EXPANSION MATERIAL ELEMENT FOR A THERMOSTATIC MIXING VALVE
20240295887 ยท 2024-09-05
Assignee
Inventors
Cpc classification
F03G7/06113
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
G05D23/022
PHYSICS
F03G7/0616
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
An expansion material element (1) for a thermostatic mixing valve (2), having an expansion material (3) comprising at least one additive (4) from the group below: synthetic graphite, highly conductive graphite having a thermal conductivity of at least 350W/(m?K), boronnitride;
a thermostatic mixing valve (2) having such an expansion material element (1); and a sanitary faucet (8) having such a thermostatic mixing valve (2).
Claims
1. An expansion material element (1) for a thermostatic valve or a thermostatic mixing valve (2), having an expansion material (3) comprising at least one additive (4) from the group below: synthetic graphite, highly conductive graphite having a thermal conductivity of at least 350 W/(m?K), boron nitride.
2. The expansion material element (1) according to claim 1, wherein a mass fraction of the at least one additive (4) in the expansion material (3) is 50% to 80%.
3. The expansion material element (1) according to claim 1, wherein the at least one additive (4) has a mean particle size D50 of 0.4 ?m to 550 ?m 0.4 ?m to 550 ?m.
4. The expansion material element (1) according to claim 1, wherein the expansion material (3) is disposed in a body (5) of the expansion material element (1).
5. The expansion material element (1) according to claim 1, wherein the expansion material (3) is used to drive a working piston (6) of the expansion material element (1).
6. The expansion material element (1) according to claim 5, wherein a diaphragm (7) is disposed between the expansion material (3) and the working piston (6).
7. A thermostatic mixing valve (2) for a sanitary faucet (8), comprising at least: a body element (9) having a mixing chamber (10) for mixing cold water and warm water to form mixed water; a control element (11) for adjusting a mixing ratio between the cold water and warm water in the mixing chamber (10); and the expansion material element (1) according to claim 1, which can be used to actuate the control element (11).
8. A sanitary faucet (8), at least comprising a faucet body (12) and the thermostatic mixing valve (2) according to claim 7.
Description
[0029] The invention and the technical environment are explained in more detail below with reference to the figures. It should be noted that the figures show a particularly preferred embodiment variant of the invention, but the invention is not limited thereto. The same reference numerals are used for the same components in the figures. In an exemplary and schematic manner
[0030]
[0031]
[0032]
[0033]
[0034]
[0035]
[0036] The mixed-water temperature of the mixed water is determined by a mixing ratio between the warm water and the cold water and a warm-water temperature of the warm water and a cold-water temperature of the cold water. The thermostatic mixing valve 2 has an operating element 24 for adjusting the mixed-water temperature. The operating element 24 comprises an actuating handle 25, which is connected in a non-rotatable manner to a control nut 26 of an overload unit 27. The actuating handle 25 including the control nut 26 can thus be rotated about an axis of rotation 28, which in this case is identical to the longitudinal axis 18. When the actuating handle 25 is rotated, a spring sleeve 29 is moved in an axial direction 30, i.e. in parallel to the longitudinal axis 18. The motion of the spring sleeve 29 in the axial direction 30 is transmitted to an expansion material element 1, which in turn moves a control element 11 in the way of a control gate valve in the axial direction 30. Depending on the position of the control element 11 in the axial direction 30, the control element 11 can alternately open and close a warm-water control gap (not visible here) and a cold-water control gap (not visible here). Depending on the position of the control gate valve 11, a matching amount of warm water and cold water is routed to the thermostatic mixing valve 2 through the warm-water control gap and the cold-water control gap, from which the mixed water is mixed for a corresponding mixed-water temperature. Owing to the expansion material 3 of the expansion material element 1 shown in
[0037] This invention renders achieving a particularly high reaction rate of an expansion material element possible.
LIST OF REFERENCE NUMERALS
[0038] 1 expansion material element [0039] 2 thermostatic mixing valve [0040] 3 expansion material [0041] 4 additive [0042] body [0043] 6 working piston [0044] 7 diaphragm [0045] 8 sanitary faucet [0046] 9 body element [0047] mixing chamber [0048] 11 control element [0049] 12 faucet body [0050] 13 guide opening [0051] 14 closure element [0052] valve [0053] 16 cold-water intake [0054] 17 warm-water intake [0055] 18 longitudinal axis [0056] 19 cartridge head piece [0057] warm-water inlet [0058] 21 cold-water inlet [0059] 22 mixed-water outlet [0060] 23 valve body [0061] 24 operating element [0062] actuating handle [0063] 26 control nut [0064] 27 overload unit [0065] 28 axis of rotation [0066] 29 spring sleeve [0067] 30 axial direction