DE2326676B2 - Storage stone for heat storage stoves - Google Patents
Storage stone for heat storage stovesInfo
- Publication number
- DE2326676B2 DE2326676B2 DE19732326676 DE2326676A DE2326676B2 DE 2326676 B2 DE2326676 B2 DE 2326676B2 DE 19732326676 DE19732326676 DE 19732326676 DE 2326676 A DE2326676 A DE 2326676A DE 2326676 B2 DE2326676 B2 DE 2326676B2
- Authority
- DE
- Germany
- Prior art keywords
- storage
- stone
- heat
- heating elements
- magnesite
- Prior art date
- Legal status (The legal status 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 status listed.)
- Ceased
Links
Classifications
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24C—DOMESTIC STOVES OR RANGES ; DETAILS OF DOMESTIC STOVES OR RANGES, OF GENERAL APPLICATION
- F24C15/00—Details
- F24C15/34—Elements and arrangements for heat storage or insulation
-
- C—CHEMISTRY; METALLURGY
- C09—DYES; PAINTS; POLISHES; NATURAL RESINS; ADHESIVES; COMPOSITIONS NOT OTHERWISE PROVIDED FOR; APPLICATIONS OF MATERIALS NOT OTHERWISE PROVIDED FOR
- C09K—MATERIALS FOR MISCELLANEOUS APPLICATIONS, NOT PROVIDED FOR ELSEWHERE
- C09K5/00—Heat-transfer, heat-exchange or heat-storage materials, e.g. refrigerants; Materials for the production of heat or cold by chemical reactions other than by combustion
- C09K5/02—Materials undergoing a change of physical state when used
- C09K5/06—Materials undergoing a change of physical state when used the change of state being from liquid to solid or vice versa
- C09K5/063—Materials absorbing or liberating heat during crystallisation; Heat storage materials
Landscapes
- Chemical & Material Sciences (AREA)
- Engineering & Computer Science (AREA)
- Combustion & Propulsion (AREA)
- Chemical Kinetics & Catalysis (AREA)
- General Engineering & Computer Science (AREA)
- Physics & Mathematics (AREA)
- Mechanical Engineering (AREA)
- Thermal Sciences (AREA)
- Materials Engineering (AREA)
- Organic Chemistry (AREA)
- Central Heating Systems (AREA)
- Compositions Of Oxide Ceramics (AREA)
- Cookers (AREA)
- Resistance Heating (AREA)
Description
flächen versehen wurde und an den Punkten 1 bis 6 unter den in F i g. 2 gezeigten Einbaubedingungen innerhalb eines nach außen isolierten Wärmespeicherofengehäuses gemessen wurdt.surfaces was provided and at points 1 to 6 under the in F i g. The installation conditions shown in FIG. 2 within an externally insulated heat storage furnace housing were measured.
Aus den F ig.l und 2 ist zu entnehmen, daß der Magnesitspeicherstein mit nutenförmigen Ausnehmungen 7 auf seiner Oberseite versehen ist, in die jewefis in der F i g. 1 nicht gezeigte rohrförmige elektrische Heizelemente 8 beim Zusammenbau eingelegt werden. Durch das Aufeinanderschichten mehrerer Speichersteine entsteht dann der aus F i g. 2 ersiehtliehe innere Speicherkern, der von Luftführungskanälen 9 umgeben ist, die durch die seitlichen Aussparungen an den einzelnen Speichersteinen gebildet sind. Der so zusammengesetzte Speicherkern wird dann von einer äußeren Isolierschicht 10 umgeben, die in üblicher Weise aus Stein mit einer zusätzlichen Glasfasserisolierung zusammengesetzt sein kann.From the F ig.l and 2 it can be seen that the magnesite storage stone with groove-shaped recesses 7 is provided on its upper side, in the respective in FIG. 1 tubular electrical, not shown Heating elements 8 are inserted during assembly. By stacking several Storage stones are then created from FIG. 2 can be seen inner storage core, which is surrounded by air ducts 9 through the side recesses are formed on the individual storage stones. The memory core assembled in this way becomes then surrounded by an outer insulating layer 10, which is usually made of stone with an additional glass barrel insulation can be composed.
