨削加工,其内螺纹的加工尺寸精度均满足6H塞规的检测要求。同时,电镀CBN砂轮的磨损形式以磨粒磨损为主,砂轮表面未出现大面积脱落的现象。这说明,利用超硬磨料成形砂轮可以实现SiC_p/Al复合材料内螺纹的高效高质量加工,此工艺方法具有较高的工程应用价值,适于在实际生产中推广应用。  相似文献   

2.
缓进给磨削工艺适合于成型磨削,尤其在复杂型面构件的高效精密磨削中具有广阔应用前景。本文采用钎焊CBN砂轮进行了镍基铸造高温合金K424的缓磨试验,重点研究了工艺参数(砂轮线速度、工件进给速度、切深)对磨削加工性与表面完整性的影响,包括磨削力与磨削温度、磨削比能、尺寸稳定性、加工表面形貌、亚表面层的显微硬度与金相组织变化、残余应力。结果显示,尽管K424合金的磨削比能高达200-300J/mm3,但在钎焊CBN砂轮缓进给磨削K424合金过程中,磨削温度仅约为100℃。采用砂轮线速度22.5m/s、工件进给速度0.1m/min,以及切深0.2mm的工艺参数加工出满足尺寸精度要求的直槽。磨削表面未发现磨削烧伤与显微裂纹,并且呈压应力状态。  相似文献   

3.
原位自生TiB_2/Al复合材料具有密度小,比强度高,比模量大等特点,在航空航天领域具有广泛的应用前景。为探索原位自生TiB_2/Al复合材料的磨削加工性能,选用单晶刚玉SA砂轮、白刚玉WA砂轮和CBN砂轮在不同磨削参数下对TiB_2/Al复合材料进行磨削试验。首先研究了砂轮材质、转速、工件速度、磨削深度对工件表面粗糙度的影响规律;其次通过对工件表面形貌、磨屑形态、砂轮磨损的观测分析,探索了原位自生TiB_2/Al复合材料磨削表面成形机制;最后基于试验数据,给出了TiB_2/Al复合材料磨削工艺参数优选域。本研究可为颗粒增强金属基复合材料磨削加工提供基础理论支撑。  相似文献   

4.
本文采用人工热电偶测温方式,对纳米Al2O3陶瓷和普通45#钢进行了普通和超声振动下平面磨削磨削温度的测量.比较了相同磨削参数下超声和普通磨削温度的实验数据.实验结果显示:超声辅助磨削纳米氧化铝陶瓷时陶瓷表面磨削温度比普通磨削时低.但超声辅助磨削45#钢时其磨削温度与普通磨削情况下差别不大.  相似文献   

5.
以Ni粉和Al粉为原料,通过机械合金化和真空热压烧结制备了高致密的NiAl-5%Al2O3(体积分数,下同)复合材料,并利用烧结-锻造技术制成了该材料的前缘模拟件.机械球磨后,粉末颗粒充分细化,Ni和Al发生原位反应,并最终生成NiAl-5%Al2O3复合材料粉末.经1300℃真空热压烧结,获得致密的NiAl-Al2O...  相似文献   

6.
从纳米超级隔热材料的组成及微观结构角度分析了降低材料热导率的途径,提出了降低纳米超级隔热材料热导率的一般原则,制备了SiO2及SiO2-Al2O3纳米超级隔热材料并对材料的孔结构进行控制.结果表明:SiO2和SiO2-Al2O3纳米超级隔热材料具有均匀的多孔结构,Al2 O3的加入提高了SiO2纳米超级隔热材料的热稳定性,且不会破坏材料的多孔结构,室温热导率仅为0.02 W/(m·K),提出了Al2O3改善SiO2纳米超级隔热材料热稳定性的机理.  相似文献   

7.
利用Al-Ti-TiO2体系原位反应合成了Nb掺杂Al2O3/TiAl复合材料。借助XRD和SEM研究了Nb掺杂Al2O3/TiAl的显微结构以及Nb引入量对复合材料显微结构的影响。结果表明,复合材料由TiAl、Ti3Al、Al2O3、Nb和NbAl3相构成,细小Al2O3颗粒分布于基体晶粒交界处,存在一定的团聚;Nb元素引入量的高低,可调节产物中TiAl和Ti3Al的相对含量,随Nb含量的增大,TiAl含量逐渐减少,Ti3Al则逐渐增大;同时,基体晶粒和Al2O3颗粒均有所细化,且分布逐渐均匀,材料的均匀性得到改善。  相似文献   

