WO2011150731A1 - 节能环保阀门装置 - Google Patents

节能环保阀门装置 Download PDF

Info

Publication number
WO2011150731A1
WO2011150731A1 PCT/CN2011/073681 CN2011073681W WO2011150731A1 WO 2011150731 A1 WO2011150731 A1 WO 2011150731A1 CN 2011073681 W CN2011073681 W CN 2011073681W WO 2011150731 A1 WO2011150731 A1 WO 2011150731A1
Authority
WO
WIPO (PCT)
Prior art keywords
rotating wheel
spring
valve device
hole
saving
Prior art date
Application number
PCT/CN2011/073681
Other languages
English (en)
French (fr)
Inventor
王永革
Original Assignee
北京捷先登科技有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 北京捷先登科技有限公司 filed Critical 北京捷先登科技有限公司
Publication of WO2011150731A1 publication Critical patent/WO2011150731A1/zh

Links

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16KVALVES; TAPS; COCKS; ACTUATING-FLOATS; DEVICES FOR VENTING OR AERATING
    • F16K31/00Actuating devices; Operating means; Releasing devices
    • F16K31/44Mechanical actuating means
    • F16K31/46Mechanical actuating means for remote operation
    • F16K31/465Mechanical actuating means for remote operation by flexible transmission means, e.g. cable, chain, bowden wire