Bei der Messung wurde ein Magnesitspeicherstein folgender Zusammensetzung verwendet:A magnesite storage stone of the following composition was used for the measurement:
MgO 92 %MgO 92%
Al O3 1 %Al O 3 1%
Fe2^3 I/o F e 2 ^ 3 I / o
CaO 3%CaO 3%
p np n
I2 I 2
Dieser Magnesitstein hatte ein Raumgewicht von 3,0 kg/cm3.This magnesite brick had a density of 3.0 kg / cm 3 .
Dieser in seinem Aussehen in etwa hellen Ziegelsteinen entsprechende Speicherstein wurde im zusammengebauten Zustand gemäß F i g. 2 unter normalen Bedingungen mit Nachtstrom aufgeladen, und zwar über die volle zur Verfügung stehende Aufladezeit von etwa 8 Stunden. Der Speicher besitzt dann eine aufgenommene Wärmemenge von etwa 38 500 kcal, und die Temperaturverteilung auf die Meßpunkte ist folgende:This storage stone, corresponding in its appearance to roughly light bricks, was assembled in the assembled building State according to FIG. 2 charged with night power under normal conditions, and over the full available charging time of around 8 hours. The memory then has an amount of heat absorbed of about 38,500 kcal, and the temperature distribution on the measuring points is the following:
810°C 7300C 7100C 7000O 68O0C 685°C810 ° C 730 0 C 710 0 C 700 0 O 68O 0 C 685 ° C
Derselbe Versuch wurde mit den gleichen Heizelementen und der gleichen übrigen Zusammensetzung des Speicherofens mit Speichersteinen gleicher Analyse (Magnesit) durchgeführt, die aber mit einem schwarzen Einbrennlack an allen Außenflächen versehen waren, wie er üblicherweise zum Einfärben von Herdplatten verwendet wird. Nach der gleichen Aufladezeit von 8 Stunden und den gleichen Wärmeinhalt von etwa 38 500 kcal war die Temperaturverteilung folgende:The same experiment was carried out with the same heating elements and the same remaining composition of the storage heater with storage stones of the same analysis (magnesite), but with a black Baked enamel was provided on all outer surfaces, as is customary for coloring hotplates is used. After the same charging time of 8 hours and the same heat content of about 38 500 kcal, the temperature distribution was as follows:
MeßpunkteMeasuring points
12 3 4 5 612 3 4 5 6
-/6$°q 720°C 705°C 6950C 68O0C 6900C - / 6 $ ° q 720 ° C 705 ° C 695 0 C 68O 0 C 690 0 C
Diese Temperaturverteilung zeigt, daß anscheinend auf Grund der besseren Wärmeabfuhr vom Heizelement eine gleichmäßigere Verteilung und ein Ansteigen der Temperatur im Inneren des Speichersteines eingetreten ist, wenn eine dunkle Einfärbung der Außenflächen und mindestens der Flächen im Bereich der Heizelemente vorgesehen wird. Entscheidend ist vor allem das Aosinken der Temperatur am Heizelement um rund 450C gegenüber der Versuchsausführung ohne Einfärbung. Diese geringere Temperatur am Heizelement ermöglicht es, den gesamten Speicherkern um rund 40 bis 45°C mehr aufzuheizen, so daß der Gesamtwärmeinhalt des Speichers entsprechend höher werden kann.This temperature distribution shows that apparently due to the better heat dissipation from the heating element, a more uniform distribution and a rise in the temperature inside the storage stone has occurred if a dark coloring of the outer surfaces and at least the surfaces in the area of the heating elements is provided. The decisive factor is especially the Aosinken the temperature at the heating element by about 45 0 C over the test version without coloring. This lower temperature on the heating element makes it possible to heat the entire storage core by around 40 to 45 ° C more, so that the total heat content of the storage can be correspondingly higher.
Durch die hinfärbung wird somit in überraschender Weise eine erhebliche Steigerung der Wärmekapazität von Speicherofen erreicht, ohne daß aufwendige Mittel oder neue und aufwendige Speichermaterialien λ orgesehen sein müssen.The coloration thus surprisingly results in a considerable increase in the heat capacity by storage heater achieved without the need for expensive resources or new and expensive storage materials λ must be considered.
