CN201452902U - Heating cup component and soymilk maker - Google Patents

Heating cup component and soymilk maker Download PDF

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Publication number
CN201452902U
CN201452902U CN2009201330588U CN200920133058U CN201452902U CN 201452902 U CN201452902 U CN 201452902U CN 2009201330588 U CN2009201330588 U CN 2009201330588U CN 200920133058 U CN200920133058 U CN 200920133058U CN 201452902 U CN201452902 U CN 201452902U
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heating cup
heating
cup
wall
jar
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CN2009201330588U
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Chinese (zh)
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蔡龙威
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Abstract

The utility model discloses a heating cup component and a soymilk maker. An inner lid and a heating cup are included, wherein the inner lid is arranged inside the heating cup, a heating cavity is formed between the inner lid and the heating cup, the inner lid is provided with a condensation cavity for condensing foam formed in the heating process and a reflow cavity for returning the condensed liquid to the heating cavity, the condensation cavity and the reflow cavity are communicated, the condensation cavity is communicated with the ambient atmosphere, the reflow cavity is positioned below the condensation cavity, and the inner lid is provided with through holes for communicating the heating cavity and the condensation cavity. The foam generated from the heated soymilk can reflow into the heating cavity after being condensed to avoid excessive foam from generating in the heating cavity, thereby realizing continuous heating without spilling out the foam, improving the heating efficiency, and further effectively improving the soymilk making efficiency.

Description

Heating cup assembly and soy bean milk making machine
Technical field
The utility model is about a kind of soy bean milk making machine.
Background technology
Soya-bean milk is nutritious, can match in excellence or beauty with milk, but also contain the soap toxin and the antitrypsin that can make the philtrum poison be difficult to digest in the soya-bean milk.When these harmful components reach more than 90 ℃ in temperature, just can decompose become harmless.Yet the soya-bean milk boiling point is lower, about 80 ℃, at this moment, the soap toxin becomes foam come-up because of expanded by heating, forms the vacation phenomenon of boiling, and can produce on a large amount of foams and emit, overflow container, the soy bean milk making machine on the market generally adopts sensor to survey in order to address this problem now, when foam has arrived certain height, just stop to heat for a moment or reduce power and heat, when treating that foam reduces or reduces, heating again, so circulation is wanted about more than 30 minutes, consuming time longer, prolonged Production Time of soya-bean milk.
The utility model content
Technical problem to be solved in the utility model is, overcomes the deficiencies in the prior art, and a kind of soy bean milk making machine and heating cup assembly that can effectively reduce heat time heating time is provided.
The technical scheme that its technical problem that solves the utility model adopts is: a kind of heating cup assembly, comprise inner cap and Heating Cup, described inner cap is located at the inside of described Heating Cup, form heating chamber between described inner cap and the described Heating Cup, described inner cap has the condensation chamber that is used for the formed foam of condensation heating process that is connected and is used for being back to for condensed liquid the back cavity of described heating chamber, described condensation chamber communicates with ambient air, described back cavity is positioned at the below of described condensation chamber, described inner cap has through hole, and described through hole is communicated with described heating chamber and condensation chamber.
Described inner cap has wall, connecting wall and the backflow wall of cooperation, described cooperation wall cooperates with described Heating Cup, the top of described connecting wall is connected described cooperation wall and backflow wall respectively with the bottom, described condensation chamber comprises first condensation chamber that the internal face by described cooperation wall crosses and second condensation chamber that is communicated with first condensation chamber that is crossed by the inner surface of described connecting wall, described back cavity is crossed by the inner surface of described backflow wall, and described through hole runs through described connecting wall.The internal diameter of described second condensation chamber from top to bottom dwindles gradually.
The inner surface of described inner cap is provided with the retaining wall that is used to limit the foam direction of motion.Described retaining wall comprises first retaining wall of being located at described cooperation wall inner surface and second retaining wall of being located at described connecting wall inner surface, and described through hole is between described first retaining wall and second retaining wall.The described first retaining wall horizontal-extending, described second retaining wall extends straight up.Be provided with sealing ring between the outer surface of described cooperation wall and the inner surface of described Heating Cup.