Definitions

  • the present invention relates to an energy saving and environmental protection valve device.
  • BACKGROUND OF THE INVENTION Currently commonly used valve devices are generally opened and closed by hand. Photoelectric control is also turned on and off, but in use, they all have many shortcomings.
  • the hand-controlled valve first occupies the human hand, which is not only unsanitary, but also keeps flowing water and other liquids and gases constantly after opening, especially when washing your face.
  • the object of the present invention is to provide an energy-saving and environmentally-friendly valve device, which can adjust the flow rate according to the flow demand of the process, thereby saving energy and reducing or avoiding the problem.
  • the flow rate cannot be adjusted, causing environmental pollution caused by leakage of toxic substances.
  • An energy-saving and environmental protection valve device comprising: a valve and a valve core, wherein the valve core is inserted through the central hole of the braking body seat and the middle hole of the rotating wheel is fixedly fixed Cooperating, the rotating wheel and the braking body seat form an annular cavity in the middle pillar shape, in the rotating wheel and the braking body seat Forming a cover outside the machine body; a spring is arranged on the pillar of the annular cavity, and the two ends of the spring are respectively fixed with the rotating wheel and the braking body seat; the two ends of the steel wire are respectively fixed with the rotating wheel and the operator .
  • the upper outer circumference of the rotating wheel is inserted into the inner ring of the card wheel, and a ratchet is arranged at one end of the wheel, and the ratchet meshes with the ratchet of the brake body.
  • the valve core is provided with a hexagonal nut and is matched with the hexagonal nut, and the hexagonal nut is matched with the hexagonal groove of the middle and lower parts of the brake body.
  • a gear is disposed on an upper periphery of the rotating wheel, and a locking screw hole and a spring hole are respectively disposed at a top middle portion and a side surface, and a spring hook of the spring is inserted into the tooth groove of the gear through the spring hole; a lower portion of the rotating wheel
  • the perimeter of the figure-eight is arranged from the top to the bottom, and the connection between the wire and the rotating wheel is connected by a flexible rope, and the flexible rope is wound through the through groove on the periphery of the lower figure-eight of the rotating wheel.
  • Positioning holes and notches are respectively disposed on the edge of the braking body seat, and the steel wire is fixed to the outside of the machine body through the notch; the bottom of the braking body seat is provided with a hole, and the spring lower hook passes through the hole Fixed to the brake body.
  • the cover is fixed to the brake body by a positioning ring, the positioning ring is an open spring expansion ring, the spring expansion ring is provided with a radial screw head, and the opening is disposed on the cone screw head.
  • the cone head is divided into two halves and locked by a wing nut.
  • the rotating wheel is a double annular cavity structure which is open at the lower end
  • the braking body seat is a double annular cavity structure with an open upper end and a through hole is formed in the middle of the inner ring
  • the double rings of the rotating wheel are respectively inserted into the braking In the double ring of the body seat, an annular cavity is formed in the middle pillar shape.
  • the utility model can adjust the flow rate according to the flow requirement of the process, thereby saving energy, and reducing or avoiding environmental pollution caused by leakage of toxic substances. At the same time, it allows the operator to easily release both hands, enabling human-computer interaction, precision, segmentation of water or filling of liquids or gases, thereby increasing work efficiency.
  • BRIEF DESCRIPTION OF THE DRAWINGS Figure 1 is a schematic view of the structure of the present invention.
  • FIG. 2 is a schematic structural view of an embodiment in which a ratchet device is provided.
  • Figure 3 is an illustration of the state in which the turntable, base and stem are connected.
  • Figure 4 is a cross-sectional view of the turntable.
  • Figure 5 is a schematic view of the direction A in Figure 4.
  • Figure 6 is a schematic view taken along line B of Figure 4.
  • Figure 7 is a schematic view of the brake base.
  • Figure 8 is a schematic view of the direction A in Figure 7;
  • Figure 9 is a schematic view of an embodiment of the operator of the present invention using a stopper.
  • Figure 1 o is a schematic view of an embodiment of the manipulator of the present invention as a foot pedal.
