发明名称 Method of manufacturing droplet ejection head
摘要 In a method for manufacturing a droplet ejection head, a structure of a substrate having an energy-generating element that imparts energy to a liquid to eject a liquid droplet from an ejection orifice and an orifice plate having the ejection orifice formed therein are laminated through a flow channel member for forming a pattern of a liquid flow channel that is a region in which the liquid flows. At least one of a plate before being laminated and the flow channel member before being laminated has a void of at least one of a through-hole other than the ejection orifice and a recess in the face to be laminated.
申请公布号 US8782895(B2) 申请公布日期 2014.07.22
申请号 US201113293446 申请日期 2011.11.10
申请人 Canon Kabushiki Kaisha 发明人 Fukumoto Yoshiyuki
分类号 B41J2/145;B41J2/16 主分类号 B41J2/145
代理机构 Fitzpatrick, Cella, Harper & Scinto 代理人 Fitzpatrick, Cella, Harper & Scinto
主权项 1. A method for manufacturing a droplet ejection head, having a structure in which a substrate having energy-generating elements that impart energy to a liquid to eject liquid droplets from ejection orifices and an orifice plate having the ejection orifices formed therein are laminated through a flow channel member for forming a pattern of liquid flow channels in a region in which the liquid flows, wherein at least one of the orifice plate before being laminated and the flow channel member before being laminated has a plurality of voids of at least one of a plurality of through-holes other than the ejection orifices and a plurality of recesses in the face to be laminated, said method comprising the following steps in the listed order: (1) applying a material for forming the flow channel member onto the substrate having the energy-generating element formed therein, and patterning the applied material to form the flow channel member;(2) stacking the orifice plate on the flow channel member;(3) heating the flow channel member to a glass transition temperature of the flow channel member or higher;(4) collectively pressing the orifice plate and the flow channel member toward the face of the substrate, in a state of the flow channel member being kept at the glass transition temperature or higher, thereby compressing the flow channel member, and laminating the orifice plate with the flow channel member; and(5) stopping the pressing, wherein the orifice plate before being laminated has the plurality of voids, and when rectangles that surround each of the voids are defined to have centers which match with centers of the plurality of voids on the face to be laminated, respectively, and to have sides of the rectangles passing through middle points between each of the centers of the plurality of voids and each of the centers of adjacent other voids, in a portion of the orifice plate which is demarcated by a region that overlaps with the flow channel member when the orifice plate has been laminated, and the region in which all the rectangles corresponding to respective voids of the plurality of voids are connected, and a ratio of the total volume of the plurality of the voids contained in the portion of the orifice plate with respect to the volume of the portion of the orifice plate is 8.7% or more.
地址 Tokyo JP