Described inner cap comprises connecting wall, and the part of described condensation chamber between described connecting wall inner surface from top to bottom dwindled gradually, and described back cavity is positioned at the below of described connecting wall.The inner surface of described connecting wall is the conical surface.Described through hole runs through described connecting wall.The inner surface of described inner cap is provided with the retaining wall that is used to limit the foam direction of motion.
Described heating cup assembly also comprises enclosing cover, and described enclosing cover seals the open top of described condensation chamber, and described enclosing cover has steam vent, and described condensation chamber is communicated with ambient air by described steam vent.The outside of described Heating Cup is provided with heater, and described heater directly heats the cup end of described Heating Cup.
A kind of soy bean milk making machine, comprise main body, filter cup, jar, stirring blade, motor and heater, described jar and motor all are located on the described main body, described filter cup is positioned at described jar inside, described motor has power output shaft, described stirring blade is fixed on the described power output shaft and is positioned at the inside of described filter cup, described power output shaft and described filter cup are fixed, this soy bean milk making machine also comprises heating cup assembly, described jar and Heating Cup are communicated with by mozzle, and described heater heats the material to be heated in the described Heating Cup.
Described heater is located on the described main body and is positioned at the outside of described Heating Cup, and described heater heats Heating Cup.On the described main body temperature sensor is housed, described temperature sensor directly contacts with the outer surface of described Heating Cup.The bottom of described jar has grout outlet, and described mozzle connects described grout outlet and Heating Cup, and the switching of described grout outlet is controlled by gauge tap, described gauge tap has opening and closure state, when opening, grout outlet is opened, and described jar and Heating Cup are communicated with; When closure state, the grout outlet closure, described jar and Heating Cup disconnect.Described gauge tap comprises electromagnet, push rod, sealing ring and snap close, described electromagnet drives push rod and moves up and down, and described sealing ring and snap close are separately fixed at the middle part and the top of push rod, when opening, described sealing ring breaks away from described grout outlet, and described snap close breaks away from described filter cup; When closure state, described sealing ring is blocked described grout outlet, and described snap close fastens described filter cup.
A kind of soy bean milk making machine, comprise main body, filter cup, jar, stirring blade, motor and heater, described main body has first installation room and second installation room, described jar is located in described first installation room, described motor is installed on the described main body, described filter cup is positioned at described jar inside, described motor has power output shaft, described stirring blade is fixed on the described power output shaft and is positioned at the inside of described filter cup, described power output shaft and described filter cup are fixed, this soy bean milk making machine also comprises heating cup assembly, described heating cup assembly is located in described second installation room, described jar and Heating Cup are communicated with by mozzle, and described heater heats the material to be heated in the described Heating Cup.
Described heater is located at the outside of described Heating Cup, and described heater directly heated the cup end of described Heating Cup, on the described main body temperature sensor was housed, and described temperature sensor directly contacts with the outer surface of described Heating Cup.
The beneficial effects of the utility model are, juice is heated when producing foam and being full of heating chamber, foam continues to increase and enters condensation behind the condensation chamber from through hole, condensation forms liquid and is back in the heating chamber by back cavity, make and be difficult for producing a large amount of foams in the heating chamber, thereby can heat continuously and can not overflow foam, improve the efficient of heating, and then effectively improve the efficient that soya-bean milk is made.
Description of drawings
Fig. 1 is the stereogram of present embodiment soy bean milk making machine;
Fig. 2 is the three-dimensional exploded view of present embodiment soy bean milk making machine;
Fig. 3 and Fig. 4 are respectively the front view and the right views of present embodiment soy bean milk making machine;
Fig. 5 is the cutaway view of B-B direction among Fig. 4;
Fig. 6 is the cutaway view of A-A direction among Fig. 3;
Fig. 7 is the partial enlarged drawing at C indication place among Fig. 5;
Fig. 8 is the partial enlarged drawing at D indication place among Fig. 6;
Fig. 9 is the three-dimensional exploded view of heating cup assembly;
Figure 10 is the stereogram of the inner cap of heating cup assembly;
Figure 11 and Figure 12 are respectively the top and bottom perspective views of the inner cap of heating cup assembly.