  • the utility model relates to an energy-saving and environmental protection valve device of a foot pedal, as shown in FIGS. 10 and 3-8, comprising: a valve, a valve core 10, a rotating wheel 2, a braking body seat 8, the valve body 1 0 passes through the center hole of the brake body seat (8) and the middle hole of the rotary wheel 2 is engaged by the spline shaft and is locked by the locking screw 3; the rotating wheel 2 and the lower brake body 8 constitute a middle pillar-shaped annular cavity, the rotating wheel 2 and the brake body 8 constitute a machine cover 1; a spring 4 is arranged on the above-mentioned annular cavity pillar, and the spring 4 is respectively connected to the rotating wheel 2 The brake body 8 is fixed; the two ends of the steel wire 6 are respectively fixed to the rotating wheel 2, and the operator is the foot pedal 14.
  • the rotating wheel (2) is a double annular cavity structure which is open at the lower end. See FIG. 4 and FIG. 6.
  • the braking body seat (8) is a double annular cavity structure with an open upper end and a through hole in the middle of the inner ring. Referring to Figures 7 and 8, the double rings of the rotating wheel (2) are respectively inserted into the double rings of the braking body seat (8), and the annular cavity forming the middle pillar shape is shown in Fig. 3.
  • the valve core 10 is provided with a hexagonal nut 9 , and the valve core 10 is mechanically matched with the hexagonal nut 9 , and the hexagonal nut 9 is matched with the hexagonal groove 8 0 5 of the middle and lower portions of the through hole of the brake body 8 .
  • the upper periphery of the rotating wheel 2 is provided with a gear 2 Q 4 , and the top and the side of the rotating wheel 2 are respectively provided with a locking screw hole 2 0 2 , a spring hole 2 0 1 , a spring upper hook of the spring 4 4 0 1 through the spring
  • the hole 2 0 1 is inserted in the tooth groove of the gear 2 0 4;
  • the periphery of the lower figure-eight of the rotating wheel 2 is provided with a through groove 2 0 5 from the top to the bottom, and the connection end of the wire 6 and the rotating wheel 2 is Connected by a flexible cord 12, the flexible cord 12 is wound on the periphery of the lower figure-eight of the rotating wheel 2 by a through groove 205.
  • Positioning holes 8 0 2 and notches 8 0 are respectively disposed on the edges of the braking body base 8 , and the steel wire 6 is fixed to the outside of the machine body through the notch 80 1 to be fixed to the operator 1 4;
  • a hole 804 is provided at the bottom of the movable seat 8, and the spring lower hook 420 is fixed to the brake body 8 through the hole 804.
  • the cover 1 and the brake body 8 are fixed by a positioning ring 7, and the positioning ring 7 is opened.
  • the spring expansion ring of the mouth, the spring expansion ring is provided with a radial screw head, the opening is arranged on the crown screw head, the cone screw head is divided into two halves, and is locked by the wing nut 701.
  • the utility model can be widely used in various occupations in which the hands are occupied during machine tool processing, medical equipment, and automobile driving operations.
  • water is often used in many occasions.
  • the use of the foot switch operation mode allows the operator to add a helper, which can greatly improve the efficiency and speed of the switch.
  • the utility model can save water resources, reduce emissions, sanitation and environmental protection.
  • the device has the advantages of simple structure, convenient processing and assembly, and low cost. It is combined with standardized components to make it easier to industrialize and standardize applications. The entire solution does not use any screws and can be assembled by hand. Applicability and application range are wide and easy to promote.
  • Example 2
  • An energy-saving and environmentally-friendly valve device using an actuator as shown in FIG. 9 has the same structure as that of Embodiment 1, except that: the operator 14 uses a stopper.
  • This kind of limiter combined with time relay can also be widely used in the fields of machining, mining, chemical industry, etc. It can adjust the flow rate according to the flow demand of the process, which can save energy and reduce or avoid the cause. Environmental pollution caused by external leakage of toxic substances. At the same time, it allows the operator to easily release both hands, thereby improving work efficiency and ensuring product quality.
  • the energy-saving and environmentally-friendly valve device has the same structure as that of Embodiment 1-2, except that: the upper periphery of the rotating wheel 2 is provided with a gear 2 Q 4 , and the upper gear 2 of the rotating wheel 2 0 4 externally set the card wheel 1 3, the gear 2 0 4 is engaged with the ring gear of the card wheel 1 3 , and one end of the card wheel 13 is provided with a ratchet 1 3 0 1 , a ratchet 1 3 0 1 and a tricky hand 803 of the brake body 8 Engage.
  • the ratchet 1 3 0 1 of the chuck 13 is assembled to the upper end.
  • the ratchet 1 3 0 1 is separated from the thorn 803 of the brake body 8 and does not engage.
  • the ratchet 1 3 0 1 of the card wheel 13 is assembled to the lower end.
  • the ratchet 1 3 0 1 meshes with the tricky 803 of the brake body 8, and the energy-saving and environmentally-friendly valve device stops working. It can be widely used in people's daily life, machining, mining, chemical and other fields.

