WO2012003785A1 - 流量调节装置 - Google Patents

流量调节装置 Download PDF

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Publication number
WO2012003785A1
WO2012003785A1 PCT/CN2011/076795 CN2011076795W WO2012003785A1 WO 2012003785 A1 WO2012003785 A1 WO 2012003785A1 CN 2011076795 W CN2011076795 W CN 2011076795W WO 2012003785 A1 WO2012003785 A1 WO 2012003785A1
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WO
WIPO (PCT)
Prior art keywords
hole
regulating device
flow regulating
adjusting member
housing
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PCT/CN2011/076795
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English (en)
French (fr)
Inventor
周华松
刘梓光
江力
陈添育
Original Assignee
厦门松霖科技有限公司
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.)
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Priority claimed from CN 201010221768 external-priority patent/CN101865318B/zh
Priority claimed from CN2010202526080U external-priority patent/CN201739593U/zh
Application filed by 厦门松霖科技有限公司 filed Critical 厦门松霖科技有限公司
Priority to DE112011102292.1T priority Critical patent/DE112011102292T8/de
Publication of WO2012003785A1 publication Critical patent/WO2012003785A1/zh

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    • 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
    • F16K17/00Safety valves; Equalising valves, e.g. pressure relief valves
    • F16K17/20Excess-flow valves
    • F16K17/22Excess-flow valves actuated by the difference of pressure between two places in the flow line
    • F16K17/24Excess-flow valves actuated by the difference of pressure between two places in the flow line acting directly on the cutting-off member
    • F16K17/28Excess-flow valves actuated by the difference of pressure between two places in the flow line acting directly on the cutting-off member operating in one direction only
    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05DSYSTEMS FOR CONTROLLING OR REGULATING NON-ELECTRIC VARIABLES
    • G05D7/00Control of flow
    • G05D7/01Control of flow without auxiliary power
    • G05D7/0106Control of flow without auxiliary power the sensing element being a flexible member, e.g. bellows, diaphragm, capsule
    • G05D7/012Control of flow without auxiliary power the sensing element being a flexible member, e.g. bellows, diaphragm, capsule the sensing element being deformable and acting as a valve

