CN204610964U - A kind of constant temperature contact button spool inserting member - Google Patents

A kind of constant temperature contact button spool inserting member Download PDF

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Publication number
CN204610964U
CN204610964U CN201520188250.2U CN201520188250U CN204610964U CN 204610964 U CN204610964 U CN 204610964U CN 201520188250 U CN201520188250 U CN 201520188250U CN 204610964 U CN204610964 U CN 204610964U
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CN
China
Prior art keywords
valve body
piston
overflow ducts
knob
constant temperature
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Withdrawn - After Issue
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CN201520188250.2U
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Chinese (zh)
Inventor
林孝发
林孝山
刘启乔
邓小清
李帅宇
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Fujian Xihe Sanitary Ware Technology Co Ltd
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Fujian Xihe Sanitary Ware Technology Co Ltd
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Priority to CN201520188250.2U priority Critical patent/CN204610964U/en
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Publication of CN204610964U publication Critical patent/CN204610964U/en
Withdrawn - After Issue legal-status Critical Current
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Abstract

A kind of constant temperature contact button spool inserting member, comprise valve body, temperature adjustment component, knob, button, push rod, from lock set and opening/closing component, this valve body is provided with cold water intake, hot water intake and water outlet, this temperature adjustment component is positioned at valve body, and this knob connects and drives temperature adjustment component action with mixed hot water and cold water in proportion; Also be provided with pressure-releasing chamber and overflow ducts in this valve body, this pressure-releasing chamber is communicated with overflow ducts with valve body water outlet, and should be positioned at overflow ducts from lock set, this opening/closing component is positioned at water outlet; This button to be sheathed on knob and to rotate with knob circumferential clocking of turbine; This push rod one end and key contact, the other end drives from lock set action to open or close overflow ducts, and locks button and be positioned at the first state or the second state.At a valve body upper set, push button opens and closes and knob style thermostatic control two kinds of functions the utility model, and main operating components uniquely, and can to operate in two degrees of freedom, and structure is simple, safe and reliable, very convenient.

Description

A kind of constant temperature contact button spool inserting member
Technical field
The utility model relates to sanitaryware accessory field, particularly a kind of constant temperature contact button spool inserting member.
Background technique
Along with the progress of science and technology and providing of living standard, the spool with temperature incubation function has been widely used in the various bathing water system such as family, hotel, its feature is, user can adjusting water outlet temperature voluntarily according to actual needs, after temperature setting, mixing effluent temperature constancy, the problem that the water-exit temperature that common spool can be avoided to cause because of intake pressure change and temperature instability is sometimes hot and sometimes cold, safety scald-proof.The key point of effective control effluent temperature constancy is: sense authentic and valid water-exit temperature, and can regulate cold and hot water inlet ratio delicately, and this point prior art can solve comparatively perfectly.
Constant temperature regulating valve core usually adopts and rotates adjusting water outlet temperature, but can not control switch water.Namely, in practical application, constant temperature regulating valve core needs to coordinate the spool of other band cutoff functions jointly to use, comparatively inconvenience.Market occurs constant temperature valve core rotation process can regulate temperature, also can open and close water channel.But this structure, its operating grip only has the act of operation of one degree of freedom, then each unlatching all will readjust water temperature, uses inconvenience, operates inadequate hommization.
Model utility content
Main purpose of the present utility model is to overcome above-mentioned defect of the prior art, propose a kind of easy to operate, can adjusting water outlet temperature, a kind of constant temperature contact button spool inserting member opening and closing water channel can be controlled again.
The utility model adopts following technological scheme:
A kind of constant temperature contact button spool inserting member, comprise valve body, temperature adjustment component and knob, this valve body is provided with cold water intake, hot water intake and water outlet, and this temperature adjustment component is positioned at valve body, and this knob connects and drives temperature adjustment component action with mixed hot water and cold water in proportion; It is characterized in that: also comprise button, push rod, from lock set and opening/closing component; Also be provided with pressure-releasing chamber and overflow ducts in this valve body, this pressure-releasing chamber is communicated with overflow ducts with valve body water outlet, and should be positioned at overflow ducts from lock set, this opening/closing component is positioned at water outlet; This button to be sheathed on knob and to rotate with knob circumferential clocking of turbine; This push rod one end and key contact, the other end drives from lock set action to open or close overflow ducts, and locks button and be positioned at the first state or the second state.