Hierzu 1 Blatt Zeichnungen1 sheet of drawings
Claims (4)
Grenzen gesetzt, weil es infolge des bei den bekannten 60 In der Zeichnung ist die Anordnung der Temperatur-Speichersteinen verbleibenden Wärmegefälles zwischen meßstellen an einem Speicherstein angegeben, wobei den Heizelementen und dem angrenzenden Speicher- die Messung einmal mit einem ungefärbten und einmal stein nicht möglich ist, mehr Wärme von den Heiz- mit einem mit Einbrennlack gefärbten Magnesitelementen weg in den Stein hereinzubringen. speichsrstein durchgeführt wurde.The invention relates to a storage stone for this measure, through the dismantling of the previous heat storage furnace, which is provided with recesses for receiving electrical heating elements as inevitable in such stones, heat gradient either a lowering of the temperature and the measures to improve the temperature on the heating element or a corresponding heat transfer from the heating elements to the storage increase in the thermal capacity of the storage stone are initially taken. It is known to be rich for warmth. This embodiment also brings storage stoves, especially for electric night-time 35 in an extremely simple way, the surprising effect of electricity storage stoves, ceramic storage stones to use the heat output from the heating elements material, the content of MgO in the storage stone mass apparently much better a decisive Role for heat storage is going on, and it's got measurement capability. For example, so-called shows that with the same electrical heating-up brick with 50% MgO and forsterite bricks with 40 power, the temperatures on the heating element got about 50% MgO, but the heat capacity could be kept 45 0 C lower than with magnesite bricks with 90% or blast furnace bricks, in which such a coloring is not exceeded by pre-magnesite bricks with 95% MgO. was dealt. It has proven to be extremely simple and blast furnace ragnesite has proven to be advantageous for use for heating if the storage stone from storage furnace is too expensive, so that today there is generally 45 magnesite and the coloring as a color layer is only magnesite stones with about 90% MgO as storage is upset. which are used on all outer surfaces of the Speisteine for night storage heaters. chersteins is applied. These stones have the advantage of a high storage, a black, temperature-resistant and tradable color layer and can be found in the desired manner as usual stoving varnish as particularly advantageous with the recesses for the production of the through holes, such as those used for coloring hotplates or. Like. Ventilation openings and with the recesses for which is used. Equip the initially described advantageous absorption of the heating elements. Adherent results were achieved with a magnesite. The endeavor is now to achieve the heat content storage stone with an MgO content of 92%, a charged storage stove as high as possible. It is conceivable that similarly good results will also be obtained. It has been shown, however, that the 55 storage heating elements, which are already dark by default, are the weakest point, because material with similar physical properties is usually not hotter than round like magnesite for material reasons separately a -800 0 C can be. The accumulator charge needs to be colored. Due to the maximum temperature of the heating elements, such materials are not yet known today.
Limits are set because it is due to the heat gradient remaining in the known 60 In the drawing, the arrangement of the temperature storage stones is indicated between measuring points on a storage stone, with the heating elements and the adjacent storage unit measuring once with an uncolored stone and once not possible to bring more heat away from the heating elements into the stone with a magnesite element colored with stoving varnish. storage stone has been carried out.
