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1.
样品形态对燃煤的激光烧蚀特性影响分析   总被引:4,自引:0,他引:4  
将激光诱导击穿光谱技术应用于煤质检测,分析了燃煤形态对激光烧蚀特性的影响.利用532 nm激光在大气常压环境下烧蚀样品.同时使用多通道光纤光谱仪和CCD探测器对激光烧蚀形成的等离子体发射信号进行分光和探测.对比分析两种不同形态煤样的等离子体温度、电子密度以及元素特征谱线强度随脉冲能量变化的规律.实验研究表明,样品形态对燃煤的激光烧蚀特性有显著影响.不问形态燃煤的等离子体温度、电子密度以及元素特征谱线强度随脉冲能量的变化规律有所不同.相同实验条件下,粉状煤样形成的等离子体温度和电子密度均比块状煤样的高,但块状煤样的元素特征谱线强度则更大.  相似文献   

2.
实验研究了激光脉冲宽度和脉冲个数对镍基高温合金材料去除阈值的影响,分别在290 fs,1 ps和7 ps脉宽的激光下,使用1,10,50,100,300,500和1000个不同能量的激光脉冲辐照高温合金样品表面。实验结果表明,烧蚀坑尺寸会随脉冲数的增加而增加,而脉冲宽度的增加会加大脉冲个数对烧蚀坑直径的影响。通过烧蚀坑直径的平方值与激光脉冲能量之间存在的对数关系,得到了不同脉冲宽度下镍基高温合金的多脉冲材料阈值。3种不同脉宽下的高温合金多脉冲去除阈值都存在显著的累积效应。根据去除阈值计算得到290 fs,1 ps和7 ps脉宽下的累积效应系数分别为0.88,0.86和0.78。  相似文献   

3.
高压Ar气对激光诱导土壤等离子体辐射的增强效应   总被引:6,自引:6,他引:0  
使用高能量钕玻璃脉冲激光器(~30J, 0.7 ms)烧蚀土壤样品获得等离子体,通过对等离子体图像和光谱的采集,以及对烧蚀质量的测量,分析了高气压(0.2~1.1 MPa)Ar气环境对等离子体辐射强度的影响。结果表明,随着Ar气气压的升高等离子体的体积被压缩,温度升高,亮度明显增强。在实验条件下,等离子体发射光谱强度随着环境气压上升而不断提高,但是激光对样品的烧蚀质量却逐渐下降。结合实验过程对测量结果进行了适当的讨论。  相似文献   

4.
激光诱导熔穴对等离子体辐射增强效应的研究   总被引:1,自引:0,他引:1  
采用高能量钕玻璃激光器输出的单脉冲激光重复作用于土壤样品表面同一位置,利用光谱采集系统对序列激光脉冲作用下形成的等离子体发射光谱进行采集。实验结果显示:在熔穴孔径的约束作用下,激光诱导产生的土壤等离子体辐射不断增强,谱线强度和信背比都随着作用脉冲个数的增加有不同幅度的提高。通过采集等离子体像及熔穴形貌的图片,对等离子体形状、激光诱导熔穴形貌以及激光烧蚀样品质量进行了研究,初步探究了激光诱导熔穴对等离子体辐射增强的内在机理。在序列激光脉冲作用下,所形成等离子体的体积先是逐渐增大,尾焰发生畸变,然后体积慢慢变小,并且颜色从浅黄色逐渐变为白色,意味着温度在不断升高。激光诱导熔穴的形状比较规则,从孔穴底部到顶部直径逐渐增大,基本成圆锥形。激光烧蚀样品质量随着脉冲个数的增加而递减。借助熔穴的约束作用、孔壁多次反射过程所产生的Fresnel(菲涅耳)吸收以及逆韧致辐射吸收提高了蒸发物质的原子化程度,增大了等离子体辐射强度。  相似文献   

5.
飞秒激光在空气和水中对硅片烧蚀加工的实验研究   总被引:1,自引:0,他引:1       下载免费PDF全文
王锐  杨建军  梁春永  王洪水  韩伟  杨阳 《物理学报》2009,58(8):5429-5435
采用1 kHz,800 nm,50 fs—24 ps的钛宝石激光脉冲对单晶硅样品在空气和水溶液环境中的烧蚀加工特性进行了研究.实验观察到了超短脉冲激光在空气氛围中烧蚀形成的双层环状结构,分析揭示了加工区域中心和边缘的烧蚀物理机制分别为热熔化和库仑爆炸,并测量了双层环状结构半径随入射激光能量、脉冲数及持续时间等的变化关系,结果表明获取较大深-宽比的加工效果需选择小能量脉冲激光的多次作用.在水溶液环境中,实验发现飞秒激光在样品表面诱导产生了亚微米量级的多孔状结构,而皮秒激光则更容易实现对硅表面的非热性去除.这是由于激光诱导的光机械应力和空泡效应随脉冲宽度变大而增强所致,在实验上确立了区分这两种不同加工状态的临界脉冲宽度. 关键词: 飞秒激光 硅片 激光加工  相似文献   