Definitions

  • the invention relates to a flow regulating device.
  • the early flow regulating device mainly comprises a casing, a sealing member and a spring, the casing has a water passage, the sealing member is disposed within the water passage, the spring abuts against the seal and the shell Between the bodies, the flow through the water passage is controlled by the sliding of the seal relative to the water passage.
  • the sealing member is slid in the positive direction by the water pressure to reduce the cross-sectional area of the water passage, reduce the flow rate of the water passage, and compress the spring to store energy during sliding;
  • the energy storage spring releases energy and drives the sealing member to slide in the opposite direction to increase the cross-sectional area of the water passage and increase the flow rate of the water passage. Since the adjusting device includes a seal and a spring, the structure is complicated and the space is large.
  • the Chinese patent database announced on March 10, 2010 that the patent name is 200920137849.8, and the invention name is "flow regulation check valve". It includes a sleeve, a flow restricting device and a check valve.
  • the current limiting device is disposed at the water inlet end of the sleeve, and includes a water saving sheet and a water saving sheet holder.
  • the water-saving sheet holder comprises an outer sleeve, an inner sleeve and an annular piece for fixing the outer sleeve and the inner sleeve together, and the annular sheet is provided with a water-passing hole.
  • the water-saving sheet sleeves the inner sleeve and corresponds to the water-passing hole, and the water-saving sheet is controlled by the water pressure to control the cross-sectional area of the water-passing hole to control the flow adjustment.
  • It has the following disadvantages: 1. Since the water-saving sheet bears against the annular piece, the annular piece is substantially flat, so the deformation amount of the water-saving piece is small, the water quantity adjustment range is small, and the deformation for water pressure changes. The sensitivity is not high, and the adjustment accuracy is low; 2. Since the deformation direction of the water-saving sheet is perpendicular to the water pressure direction, the deformation amount is small, the water volume adjustment range is small, and the deformation sensitivity for the water pressure change is not high, and the adjustment accuracy is low. Lower.
  • the present invention provides a flow regulating device that overcomes the deficiencies of the flow regulating device of the prior art.
  • a flow regulating device comprising:
  • a casing having a water passage therein, wherein the water passage is a stepped hole, the stepped hole has a stepped surface, and a plurality of raised seats are fixed on the stepped surface, and the adjacent two protrusions Between the seats;
  • An adjusting member which is made of an elastic material and elastically deformable when subjected to a force, is attached to the housing and placed on the raised seat, above the step surface, under the adjusting member and adjacent to each other The space between the two raised seats becomes the water passing port of the water passage, and the adjusting member can be pressed into the water passing port by the elastic deformation of the adjusting member to change the cross-sectional area of the water passing port.
  • the adjustment member is in the form of a sheet.
  • the stepped hole in the housing further has a mounting hole and a through hole, the mounting hole having a diameter larger than the diameter of the through hole;
  • a gap is left between the adjusting member and the inner side surface of the fitting hole.
  • the raised seat is formed as a rib, and at least a pair of the inner ends of the ribs are extended and fixed together, and the outer ends of the ribs are fixed to the inner side of the fitting hole.
  • a positioning table is protruded from an outer end of the rib, and the positioning table is annularly arranged; the adjusting member is placed on the rib and is arranged to be arranged in the positioning platform. Within the ring.
  • At least one raised platform is fixed between adjacent two raised seats above the step surface, and a space is left between the raised table and the raised seat.
  • it further comprises:
  • a limiting piece is fixed to the housing, and the through-opening hole is axially penetrated through the limiting piece, and the adjusting member is located between the protruding seat and the limiting piece.
  • it further comprises:
  • a limiting piece is movably connected to the housing, and the degree of elastic deformation of the adjusting member can be controlled by the relative movement between the limiting member and the housing, and the through hole is axially penetrated through the limiting member.
  • the inner surface of the stepped hole is provided with an internal thread
  • the outer surface of the restricting piece is provided with an external thread
  • the limiting member is screwed to the stepped hole, and the limiting piece is The piece is connected to the housing and abuts against the adjustment member.
  • the limiting member is adapted and slidably coupled within the stepped bore to be slidable relative to the stepped bore when subjected to hydraulic pressure.
  • the adjusting member Since the adjusting member is placed on the raised seat, the bottom surface of the corresponding water passing port of the adjusting member is not supported, and since the elastic deformation direction of the adjusting member is in the same direction as the water flow direction, the elastic deformation amount of the adjusting member is large, and the water volume adjusting range is large. , high sensitivity to elastic deformation for pressure changes, high adjustment accuracy;
  • the limiting piece is screwed into the stepped hole, and the limiting piece is abutted against the adjusting member, so the user can manually adjust the flow rate, and can set the relationship between the flow adjustment and the elastic deformation amount of the adjusting member;
  • the inner ends of the ribs protrude and are fixed together, so that the adjusting member can be stably supported, the deformation of the adjusting member can be prevented from being downwardly deformed, and the adjusting member can be prevented from being disengaged from the device;