Landscapes

  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Mechanically-Actuated Valves (AREA)

Description

说 明 书 节能环保阀门装置 技术领域 本实用新型涉及一种节能环保阀门装置。 背景技术 目前常用的阀门装置一般都是用手来开启与关闭。 也有用光电控制开启与 关闭, 但是在使用中, 它们都存在许多不足。 用手控制的阀门首先将人的手占 用, 不但不卫生, 而且开启后水及其它液、 气体长流不断, 尤其在洗脸时,大约
50%的水没有得到充分的利用,特别是双手持比较重的物品时,先要将物品放下, 才能空出手来关闭阀门。 以水为例, 在连续洗餐具及其他物品时, 拿、 放餐具 的过程中, 净水都没有得到充分的利用。 水资源浪费严重。 目前, 在有的公共 场所也采用光电控制的水龙头, 当手离开时虽然可以自动关闭, 但是水流大小 是固定的, 一般不能随时调节。 光电阀门需要持续供电, 而对于家庭来说, 长 时间耗电就难以让人们接受。 虽然在某些公共浴池、 医院等场所, 有用脚踏控 制的水龙头, 但是它们的体积较大、 外观与家庭装饰不协调、 装修完成后再行 改造, 工程较大, 成本高、 不利于普及。 再如, 用于液态及气态的化学试剂的 一般阀门, 不能根据工艺性能调节流量的大小, 从而, 不但浪费了资源, 还影 响了工艺性能, 影响了产品的质量, 流量的大小不能调节, 造成向外泄漏有毒物 质对环境的污染。 目前, 也出现了一种家庭用的脚踏式水龙头, 它因结构复杂, 加工、 安装不便, 在使用过程中, 因为旋转轮裸露在外, 一不小心碰到旋转轮, 水龙头就开启, 也造成了水资源浪费现象。 发明内容 本实用新型的目的在于: 为解决上述阀门装置的不足, 提供一种节能环保 阀门装置, 它可以根据工艺的对流量需要来调节流量的大小, 从而, 节约了能 源, 也减少或避免了流量的大小不能调节, 造成向外泄漏有毒物质所造成对环 境的污染。 本实用新型解决上述问题所采取的技术方案是: 一种节能环保阀门装置, 包括: 阀门、 阀芯, 所述的阀芯穿过制动体座的中心孔与旋转轮的中孔插接固 定配合, 旋转轮与制动体座构成中间支柱形的环形腔体, 在旋转轮与制动体座 构成机体外设置机盖; 在上述的环形的腔体内支柱上套装弹簧, 弹簧两端分别 与旋转轮、 制动体座固定; 所述的钢丝线的两端分别与旋转轮、 操作器固接。
所述的旋转轮的上部外周与卡轮的内圈插接, 卡轮的一端设置棘轮, 棘轮 与制动体座的棘手啮合。
所述的阀芯外套装六方螺母并与六方螺母动配合, 六方螺母与制动体座的 中下部的六方槽配合。
所述的旋转轮的上部周边设置齿轮, 顶部中间及侧面分别设置锁紧螺丝孔、 弹簧孔, 弹簧的弹簧上挂钩穿过弹簧孔插卡在齿轮的齿槽内; 所述的旋转轮的 下部八字形的周边设置从上向下的通槽, 钢丝线与旋转轮连接端是通过柔韧绳 索连接, 柔韧绳索通过通槽绕接在旋转轮的下部八字形的周边上。 所述的制动体座边缘上分别设置定位孔、 缺口, 所述的钢丝线通过缺口穿 出机体外与操作器固接; 所述的制动体座底部设置孔, 弹簧下挂钩穿过孔与制 动体座固定。
所述的机盖与制动体座之间通过定位圈固接, 所述的定位圈为开口形的弹 簧胀圈, 弹簧胀圈设置椎形螺丝头, 开口处设置在椎形螺丝头上, 椎形螺丝头 分为两半形并通过蝶形螺母锁定。 所述的旋转轮为下端开放的双环形腔体结构, 所述的制动体座为上端开放 的双环形腔体结构且内环中间为通孔, 所述的旋转轮的双环分别插入制动体座 的双环里, 构成中间支柱形的环形腔体。 本实用新型它可以根据工艺对流量要求进行调节流量大小, 从而可以节约 能源, 也减少或避免因外泄漏有毒物质所造成的对环境污染。 同时, 它可以使 操作者可以比较轻松的将两只手让出, 实现人机互动、 精确、 分段用水或灌装 液体或气体, 从而, 提高了工作效率。 附图说明 图 1是本实用新型结构示意图。
图 2是设置棘轮装置的实施例的结构示意图。
图 3是转盘、 底座与阀杆连接状态意图。
图 4是转盘剖面图。
图 5是图 4的 A向示意图。
图 6是图 4的 B向示意图。
图 7是制动底座示意图。
图 8是图 7的 A向示意图。
图 9是本实用新型操作器采用限位器的实施例示意图。 图 1 o是本实用新型操作器为脚踏板的实施例示意图。
图中编号说明:
1、 机盖, 2、 旋转轮, 3、 锁紧螺丝, 4、 弹簧,
5 、 花键轴 6、 钢丝线, 7、 定位圈, 8、 制动体座,
9 、 六方螺母, 1 0、 阀芯, 1 1、 轴套, 1 2、 柔韧绳索,
1 3 、 卡轮, 2 0 1、 弹簧孔, 2 0 2 、 锁紧螺丝孔,
2 0 3、 花键槽, 2 0 4、 齿轮, 2 0 5 、 通槽,
4 0 1、 弹簧上挂钩, 4 0 2、 弹簧下挂钩, 8 0 1 、 缺口,
