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    • 1. 发明专利
    • Method and unit for processing plated part washing water
    • 加工部件清洗水的方法和装置
    • JP2003001200A
    • 2003-01-07
    • JP2001185760
    • 2001-06-20
    • Kosaku:KkTdk Corpティーディーケイ株式会社株式会社コサク
    • MORI KANEOONODERA AKIRAITO TAKESHISAKURAI TAKASHIFUJIWARA KATSUYAKONISHI HARUOKONISHI TADAYUKIIGARASHI TSUNEO
    • B08B3/02B01D61/02B08B3/04B08B3/14C02F1/04C02F1/32C02F1/42C02F1/44C02F9/00C25D17/16C25D21/16
    • PROBLEM TO BE SOLVED: To solve the problem of environmental pollution about the washing of plated parts by establishing a closed processing system which circulates the washing water to be used again, and by exhausting not the concentrated waste liquid but the minimum efficient which is virtually a solid material.
      SOLUTION: This unit consists of a barrel unit washing part which washes a barrel unit accommodating plated parts that are plated at a plating bathtub, a reverse osmosis membrane device 203 which removes a concentrated waste liquid containing the components that become solid content from the exhausted water of the barrel unit washing part, and an evaporation device 221 which takes out the solid content by evaporating the water content of the concentrated waste liquid. The exhausted water whose concentrated liquid containing the components which become solid is removed at the reverse osmosis membrane device 203, and the water which is gained when cooling the water vapor which generates when taking the solid content out by evaporating the concentrated waste liquid at the evaporation device 221 are recycled and supplied to the barrel unit washing part as the washing water.
      COPYRIGHT: (C)2003,JPO
    • 要解决的问题:为了通过建立使再次使用的洗涤水循环的封闭处理系统,并且不排出浓缩的废液而解决关于洗涤电镀部件的环境污染的问题,而是最终效率实际上是 固体材料。 解决方案:该单元由一个筒体单元清洗部分组成,该部分清洗容纳镀在浴缸上的电镀部分的筒体单元,反渗透膜装置203,其从排出的水中除去含有成为固体成分的组分的浓缩废液 并且蒸发装置221通过蒸发浓缩废液的含水量而取出固体成分。 在反渗透膜装置203中除去含有成为固体的成分的浓缩液的排出水,以及在蒸发蒸发浓缩废液时产生的水蒸汽时所产生的水蒸汽所产生的水 设备221被再循环并作为洗涤水供应到桶单元清洗部件。
    • 3. 发明专利
    • Molding apparatus
    • 成型设备
    • JP2007290031A
    • 2007-11-08
    • JP2006218806
    • 2006-08-10
    • Tdk CorpTdk株式会社
    • SATO TAKASHISATO SADAKIKIKUCHI MASARUGOTO MASASHIITO TAKESHIKATAYASU TAKUO
    • B30B11/00
    • B30B15/304B22F3/03B30B11/04
    • PROBLEM TO BE SOLVED: To provide a molding apparatus which can perform a continuous motion for the over-filling and the under-filling at a high speed. SOLUTION: The molding apparatus 1 forms a molding by compressing powder by means of upper punches and lower punches with the cavities of a die filled with the powder by means of a feeder. The molding apparatus 1 comprises a die driving system 34 for moving the die upward and downward, an upper ram driving system 35 for moving an upper punches upward and downward, a feeder driving system for advancing and withdrawing the feeder, an abutting member 24 connected to the die driving system 34, a stopper which is arranged above the abutting member 24, and restricts the upward movement of a die 9, and a stopper driving system 37 for moving the stopper upward and downward. The die driving system 34, the upper ram driving system 35, the feeder driving system, and the stopper driving system 37 have cams having different profiles respectively. The respective cams are connected to a main shaft 59 to be rotationally driven by a driving motor. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种能够高速进行超填充和欠充填的连续运动的成型装置。 解决方案:成型设备1通过借助于上冲头和下冲头通过借助于进料器的粉末填充的模具的空腔压缩粉末而形成模制件。 模制装置1包括用于向上和向下移动模具的模具驱动系统34,用于向上和向下移动上冲头的上冲头驱动系统35,用于前进和退出进给器的进给器驱动系统,连接到 模具驱动系统34,设置在抵接构件24的上方并限制模具9的向上移动的止动件,以及用于使止动件上下移动的止动器驱动系统37。 模具驱动系统34,上冲头驱动系统35,进给器驱动系统和止动器驱动系统37分别具有不同轮廓的凸轮。 各个凸轮连接到主轴59,以由驱动电动机旋转驱动。 版权所有(C)2008,JPO&INPIT
    • 4. 发明专利
    • Molding apparatus
    • 成型设备
    • JP2007144476A
    • 2007-06-14
    • JP2005343563
    • 2005-11-29
    • Tdk CorpTdk株式会社
    • SATO SADAKIGOTO MASASHIKIKUCHI MASARUITO TAKESHIKATAYASU TAKUOSATO TAKASHI
    • B30B11/02B28B3/02B28B3/08
    • B30B1/40B30B11/007