Preferably, describedly the first elastic component, first piston, ratchet and driving ratchet is comprised from lock set; This driving ratchet one end and push rod are socketed, and the other end and ratchet are that inclined-plane coordinates; This ratchet is fixedly connected with first piston; This first elastic component is opened and is peaked in first piston and overflow ducts diapire, holds out against driving ratchet all the time to order about ratchet.
Preferably, described overflow ducts inwall is provided with some sliding-grooves, and described driving ratchet and ratchet correspondence are provided with guide pad, and this guide pad and sliding-groove, for being slidably matched, are provided with latch ramp between adjacent two sliding-groove tops.
Preferably, also intermediate incline is provided with between described two sliding-groove tops.
Preferably, describedly the first elastic component, deformation part, first piston and inner sleeve is comprised from lock set; Valve body described in this is provided with the outer sleeve being communicated to overflow ducts, and these outer sleeve both sides are respectively equipped with the first slide rail and the second slide rail; This inner sleeve is arranged in outer sleeve, and its two ends are fixedly connected with first piston with push rod respectively; This deformation part comprises link arm and is positioned at the first torque arm and second torque arm at link arm two ends, and this link arm is vertically arranged on inner sleeve, and this first torque arm and the second torque arm end lay respectively in the first slide rail and the second slide rail; This first elastic component is opened and is peaked in first piston and overflow ducts sidewall.
Preferably, described first slide rail is provided with the first locking slot and the second locking slot, and described second slide rail is provided with the second steering channel, and when button is positioned at the first state, wherein the first torque arm is positioned at the first locking slot.
Preferably, described second slide rail is also provided with the first steering channel.
Preferably, described opening/closing component comprises the second piston, the second elastic component and connecting rod; In described valve body, correspondence is provided with and is communicated with water outlet and holds the holding cavity of opening/closing component, and this holding cavity is also provided with the through hole being communicated to pressure-releasing chamber; Described connecting rod one end is fixed on through hole, and the other end is through the second piston; This second piston and holding cavity inwall are that air-tight movable coordinates; This second elastic component is opened and is peaked between holding cavity sidewall and the second piston.
Preferably, described temperature adjustment component comprises screw rod, adjusting sleeve, ratio shuttle, temperature-sensitive actuator and the 3rd elastic component; This screw rod one end is fixedly connected with knob, and the other end is threaded with adjusting sleeve; This temperature-sensitive actuator moved end is limited in adjusting sleeve; It is outer and coordinate with valve interior wall air-tight movable that this ratio shuttle fixed cover is located at temperature-sensitive toucher, is provided with some water ports in ratio shuttle; 3rd elastic component is sheathed on the temperature-sensitive actuator the other end.
Preferably, described temperature adjustment component also comprises cushion collar and damping spring; Described adjusting sleeve correspondence is provided with dashpot, and described temperature-sensitive actuator moved end is positioned at dashpot and is fixedly connected with this cushion collar, and this damping spring is opened and peaked between cushion collar and dashpot diapire.
From above-mentioned to description of the present utility model, compared with prior art, the utility model has following beneficial effect:
1, at a valve body upper set, push button opens and closes and knob style thermostatic control two kinds of functions the utility model, and main operating components is unique, and can operate in two degrees of freedom, and structure is simple, safe and reliable, very convenient;
2, the utility model controls opening/closing component action by the push rod linked with button, carries out pressure release or pressurize to pressure-releasing chamber, realizes opening or closing water outlet, and opening/closing component can adopt inclined-plane transmission or slide rail to coordinate the mode etc. of deformation part transmission to realize the conversion of state;
3, the utility model compact structure, rationally, can be arranged on nearly all valve body with cold and hot water intake, mixing water outlet, without the need to additionally arranging stop valve, easy for installation, cost-saving.