8 0 2、 定位孑 L, 8 0 3、 棘手, 8 0 4 、 孔,
8 0 5、 六方槽, 1 3 0 1、 棘轮棘齿, 1 3 0 2 、 齿圈,
1 4 、 操作器。 具体实施方式 实施例 1
一种操作器为脚踏板的节能环保阀门装置, 如图 1 0、 3-8所示, 包括: 阀 门、 阀芯 1 0、 旋转轮 2、 制动体座 8, 所述的阀芯 1 0穿过制动体座 ( 8 ) 的中心孔与旋转轮 2的中孔通过花键轴啮合, 并通过锁紧螺丝 3 锁定; 所述的 旋转轮 2与下面的制动体座 8构成了中间支柱形的环形腔体, 在旋转轮 2与制 动体座 8构成机体外设置机盖 1; 在上述的环形的腔体内支柱上套装弹簧 4, 弹簧 4的上、 下分别与旋转轮 2、 制动体座 8固定; 所述的钢丝线 6两端分别 与旋转轮 2、 操作器为脚踏板 1 4固接。
所述的旋转轮 ( 2 ) 为下端开放的双环形腔体结构见图 4、 图 6, 所述的制 动体座 ( 8 ) 为上端开放的双环形腔体结构且内环中间为通孔见图 7、 图 8, 所 述的旋转轮 ( 2 ) 的双环分别插入制动体座 ( 8 ) 的双环里, 构成中间支柱形 的环形腔体见图 3。 所述的阀芯 1 0外套装六方螺母 9, 阀芯 1 0与六方螺母 9动配合, 六方 螺母 9与制动体座 8的通孔的中下部的六方槽 8 0 5相配合。
所述的旋转轮 2的上部周边设置齿轮 2 Q 4, 旋转轮 2顶部中间及侧面分 别设置锁紧螺丝孔 2 0 2、 弹簧孔 2 0 1, 弹簧 4的弹簧上挂钩 4 0 1穿过弹 簧孔 2 0 1插卡在齿轮 2 0 4的齿槽内; 所述的旋转轮 2的下部八字形的周边 设置从上向下的通槽 2 0 5,钢丝线 6与旋转轮 2连接端是通过柔韧绳索 1 2连 接, 柔韧绳索 1 2通过通槽 2 0 5绕接在旋转轮 2的下部八字形的周边上。
所述的制动体座 8边缘上分别设置定位孔 8 0 2、 缺口 8 0 1, 所述的钢 丝线 6通过缺口 8 0 1穿出机体外与操作器 1 4固接; 所述的制动体座 8底部 设置孔 8 0 4, 弹簧下挂钩 4 0 2穿过孔 8 0 4与制动体座 8固定。
所述的机盖 1与制动体座 8之间通过定位圈 7固接, 所述的定位圈 7为开 口形的弹簧胀圈, 弹簧胀圈设置椎形螺丝头, 开口处设置在椎形螺丝头上, 将 椎形螺丝头分为两半形,并通过蝶形螺母 7 0 1锁定。
使用时, 用脚踩踏板 14拉动钢丝线 6, 将力传导至旋转轮 2, 旋转轮 2带 动阀杆 10旋转开启水龙。 在旋转轮 2旋转的同时对弹簧 4加力上紧, 当脚抬起 时, 在弹簧 4回弹力的作用下, 旋转轮 2反向转动将水龙头关闭。 脚踩踏板用 力的大小深浅决定了旋转轮旋转的角度控制着出水量。
因此, 本实用新型可广泛用于机床加工、 医疗设备、 汽车驾驶操作时双手 被占用的各种职业。 在人们的日常生活中, 取水用水很多场合人的双手也常常 是被占用的, 使用脚踏开关操作方式, 使操作人员增加了一只帮手, 可以大幅 提高开关的效率和速率。 尤其是在目前淡水资源短缺形势下, 本实用新型可节 约水资源、 减少排放、 卫生、 环保。 况且, 本装置结构简单、 加工、 组装方便, 成本低廉。 它与标准化元件相结合, 更易于产品工业化与应用规范化。 整个方 案不采用任何螺丝钉, 仅需手工即可完成组装。 适用性及应用范围广阔, 便于 推广。 实施例 2
一种操作器采用限位器的节能环保阀门装置, 如图 9所示, 其结构与实施 例 1 基本相同, 不同之处在于: 所述的操作器 1 4采用限位器。 这种限位器结 合时间继电器, 它还可以广泛用于机加工、 开采业、 化工等领域, 它可以根据 工艺的对流量要求进行调节流量大小, 从而可以节约了能源, 也减少或避免了 因外泄漏有毒物质所造成的对环境的污染。 同时, 它可以使操作者可以比较轻 松的将两只手让出, 从而, 提高了工作效率, 保证产品质量。 实施例 3
节能环保阀门装置, 如图 2所示, 其结构与实施例 1-2基本相同, 不同之处 在于: 所述的旋转轮 2的上部周边设置齿轮 2 Q 4, 在旋转轮 2的上部齿轮 2 0 4外设置卡轮 1 3, 齿轮 2 0 4与卡轮 1 3的齿圈啮合, 卡轮 1 3的一端设 置棘轮 1 3 0 1, 棘轮 1 3 0 1与制动体座 8的棘手 803啮合。
在正常情况下, 卡轮 1 3的棘轮 1 3 0 1向上端装配。 这样, 棘轮 1 3 0 1与制动体座 8的棘手 803分开, 不啮合。
当系统出现故障时, 为了使本节能环保阀门装置停止, 将卡轮 1 3的棘轮 1 3 0 1向下端装配。 这样, 棘轮 1 3 0 1与制动体座 8的棘手 803 啮合, 本 节能环保阀门装置停止工作。 它可以广泛用于人们的日常生活、 机加工、 开采 业、 化工等领域。