The specific embodiment
Extremely shown in Figure 12 as Fig. 1, the present embodiment soy bean milk making machine comprises main body 1, grinding container 2, grind cutter 3, motor 4, heating cup assembly 5 and heater 6. main bodys 1 have base 11 and are located at housing 12 on this base 11, the below of base 11 has base plate 112, form first installation room 13 and second installation room 14 between this base 11 and the housing 12, grinding container 2, grinding cutter 3 and motor 4 is located in this first installation room 13, heating cup assembly 5 is located in this second installation room 14, heating cup assembly 5 has Heating Cup 51, and heater 6 is located on the base 11 and to Heating Cup 51 and is heated.
Grinding container 2 comprises filter cup 21 and the jar 22 with filter opening.211 and first glasss of bodies 212 at the bottom of filter cup 21 comprises first glass, 211 and first glasss of bodies 212 cross and have open-topped first glass of chamber 214 at the bottom of this first glass, 221 and second glasss of bodies 222 at the bottom of jar 22 comprises second glass, 221 and second glasss of bodies 222 cross and have open-topped second glass of chamber 224 at the bottom of this second glass.Grinding cutter 3 is used for thing to be ground is processed into Powdered, and this thing to be ground is a soya bean, and this thing to be ground also can be for other grinds the juice that forms can produce foam when heating material, as mung bean, red bean etc.Motor 4 drives and grinds cutter 3 and filter cup 21 rotations, and motor 4 has power output shaft 41.
Jar 22 is located in first installation room 13 of main body 1, is provided with assembly wall 15 in first installation room 13, and jar 22 can be fixed on this assembly wall 15 by mechanical connection manner, also can directly put to put to be positioned on this assembly wall 15.Filter cup 21 is positioned at second glass of chamber 224 of jar 22, grinds first glass of chamber 214 that cutter 3 is fixed on the top of motor 4 power output shafts 41 and is positioned at filter cup 21, and 211 fixing and be sealed and matched at the bottom of this power output shaft 41 and filter cup 21 first glass.Motor 4 is fixed and is positioned in first installation room 13 with assembly wall 15.The open top of first installation room 13 can cover top cover 23.
221 are provided with the grout outlet 225 that runs through up and down at the bottom of second glass of jar 22, this grout outlet 225 is communicated with second glass of chamber 224,221 also are connected with mozzle 24 at the bottom of this second glass, this mozzle 24 has import 241 and outlet 242, and this mozzle 24 is obliquely installed, and makes import 241 be higher than outlet 242, this import 241 is connected with the grout outlet 225 of jar 22, this outlet 242 is connected with Heating Cup 51, under the gravity effect, grinds the juice that the back forms and can pass through this mozzle 24 inflow Heating Cups 51.
The switching of the grout outlet 225 of jar 22 is by gauge tap 7 controls, and this gauge tap 7 has opening and closure state, and when opening, grout outlet 225 is opened, and the juice in the jar 22 can flow into Heating Cup 51 by mozzle 24; When closure state, 225 mouthfuls of closures of pulp, the juice in the jar 22 can not flow into Heating Cup 51, and this gauge tap 7 is normally closed.
In a kind of mode, gauge tap 7 comprises electromagnet 71, push rod 72, sealing ring 73 and snap close 74, and electromagnet 71 control push rods 72 move up and down, and sealing ring 73 is located at the middle part of push rod 72, snap close 74 is located at the top of push rod 72, and sealing circle 73 mates with the grout outlet 225 of jar 22.When closure state, sealing ring 73 is blocked grout outlet 225, and snap close 74 fastens filter cup 21; When opening, sealing ring 73 breaks away from grout outlet 225, and snap close 74 breaks away from filter cup 21.
