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    • 2. 发明专利
    • Method of manufacturing heat insulating structure
    • 制造热绝缘结构的方法
    • JP2006017243A
    • 2006-01-19
    • JP2004196572
    • 2004-07-02
    • Ee T Giken Kkエーティー技研株式会社
    • SAKAKIBARA AKIYOSHI
    • F16L59/02F24F13/02
    • PROBLEM TO BE SOLVED: To provide a method of manufacturing, with excellent finishing accuracy, in a short time, and at low cost, a heat insulating structure formed of a specified material, having a heat insulating layer of any thickness, capable of securing a strength in the thickness direction, applicable to pipe portions of three-dimensional curved shapes, and easily constructed at site.
      SOLUTION: This method of manufacturing the heat insulating structure comprises a molding material molding step for forming a molding material by joining a fiber-heat insulating layer in which fibers are disposed in the thickness direction to one surface of a first sheet, a molding step for molding and disposing one of the first sheet forming the molding material and a second sheet separated from the first sheet along a mold surface and molding the molding material or the second sheet along the mold surface, and a molding and fixing step for fixing the molding material molded by joining one of the molded molding material and the second sheet to the other.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:为了提供一种制造方法,具有优异的精加工精度,在短时间内以低成本形成由具有任何厚度的绝热层的特定材料形成的绝热结构,其能够 确保厚度方向的强度,适用于三维弯曲形状的管道部分,并且在现场容易构造。 解决方案:这种制造隔热结构的方法包括:模塑材料成型步骤,用于通过将纤维绝缘层在厚度方向上与第一片的一个表面接合而形成成型材料, 模制步骤,用于模制和布置形成模制材料的第一薄片之一和沿着模具表面与第一薄片分离的第二薄片,并沿着模具表面模制模制材料或第二薄片;以及模制和固定步骤,用于固定 通过将模制成型材料和第二片材之一接合而成型的成型材料。 版权所有(C)2006,JPO&NCIPI
    • 3. 发明专利
    • Lighting system
    • 照明系统
    • JP2008123923A
    • 2008-05-29
    • JP2006308569
    • 2006-11-15
    • Ee T Giken KkShisei FujitaMakoto ItoYuuki:Kkエーティー技研株式会社真 伊藤株式会社ユウキ至成 藤田
    • SAKAKIBARA AKIYOSHIITO MAKOTOKATA MASANORIFUJITA SHISEI
    • F21V33/00A61L9/00A61L9/01A61L9/16A61L9/20B01J20/20B01J35/02F21Y103/00
    • PROBLEM TO BE SOLVED: To provide a lighting system which can be enjoyed as an ornament, has an air cleaning function, and has a function as interior illumination of colorful pattern light emission.
      SOLUTION: An air cleaner 7 is equipped in a porcelain housing container 2 equipped with numerous through holes in the outer wall. From a suction port 11 of this air cleaner, air is introduced into the container via the through holes 5a, and made to flow through in an inorganic fiber 13 carrying a photocatalyst, an organic substance in the air is photodegraded, the purified air is made to be discharged outside the container passing through an outlet 6 from a discharge port 15. A phosphor 21 retained in an outer periphery of the air cleaner 7 by an ultraviolet ray emitted from an ultraviolet ray light source 18 and transmitted through inside a photocatalyst layer 13 is made to emit light, and the colorful pattern light emission is irradiated outside from the through holes 5 of the porcelain made container.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供作为装饰品享受的照明系统,具有空气清洁功能,并且具有作为彩色图案发光的内部照明的功能。 解决方案:在外壳中装有许多通孔的瓷容器容器2中装有空气滤清器7。 从该空气滤清器的吸入口11通过通孔5a将空气引入容器中,使其在携带光催化剂的无机纤维13中流通,空气中的有机物被光降解,净化空气被制成 被排出到通过出口6的容器外面,从排出口15排出。荧光体21通过紫外线光源18发出的紫外线保持在空气滤清器7的外周,并透过光催化剂层13内 使其发光,并且将彩色图案发光从瓷制容器的通孔5向外侧照射。 版权所有(C)2008,JPO&INPIT
    • 4. 发明专利
    • Manufacturing method of foam-containing fibrous molding
    • 含泡沫塑料模制品的制造方法
    • JP2008023954A
    • 2008-02-07
    • JP2006202073
    • 2006-07-25
    • Ee T Giken Kkエーティー技研株式会社
    • SAKAKIBARA AKIYOSHI
    • B29C39/02A47C27/22
    • PROBLEM TO BE SOLVED: To provide a manufacturing method of a foam-containing fibrous molding which is formed in a mold, and shows excellent cushioning, a high finishing precision and excellent cost performance.