6.
脉冲激光诱导Cu靶产生发光羽的特性分析   总被引:1,自引:1,他引:0  
黄庆举 《光子学报》2006,35(11):1636-1639
通过在不同的环境气压下拍摄脉冲激光烧蚀金属Cu诱导产生的发光羽,获取了不同区域具有不同颜色特征的发光羽照片.结果发现:发光羽的颜色随环境气压的改变而变化.采用空间分辨光谱技术,测定了激光诱导金属Cu靶产生发光羽辐射强度的空间分布,以及不同烧蚀环境气压对发光羽辐射强度的影响.研究了脉冲激光烧蚀Cu表面诱导发光的动力学过程,建立了可能的发光羽分区模型,对发光羽的不同区域发光粒子的激发机理进行了探讨,并用之定性地解释了所观察的实验现象.结果分析表明:脉冲激光诱导Cu产生的发光羽可以分为三个区域,不同区域的发光机理不同,Cu原子和Cu离子的激发机理不完全相同.  相似文献   

7.
飞秒脉冲参量影响金属表面热特性的研究   总被引:8,自引:2,他引:6  
采用有限差分法对约化后的双温方程进行数值模拟.研究了飞秒激光与金属铜相互作用时,脉冲形状对烧蚀结果的影响.结果表明:脉冲能量确定时,脉冲形状对烧蚀结果影响不大;多脉冲作用时,脉冲重复频率只有在一定范围内(随材料属性改变),脉冲间的热累积效应才存在;对传导性好的金属材料,热累积效应不明显.并实验证实了上述结果.  相似文献   

8.
李欣荣  周天文  孙琦 《应用光学》2009,30(1):148-152
为研究长脉冲高能激光与金属靶材相互作用的机理,使用2种激光器对铝、钢、铜和钛靶材进行烧蚀试验。记录靶材穿透时的激光轰击次数,测量穿过通孔的激光能量和孔的面积,得到不同材料在不同能量密度下的烧蚀率。实验表明:能量密度低的激光束,即使对靶材可能有烧蚀作用,它的烧蚀率要比能量密度高的激光束小很多。能量密度达到造成液态质量迁移条件的长脉冲激光,可获得较大的烧蚀率和截面积较大的通孔。  相似文献   

9.
通过频域上控制飞秒激光脉冲幅度、相位和偏振在时域上可以获得几乎任意形状的飞秒激光脉冲,这种飞秒激光脉冲整形技术可为研究光与原子分子非线性相互作用提供一种全新实验技术手段.本文介绍飞秒激光脉冲整形发展历史、技术方法、控制方式及其相关应用,并展望飞秒激光脉冲整形技术未来的发展方向.  相似文献   

10.
采用波长为355 nm的纳秒紫外重复脉冲激光对单晶硅片进行了盲孔加工实验, 观测了随脉冲增加激光烧蚀硅片的外观形貌和盲孔孔深、孔径的变化规律, 并对紫外激光辐照硅片的热力学过程进行了分析. 研究结果表明:紫外激光加工硅盲孔是基于热、力效应共同作用的结果, 热效应会使得硅材料熔化、气化甚至发生电离产生激光等离子体,为材料的去除提供条件;激光等离子体冲击波以及高温气态物向外膨胀会对熔化材料产生压力致使其向外喷射,为重复脉冲的进一步烧蚀提供了条件;力效应主要沿着激光传输的方向,垂直于硅表面,使得去除部位主要集中在孔的深度方向,达到较高的孔径比,实验观察孔径比可达8:1;此外,激光等离子体的产生也阻止了激光对靶面的作用,加之随孔深的增加激光发生散焦,使得烧蚀深度有一定的限制,实验观察烧蚀脉冲个数在前100个时加工效率较高.  相似文献   

11.
Experiments on the ablation of polymethylmethacrylate (PMMA) with 300 fs uv excimer laser pulses at 248 nm are reported for the first time. With these ultrashort pulses, ablation can be done at fluences up to five times lower than the threshold fluence for 16 ns ablation of PMMA, and the surface morphology is improved, also for several other materials. A model for ablation is proposed, assuming a non-constant absorption coefficient eff depending on the degree of incubation of the irradiated material and the intensity of the incoming excimer laser pulse. The agreement between our model and our experimental observations is excellent for 16 ns excimer laser pulses, also predicting perfectly the shape of a pulse transmitted through a thin PMMA sample under high fluence irradiation. Qualitative agreement for 300 fs excimer laser pulses is obtained so far.  相似文献   