  • the adjusting member is placed on the rib and adapted to fit within the annular shape of the positioning table, and the adjusting member can be positioned;
  • a convex platform is fixed between the adjacent two raised seats, and a space is left between the raised platform and the raised seat, and the raised platform can avoid excessive deformation of the adjusting member.
  • FIG. 1 is a schematic exploded perspective view of a flow regulating device.
  • FIG 2 is a perspective view of the housing of the flow regulating device.
  • FIG 3 is a top plan view of the housing of the flow regulating device.
  • FIG. 4 is a cross-sectional view of the A-A of FIG. 3.
  • FIG. 5 is a schematic top view of the flow regulating device.
  • FIG. 6 is a partial cross-sectional view of the flow regulating device, in which the cross-sectional area of the water passing port of the flow regulating device is the largest.
  • FIG. 7 is a cross-sectional view taken along line B-B of FIG. 5, in which the cross-sectional area of the water passing port of the flow regulating device is the largest.
  • FIG. 8 is a partial cross-sectional view of the flow regulating device, in which the cross-sectional area of the water passing port of the flow regulating device is the smallest.
  • FIG. 9 is a cross-sectional view of the B-B of FIG. 5, in which the cross-sectional area of the water passing port of the flow regulating device is the smallest.
  • the flow regulating device includes a housing 100, an adjustment member 200, and a restriction member 300.
  • the housing 100 is provided with a water passage, and the water passage is a stepped hole.
  • the stepped hole has a mounting hole 110, a through hole 120 and a step surface 130.
  • a plurality of annular projections 140 are arranged on the step surface 130, and the adjacent two protrusions 140 are spaced apart from each other.
  • the protrusions 140 are ribs, and The inner ends of the ribs are both extended and fixed together, and the outer ends of the ribs are fixed to the inner side of the fitting hole.
  • the inner ends of the ribs are extended and fixed together as an example, but not limited thereto. If necessary, the inner ends of a pair of ribs protrude and are fixed together. This embodiment is applicable.
  • a positioning table 141 is protruded from the outer end of the rib, and the positioning table 141 is annularly arranged because the plurality of protrusions 140 are annularly arranged.
  • a protrusion 150 is fixed between each adjacent two protrusions 140 above the step surface 130, and a space is left between the protrusion table 150 and the protrusion seat 140.
  • the protrusion table The distance between the top surface of the 150 surface and the step surface 130 is smaller than the distance between the top surface of the convex seat 140 and the step surface 130, that is, the top surface of the convex table 150 is lower than the top surface of the convex seat 140, but this is not
  • the top surface of the boss 150 and the top surface of the boss 140 may be flush, and the top surface of the boss 150 may be higher than the top surface of the boss 140 as needed.
  • the top surface of the boss 140 other than the positioning table 141 is flush.
  • the raised seat 140 can also take other configurations, such as a truncated projection, as desired.
  • the adjusting member 200 is in the form of a circular sheet, and is made of an elastic material and elastically deformable when subjected to a force.
  • the adjusting member 200 is placed on the rib and fits within the annular shape of the positioning table 141, that is, a gap is left between the adjusting member and the inner side surface of the fitting hole.
  • the adjusting member 200 is mounted inside the housing 100 and placed on the protruding seat 140. The space between the step surface 130, the adjusting member 200 and each adjacent two raised seats 140 becomes The water passage of the water passage 400.
  • the limiting member 300 includes a sleeve 310 and a "Ten" frame 320 fixed in the sleeve 310.
  • the sleeve 310 and the "Ten” frame 320 are formed as through holes.
  • the outer side of the sleeve 310 is fitted to the inner side of the fitting hole 110 of the stepped hole to fix the limiting member 300 to the housing 100 to prevent the adjusting member from coming off the flow regulating device.
  • a gap is left between the restriction member 300 and the adjustment member 200.
  • the water flows through the restriction member 300 and impacts the adjustment member 200, and the adjustment member 200 is subjected to a force in the same direction as the flow direction of the water.
  • the deformation amount of the adjusting member 200 is small, and the cross-sectional area of the water passing port 400 is large, please refer to FIGS. 6 and 7; when the water pressure is gradually increased, the adjusting member 200 is elastic. The amount of deformation also becomes large, and the portion between the corresponding adjacent two raised seats 140 of the adjusting member 200 is sunken and the cross-sectional area of the water passing port 400 is reduced. Please refer to FIGS.
  • the retaining member 300 is slidably coupled to the mounting hole 110.
  • the water flow impacts the release member 300 such that the restriction member 300 is subjected to a force in the same direction as the water flow direction, and the restriction member 300 applies a force to the adjustment member, so that the adjustment member is elastically deformed to realize flow adjustment. .
  • a plurality of studs are disposed under the limiting member 300.
  • the difference from the previous preferred embodiment is that the inner surface of the mounting hole of the stepped hole is provided with an internal thread, and the outer surface of the limiting member is provided with an outer surface. Thread, the limiting member is screwed to the stepped hole, and the user can control the flow rate by rotating the limit release member.
  • the flow regulating device of the invention has large elastic deformation amount of the adjusting member, large water quantity adjusting range, high sensitivity to elastic deformation for pressure change, high adjustment accuracy, and good industrial applicability.