Claims

权 利 要 求 书
1、 一种节能环保阀门装置, 包括: 阀门、 阀芯 ( 1 0 ), 其特征在于; 所述的阀芯 ( 1 0 ) 穿过制动体座 ( 8 ) 的中心孔与旋转轮 ( 2 ) 的中孔插接 固定配合, 旋转轮 ( 2 ) 与制动体座 ( 8 ) 构成中间支柱形的环形腔体, 在旋 转轮 ( 2 ) 与制动体座 ( 8 ) 构成机体外设置机盖 ( 1 ); 在上述的环形的腔体 内支柱上套装弹簧 ( 4 ), 弹簧 ( 4 ) 两端分别与旋转轮 ( 2 )、 制动体座 ( 8 ) 固定; 所述的钢丝线 ( 6 ) 的两端分别与旋转轮 ( 2 )、 操作器 ( 1 4 ) 固接。
2、 根据权利要求 1所述的节能环保阀门装置, 其特征在于; 所述的旋转 轮 ( 2 ) 的上部外周与卡轮 ( 1 3 ) 的内圈插接, 卡轮 ( 1 3 ) 的一端设置棘 轮 ( 1 3 0 1 ), 棘轮 ( 1 3 0 1 ) 与制动体座 ( 8 ) 的棘手啮合。
3、 根据权利要求 1所述的节能环保阀门装置, 其特征在于; 所述的阀芯 ( 1 0 ) 外套装六方螺母 ( 9 ) 并与六方螺母 ( 9 ) 动配合, 六方螺母 ( 9 ) 与制动体座 ( 8 ) 的中下部的六方槽 ( 8 0 5 ) 配合。
4、 根据权利要求 1或 2所述的节能环保阀门装置, 其特征在于; 所述的 旋转轮 ( 2 ) 的上部周边设置齿轮 ( 2 0 4 ), 顶部中间及侧面分别设置锁紧螺 丝孔 ( 2 0 2 )、 弹簧孔 ( 2 0 1 ), 弹簧 ( 4 ) 的弹簧上挂钩 ( 4 0 1 ) 穿过 弹簧孔 ( 2 0 1 ) 插卡在齿轮 ( 2 0 4 ) 的齿槽内; 所述的旋转轮 ( 2 ) 的下 部八字形的周边设置从上向下的通槽 ( 2 0 5 ), 钢丝线 ( 6 ) 与旋转轮 ( 2 ) 连接端是通过柔韧绳索 (12) 连接, 柔韧绳索 (12) 通过通槽 ( 2 0 5 ) 绕接 在旋转轮 ( 2 ) 的下部八字形的周边上。
5、 根据权利要求 1所述的节能环保阀门装置, 其特征在于; 所述的制动 体座 ( 8 ) 边缘上分别设置定位孔 ( 8 0 2 )、 缺口 ( 8 0 1 ), 所述的钢丝线
( 6 ) 通过缺口 ( 8 0 1 ) 穿出机体外与操作器 ( 1 4 ) 固接; 所述的制动体 座 ( 8 ) 底部设置孔 ( 8 0 4 ), 弹簧下挂钩 ( 4 0 2 ) 穿过孔 ( 8 0 4 ) 与制 动体座 ( 8 ) 固定。
6、 根据权利要求 1所述的节能环保阀门装置, 其特征在于; 所述的机盖 ( 1 ) 与制动体座 ( 8 ) 之间通过定位圈 ( Ί ) 固接, 所述的定位圈 ( 7 ) 为 开口形的弹簧胀圈, 弹簧胀圈设置椎形螺丝头, 开口处设置在椎形螺丝头上, 椎形螺丝头分为两半形并通过蝶形螺母 (7 0 1 ) 锁定。
7、 根据权利要求 1所述的节能环保阀门装置, 其特征在于; 所述的旋转轮 ( 2 ) 为下端开放的双环形腔体结构, 所述的制动体座 ( 8 ) 为上端开放的双 环形腔体结构且内环中间为通孔, 所述的旋转轮 ( 2 ) 的双环分别插入制动体 座 (8 ) 的双环里, 构成中间支柱形的环形腔体。
1
PCT/CN2011/073681 2010-06-04 2011-05-05 节能环保阀门装置 WO2011150731A1 (zh)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201020215806XU CN201723809U (zh) 2010-06-04 2010-06-04 节能环保阀门装置
CN201020215806.X 2010-06-04