    • PROBLEM TO BE SOLVED: To provide a molding apparatus which can be installed even in a narrow space. SOLUTION: The molding apparatus 1 is equipped with a control unit 2, a lower punch section 10, a molding section 30, an upper punch section 30, and a horizontal punch section 60. The lower punch section 10 is equipped with a 1-1st servo driving device 13 and a 1-2nd servo driving device 14. A first slope slider unit 16 of the 1-1st servo driving device 13 has a ball screw 16B extending in a horizontal direction, a slope slider 16F, a second direct action guide 16H, and a shaft 16I. Accompanying the movement of the slope slider 16F in the horizontal direction, the shaft 16I moves over a second direct action guide 16H and moves in a perpendicular direction. A 1-1st punch 18 is driven via a 1st slope slider unit 16 and a 1st punch support section 17, and is servo driven in the perpendicular direction by a 1-1st servo motor 15 via the 1st slope slider unit 16 and a 1st punch support section 17. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供即使在狭窄的空间中也能安装的成型装置。

      解决方案:成型装置1配备有控制单元2,下冲头部10,成型部30,上冲头部30和水平冲头部60.下冲头部10配备有 第1-1伺服驱动装置13和第1-2伺服驱动装置14.第1-1伺服驱动装置13的第一斜坡滑块单元16具有沿水平方向延伸的滚珠丝杠16B,斜坡滑块16F,第二 直动作导向件16H,以及轴16I。 伴随着斜滑块16F在水平方向上的运动,轴16I在第二直动导向件16H上移动并沿垂直方向移动。 第一冲头18通过第一斜坡滑块单元16和第一冲头支撑部17驱动,并且通过第一斜坡滑块单元16由第1-1伺服马达15在垂直方向上被伺服驱动,并且第一冲头 支持第17节。版权所有(C)2007,JPO&INPIT

    • 5. 发明专利
    • Rotary pressing device
    • 旋转压力装置
    • JP2006289440A
    • 2006-10-26
    • JP2005113718
    • 2005-04-11
    • Tdk CorpTdk株式会社
    • TODA KAZUSHIGESATO SADAKIITO TAKESHIKIKUCHI MASARU
    • B30B11/08B22F3/03B28B5/08
    • B30B11/08
    • PROBLEM TO BE SOLVED: To provide a rotary pressing device capable of shaping an article having E-shaped section with substantially uniform density. SOLUTION: The rotary pressing device D produces powder shaped articles by compressing a powder material M by means of an upper punch a, a die 10, and a lower punch 11a and comprises a cam-like member 40, a pressing roller 31, and a pressing roller 26 arranged in order along a circular orbit. The cam-like member 40 further fits the lower punch 11a into the die 10 from the pressurization state held by the cam-like member 40 to further pressurize the powder material M and maintains the pressurization state. The pressing roller 31 fits the lower punch into the die 10 from the pressurization that the cam-like member 40 holds to further pressurize the powder material M and maintains the pressurization state. The pressing roller 26 fits the upper punch 9a further into the die 10 from the pressurization that the cam-like member 40 holds to pressurize the powder material M so as to form the powder shaped article. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种能够使具有基本均匀密度的E形截面的制品成形的旋转压制装置。 解决方案:旋转按压装置D通过上冲头a,模具10和下冲头11a压缩粉末材料M来产生粉末状制品,并且包括凸轮状构件40,加压辊31 以及沿着圆形轨道顺序排列的按压辊26。 凸轮状构件40还从由凸轮状构件40保持的加压状态将下冲头11a配合到模具10中,以进一步加压粉末材料M并保持加压状态。 加压辊31从凸轮状构件40保持的加压将下冲头配合到模具10中,以进一步加压粉末材料M并保持加压状态。 加压辊26从凸轮状构件40保持的加压进一步将上冲头9a配合到模具10中,以对粉末材料M加压以形成粉末成型制品。 版权所有(C)2007,JPO&INPIT
    • 8. 发明专利
    • MAGNETIC RECORDING MEDIUM
    • JPH06314421A
    • 1994-11-08
    • JP10543593
    • 1993-05-06
    • KONISHIROKU PHOTO INDTDK CORP
    • NAKANO YASUSHIITO TAKESHI
    • G11B5/66G11B5/64G11B5/73G11B5/738
    • PURPOSE:To enhance wear and corrosion resistance by using polyimide resin contg. an inorg. or org. filler in a water-insoluble underlayer and specifying the thickness of the resin layer after drying and the average particle diameter of the filler when a ferromagnetic metallic thin film is formed on a nonmagnetic substrate with the underlayer in-between to obtain a magnetic recording medium. CONSTITUTION:A magnetic layer 2 is formed on the front side of a nonmagnetic substrate 1 with an underlayer 6 in-between and this magnetic layer 2 is protected with a protective layer 4. A lubricative layer 5 is formed on the protective layer 4 and a back coat layer 3 is stuck to the rear side of the substrate 1 to obtain a magnetic recording medium. In this structure, a fine particle- shaped filler such as colloidal silica dispersed in alcohol is incorporated into satd. polyester, polyamide or polyimide as the base of the underlayer 5 and the relation between the thickness (d) (nm) of the resin layer after drying and the average particle diameter (rm) of the filler is allowed to satisfy 65>(rm-d)>5. The substrate 1 is made free from high protrusions and the deterioration of electromagnetic transducing characteristics and the increase of drop- out are avoided.