Accompanying drawing explanation
Fig. 1 is the utility model overall schematic;
Fig. 2 is the utility model sheath structure schematic diagram;
Fig. 3 is that the utility model is from lock set and push rod schematic diagram (embodiment one);
Fig. 4 is the partial sectional view (embodiment one) of the utility model from lock set;
Fig. 5 is the course of action schematic diagram (embodiment one) of the utility model from lock set;
Fig. 6 is that the utility model closes overflow ducts schematic diagram (embodiment one) from lock set;
Fig. 7 is that the utility model opens overflow ducts schematic diagram (embodiment one) from lock set;
Fig. 8 is the utility model ratchet structural representation (embodiment one);
Fig. 9 is the structural drawing (embodiment one) of sliding-groove in the utility model body;
Figure 10 is the sectional view (opening/closing component closedown water outlet) of the utility model embodiment one;
Figure 11 is the sectional view (opening/closing component unlatching water outlet) of the utility model embodiment one;
Figure 12 is the decomposing schematic representation of the utility model opening/closing component;
Figure 13 is the combination schematic diagram of the utility model button and knob;
Figure 14 is the assembling schematic diagram of the utility model temperature adjustment component and valve body;
Figure 15 is the utility model temperature adjustment component working state schematic representation (hot and cold water is all opened);
Figure 16 is the utility model temperature adjustment component working state schematic representation (cold water is closed);
Figure 17 is the utility model temperature adjustment component working state schematic representation (hot water is closed);
Figure 18 is the utility model application schematic diagram;
Figure 19 is the utility model embodiment two body schematic cross-section;
Figure 20 is the utility model embodiment two body front schematic view (button is positioned at the second state);
Figure 21 is the utility model embodiment two body reverse side schematic diagram (button is positioned at the second state);
Figure 22 is the utility model embodiment two body front schematic view (button is positioned at the first state);
Figure 23 is the utility model embodiment two body reverse side schematic diagram (button is positioned at the first state);
Figure 24 is the side view of the utility model embodiment two body;
Figure 25 is the sectional view of Figure 20;
Figure 26 is the evolution schematic diagram of the first torque arm and the second torque arm in the utility model embodiment two;
Wherein: 10, valve body; 11, cold water intake; 12, hot water intake; 13, water outlet; 14, body; 15, lid; 16, pressure-releasing chamber; 17, overflow ducts; 17a, sliding-groove; 17b, latch ramp; 17c, intermediate incline; 18, holding cavity; 19, overflow hole; 20, temperature adjustment component; 21, screw rod; 22, adjusting sleeve; 22a, dashpot; 23, ratio shuttle; 24, temperature-sensitive actuator; 25, the 3rd elastic component; 26, cushion collar; 27, damping spring; 28, valve gap; 30, knob; 40, button; 41, bind round; 50, push rod; 51, push rod cap; 60, from lock set; 61, the first elastic component; 62, first piston; 63, ratchet; 64, driving ratchet; 65, inclined-plane tooth; 66, guide pad; 67, deformation part; 67a, link arm; 67b, the first torque arm; 67c, the second torque arm; 68, inner sleeve; 69, outer sleeve; 69a, the first slide rail; 69a ', the first locking slot; 69a ", the second locking slot; 69b, the second slide rail; 69b ', the first steering channel; 69b ", the second steering channel; 70, opening/closing component; 71, the second piston; 72, the second elastic component; 73, connecting rod; 74, waterstop pad; 75, V-type circle; 80, faucet valve body; 81, cold intake tunnel; 82, hot intake tunnel; 83, exhalant canal.
Embodiment
Below by way of embodiment, the utility model will be further described.