Publications (1)

Publication Number Publication Date
WO2011150731A1 true WO2011150731A1 (zh) 2011-12-08

Family

ID=43492139

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2011/073681 WO2011150731A1 (zh) 2010-06-04 2011-05-05 节能环保阀门装置

Country Status (2)

Country Link
CN (1) CN201723809U (zh)
WO (1) WO2011150731A1 (zh)

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN201723809U (zh) * 2010-06-04 2011-01-26 北京捷先登科技有限公司 节能环保阀门装置
CN108799585B (zh) * 2018-08-23 2023-11-24 成都震风航空技术有限公司 一种柔性密封导管连接器

Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH01286301A (ja) * 1988-05-12 1989-11-17 Mic Kogyo Kk 電磁石
JPH09203095A (ja) * 1996-01-30 1997-08-05 Yasumi Ota 排水栓装置
CN2391060Y (zh) * 1999-10-10 2000-08-09 刘毅 内燃机润滑油箱放油阀门
WO2001069111A1 (en) * 2000-03-15 2001-09-20 Klaus Potthoff An apparatus for tapping of water or the like
CN2738065Y (zh) * 2003-09-08 2005-11-02 王贺新 脚踏节水水龙头
CN2934797Y (zh) * 2006-08-18 2007-08-15 张金强 阀门上用的移动变转动的转化机构
CN201723809U (zh) * 2010-06-04 2011-01-26 北京捷先登科技有限公司 节能环保阀门装置

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH01286301A (ja) * 1988-05-12 1989-11-17 Mic Kogyo Kk 電磁石
JPH09203095A (ja) * 1996-01-30 1997-08-05 Yasumi Ota 排水栓装置
CN2391060Y (zh) * 1999-10-10 2000-08-09 刘毅 内燃机润滑油箱放油阀门
WO2001069111A1 (en) * 2000-03-15 2001-09-20 Klaus Potthoff An apparatus for tapping of water or the like
CN2738065Y (zh) * 2003-09-08 2005-11-02 王贺新 脚踏节水水龙头
CN2934797Y (zh) * 2006-08-18 2007-08-15 张金强 阀门上用的移动变转动的转化机构
CN201723809U (zh) * 2010-06-04 2011-01-26 北京捷先登科技有限公司 节能环保阀门装置

Also Published As

Publication number Publication date
CN201723809U (zh) 2011-01-26

Similar Documents

Publication Publication Date Title
WO2011150731A1 (zh) 节能环保阀门装置
CN201427084Y (zh) 双头花洒
CN209398908U (zh) 一种按压式的出水结构
CN201815401U (zh) 一种淋浴器
CN202056375U (zh) 一种多功能水龙头
CN202140616U (zh) 双头出水阀
CN105595886A (zh) 一种香皂切割器
CN201772142U (zh) 一种可旋转水龙头
CN204510879U (zh) 多功能简易淋浴房
CN202874700U (zh) 可升降的花架
CN203363275U (zh) 一种带有分水结构的水龙头
CN207034383U (zh) 一种节水阀芯
CN201916564U (zh) 一种出水方向可调的面盆龙头
CN205062926U (zh) 一种新型多功能卫生间用洗脸台
CN206001048U (zh) 切换阀芯
CN211484072U (zh) 一种净水器底座及净水器
CN2911360Y (zh) 节能节水水龙头
CN204127332U (zh) 一种分段式节水水龙头
CN106763867A (zh) 一种医药行业用易拆卸球阀
CN207246467U (zh) 一种水龙头
CN202659911U (zh) 下控式节水水阀
CN207687409U (zh) 一种新型水龙头
CN203703248U (zh) 手自一体感应洗涤水嘴
CN201669188U (zh) 花洒出水控制结构
CN203703611U (zh) 一种气瓶启闭控制装置

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 11789110

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 11789110

Country of ref document: EP

Kind code of ref document: A1