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Automation & Control Theory (AREA)
  • Safety Valves (AREA)

Abstract

一种流量调节装置,包括一壳体(100)和一调节件(200)。壳体内设有过水通道,过水通道为阶梯孔,所述阶梯孔具有阶梯面(130),所述阶梯面之上固设有若干凸起座(140),所述相邻二凸起座之间具有间隔。调节件的材质为弹性材料并在受力时能够弹性变形。调节件装接在壳体之内并放置在凸起座之上,在阶梯面之上、调节件之下和每相邻二凸起座之间的空间成为过水通道的过水口(400),能够通过调节件弹性变形使调节件部分压入过水口以改变过水口的过水截面面积。该流量调节装置具有如下优点:调节件的对应过水口的底面无支撑,调节件的弹性变形方向和水流方向同向,因此调节件的弹性变形量大,水量调节范围大,针对压力变化的弹性变形灵敏度高,调节准确性高。

Description

流量调节装置 技术领域
本发明涉及一种流量调节装置。
背景技术
早期的流量调节装置主要包括一壳体、一密封件和一弹簧,所述壳体具有一过水通道,所述密封件设置在过水通道之内,所述弹簧顶抵在密封件和壳体之间,通过密封件相对过水通道的滑动控制过水通道的流量。当水压大于预定压力时,所述密封件受水压作用朝正方向滑动以减小过水通道的过水截面面积,减少过水通道的流量,而且,滑动过程中压缩弹簧以储能;当水压小于预定压力时,所述储能弹簧释能,并带动密封件朝反方向滑动以增大过水通道的过水截面面积,增大过水通道的流量。由于调节装置包括密封件和弹簧,因此结构复杂,占用空间大。
针对上述不足,有人提出了解决方案,如中国专利数据库在2010年3月10日公告了专利号为200920137849.8的发明名称为《流量调节止逆阀》的实用新型。它包括一套筒、一限流装置和一单向阀。所述限流装置是设置在套筒的进水端,它包括一省水片和一省水片支架。所述省水片支架包括一外套、一内套和一将外套和内套固定在一起的环形片,所述环形片之上开设有通水孔。所述省水片套接内套并对应通水孔,通过水压作用控制省水片变形以控制通水孔截面面积,以控制流量调节。它存在有如下不足:1.由于所述省水片撑靠在环形片,所述环形片基本为平面,因此所述省水片的变形量小,水量调节范围小,针对水压变化的变形灵敏度不高,调节准确性较低;2.由于所述省水片的变形方向与水压方向垂直,因此变形量小,水量调节范围小,针对水压变化的变形灵敏度不高,调节准确性较低。
发明内容
本发明提供了一种流量调节装置,其克服了背景技术中的流量调节装置所存在的不足。
本发明解决其技术问题的所采用的技术方案是:
流量调节装置,它包括:
一壳体,它内设有过水通道,所述过水通道为阶梯孔,所述阶梯孔具有阶梯面,所述阶梯面之上固设有若干凸起座,所述相邻二凸起座之间具有间隔;及
一调节件,它的材质为弹性材料并在受力时能够弹性变形,它装接在壳体之内并放置在凸起座之上,在阶梯面之上、调节件之下和每相邻二凸起座之间的空间成为过水通道的过水口,能够通过调节件弹性变形使调节件部分压入过水口以改变过水口的过水截面面积。
一较佳实施例之中:所述调节件为片状。
一较佳实施例之中:
所述壳体内的阶梯孔还具有一装配孔和一通流孔,所述装配孔直径大于通流孔直径;
所述调节件和装配孔内侧面之间留有间隙。
一较佳实施例之中:所述凸起座成肋条,而且,至少有一对所述肋条的内端伸出并固接在一起,所述肋条的外端固接在装配孔内侧面。
一较佳实施例之中:所述肋条的外端之上凸设有定位台,所述定位台环形布置;所述调节件放置在肋条之上,并适配介于所述定位台布置的环形之内。
一较佳实施例之中:所述阶梯面之上的相邻二凸起座之间固设有至少一凸起台,所述凸起台和凸起座之间留有间隔。
一较佳实施例之中:它还包括:
一限脱件,它固接在壳体,所述限脱件之上开设有轴向贯穿的贯穿孔,而且,所述调节件位于凸起座和限脱件之间。
一较佳实施例之中:它还包括:
一限脱件,它活动连接在壳体,能够通过限脱件和壳体之间的相对活动控制调节件弹性变形程度,而且,所述限脱件之上开设有轴向贯穿的贯穿孔。
一较佳实施例之中:所述阶梯孔之内回转面设置有内螺纹,所述限脱件之外回转面设置有外螺纹,所述限脱件螺接在阶梯孔,所述限脱件活动连接壳体并顶抵调节件。
一较佳实施例之中:所述限脱件适配并滑动连接在阶梯孔之内,在受到水压作用时能够相对阶梯孔滑动。
本技术方案与背景技术相比,它具有如下优点:
1.由于调节件放置在凸起座之上,调节件的对应过水口的底面无支撑,由于调节件的弹性变形方向和水流方向同向,因此调节件的弹性变形量大,水量调节范围大,针对压力变化的弹性变形灵敏度高,调节准确性高;
2.调节件和装配孔内侧面之间留有间隙,因此能够避免调节件完全阻挡水流;
3.限脱件螺接在阶梯孔,限脱件顶抵调节件,因此用户能够手动调节流量,能够设置流量调节和调节件弹性变形量之间的关系;
4.所述肋条的内端伸出并固接在一起,则能够稳定支撑调节件,能够避免调节件中心向下变形,防止调节件脱离装置;
5.调节件放置在肋条之上并适配介于所述定位台布置的环形之内,能够定位调节件;
6.相邻二凸起座之间固设有一凸起台,凸起台和凸起座之间留有间隔,凸起台能够避免调节件过度变形。
附图说明
下面结合附图和实施例对本发明作进一步说明。
图1绘示了流量调节装置的立体分解示意图。
图2绘示了流量调节装置的壳体的立体示意图。
图3绘示了流量调节装置的壳体的俯视示意图。
图4绘示了图3的A-A剖面示意图。
图5绘示了流量调节装置的俯视示意图。
图6绘示了流量调节装置的局部剖面示意图,此时流量调节装置的过水口的过水截面面积最大。
图7绘示了图5的B-B剖面示意图,此时流量调节装置的过水口的过水截面面积最大。
图8绘示了流量调节装置的局部剖面示意图,此时流量调节装置的过水口的过水截面面积最小。
图9绘示了图5的B-B剖面示意图,此时流量调节装置的过水口的过水截面面积最小。
标号说明:
壳体100、调节件200、限脱件300、装配孔110、通流孔120、阶梯面130、凸起座140、定位台141、凸起台150、过水口400、套件310、“十”字架320。
具体实施方式
请查阅图1至图9,流量调节装置,它包括一壳体100、一调节件200和一限脱件300。