Referring to figs. 1 through Figure 17, a kind of constant temperature contact button spool inserting member, comprise valve body 10, temperature adjustment component 20, knob 30, button 40, push rod 50, from lock set 60 and opening/closing component 70.This valve body 10 lateral direction penetrating, its sidewall is provided with cold water intake 11, hot water intake 12 and water outlet 13, and this valve body 10 one end is also fixed with body 14 and lid 15, and lid 15 is sheathed on bottom body 14 and is also removably fixed in valve body 10.Be provided with pressure-releasing chamber 16, overflow ducts 17 and holding cavity 18 in body 14, this pressure-releasing chamber 16 is communicated with overflow ducts 17 with holding cavity 18, and this holding cavity 18 is communicated with the water outlet 13 of valve body 10, and lid 15 is provided with the overflow hole 19 corresponding with overflow ducts 17.Overflow ducts 17 is positioned at pressure-releasing chamber 16 sidepiece, and should be positioned at overflow ducts 17 from lock set 60, this opening/closing component 70 is positioned at holding cavity 18.This temperature adjustment component 20 is arranged in valve body 10, this knob 30 connect drive temperature adjustment component 20 relatively valve body 10 slide with mixed hot water and cold water in proportion, knob 30 is positioned at valve body 10 the other end.This button 40 is sheathed on knob 30, and button 40 inwall and knob 30 periphery are equipped with tooth, and button 40 and knob 30 circumferential clocking of turbine are rotated.Button 40 limits the stroke of relative valve body 10 by hoop 41.This push rod 50 one end is inserted between button 40 and knob 30, and by push rod cap 51 contact with button 40 realize axis link, push rod cap plays the effect alleviating friction, the push rod the other end inserts in overflow ducts 17 and drives from lock set 60 action to open or close overflow ducts 17, lock button 40 simultaneously and be positioned at the first state or the second state, this first state and the second state are with to open and close overflow ducts 17 corresponding one by one.
The first elastic component 61, first piston 62, ratchet 63 and driving ratchet 64 is comprised from lock set 60.This driving ratchet 64 one end and push rod 50 are for be socketed, and the other end is with ratchet 63 for inclined-plane coordinates, and the end face that namely driving ratchet 64 contacts with ratchet 63 is equipped with inclined-plane tooth 65.This ratchet 63 is fixedly connected with first piston 62, and this first piston 62 and overflow ducts 17 inwall are that air-tight movable coordinates.This first elastic component 61 peaks between first piston 62 and lid 15, holds out against driving ratchet 64 all the time to order about ratchet 63.
Overflow ducts 17 inwall is provided with the sliding-groove 17a of some circle distribution near driving ratchet 64 one end, driving ratchet 64 and ratchet 63 correspondence are provided with guide pad 66, this guide pad 66 is with sliding-groove 17a for being slidably matched, and the guide pad 66 of driving ratchet 64 and the guide pad 66 of ratchet 63 are also for inclined-plane coordinates.Namely true dip direction identical latch ramp 17b and intermediate incline 17c is provided with near ratchet 63 one end between adjacent two sliding-groove 17a tops.
Opening/closing component 70 comprises the second piston 71, second elastic component 72 and connecting rod 73.Holding cavity 18 is also provided with the through hole being communicated to pressure-releasing chamber 16.Connecting rod 73 one end is fixed on through hole, and the other end is through the second piston 71.This second piston 71 is that air-tight movable coordinates by V-type circle 75 and waterstop pad 74 with holding cavity 18 inwall.This second elastic component 72 peaks between holding cavity 18 sidewall and the second piston 71.
Temperature adjustment component 20 comprises screw rod 21, adjusting sleeve 22, ratio shuttle 23, temperature-sensitive actuator 24, the 3rd elastic component 25, cushion collar 26 and damping spring 27.This screw rod 21 one end is fixedly connected with knob 30, and the other end is threaded with adjusting sleeve 22, and valve body 10 end winding support has valve gap 28, and this valve gap 28 to be sheathed on screw rod 21 and to be fixed with sealing with valve body 10 inwall and screw rod 21 periphery.In adjusting sleeve 22, correspondence is provided with dashpot 22a, and temperature-sensitive actuator 24 moved end is positioned at dashpot 22a and is fixedly connected with cushion collar 26, and this cushion collar 26 is limited in dashpot 22a, and this damping spring 27 peaks between cushion collar 26 and dashpot 22a diapire.It is outer and coordinate with the activity of valve body 10 inner wall sealing that this ratio shuttle 23 fixed cover is located at temperature-sensitive toucher, is provided with some water ports in ratio shuttle 23.Valve body 10 is provided with defining flange near body 14 one end inwall, and the 3rd elastic component 25 peaks between temperature-sensitive actuator 24 the other end and defining flange.This temperature-sensitive actuator 24 can adopt existing product, and it comprises temperature-sensitive bag and lever (not shown), and temperature-sensitive encrust is copper shell, and internal layer is high temperature paraffin, and by capsule and gland parcel, and gland is provided with the screw thread with ratio shuttle 23 secure fit.Lever coordinates with the gland being provided with through hole, and capsule contacts with lever, and this lever is temperature-sensitive actuator 24 moved end.Paraffin extrudes because of expand with heat and contract with cold (solid-liquid phase change) or unclamps capsule, and then orders about lever action, and synchronous drive ratio shuttle 23 moves horizontally, and realizes the temperature value that adjustment coolant-temperature gage reaches setting.
