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1.
采用单点金刚石车削技术制备加工铝楔形靶,发现金刚石车削加工楔形靶实际轮廓为圆锥面。通过Veeco NT1100白光干涉仪对表面轮廓及粗糙度进行了测量,结果表明平面部分表面粗糙度小于50 nm,最大峰谷值小于100 nm,斜面部分表面粗糙度小于200 nm。分析认为斜面部分粗糙度测量数值较大是由刀具工作角度变化导致的,而测量轮廓线非圆锥体母线又导致粗糙度测量结果大于实际值。  相似文献   

2.
切削用量对铝靶表面质量的影响   总被引:1,自引:1,他引:0       下载免费PDF全文
 采用单点金刚石切削技术,完成了对ICF实验用铝靶的切削加工,重点研究了切削用量对加工表面质量的影响。实验结果表明:采用较小的进给速度,较大的主轴转速能够获得较低的表面粗糙度,切削深度对表面质量影响较小。通过Form Talysurf 表面轮廓仪测量,结果表明表面粗糙度小于50 nm。  相似文献   

3.
采用单点金刚石切削技术,完成了对ICF实验用铝靶的切削加工,重点研究了切削用量对加工表面质量的影响。实验结果表明:采用较小的进给速度,较大的主轴转速能够获得较低的表面粗糙度,切削深度对表面质量影响较小。通过Form Talysurf 表面轮廓仪测量,结果表明表面粗糙度小于50 nm。  相似文献   

4.
用金刚石车削技术制备EOS实验用铝薄膜和铜薄膜   总被引:2,自引:3,他引:2       下载免费PDF全文
 具有材料理论密度的金属薄膜对于材料高压状态方程(EOS)研究而言具有重要的意义。本文提出采用金刚石车削技术,利用超精密金刚石车床、金刚石圆弧刀具及真空吸附夹持技术,对纯铝和无氧铜进行端面车削,完成了EOS实验用铝薄膜和铜薄膜的车削加工,实现了薄膜密度接近材料理论密度。精加工工艺参数为:进给量0.001 mm/r,主轴转速3000 r/min,切削深度1 μm。采用Form Talysurf series 2型触针式轮廓仪进行测量,结果表明:铝薄膜、铜薄膜厚度可以达到小于10 μm水平,表面均方根粗糙度小于5 nm,原始最大轮廓峰-谷高度小于50 nm,厚度一致性好于99%。  相似文献   

5.
采用单点金刚石切削的方法加工了KDP晶体,利用回归分析的方法建立了表面粗糙度预测模型,达到了在加工前设计、预测和控制表面粗糙度的目的。利用预测模型分析了进给量、切削速度、背吃刀量对表面粗糙度的影响。通过优化设计获得了KDP晶体在该条件下的最佳切削参数,得到的表面粗糙度的最佳估计值为6.3389nm。利用最佳的切削工艺参数,加工出了表面粗糙度值为6.895nm的超光滑表面。  相似文献   

6.
平面调制靶的正弦波曲面超精密加工与表征   总被引:1,自引:0,他引:1       下载免费PDF全文
采用超精密车削技术加工微尺度正弦波调制曲面微结构,解决了尖刃金刚石刀具刃磨和刀具对中等关键技术,研究了进给量、背吃刀量和主轴转速等主要切削参数对铜模板表面粗糙度的影响规律。加工出波长为(20~150)m0.5 m﹑峰谷高度差为(0.2~20)m0.1 m的带正弦波调制曲面。采用原子力显微镜对模板表面轮廓扫描,在20 m20 m的范围内,其表面粗糙度均方根值小于10 nm。将正弦波调制曲面测量结果与理论轮廓进行比较,采用最小二乘寻优算法评定轮廓误差。完成了曲面轮廓的功率谱表征,利用加工的曲面微结构制备了平面调制靶,实现正弦波调制曲面轮廓的精确转移。  相似文献   

7.
采用电火花成型加工技术,在黑腔芯轴侧表面加工平台。采用白光干涉仪对平台表面轮廓及粗糙度测量,结果表明:平面部分表面粗糙度小于0.5μm,最大峰谷高度小于15μm。通过奥林巴斯测力显微镜对平台尺寸测量,结果表明:平台的轴向尺寸加工精度可控制在±10μm,同一电极加工的平台尺寸一致性可控制在±2μm。分析了电极损耗对零件形状精度的影响规律以及平台表面粗糙度的影响因素,并通过负极性加工去除电极损耗对平台尺寸精度的影响。  相似文献   

