发明名称 Glass welding method
摘要 Glass layers 3 are molten by irradiation with laser light L, so as to generate a temperature difference in a part along regions to be fused R in each of glass substrates 40, 50 so that main faces 40a, 50a on the glass layer 3 side have a temperature higher than that on main faces 40b, 50b on the opposite side of the glass layers 3. Thereafter, the molten glass layers 3 solidify, and cooling generates a stress in the glass substrates 40, 50. Here, since initial fractures 8 are formed in the glass substrate 50 so as to overlap the glass layers 3, fractures grow in the thickness direction of the glass substrates 40, 50 through the glass layers 3 from the initial fractures 8 acting as a start point.
申请公布号 US9073778(B2) 申请公布日期 2015.07.07
申请号 US201013509112 申请日期 2010.09.17
申请人 HAMAMATSU PHOTONICS K.K. 发明人 Matsumoto Satoshi
分类号 C03B23/24;C03B33/09;C03B33/07;B23K26/00;C03C27/06 主分类号 C03B23/24
代理机构 Drinker Biddle & Reath LLP 代理人 Drinker Biddle & Reath LLP
主权项 1. A glass fusing method for manufacturing a glass fusing structure by fusing first and second glass substrates to each other, the method comprising the steps of: arranging a glass layer containing a laser-light-absorbing material between the first and second glass substrates with a predetermined width along an extending region to be fused; forming an initial fracture in at least the second glass substrate in the first and second glass substrates such that the initial fracture overlaps the glass layer when seen in a thickness direction of the first and second glass substrates; and irradiating the glass layer with laser light such that at least a part of the initial fracture is included in the laser light while relatively moving an irradiation region of the laser light along the region to be fused, so as to pass the glass layer and the first and second glass substrates through a heating stage and a cooling stage by the irradiation of the glass layer with laser light, thereby fusing and cleaving the first and second glass substrates along the region to be fused; wherein in the heating stage the glass layer is molten and a temperature difference is generated in a part along the region to be fused in each of the first and second glass substrates so that a main face on the glass layer side has a temperature higher than that on a main face on the opposite side of the glass layer in each of the first and second glass substrates; and wherein in the cooling stage the molten glass layer is solidified and by a stress occurring during cooling a fracture is grown in a thickness direction of the first and second glass substrates through the glass layer from the initial fracture acting as a start point, and wherein in the cooling stage, the fracture grows beyond a border between the first and second glass substrates and the glass layer.
地址 Hamamatsu-shi, Shizuoka JP