The course of action of composition graphs 5, the working principle that the utility model opens and closes water outlet is as follows:
Original state
Button 40 is positioned at the second state, driving ratchet 64 guide pad 66 is positioned at sliding-groove top, the guide pad 66 of ratchet 63 is positioned at latch ramp 17b, first elastic component 61 is extruded, first piston 62 closes overflow ducts 17, pressure-releasing chamber 16 pressurize, the second piston 71 closes water outlet 13, with reference to Fig. 6, Figure 10 under pressure-releasing chamber 16 and the effect of the second elastic component 72.
Open exiting water process
Pressing keys 40 makes it be in the first state, the guide pad of ratchet 63 leaves latch ramp 17b under the first elastic component 61 acts on, slide in sliding-groove 17a through intermediate incline 17c, and the guide pad 66 ordering about driving ratchet 64 is repositioned to sliding-groove 17a bottom, namely near driving ratchet 64 one end bottom sliding-groove 17a, first piston 62 opens overflow ducts 17, the water of pressure-releasing chamber 16 flows out pressure release through overflow ducts 17, the action under hydraulic pressure effect of second piston 71 opens water outlet 13, with reference to Fig. 7, Figure 11.
Close exiting water process
Pressing keys 40 makes it become the second state from the first state again, push rod 50 acts on, the guide pad 66 of driving ratchet 64 slides into sliding-groove 17a top and makes ratchet 63 leave sliding-groove 17a, the guide pad 66 of ratchet 63 acts on backspin at the first elastic component 61 and goes to latch ramp 17b, first elastic component 61 is extruded, first piston 62 closes overflow ducts 17, pressure-releasing chamber 16 pressurize, second piston 71 closes water outlet 13 under pressure-releasing chamber 16 and the effect of the second elastic component 72, is back to original state.
The utility model setting temperature process and opening-closing process are independent mutually, by rotating key 40, drive screw rod 21 synchronous rotary, the adjusting sleeve 22 of screw-thread fit produces and moves horizontally with it, order about the aperture that ratio shuttle 23 slip changes hot water intake 12 and cold water intake 11, with mixed hot water and cold water in proportion, realize setting temperature.
With reference to Figure 18, for the application schematic diagram of a kind of constant temperature contact button of the utility model spool inserting member, it is installed in faucet valve body 80, the cold water intake 11 of the utility model structure is communicated with the cold intake tunnel 81 of faucet valve body 80, hot water intake 12 is communicated with hot intake tunnel 82, water outlet 13 is all communicated with exhalant canal 83 with overflow hole 19, and button 40 is positioned at outside faucet valve body 80 so that operation.
Embodiment two
With reference to Figure 19-Figure 26, a kind of constant temperature contact button spool inserting member, its major character is identical with embodiment one, and difference is: comprise the first elastic component 61, deformation part 67, first piston 62 and inner sleeve 68 from lock set 60.Body 14 in this valve body 10 is provided with the outer sleeve 69 being communicated to overflow ducts 17, and these outer sleeve 69 both sides are respectively equipped with the first slide rail 69a and the second slide rail 69b.This inner sleeve 68 is arranged in outer sleeve 69, and its two ends are fixedly connected with first piston 62 with push rod 50 respectively, and this first piston 62 and overflow ducts 17 inwall are that air-tight movable coordinates.This deformation part 67 comprises link arm 67a and is positioned at the first torque arm 67b and the second torque arm 67c at link arm 67a two ends, this link arm 67a is vertically arranged on inner sleeve 68, and the first torque arm 67b and the second torque arm 67c end lay respectively in the first slide rail 69a and the second slide rail 69b.This first elastic component 61 peaks between first piston 62 and body 14.