Heating cup assembly 5 comprises Heating Cup 51, inner cap 52 and enclosing cover 53. juices flow into Heating Cup 51 by mozzle 24,511 and the 3rd glasss of bodies 512 at the bottom of Heating Cup 51 comprises the 3rd glass, 511 and the 3rd glasss of bodies 512 cross and have open-topped the 3rd glass of chamber 514. inner caps 52 and be installed in the 3rd glass of chamber 514 at the bottom of the 3rd glass, the inner surface of inner cap 52 crosses condensation chamber 54 and back cavity 55, the inner surface of the outer surface of inner cap 52 and Heating Cup 51 crosses heating chamber 56. inner caps 52 and comprises the cooperation wall 521 that one is connected, connecting wall 522 and backflow wall 523, put on the top end face 513 that is placed on the 3rd glass of body 512 of Heating Cup 51 at the top of this cooperation wall 521, the outer surface of this cooperation wall 521 is sealed and matched by the inner surface of sealing ring 57 with the 3rd glass of body 512 of Heating Cup 51, the inner surface of this cooperation wall 521 crosses first condensation chamber 541, the top of this connecting wall 522 is connected with the bottom one that cooperates wall 521, the bottom of this connecting wall 522 is connected with the top one of backflow wall 523, the inner surface of this connecting wall 522 crosses second condensation chamber 542, and the internal diameter of this second condensation chamber 542 from top to bottom dwindles gradually, this first condensation chamber 541 and second condensation chamber 542 are communicated with and formation condensation chamber 54, the foam that the juice heating produces can condensation in this condensation chamber 54. and back cavity 55 is crossed by the inner surface of backflow wall 523, and this back cavity 55 is the uniform internal diameter structure; Certainly, this back cavity also can be for becoming interior gauge structure. and cooperate the inner surface of wall 521 to be provided with horizontally extending first retaining wall 525, the inner surface of connecting wall 522 is provided with arc second retaining wall 526 of vertical extension, this connecting wall 522 also have run through in, the through hole 527 of outer surface, this through hole 527 is between first retaining wall 525 and second retaining wall 526, by this first, two retaining walls 525,526 form foam passage 528. enclosing covers 53 that can limit the foam direction of motion covers on inner cap 52, the open top of the condensation chamber 54 of its sealing inner cap 52. enclosing cover 53 has a plurality of steam vents 531, by this steam vent 531, condensation chamber 54 and ambient air are communicated, thereby make condensation chamber 54 relative heating chambers 56 can keep lower temperature and pressure, be convenient to the foam condensation. the bottom of backflow wall 523 can be as much as possible near at the bottom of the 3rd glass of Heating Cup 51 511, backflow wall 523 is reached under the liquid level of juice as much as possible, preventing that foam from flowing into the condensation chamber 54 and stop up the liquid level that these through hole 527. through holes 527 need be higher than juices in the heating chamber 56 from through hole 527. the shape and structure of inner cap and enclosing cover can design as requested, for various inner caps, inner cap defines through hole, condensation chamber and back cavity, inner cap and Heating Cup define heating chamber jointly, the foam that heating chamber produces can enter the condensation chamber condensation by through hole, the liquid that condensation forms is back to heating chamber by back cavity. in addition, this heating cup assembly can also comprise the handle with handle cover 501 50 that is installed on the Heating Cup 51, and this handle 50 is convenient to the user and is picked and placeed Heating Cup 51.
Heater 6 is installed on the base 11 of main body 1, and it is positioned at the bottom of the 3rd glass of Heating Cup 51 511 below and to 511 directly heating at the bottom of the 3rd glass.Heater 6 is as heat-generating disc.First temperature sensor 8 that is used for real-time feedback heater 6 heating-up temperatures also is installed on the heater 6.The main body 1 of soy bean milk making machine can also comprise bottom 16, and main body base 11 is provided with heater mounting hole 111, and this bottom 16 is fixed in this heater mounting hole 111 and by sealing ring 17 sealings, heater 6 is fixed in this bottom 58.