8.
为有效解决金刚石刀具表面轮廓质量评价指标分散、无法进行全面系统测量的难题,基于原子力显微镜和超精密回转轴系,提出了实现前后刀面粗糙度、刃口锋利度和刃口微豁三个关键指标的集成测量方法。根据金刚石刀具表面轮廓质量的测量要求,以原子力显微镜扫描系统、气浮隔振平台、二维移动平台以及精密回转轴系为基础构建测量系统,精确测量了金刚石刀具刃口附近的表面微观形貌;采用基于MATLAB开发的专用测量软件对原始数据进行处理,得到金刚石刀具前后刀面粗糙度值、刃口锋利度值和刃口微豁范围;并对测量误差进行了分析,提出了控制要求。通过上述自主开发的测量仪器,可以高效、完整地描述金刚石刀具表面轮廓质量,能够实现nm级粗糙度、亚μm级锋利度以及μm级微豁的准确测量。  相似文献   

9.
KDP晶体单点金刚石车削表面形貌分形分析   总被引:4,自引:0,他引:4       下载免费PDF全文
 分别使用2维和3维分形方法对单点金刚石车削加工的KDP晶体表面形貌进行了分析,并对表面的3维分形维数和3维粗糙度表征参数进行了比较,分析了二者对表面形貌表征的差异。使用2维轮廓分形方法计算了KDP晶体表面圆周各方向上的分形维数。通过分析得出:3维分形维数与表面粗糙度值成反比关系;使用单点金刚石车削方法加工KDP晶体会形成各向异性特征明显的已加工表面,在一定程度上容易形成小尺度波纹;已加工表面是否具有明显的小尺度波纹特征与表面粗糙度值并无直接关系,但与其表面轮廓分形状态分布密切相关;KDP晶体表面2维功率谱密度与其分形状态具有相近的方向性特征。  相似文献   

10.
单点金刚石车削加工切削距离的计算   总被引:1,自引:0,他引:1  
讨论了大型金属反射镜在金刚石车削中,金刚石刀具的磨损对加工精度的影响;详细介绍了超精密加工中几种典型零件形状单点金刚石车削加工的切削距离计算方法,经计算在加工直径为1000mm的圆盘工件时,当刀具的进给量为2μm/r,切削距离达到近400km。通过计算为加工大型光学元件刀具磨损规律的研究提供分析基础。  相似文献   

11.
The wavelet analysis method has been extensively employed to analyze the surface structures and evaluate the surface roughness. In this work, however, the wavelet analysis method was introduced to decompose and reconstruct the sampled surface profile signals in the cutting direction that achieved by SPDT (single point diamond turning) operation, and the surface profile signals in tool feeding direction were reconstructed with the approximate harmonic functions directly. And moreover, the orthogonal design method, i.e. the combination design of general rotary method, was resorted to model the variations of the independent frequency and amplitude of different simulated harmonic signals in the cutting and tool feeding directions. As expected resultantly, a novel 3D surface topography modeling solution was established, which aims to predict and modify the finished KDP (potassium dihydrogen phosphate or KH2PO4) crystal surfaces. The validation tests were carried out finally under different cutting conditions, and the collected average surface roughness in any case was compared with the corresponding value as predicted. The results indicated the experimental data were well consistent with the predictions, and only an average relative error of 11.4% occurred in predicting the average surface roughness.  相似文献   

12.
Tarnishing and roughness of copper surface can be removed by electropolishing treatment (EP) imparting a bright and smooth surface at suitable conditions, e.g. current density, time, temperature, and viscosity. It was carried out by using an electrolytic cell containing phosphoric acid 55% as the electrolytic solution. Both copper working electrode and lead counter electrode, and reference electrode (SCE) were connected to a Potentiostat/Galvanostat to allow an electric current to pass through the solution. Some additives such as soluble starch, ethylene glycol, and methanol were added to reduce defects formed on the copper surface during EP process. The results showed that the highest gloss value was obtained by applying electric potential 1.5 V at the passive region of polarization curve. The surface was investigated after EP treatment, where SEM and EDX showed lower roughness in case of addition of both soluble starch and ethylene glycol more than methanol. Moreover, AFM analysis showed the lowest roughness in case of soluble starch more than other additives.  相似文献   

