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    • 2. 发明申请
    • Glass Processing Method Using Laser and Processing Device
    • 使用激光和加工装置的玻璃加工方法
    • US20090013724A1
    • 2009-01-15
    • US12224150
    • 2006-02-22
    • Hirotaka KoyoKeiji TsunetomoMasanori Shojiya
    • Hirotaka KoyoKeiji TsunetomoMasanori Shojiya
    • C03C17/22
    • B23K26/0093B23K26/0622B23K26/082B23K26/18B23K26/384B23K26/40B23K2103/50C03C15/00C03C23/0025
    • A glass processing method comprising steps (i), (ii) carried out in the order mentioned. In step (i), a laser pulse (11) with a wavelength λ is condensed by a lens and is applied to a glass plate (12) to form an altered portion (13) at the portion, irradiated with a laser pulse (11), of the glass plate (12). In step (ii), the altered portion (13) is etched by using an etchant having an etching rate larger for the altered portion (13) than that for the glass plate (12). The laser beam used includes the following conditions: The pulse width of a laser pulse (11) ranges from ins to 200 ns, with a wavelength λ being up to 535 nm. The absorption coefficient of the glass plate (12) at a wavelength λ is up to 50 cm−1. A value obtained from a lens focal distance L (mm) divided by the beam diameter D (mm) of the laser pulse (11) when entering the lens is at least 7.
    • 一种玻璃加工方法,包括按照上述顺序进行的步骤(i),(ii)。 在步骤(i)中,具有波长λ的激光脉冲(11)被透镜冷凝,并被施加到玻璃板(12),以在该部分处形成改变部分(13),用激光脉冲(11 ),玻璃板(12)。 在步骤(ii)中,通过使用对于改变部分(13)的蚀刻速率大于玻璃板(12)蚀刻速率的蚀刻剂来蚀刻改变部分(13)。 使用的激光束包括以下条件:激光脉冲(11)的脉冲宽度范围从ins到200ns,波长λ高达535nm。 玻璃板(12)在波长λ处的吸收系数高达50cm -1。 从进入透镜时的透镜焦距L(mm)除以激光脉冲(11)的光束直径D(mm)得到的值为7以上。
    • 3. 发明申请
    • Glass for laser processing
    • 玻璃激光加工
    • US20060094584A1
    • 2006-05-04
    • US10541175
    • 2004-01-08
    • Masanori ShojiyaHirotaka KoyoKeiji Tsunetomo
    • Masanori ShojiyaHirotaka KoyoKeiji Tsunetomo
    • C03C3/091C03C3/085
    • C03C3/062C03C3/085C03C23/0025
    • A glass for laser processing that is processed through laser beam irradiation, wherein the glass for laser processing has a composition that satisfies the following relationships: 40≦M[NFO]≦70; 5≦(M[TiO2])≦45; and 5≦M[NMO]≦40, where M[NFO], M[TiO2], and M[NMO] denote the content by percentage of network forming oxides (mol %), that of TiO2 (mol %), and that of network modifying oxides (mol %), respectively. With this structure, a glass for laser processing is obtained in which not only the vicinity of the surface thereof but also the inner portion thereof can be laser-processed.