Priority Applications (6)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
AT358474A AT329161B (en) | 1973-05-25 | 1973-04-30 | STORAGE STONE FOR HOT STORAGE STOVE |
DE19732326676 DE2326676B2 (en) | 1973-05-25 | 1973-05-25 | Storage stone for heat storage stoves |
CH591474A CH567701A5 (en) | 1973-05-25 | 1974-04-30 | |
YU130174A YU130174A (en) | 1973-05-25 | 1974-05-10 | Accumulation firebrick for a heat-accumulating stove |
JP5924174A JPS5020336A (en) | 1973-05-25 | 1974-05-25 | |
FR7418206A FR2230945A1 (en) | 1973-05-25 | 1974-05-27 | Magnesite bricks for night storage heaters - black stoving finish on bricks increases total heat capacity |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
DE19732326676 DE2326676B2 (en) | 1973-05-25 | 1973-05-25 | Storage stone for heat storage stoves |
Publications (2)
Publication Number | Publication Date |
---|---|
DE2326676A1 DE2326676A1 (en) | 1974-12-12 |
DE2326676B2 true DE2326676B2 (en) | 1975-05-22 |
Family
ID=5882125
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
DE19732326676 Ceased DE2326676B2 (en) | 1973-05-25 | 1973-05-25 | Storage stone for heat storage stoves |
Country Status (6)
Country | Link |
---|---|
JP (1) | JPS5020336A (en) |
AT (1) | AT329161B (en) |
CH (1) | CH567701A5 (en) |
DE (1) | DE2326676B2 (en) |
FR (1) | FR2230945A1 (en) |
YU (1) | YU130174A (en) |
Families Citing this family (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US4296733A (en) * | 1976-08-05 | 1981-10-27 | Saunders Norman B | Heating, lighting and ventilation systems |
-
1973
- 1973-04-30 AT AT358474A patent/AT329161B/en not_active IP Right Cessation
- 1973-05-25 DE DE19732326676 patent/DE2326676B2/en not_active Ceased
-
1974
- 1974-04-30 CH CH591474A patent/CH567701A5/xx not_active IP Right Cessation
- 1974-05-10 YU YU130174A patent/YU130174A/en unknown
- 1974-05-25 JP JP5924174A patent/JPS5020336A/ja active Pending
- 1974-05-27 FR FR7418206A patent/FR2230945A1/en active Granted
Also Published As
Publication number | Publication date |
---|---|
JPS5020336A (en) | 1975-03-04 |
FR2230945B3 (en) | 1977-03-18 |
FR2230945A1 (en) | 1974-12-20 |
CH567701A5 (en) | 1975-10-15 |
AT329161B (en) | 1976-04-26 |
ATA358474A (en) | 1975-07-15 |
DE2326676A1 (en) | 1974-12-12 |
YU130174A (en) | 1982-02-28 |
Similar Documents
Publication | Publication Date | Title |
---|---|---|
DE3407815C2 (en) | Underburner furnace | |
DE2326676B2 (en) | Storage stone for heat storage stoves | |
DE3786805T2 (en) | Heaters. | |
DE467799C (en) | Rod insulator for contact lines in electrical railway systems | |
DE7834949U1 (en) | GAS HEATED LAMP | |
DE7319752U (en) | STORAGE STONE FOR HEAT STOVE | |
DE1097109B (en) | Rohrheizkoerper as a flat heater with a cladding made of ceramic building material and arranged in this vertical air ducts | |
DE536300C (en) | Method and device for operating electric induction ovens | |
DE429386C (en) | Electric oven with resistance heating | |
DE540969C (en) | Ironless induction furnace with gas-tight boiler room | |
EP0897017B1 (en) | Tower furnace for heat treatment of metal strips | |
DE29512195U1 (en) | oven | |
DE2218865A1 (en) | RIDER FOR HEAT CARRIERS IN INDUSTRIAL FURNACES | |
AT137539B (en) | Electric pull-through furnace for the continuous annealing of metal strips, wires, sheets or small parts. | |
DE403548C (en) | Electric furnace intended for welding, hardening, burning or other heating purposes | |
DE2155838A1 (en) | ELECTRIC CEILING HEATING ON TUNNEL STOVES | |
DE659243C (en) | Oven casing | |
DE372590C (en) | Electrically heated cooking vessel | |
DE670183C (en) | Process for the production of electrical resistors with a conductor embedded in a ceramic material | |
AT238409B (en) | Heater | |
DE19509132A1 (en) | Glass compsn. used as sealing material for mineral-insulated electrical leads | |
DE29623837U1 (en) | Electric sauna heater | |
DE363828C (en) | Flexible, air-insulated, electrical conductor | |
DE969943C (en) | Process for increasing the service life of electrical resistance heating chambers, especially resistance ovens | |
DE9405748U1 (en) | Flame deflection plate for installation in a boiler |
Legal Events
Date | Code | Title | Description |
---|---|---|---|
8235 | Patent refused |