8.
采用基体改性的方法,向AlCl3溶胶中添加ZrO2粉,制得含ZrO2的C/Al2O3复合材料,探讨了添加ZrO2对C/Al2O3多功能复合材料性能的影响.结果表明添加少量的ZrO2,可产生基体的相变及在基体内产生微裂纹,这可改善C/Al2O3陶瓷基体间界面性能,提高材料强度,降低材料热导率.同时对ZrO2添加量进行了优化处理,最终确定ZrO2的最佳含量为1%(质量分数),使材料强度值提高39%,材料热导率降低至0.902 W/(m·K)以下.  相似文献   

9.
功能性聚酰亚胺薄膜的研制   总被引:2,自引:0,他引:2       下载免费PDF全文
通过原位聚合法,将纳米粒子Al2O3引入聚酰亚胺基体中,制备了具有不同Al2O3含量的Al2O3/PI杂化薄膜。研究结果表明:当Al2O3的质量分数小于10%时,杂化薄膜的拉伸强度和电击穿强度与纯薄膜相当;当Al2O3的质量分数为10%时,杂化薄膜的电老化寿命是纯薄膜的3.4倍,失重5%的温度比纯薄膜提高了42%;随着Al2O3质量分数的增加,杂化薄膜的线膨胀系数呈下降趋势。  相似文献   

10.
在改装成的超声磨削机床上进行了陶瓷超声磨削与普通磨削的对比试验,以揭示蠕动进给超声磨削加工的磨削特性及其材料去除机理。结果表明:当超声振动方向与磨削进给方向相同时,超声振动所引起的抛磨作用非常显著,超声磨削的表面粗糙度比机械磨削的低;Al2O3陶瓷在一般条件下超声磨削的去除方式仍属于脆性断裂,以晶粒粉碎、穿晶断裂为主,但伴随有沿晶断裂、弹性划擦、塑性流动等现象。  相似文献   

11.
The technique of creep feed grinding is most suitable for geometrical shaping, and therefore has been expected to improve effectively material removal rate and surface quality of components with complex profile. This article studies experimentally the effects of process parameters (i.e. wheel speed, workpiece speed and depth of cut) on the grindability and surface integrity of cast nickel-based superalloys, i.e. K424, during creep feed grinding with brazed cubic boron nitride (CBN) abrasive wheels. Some important factors, such as grinding force and temperature, specific grinding energy, size stability, surface topography, microhardness and microstructure alteration of the sub-surface, residual stresses, are investigated in detail. The results show that during creep feed grinding with brazed CBN wheels, low grinding temperature at about 100 °C is obtained though the specific grinding energy of nickel-based superalloys is high up to 200-300 J/mm3. A combination of wheel speed 22.5 m/s, workpiece speed 0.1 m/min, depth of cut 0.2 mm accomplishes the straight grooves with the expected dimensional accuracy. Moreover, the compressive residual stresses are formed in the burn-free and crack-free ground surface.  相似文献   

12.
A state-of-the-art review on monolayer electroplated and brazed cubic boron nitride (CBN) superabrasive wheels for grinding metallic materials has been provided in this article. The fabrication techniques and mechanisms of the monolayer CBN wheels are discussed. Grain distri-bution, wheel dressing, wear behavior, and wheel performance are analyzed in detail. Sample appli-cations of monolayer CBN wheel for grinding steels, titanium alloys, and nickel-based superalloys are also provided. Finally, this article highlights opportunities for further investigation of mono-layer CBN grinding wheels.  相似文献   

13.
为探索利用简单形状砂轮对陶瓷材料进行数控展成型面超声磨削,通过对Al2O3陶瓷进行蠕动进给超声磨削和机械磨削对比试验研究,探索各加工参数对磨削表面质量的影响规律.结果表明:超声振动方向与蠕动进给方向平行时可降低表面粗糙度值,而超声振动方向与蠕动进给方向垂直时则不利于改善加工表面质量;在超声磨削条件下,为了提高加工表面质量,应采取较小的磨削深度、较低的进给速度和适当高的磨削速度以及复合进给磨削方式.结合试验结果理论分析了蠕动进给超声磨削和蠕动进给机械磨削加工机理,并根据试验结果选择磨削参数进行了陶瓷叶片型面超声磨削的可行性试验.  相似文献   