With reference to Figure 20 to Figure 23, the first slide rail 69a of this embodiment is provided with the first locking slot 69a ' and the second locking slot 69a ", and its effect makes button 40 be positioned at the first state or the second state, locked by push rod 50.Second slide rail 69b is provided with the first steering channel 69b ', the second steering channel 69b ", and its effect is respectively in push rod 50 moving process, is moved towards the first locking slot 69a ' or the second locking slot 69a " by the second torque arm 67c aid in guide first torque arm 67b.
With reference to the first torque arm 67b of deformation part 67 and the location state diagram of the second torque arm 67c of Figure 26, wherein solid line represents the first slide rail 69a and the first torque arm 67b, represented by dotted arrows second slide rail 69b and the second torque arm 67c.The working principle brief description of this embodiment is as follows:
Original state
With reference to Figure 20, Figure 21, button 40 is positioned at the second state, and wherein the first torque arm 67b is positioned at the second locking slot 69a ", and the second torque arm 67c is positioned at corresponding position.First piston 62 closes overflow ducts 17, pressure-releasing chamber 16 pressurize, and the second piston 71 closes water outlet 13 under pressure-releasing chamber 16 and the effect of the second elastic component 72.
Open exiting water process
Pressing keys 40 makes it be in the first state, under push rod 50 acts on, this first torque arm 67b moves drive second torque arm 67c along the first slide rail 69a and slides into the first steering channel 69b ', under the first elastic component 61 acts on, first torque arm 67b slides in the first locking slot 69a ', second torque arm 67c follows and is in corresponding position, under the first elastic component 61 acts on, first piston 62 opens overflow ducts 17, the water of pressure-releasing chamber 16 flows out pressure release through overflow ducts 17, the action under hydraulic pressure effect of second piston 71 opens water outlet 13, with reference to Figure 22, Figure 23.
Close exiting water process
Pressing keys 40 makes it become the second state from the first state again, under push rod 50 acts on, first torque arm 67b moves along the first slide rail 69, the second torque arm 67c is driven to slide into the second steering channel 69b ", under the first elastic component 61 acts on, first torque arm 67b slides in the second locking slot 69a ", and the second torque arm 67c is positioned at corresponding position.First piston 62 closes overflow ducts 17, pressure-releasing chamber 16 pressurize, and the second piston 71 closes water outlet 13 under pressure-releasing chamber 16 and the effect of the second elastic component 72.
Above are only embodiment of the present utility model, but design concept of the present utility model is not limited thereto, all changes utilizing this design the utility model to be carried out to unsubstantiality, all should belong to the behavior of invading the utility model protection domain.

Claims (10)

1. a constant temperature contact button spool inserting member, comprise valve body, temperature adjustment component and knob, this valve body is provided with cold water intake, hot water intake and water outlet, and this temperature adjustment component is positioned at valve body, and this knob connects and drives temperature adjustment component action with mixed hot water and cold water in proportion; It is characterized in that: also comprise button, push rod, from lock set and opening/closing component; Also be provided with pressure-releasing chamber and overflow ducts in this valve body, this pressure-releasing chamber is communicated with overflow ducts with valve body water outlet, and should be positioned at overflow ducts from lock set, this opening/closing component is positioned at water outlet; This button to be sheathed on knob and to rotate with knob circumferential clocking of turbine; This push rod one end and key contact, the other end drives from lock set action to open or close overflow ducts, and locks button and be positioned at the first state or the second state.
2. a kind of constant temperature contact button spool inserting member as claimed in claim 1, is characterized in that: describedly comprise the first elastic component, first piston, ratchet and driving ratchet from lock set; This driving ratchet one end and push rod are socketed, and the other end and ratchet are that inclined-plane coordinates; This ratchet is fixedly connected with first piston; This first elastic component is opened and is peaked in first piston and overflow ducts diapire, holds out against driving ratchet all the time to order about ratchet.