      SOLUTION: The manufacturing method of the foam-containing fibrous molding comprises an arrangement process of arranging an elastically deformable foam of a predetermined shape and a fiber aggregate containing an adhesive agent of a predetermined shape in a mold, a pressing process of closing the mold and shaping the fiber aggregate containing the adhesive agent and the foam under such a pressure that the amount of compressive deformation is 10% or less, a curing process of curing the adhesive agent by subjecting the fiber aggregate to curing treatment to make a fibrous molded body composed of three-dimensional fibers, and a mold-removing process of taking out the obtained foam-containing fibrous molding from the shaping mold. Since the shaping is conducted under such low pressure that the amount of compressive deformation is 10% or less, it is possible to obtain the foam-containing fibrous molding showing the high finishing precision.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 待解决的问题:提供一种形成在模具中的发泡性纤维成型体的制造方法,显示出优异的缓冲性,高精加工精度和优异的成本性能。 解决方案:含泡沫纤维成型体的制造方法包括将预定形状的可弹性变形的泡沫体和含有预定形状的粘合剂的纤维聚集体配置在模具中的布置方法, 在压缩变形量为10%以下的压力下,使含有粘合剂和泡沫的纤维聚集体成形,使纤维聚集体经受固化处理以使纤维状的纤维 由三维纤维构成的成型体,以及从成型模具中取出得到的含泡沫纤维成形体的脱模工序。 由于在压缩变形量为10%以下的低压下进行成形,因此能够得到高精加工精度的含泡沫纤维成形体。 版权所有(C)2008,JPO&INPIT
    • 5. 发明专利
    • Protecting cover
    • 防护罩
    • JP2003314788A
    • 2003-11-06
    • JP2002115234
    • 2002-04-17
    • Ee T Giken Kkエーティー技研株式会社
    • SAKAKIBARA AKIYOSHI
    • F16L59/14C03C25/42F24F13/02
    • PROBLEM TO BE SOLVED: To provide a protecting cover to be accurately put in close contact with the outer periphery of a member to be covered such as an exhaust duct, easily mounted at its bent portion thereon and prevented from being broken with the melting of a heat-resistant and heat-insulating layer containing mainly ceramic fibers.
      SOLUTION: The protecting cover 1 to be mounted on the outer periphery of the exhaust duct to be covered for protecting the exhaust duct comprises: in sequence from inside to outside, an inside sheet 2 formed of a glass cloth; an expansion ceramic layer 3 formed of an expansion ceramic material to be expanded by heat; a spiral wire member 4 formed of a piano wire and provided on the expansion ceramic layer 3; the heat-resistant and heat-insulating layer 5 containing mainly the ceramic fibers; and an outside sheet 6 formed of a glass cloth.
      COPYRIGHT: (C)2004,JPO
    • 要解决的问题:为了提供一种保护盖,能够准确地与诸如排气管的被覆盖构件的外周紧密接触,容易地安装在其弯曲部分上并防止其被破坏 熔化主要包含陶瓷纤维的耐热绝热层。 解决方案:要安装在待覆盖的排气管的外周上用于保护排气管的保护盖1包括:从内到外依次由玻璃布形成的内板2; 由膨胀陶瓷材料形成的膨胀陶瓷层3通过加热膨胀; 由钢琴线形成并设置在膨胀陶瓷层3上的螺旋线构件4; 主要包含陶瓷纤维的耐热隔热层5; 以及由玻璃布形成的外部片材6。 版权所有(C)2004,JPO
    • 6. 发明专利
    • Method of closing through-hole end and its structure
    • 封闭通孔的方法及其结构
    • JP2005113931A
    • 2005-04-28
    • JP2003344605
    • 2003-10-02
    • Ee T Giken Kkエーティー技研株式会社
    • SAKAKIBARA AKIYOSHI
    • E04B1/94F16L5/02H02G3/22
    • PROBLEM TO BE SOLVED: To provide a method of closing a through-hole end for imparting fire resistance, heat retention and sound insulation to a section through-portion and allowing easy construction in a short time, and to provide its structure. SOLUTION: The method of closing the through-hole end is used for closing the hole end 23 of a through-hole 21 of the section through-portion where an insertion material 3 is inserted through the through-hole 21 made in a section wall 2. The method comprises a cutting step of cutting an easy-to-cut plate member 4 to form an insertion material outer periphery hole 41 having the same shape as the outer periphery of the insertion material 3 and at least one cut portion 42 for connecting the insertion material outer periphery hole 41 to the outer peripheral edge of the plate member 4, a plate member mounting step of passing the insertion material 3 through the insertion material outer periphery hole 41 using the cut portion 42 and mounting the plate member 4 around the insertion material 3, and a plate member fixing step of fixing the plate member 4 mounted around the insertion material 3 to the section wall 2 to close the hole end 23 of the through-hole 21. COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供一种封闭通孔端的方法,用于赋予截面​​通过部分耐火,保温和隔音,并且允许在短时间内容易地构造,并提供其结构。 