所述壳体100,它内设有过水通道,所述过水通道为阶梯孔,所述阶梯孔具有一装配孔110、一通流孔120和一阶梯面130。所述阶梯面130之上固设有若干环形陈列布置的凸起座140,所述相邻二凸起座140之间具有间隔,本实施例之中,所述凸起座140成肋条,而且,所述肋条的内端均伸出并固接在一起,所述肋条的外端固接在装配孔内侧面。本实施例之中,以所述肋条的内端均伸出并固接在一起为例,但并不以此为限,根据需要,有一对肋条的内端伸出并固接在一起也能适用本实施例。所述肋条的外端之上凸设有定位台141,由于若干凸起座140环形布置,因此所述定位台141环形布置。所述阶梯面130之上的每相邻二凸起座140之间固设有一凸起台150,所述凸起台150和凸起座140之间留有间隔,而且,所述凸起台150顶面和阶梯面130之间的距离小于凸起座140顶面和阶梯面130之间的距离,也即是凸起台150顶面低于凸起座140顶面,但并不以此为限,根据需要,所述凸起台150顶面和凸起座140顶面也可齐平,根据需要,所述凸起台150顶面也可高于凸起座140顶面。最好,本实施例之中,除定位台141之外的凸起座140顶面齐平。根据需要,所述凸起座140也可采用其它结构,例如圆台凸起。
所述调节件200为圆形片状,它的材质为弹性材料并在受力时能够弹性变形。所述调节件200放置在肋条之上,并适配介于所述定位台141布置的环形之内,也即是所述调节件和装配孔内侧面之间留有间隙。所述调节件200装接在壳体100之内并放置在凸起座140之上,在阶梯面130之上、调节件200之下和每相邻二凸起座140之间的空间成为过水通道的过水口400。
所述限脱件300,它包括一套件310及一固设在套件310之内的“十”字架320,所述套件310和“十”字架320之间成贯穿孔。所述套件310的外侧面适配卡接在阶梯孔的装配孔110的内侧面,以将限脱件300固定在壳体100,以能够避免调节件脱离出流量调节装置。最好所述限脱件300和调节件200之间留有间隙。
为了使审查员进一步了解本发明,下面具体介绍本发明的流量调节原理:
所述水流穿过限脱件300并冲击调节件200,所述调节件200受到一个与水流方向同向的作用力。当水压小时,所述调节件200的变形量较小,所述过水口400的过水截面面积较大,请查阅图6、7;当水压逐渐变大时,所述调节件200弹性变形量也变大,所述调节件200的对应相邻二凸起座140之间的部分下陷并减少过水口400的过水截面面积,请查阅图8、9。
另一较佳实施例之中,它与上一较佳实施例不同之处在于:所述限脱件300滑动连接在装配孔110。所述水流冲击限脱件300,使得所述限脱件300受到一个与水流方向同向的作用力,所述限脱件300将作用力作用在调节件,使得调节件弹性变形,实现流量调节。
再一较佳实施例之中,它与上一较佳实施例不同之处在于:所述限脱件300之下设置有若干个凸柱。
又一较佳实施例之中,它与上一较佳实施例不同之处在于:所述阶梯孔之装配孔之内回转面设置有内螺纹,所述限脱件之外回转面设置有外螺纹,所述限脱件螺接在阶梯孔,则用户能够过旋转限脱件控制流量。
以上所述,仅为本发明较佳实施例而已,故不能依此限定本发明实施的范围,即依本发明专利范围及说明书内容所作的等效变化与修饰,皆应仍属本发明涵盖的范围内。
工业实用性
本发明一种流量调节装置,其调节件的弹性变形量大,水量调节范围大,针对压力变化的弹性变形灵敏度高,调节准确性高,具有良好的工业实用性。