13.
聚酰亚胺薄膜表面粗糙度的影响因素   总被引:1,自引:0,他引:1       下载免费PDF全文
 采用热蒸发气相沉积聚合方法(VDP)制备了聚酰亚胺(PI)薄膜,研究了设备、衬底温度、升温过程和单体配比因素对PI薄膜表面形貌的影响。利用干涉显微镜和扫描电镜对薄膜表面形貌进行了分析;利用原子力显微镜测定了薄膜表面粗糙度。结果表明:设定蒸发源-衬底距离为74 cm时可成连续膜;蒸发源采用一段升温和多段升温时,膜表面均方根粗糙度分别为291.23 nm和61.99 nm;采用细筛网可防止原料的喷溅;均苯四甲酸二酐和4,4′-二氨基二苯醚(PMDA和ODA)单体沉积速率比值为0.9∶1时,膜表面均方根粗糙度值可减小至3.30 nm;沉积衬底温度保持30 ℃左右时,膜表面均方根粗糙度为4.01 nm, 随温度的上升,膜表面质量会逐渐变差。  相似文献   

14.
Electrical discharge machining of titanium alloy (Ti-6Al-4V)   总被引:4,自引:0,他引:4  
In this study, the electrical discharge machining (EDM) of titanium alloy (Ti-6Al-4V) with different electrode materials namely, graphite, electrolytic copper and aluminium and process parameters such as, pulse current and pulse duration were performed to explore the influence of EDM parameters on various aspects of the surface integrity of Ti6Al4V. Scanning electron microscopy (SEM), X-ray diffraction (XRD), energy dispersive spectrograph (EDS) and hardness analysis were performed. The experimental results reveal that the value of material removal rate, surface roughness, electrode wear and average white layer thickness are tendency of increase with increasing current density and pulse duration. However, extremely long-pulse durations such as 200 μs led to decrease MRR and surface roughness. Furthermore, the surface hardness is increasing due to the Ti24C15 carbides formed on the surface and obvious cracks are always evident in re-solidified layer when machining copper electrode. The surface crack densities and critical crack lines were determined for the tested material. The graphite electrode is beneficial on material removal rate, electrode wear and surface crack density but relatively poorer surface finish.  相似文献   

15.
The ablation process induced by excimer lasers is a collective phenomenon that basically involves two phenomena: the laser radiation–matter interaction and the dynamic of the ablation plume. The laser parameters, the thermal and optical properties of the material, and the surface morphology are critical factors in the ablation mechanisms affecting the direction of the ablation plume expansion. In this study, the role of the surface roughness and the evolution of its morphology under the laser irradiation were investigated. Assuming a thermal ablation model, a theoretical study of the initial steps of the laser ablation process by a finite element method using ANSYS (6.1) was performed. Different ablation experiments were carried out on silicon and copper targets using a XeCl laser. The target surface morphology changes were observed by SEM and the plume deflection was recorded by a digital camera. An acceptable agreement between the experimental and simulated results was found. This study contributes to a better understanding of the physical processes involved in the laser ablation and the relations between the plume deflection angle and the surface roughness. PACS 79.20.Ds; 81.40.Gh; 44.05.+e  相似文献   

16.
The change in the surface relief of a steel-3 target (GOST 380) treated by compression plasma flows is experimentally studied. The energy density absorbed by the target varies in the range of 10–35 J/cm2 and the pulse duration is 100 μs. It is shown experimentally and numerically that the development of KelvinHelmholtz instability strongly affects the formation of the target surface treated with compression plasma flows: a large-scale wave-like relief with characteristic sizes of 200 × 1000 μm is formed on the target surface and, as a result, the roughness of the surface increases. However, the microrelief at the scale of individual elements is smoothed to a maximum roughness of about 0.5 μm.  相似文献   

17.
The calculation of reflection‐mode grazing‐incidence X‐ray absorption spectra from single surfaces and (multi‐)layered systems is studied here. In particular, the influence of the surface and interface roughness was investigated in detail. Simulations of grazing‐incidence reflection‐mode EXAFS spectra using a simple Fresnel theory neglecting any effect of roughness are compared with the Névot–Croce model and the elaborated distorted‐wave Born approximation which both include surface and interface roughness. Data are presented for clean gold surfaces, where the strong influence of the surface roughness on the resulting spectra is demonstrated. Furthermore, in the case of layered systems, the influence of both the outer (air or vacuum side) surface roughness and the inner interface roughness on the reflection‐mode EXAFS spectra is evaluated. The practical consequences of the observed correlations are discussed, and a quantitative data analysis of a copper sample that was oxidized in ambient air for several months is shown, including the evaluation of specular reflectivity profiles at fixed energy.  相似文献   

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