14.
 利用扫描电镜、电子探针、x射线光电子谱仪等测试分析手段,按照传统的烧伤分档标准对K417铸造镍基高温合金缓进磨削时烧伤表面的形成机理及烧伤表面层物理性态所发生的种种变化进行了系统的研究。文中针对高温合金本身的特点,结合性态测试与疲劳试验结果指出:仅有紫色档才可能对零件的使用寿命构成实质性损伤。  相似文献   

15.
《中国航空学报》2021,34(6):100-109
This paper evaluates the performance of creep feed grinding γ-TiAl intermetallic (Ti-45Al-2Mn-2Nb) using electroplated diamond wheels. Firstly, a comparative analysis with the grinding results by using electroplated CBN wheels was conducted, mainly involving abrasive wheel wear behavior and maximum material removal rate below surface burn limit. It was found that the diamond wheel would produce much better grinding results including lower wheel wear rate and higher maximum material removal rate. Then the surface integrity obtained at different level of material removal rate was characterized with the utilization of the diamond wheel. The poor ductility of this γ-TiAl intermetallic material was found to have a marginal effect on the surface integrity, as no severe surface defects such as material pullout were generated during the stable wheel wear stage. For the involved operating parameters, a deformation layer was produced with ∼10 μm or more in thickness depending on the material removal rate used. Meanwhile, a work-hardened layer extending to more than 100 μm was produced with a maximum microhardness of above 520 HV0.05 (bulk value 360 HV0.05). The residual stress remained compressive, with a value of above −100 MPa and even up to −500 MPa for an elevated material removal rate. Shearing chip was the main chip type, indicating good wheel sharpness in the grinding process.  相似文献   

16.
缓磨烧伤过程的计算机仿真研究   总被引:1,自引:0,他引:1  
在关于缓磨时的磨削热 ,接触弧区换热过程以及工件表层非稳态温度场的深入研究的基础上 ,构造了一可用于计算缓磨烧伤前后工件表层温度场畸变历程的数学模型 ,并据此完成了关于缓磨烧伤过程的计算机仿真研究 ,仿真结果与实际吻合良好 ,它率先阐明了缓磨烧伤的热机理并且证明了缓磨烧伤是一具有明显前兆特征的典型渐变过程  相似文献   

17.
Titanium alloy tenon is creep feed ground with monolayer brazed cubic boron nitride (CBN) shaped wheels. The dimension accuracy of the tenon is assessed and the results indicate that it completely meets the requirement of blade tenon of aero-engine. Residual stresses, surface roughness, microstructure and microhardness are measured on ground surfaces of the specimen, which are all compared with that ground with vitrified CBN wheels. Under all the circumstances, compressive residual stress is obtained and the depth of the machining affected zone is found to be less than 40 μm. No phase transformation is observed at depths of up to 100 μm below the surface, though plastic deformation is visible in the process of grain refinement. The residual stress and microhardness of specimens ground with brazed CBN wheels are observed to be lower than those ground with vitrified ones. The arithmetic mean roughness (Ra) values obtained are all below 0.8 μm.  相似文献   

18.
断续缓磨射流冲击强化磨削弧区换热的实验研究   总被引:4,自引:0,他引:4  
通过深切缓磨时磨削烧伤机理的分析,提出高压射流冲击强化磨削弧区换热新构想,并通过断续缓磨射流侧向冲击弧区的磨削实验显示其换热效果.  相似文献   

19.
《中国航空学报》2016,(5):1414-1424
In order to develop the high-efficiency and precision machining technique of Ti Cp/Ti–6Al–4V particulate reinforced titanium matrix composites(PTMCs), high-speed grinding experiments were conducted using the single-layer electroplated cubic boron nitride(CBN) wheel and brazed CBN wheel, respectively. The comparative grinding performance was studied in terms of grinding force, grinding temperature, grinding-induced surface features and defects. The results display that the grinding forces and grinding temperature obtained with the brazed CBN wheel are always lower than those with the electroplated CBN wheel. Though the voids and microcracks are the dominant grinding-induced surface defects, the brazed CBN wheel produces less surface defects compared to the electroplated wheel according to the statistical analysis results. The maximum materials removal rate with the brazed CBN wheel is much higher than that with the electroplated one. All above indicate that the single-layer brazed CBN super-abrasive wheel is more suitable for high-speed grinding of PTMCs than the electroplated counterpart.  相似文献   

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