12.
Emission characteristics of gadolinium (Gd) oxide are studied, using ns and fs laser pulses for ablation in double-pulse laser induced breakdown spectroscopy (LIBS). In the current conditions of pulse energy and signal detection timing, emission intensity enhancement in the reheating mode is 25-fold, but little effect can be observed in a pre-pulse mode. It is shown that the optimum focus position of the ablation pulse is about 5 mm apart from the sample surface in the reheating mode. Although little emission can be observed in the single-pulse configuration with fs ablation pulses, the intense emission can be observed in the reheating mode in the double-pulse configuration.  相似文献   

13.
We have investigated the ultra-fast microdrilling of metals using a compact and cheap fiber amplified passively Q-switched microchip laser. This laser system delivers 100-ps pulses with repetition rates higher than 100 kHz and pulse energies up to 80 μJ. The ablation process has been studied on metals with quite different thermal properties (copper, carbon steel and stainless steel). The dependence of the ablation depth per pulse on the pulse energy follows the same logarithmic scaling laws governing laser ablation with sub-picosecond pulses. Structures ablated with 100-ps laser pulses are accompanied only by a thin layer of melted material. Despite this, results with a high level of precision are obtained when using the laser trepanning technique. This simple and affordable laser system could be a valid alternative to nanosecond laser sources for micromachining applications.  相似文献   

14.
对密度为90 mg/cm3的PMP泡沫材料的飞秒激光烧蚀结果进行了分析,推导出该材料在脉宽50 fs、波长800 nm、重复频率为1000 Hz的飞秒激光作用下的蚀除阈值为0.91 J/cm2(100个激光脉冲),获得了烧蚀直径分别随激光功率、脉冲数及聚焦物镜数值孔径的变化规律。相同飞秒激光加工系统下,对比了铜箔上获得的烧蚀形状,确定了PMP泡沫材料本身的多孔洞及其分布不均匀是造成烧蚀区域的形状不规则的重要因素。PMP泡沫在较高能量或是较长时间的飞秒激光作用下,烧蚀区域发生碳化的原因是由热作用引发的。提出了一种基于激光束耦合的飞秒激光切割厚度大于1 mm的薄膜-泡沫材料的方法,并获得了切割厚度大于1.5 mm、切割侧壁与光束光轴夹角小于5、切割面整洁的薄片。  相似文献   

15.
Temporal pulse shaping of ultrashort laser pulses has been used for laser ablation of semiconductors. Even the simplest double pulse sequence with a delay of several picoseconds shows remarkable differences in the interaction process, compared to a single pulse of the same total energy. We discuss the interaction of double pulses with single crystal silicon sample in the context of crater morphology for multiple pulses on the same spot. The growth of the typical columnar structures in helium at atmospheric pressure is suppressed and the crater bottom is flat despite the Gaussian beam profile. The influence of the temporal pulse shape has to be treated in conjunction with the influence of the other ablation parameters.  相似文献   

16.
Ablation process of 1 kHz rate femtosecond lasers (pulse duration 148 fs, wavelength 775 nm) with Au films on silica substrates has been systemically studied. The single-pulse threshold can be obtained directly. For the multiple pulses the ablation threshold varies with the number of pulses applied to the surface due to the incubation effect. From the plot of accumulated laser fluence N × ?th(N) and the number of laser pulses N, incubation coefficient of Au film can be obtained (s = 0.765). As the pulse energy is increased, the single pulse ablation rate is increasing following two ablation logarithmic regimes, which can be explained by previous research.  相似文献   

17.
Cavitation effects in pulsed laser ablation can cause severe deformation of tissue near the ablation site. In angioplasty, they result in a harmful dilatation and invagination of the vessel walls. We suggest to reduce cavitation effects by dividing the laser pulse energy into a pre-pulse with low and an ablation pulse with high energy. The pre-pulse creates a small cavitation bubble which can be filled by the ablation products of the main pulse. For suitable energy ratios between the pulses, this bubble will not be enlarged by the ablation products, and the maximal bubble size remains much smaller than after a single ablation pulse. The concept was analyzed by numerical calculations based on the Gilmore model of cavitation dynamics and by high-speed photography of the effects of single and double pulses performed with a silicone tube as vessel model. The use of double pulses prevents the deformation of the vessel walls. The concept works with an energy ratio of up to about 1:30 between the pulses. For the calculated optimal ratio of 1:14.6, the bubble volume is reduced by a factor of 17.7. The ablation pulse is best applied when the pre-pulse bubble is maximally expanded, but the timing is not very critical.  相似文献   

18.
We have investigated the morphology of CaF2 (111) irradiated by 780 nm laser pulses of varying pulse width (200 fs-8 ns) with fluences above the damage threshold. Large differences can be observed which we relate to the mechanisms and dynamics of defect production in this wide band gap material. The best defined and most controllable ablation is obtained for laser pulse widths of a few picoseconds. For nanosecond and femtosecond pulses strong fracturing of the crystal is observed with damage outside the laser irradiated zone. This has a thermal origin for nanosecond pulses but a non-thermal origin for pulse widths below approximately 1 ps.  相似文献   

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