Claims (12)

  1. 流量调节装置,其特征在于:它包括:
    一壳体,它内设有过水通道,所述过水通道为阶梯孔,所述阶梯孔具有阶梯面,所述阶梯面之上固设有若干凸起座,所述相邻二凸起座之间具有间隔;及
    一调节件,它的材质为弹性材料并在受力时能够弹性变形,它装接在壳体之内并放置在凸起座之上,在阶梯面之上、调节件之下和每相邻二凸起座之间的空间成为过水通道的过水口,能够通过调节件弹性变形使调节件部分压入过水口以改变过水口的过水截面面积。
  2. 根据权利要求1所述的流量调节装置,其特征在于:所述调节件为片状。
  3. 根据权利要求2所述的流量调节装置,其特征在于:
    所述壳体内的阶梯孔还具有一装配孔和一通流孔,所述装配孔直径大于通流孔直径;
    所述调节件和装配孔内侧面之间留有间隙。
  4. 根据权利要求3所述的流量调节装置,其特征在于:所述凸起座成肋条,而且,至少有一对所述肋条的内端伸出并固接在一起,所述肋条的外端固接在装配孔内侧面。
  5. 根据权利要求4所述的流量调节装置,其特征在于:所述肋条的外端之上凸设有定位台,所述定位台环形布置;所述调节件放置在肋条之上,并适配介于所述定位台布置的环形之内。
  6. 根据权利要求1或2或3或4或5所述的流量调节装置,其特征在于:所述阶梯面之上的相邻二凸起座之间固设有至少一凸起台,所述凸起台和凸起座之间留有间隔。
  7. 根据权利要求1或2或3或4或5所述的流量调节装置,其特征在于:它还包括:
    一限脱件,它固接在壳体,所述限脱件之上开设有轴向贯穿的贯穿孔,而且,所述调节件位于凸起座和限脱件之间。
  8. 根据权利要求1或2或3或4或5所述的流量调节装置,其特征在于:它还包括:
    一限脱件,它活动连接在壳体,能够通过限脱件和壳体之间的相对活动控制调节件弹性变形程度,而且,所述限脱件之上开设有轴向贯穿的贯穿孔。
  9. 根据权利要求8所述的流量调节装置,其特征在于:所述阶梯孔之内回转面设置有内螺纹,所述限脱件之外回转面设置有外螺纹,所述限脱件螺接在阶梯孔,所述限脱件活动连接壳体并顶抵调节件。
  10. 根据权利要求8所述的流量调节装置,其特征在于:所述限脱件适配并滑动连接在阶梯孔之内,在受到水压作用时能够相对阶梯孔滑动。
  11. 根据权利要求7所述的流量调节装置,其特征在于:所述限脱件包括一套件及一固设在套件之内的“十”字架,所述套件和“十”字架之间成贯穿孔。
  12. 根据权利要求7所述的流量调节装置,其特征在于:所述限脱件之下设置有若干个凸柱。
PCT/CN2011/076795 2010-07-08 2011-07-04 流量调节装置 WO2012003785A1 (zh)

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FR2507795A1 (fr) * 1981-06-16 1982-12-17 Thomson Brandt Regulateur de debit de fluide et machine a laver munie d'un tel regulateur
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JP2006292115A (ja) * 2005-04-13 2006-10-26 Nok Corp 流量調整装置
CN101371207A (zh) * 2005-12-27 2009-02-18 内塔芬有限公司 流体流量控制调节器
GB2462640A (en) * 2008-08-14 2010-02-17 Kenneth O Hara Gas flow regulator
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CN201739593U (zh) * 2010-07-08 2011-02-09 厦门松霖科技有限公司 一种流量调节装置

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2554790A (en) * 1948-09-09 1951-05-29 Hays Mfg Co Flow control device
US3195579A (en) * 1961-11-15 1965-07-20 Robertshaw Controls Co Flow control
US4165764A (en) * 1976-07-20 1979-08-28 International Cold Forging Corporation Valve
FR2507795A1 (fr) * 1981-06-16 1982-12-17 Thomson Brandt Regulateur de debit de fluide et machine a laver munie d'un tel regulateur
US6390122B1 (en) * 2000-10-11 2002-05-21 Hays Fluid Controls, A Division Of Romac Industries, Inc. Fluid flow control valve and orifice therefor
JP2006292115A (ja) * 2005-04-13 2006-10-26 Nok Corp 流量調整装置
CN101371207A (zh) * 2005-12-27 2009-02-18 内塔芬有限公司 流体流量控制调节器
GB2462640A (en) * 2008-08-14 2010-02-17 Kenneth O Hara Gas flow regulator
CN101865318A (zh) * 2010-07-08 2010-10-20 厦门松霖科技有限公司 流量调节装置
CN201739593U (zh) * 2010-07-08 2011-02-09 厦门松霖科技有限公司 一种流量调节装置

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