解决方案:关闭通孔端的方法用于封闭通过插入材料3插入穿过其中形成的通孔21的截面通孔部分的通孔21的孔端23 截面壁2.该方法包括切割易切割板构件4以形成具有与插入材料3的外周相同形状的插入材料外周孔41的切割步骤和至少一个切割部42 用于将插入材料外周孔41连接到板构件4的外周边缘;板构件安装步骤,使用切割部42使插入材料3穿过插入材料外周孔41并安装板构件4 围绕插入材料3;以及板构件固定步骤,将安装在插入材料3周围的板构件4固定到截面壁2上,以封闭通孔21的孔端23。 2005年,日本特许厅和NCI PI
    • 8. 发明专利
    • SQUARE WALL MEMBER UNIT WITH SERVICE HOLE
    • JP2000073476A
    • 2000-03-07
    • JP24749198
    • 1998-09-01
    • EE T GIKEN KK
    • SAKAKIBARA AKIYOSHI
    • E04B1/90E04B2/74E04C2/34E04C2/52
    • PROBLEM TO BE SOLVED: To obtain a square wall member unit having a service hole which is light-weight and excellent in strength, workability, and sound-absorptive property by arranging two sheets of square members at both faces of a heat insulative and sound-absorptive member formed of a tubular body and a fiber group to partition the service hole. SOLUTION: A heat-insulative and sound-absorptive member 2 formed of a tubular body 5a opened at both sides to partition a service hole and a group 20 for fibers arranged in the thickness t1 direction and opened at the opening ends of the tubular body 5a is provided in this square wall member. Two sheets of square plates 3, 3 are integrally arranged on both faces 2a, 2a of the heat- insulative and sound-absorptive member 2 to constitute the square wall member unit 1a having a service hole. The tubular body 5a can be formed of agglomerated fiber boards. The square wall member unit 1a is installed as a wall member by attaching connecting recessed parts 32, 32 formed at the side ends to a column of a building. In this way, the square wall member unit 1a having a service hole which is costless, light-weight, and excellent in strength, workability, sound absorption, heat insulation, etc., can be obtained.
    • 9. 发明专利
    • MANUFACTURE OF HEAT INSULATING DEVICE
    • JPH09133290A
    • 1997-05-20
    • JP27831596
    • 1996-10-21
    • EE T GIKEN KK
    • SAKAKIBARA AKIYOSHI
    • F16L59/22D04H1/76F24F13/02
    • PROBLEM TO BE SOLVED: To facilitate the manufacture of a heat insulating device to be installed in an elbow part by cutting the cylindrical raw material in response to the curvature of the elbow part of a pipeline, and arranging obtained cylindrical divided pieces so that both large longitudinal length sides abut on each other and that both small longitudinal length sides abut on each other, and attaching a bonding seat for integration. SOLUTION: This heat insulating device 1 is formed of a curved semi- cylindrical pieces 2, 3, and in the semi-cylindrical pieces 2, 3, nearly triangle divided pieces 2a-2c, 3a-3c, of which space in the axial direction is formed so as to be smaller, as it comes close to the inside, and larger, as it comes close to the outside, are arranged in an intermediate part thereof, and divided pieces 2A, 2B, 3A, 3B, of which axial length are larger than that of the divided pieces 2a, 3a of the intermediate part, are arranged in both ends. Each adjacent divided piece is bonded by the adhesive material at the cut ends thereof, which coincide with each other in a plane perpendicular to the axis. A metal foil 4 is attached to the outer peripheral surface of each divided pieces 2a-2c, 2A, 2B, 3a-3c, 3A, 3B, and the metal foil 4a, which is attached to the divided pieces 2b, 3b, are left at the time of cutting.