3. a kind of constant temperature contact button spool inserting member as claimed in claim 2, it is characterized in that: described overflow ducts inwall is provided with some sliding-grooves, described driving ratchet and ratchet correspondence are provided with guide pad, this guide pad and sliding-groove, for being slidably matched, are provided with latch ramp between adjacent two sliding-groove tops.
4. a kind of constant temperature contact button spool inserting member as claimed in claim 3, is characterized in that: be also provided with intermediate incline between described two sliding-groove tops.
5. a kind of constant temperature contact button spool inserting member as claimed in claim 1, is characterized in that: describedly comprise the first elastic component, deformation part, first piston and inner sleeve from lock set; Valve body described in this is provided with the outer sleeve being communicated to overflow ducts, and these outer sleeve both sides are respectively equipped with the first slide rail and the second slide rail; This inner sleeve is arranged in outer sleeve, and its two ends are fixedly connected with first piston with push rod respectively; This deformation part comprises link arm and is positioned at the first torque arm and second torque arm at link arm two ends, and this link arm is vertically arranged on inner sleeve, and this first torque arm and the second torque arm end lay respectively in the first slide rail and the second slide rail; This first elastic component is opened and is peaked in first piston and overflow ducts sidewall.
6. a kind of constant temperature contact button spool inserting member as claimed in claim 5, it is characterized in that: described first slide rail is provided with the first locking slot and the second locking slot, described second slide rail is provided with the second steering channel.
7. a kind of constant temperature contact button spool inserting member as claimed in claim 6, is characterized in that: described second slide rail is also provided with the first steering channel.
8. a kind of constant temperature contact button spool inserting member as claimed in claim 1, is characterized in that: described opening/closing component comprises the second piston, the second elastic component and connecting rod; In described valve body, correspondence is provided with and is communicated with water outlet and holds the holding cavity of opening/closing component, and this holding cavity is also provided with the through hole being communicated to pressure-releasing chamber; Described connecting rod one end is fixed on through hole, and the other end is through the second piston; This second piston and holding cavity inwall are that air-tight movable coordinates; This second elastic component is opened and is peaked between holding cavity sidewall and the second piston.
9. a kind of constant temperature contact button spool inserting member as claimed in claim 1, is characterized in that: described temperature adjustment component comprises screw rod, adjusting sleeve, ratio shuttle, temperature-sensitive actuator and the 3rd elastic component; This screw rod one end is fixedly connected with knob, and the other end is threaded with adjusting sleeve; This temperature-sensitive actuator moved end is limited in adjusting sleeve; It is outer and coordinate with valve interior wall air-tight movable that this ratio shuttle fixed cover is located at temperature-sensitive toucher, is provided with some water ports in ratio shuttle; 3rd elastic component is sheathed on the temperature-sensitive actuator the other end.
10. a kind of constant temperature contact button spool inserting member as claimed in claim 9, is characterized in that: described temperature adjustment component also comprises cushion collar and damping spring; Described adjusting sleeve correspondence is provided with dashpot, and described temperature-sensitive actuator moved end is positioned at dashpot and is fixedly connected with this cushion collar, and this damping spring is opened and peaked between cushion collar and dashpot diapire.
CN201520188250.2U 2015-03-31 2015-03-31 A kind of constant temperature contact button spool inserting member Withdrawn - After Issue CN204610964U (en)

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Application Number Priority Date Filing Date Title
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CN204610964U true CN204610964U (en) 2015-09-02

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105465417A (en) * 2015-03-31 2016-04-06 福建西河卫浴科技有限公司 Constant-temperature touch-button valve element insertion piece

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105465417A (en) * 2015-03-31 2016-04-06 福建西河卫浴科技有限公司 Constant-temperature touch-button valve element insertion piece
CN105465417B (en) * 2015-03-31 2017-10-17 福建西河卫浴科技有限公司 Constant temperature contact button valve element insert

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