会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 12. 发明授权
    • Liquid supply device
    • 液体供应装置
    • US4861560A
    • 1989-08-29
    • US220512
    • 1988-07-18
    • Masahiko Nakajima
    • Masahiko Nakajima
    • B01J4/00B01J4/02C01B13/02C01B21/02
    • B01J4/02
    • A liquid supply device comprises a sealed vessel containing a reactive liquid, a guide cylinder disposed to the inside of the sealed vessel, a piston adapted to slide along the inside of the guide cylinder depending on the change of the pressure in the sealed vessel, a spring for urging the piston toward the inside of the sealed vessel, a pressure-generating catalyst adapted to move into and out of the reactive liquid interlocking with the piston for decomposing the reaction liquid to evolve gases upon contact with the reactive liquid, and a delivery apparatus for sending out the reactive liquid out of the vessel due to the increase in the pressure inside the vessel upon evolution of the gas.The reactive liquid evolving gases is supplied continuously without using a pump or like other positive driving apparatus, but due to the pressure of gases evolved from the reaction solution per se, with no noisy mechanical sounds and operational energy.
    • 液体供应装置包括容纳反应性液体的密封容器,设置在密封容器内部的引导筒,适于根据密封容器内的压力变化沿导向筒内部滑动的活塞, 用于将活塞推向密封容器的内部的弹簧,适于移动进入和流出与活塞互锁的反应液体的发生催化剂,用于分解反应液体以在与反应性液体接触时放出气体, 由于气体放出时由于容器内的压力增加而将反应性液体从容器中排出的装置。 反应性液体放出气体连续供给,不使用泵或类似的其他正驱动装置,而是由于从反应溶液本身放出的气体的压力,没有噪声的机械声音和操作能量。
    • 15. 发明授权
    • Heating tip and method of manufacturing the same
    • 加热尖端及其制造方法
    • US6039237A
    • 2000-03-21
    • US164581
    • 1998-10-01
    • Masahiko NakajimaNaoyuki YamasawaMasaru Nakamura
    • Masahiko NakajimaNaoyuki YamasawaMasaru Nakamura
    • B23K3/02B21K21/08B23K3/03B23K3/00
    • B23K3/0315Y10T279/17965
    • A heating tip in which an insertion cavity is formed in a tip substrate made of copper or copper alloy for insertion and containment of a heat generating portion, wherein the inner circumferential wall surface of the insertion cavity is formed by forging into a non-circular cross sectional shape which is identical with a non-circular cross sectional shape on the outer circumferential surface of the heat generating portion. The insertion cavity has the non-circular cross sectional shape and, accordingly, the area of contact with the heat generating portion is enlarged compared with a case of a circular cross sectional shape with the hole volume being assumed identical, thereby increasing the heat conductivity from the heat generating portion and enhancing the temperature rising characteristics and the thermal response of the heating tip. Since the insertion cavity is formed by forging loss of the material can be decreased, neatly and easily and, in addition, working life of the tool can be extended.
    • 一种加热头,其中在由铜或铜合金制成的尖端基底中形成插入腔,用于插入和容纳发热部分,其中插入腔的内周壁表面通过锻造成非圆形横截面而形成 截面形状与发热部的外周面上的非圆形截面形状相同。 插入腔具有非圆形横截面形状,因此与假定相同的孔体积的圆形横截面形状的情况相比,与发热部接触的面积增大,从而增加了从 发热部分,并且提高加热尖端的升温特性和热响应。 由于插入腔是通过锻造形成的,所以可以减少,整齐地且容易地减少材料,另外可延长工具的使用寿命。
    • 17. 发明授权
    • Heat processing device using a liquefied gas
    • 使用液化气的热处理装置
    • US4688551A
    • 1987-08-25
    • US866703
    • 1986-05-27
    • Masahiko Nakajima
    • Masahiko Nakajima
    • B23K3/02B23K3/03F23D14/18F23D14/28F23D14/38F23D14/60F23D14/64
    • B23K3/023F23D14/18F23D14/38F23D14/60F23D14/64
    • A heat processing device using a liquefied gas comprises a nozzle for jetting a liquefied gas, a gas mixture generating member disposed at the exit of the nozzle for sucking external air through an external air intake port under the ejector effect of the gas jetted out from the nozzle to form a gas mixture, a fire nozzle member for jetting out the thus formed gas mixture to take place flaming combustion, and an air flow control member for controlling the flow rate of air flowing through the air intake port into the gas mixture generating member. The heat processing device further comprises an iron tip member having a combustion catalyst detachably disposed near the top end of the fire nozzle, in which the air intake port in the fully opened state is once closed fully and then fully opened again by the operation of the air flow rate control member interlocking with the operation of the shutter member for closing/opening the space between the fire nozzle and the combustion catalyst.
    • 使用液化气体的热处理装置包括喷射液化气体的喷嘴,设置在喷嘴出口处的气体混合物产生部件,用于通过外部空气吸入口吸入外部空气,喷射器从喷射器 喷嘴以形成气体混合物,用于喷射由此形成的气体混合物发生燃烧燃烧的消防喷嘴构件;以及气流控制构件,用于控制流过进气口的空气的流量进入气体混合物产生构件 。 热处理装置还包括具有可拆卸地设置在消防喷嘴顶端附近的燃烧催化剂的铁尖构件,其中完全打开状态的进气口一度完全关闭,然后通过操作 空气流量控制构件与用于关闭/打开消防喷嘴和燃烧催化剂之间的空间的活门构件的操作互锁。
    • 19. 发明授权
    • Heating iron using liquefied gas
    • 使用液化气加热铁
    • US4641632A
    • 1987-02-10
    • US758803
    • 1985-07-25
    • Masahiko Nakajima
    • Masahiko Nakajima
    • B23K3/02F23D14/18
    • B23K3/022F23D14/18
    • A heating iron utilizing the heat obtained through complete catalytic combustion of liquefied gas comprises a catalyst combustion chamber having an inner gas flow channel confined therein and in direct connection with a gas mixture generating means and a pre-heating zone disposed to the outer circumferential surface of the catalyst combustion chamber, in which the pre-heating zone is heated upon start of the catalytic combustion to heat the catalyst layer in the catalyst combustion chamber to a temperature sufficient for starting the catalytic oxidizing reaction in a flameless manner.
    • 使用通过液化气体的完全催化燃烧获得的热量的加热铁包括催化剂燃烧室,其具有限制在其中的内部气体流动通道,并且与气体混合物产生装置和预热区直接连接,该预热区域设置在 催化剂燃烧室,其中在催化燃烧开始时加热预热区域,以将催化剂燃烧室中的催化剂层加热到足以以无焰方式开始催化氧化反应的温度。