    • 用于通过激光束照射处理的激光加工用玻璃,其中,所述激光加工用玻璃具有满足以下关系的组成:&lt;线内公式描述=“在线公式”end =“lead” 40 <= M [NFO] <= 70; <?in-line-formula description =“In-line Formulas”end =“tail”?> <?in-line-formula description =“In-line formula”end =“lead”?> 5 <=(M [ TiO 2])= 45; 和<?in-line-formula description =“In-line Formulas”end =“tail”?> <?in-line-formula description =“In-line Formulas”end =“lead”?> 5 <= M [ NMO] <= 40,<?in-line-formula description =“In-line Formulas”end =“tail”?>其中M [NFO],M [TiO 2] 2和M [ NMO]分别表示网络形成氧化物(mol%),TiO 2(摩尔%)和网络改性氧化物(mol%)的含量百分比。 利用这种结构,获得了一种用于激光加工的玻璃,其中不仅可以激光加工其表面附近,还可以对其内部进行处理。
    • 4. 发明授权
    • Glass for laser processing
    • 玻璃激光加工
    • US07399721B2
    • 2008-07-15
    • US10522046
    • 2003-07-22
    • Hirotaka KoyoKeiji Tsunetomo
    • Hirotaka KoyoKeiji Tsunetomo
    • C03C3/089C03C3/091C03C3/093
    • C03C3/089C03C3/076C03C23/0025
    • A glass for laser processing of the present invention can be laser-processed by causing ablation or evaporation by laser beam energy absorbed therein, wherein the glass for laser processing has a composition that satisfies the following conditions: 60≦SiO2+B2O3≦79 mol %; 5≦Al2O3+TiO2≦20 mol %; and 5≦Li2O+Na2O+K2O+Rb2O+Cs2O+MgO+CaO+SrO+BaO≦20 mol %, where 5≦TiO2≦20 mol %. The present invention can provide a glass for laser processing that has a low laser processing threshold value as well as a low thermal expansion coefficient.
    • 本发明的激光加工用玻璃可以通过在其中吸收的激光束能量进行烧蚀或蒸镀来进行激光加工,其中,激光加工用玻璃具有满足以下条件的组成:&lt; “In-line Formulas”end =“lead”?> 60 <= SIO 2 + B 2 O 3 <= 79 mol%; <?in-line-formula description =“In-line Formulas”end =“tail”?> <?in-line-formula description =“In-line Formulas”end =“lead”?> 5 <= AL 2 3 + TiO 2 = 20摩尔%; 和<?in-line-formula description =“In-line Formulas”end =“tail”?> <?in-line-formula description =“In-line Formulas”end =“lead”?> 5 <= LI < 2 O + Na 2 O + K 2 O + Rb 2 O + Cs 2 O + MgO + CaO + SrO + BaO <= 20mol%,<?在线公式描述=“在线公式”end =“tail”?>其中5 <= TIO 2 <= 20摩尔%。 本发明可以提供具有低激光加工阈值和低热膨胀系数的用于激光加工的玻璃。
    • 6. 发明申请
    • Glass capable of being machined by laser
    • 能够通过激光加工的玻璃
    • US20050233889A1
    • 2005-10-20
    • US10522046
    • 2003-07-22
    • Hirotaka KoyoKeiji Tsunetomo
    • Hirotaka KoyoKeiji Tsunetomo
    • C03C3/076C03C3/089C03C23/00C03C3/091
    • C03C3/089C03C3/076C03C23/0025
    • A glass for laser processing of the present invention can be laser-processed by causing ablation or evaporation by laser beam energy absorbed therein, wherein the glass for laser processing has a composition that satisfies the following conditions: 60≦SiO2+B2O3≦79 mol %; 5≦Al2O3+TiO2≦20 mol %; and 5≦Li2O+Na2O+K2O+Rb2O+Cs2O+MgO+CaO+SrO+BaO≦20 mol %, where 5≦TiO2≦20 mol %. The present invention can provide a glass for laser processing that has a low laser processing threshold value as well as a low thermal expansion coefficient.
    • 本发明的激光加工用玻璃可以通过在其中吸收的激光束能量进行烧蚀或蒸镀来进行激光加工,其中,激光加工用玻璃具有满足以下条件的组成:&lt; “In-line Formulas”end =“lead”?> 60 <= SIO 2 + B 2 O 3 <= 79 mol%; <?in-line-formula description =“In-line Formulas”end =“tail”?> <?in-line-formula description =“In-line Formulas”end =“lead”?> 5 <= AL 2 3 + TiO 2 = 20摩尔%; 和<?in-line-formula description =“In-line Formulas”end =“tail”?> <?in-line-formula description =“In-line Formulas”end =“lead”?> 5 <= LI < 2 O + Na 2 O + K 2 O + Rb 2 O + Cs 2 O + MgO + CaO + SrO + BaO <= 20mol%,<?在线公式描述=“在线公式”end =“tail”?>其中5 <= TIO 2 <= 20摩尔%。 本发明可以提供具有低激光加工阈值和低热膨胀系数的用于激光加工的玻璃。