Soy bean milk making machine also comprises second temperature sensor 9 of real-time feedback Heating Cup 51 temperature, and this second temperature sensor 9 is fixed on the housing 12 of main body 1 and with the 3rd glass of body 512 of Heating Cup 51 and directly contacts.Because heater 6 is realized heating to juice by heating Heating Cup 51, second temperature sensor 9 also is a temperature of directly feeding back Heating Cup 51, thus Heating Cup 51 make by the material of heat conduction, as making by metal or glass.
Soy bean milk making machine also comprises control circuit, this control circuit all is connected with electromagnet 71, motor 4, heating plate 6, first temperature sensor 8 and second temperature sensor 9, this control circuit can receive the signal of first and second temperature sensor feedback, and can be according to programme-control electromagnet, motor, heating plate etc.
The use of soy bean milk making machine is as follows: 1) soya bean is put into filter cup 21, and add water in jar 22, top cover 23 is built, heating cup assembly 5 is placed on the heater 6; 2) motor 4 drives grinding cutter 3 high speed rotating and beats beans, in beating the beans process, and gauge tap 7 closures; 3) beat beans and finish after, gauge tap 7 is opened, and electromagnet 71 jack-up are backed down and while jack-up snap close 74 by the sealing ring 73 of push rod 72 with grout outlet 225, make the juice in the jar 22 flow into Heating Cup 51, and make snap close 74 get out of the way filter cup 21 by mozzle 24; 4) juice in the jar 22 after rolling, motor 4 drives filter cups 21 and slowly runs, and the juice in the bean dregs in the filter cup 21 is separated, and flowed into Heating Cups 51 by mozzle 24; 5) after juice flowed into and finishes, electromagnet 71 resetted, and enters into heated condition; Keep stable when 6) heater 6 temperature are raised to 280 ℃, when the soya-bean milk temperature reached 85 ℃~90 ℃, the temperature of heater 6 dropped to and keeps stable about 200 ℃; 7) when the soya-bean milk temperature reaches 95 ℃~100 ℃, in setting-up time, keep temperature stabilization, after the time arrives, finish the whole process that soya-bean milk is made, and soy bean milk making machine reenters holding state.For this soy bean milk making machine, the work schedule of electromagnet, motor and heating plate can design as requested.
In heating process, juice is heated and produces foam and be full of whole heating chamber 56, foam continues to increase and enters condensation chamber 54 from through hole 527, because the temperature and pressure of condensation chamber 54 is all much smaller than heating chamber 56, so foam can be condensed into liquid and be back in the heating chamber 56 by back cavity 55, make in the heating chamber 56 to be difficult for producing a large amount of foams, thereby can heat continuously and can not overflow foam, improved the efficient of heating.
In the present embodiment,, not only simplify the structure because heater 6, first temperature sensor 8 and second temperature sensor 9 all place Heating Cup 51 outsides, and easy to clean, can not pollute soya-bean milk yet.
Heating cup assembly not only can be used on the soy bean milk making machine, is used for the juice that grinds back formation is boiled heating.Heating cup assembly also can cooperate with heater and only do heating and use, as is directly used in and adds hot soup juice, and in this kind application, heater can be fixed on the bottom of Heating Cup, realizes heating to soup juice by the heating to Heating Cup; Perhaps heater separates setting with heating cup assembly, only in use, Heating Cup is placed on the heater heats; In having two kinds of structures of heater, heater also can be provided with temperature sensor, is used to realize the control to heating-up temperature.
Above content be in conjunction with concrete preferred implementation to further describing that the utility model is done, can not assert that concrete enforcement of the present utility model is confined to these explanations.For the utility model person of an ordinary skill in the technical field, under the prerequisite that does not break away from the utility model design, can also make some simple deduction or replace, all should be considered as belonging to protection domain of the present utility model.

Claims (20)

1. heating cup assembly, it is characterized in that: comprise inner cap and Heating Cup, described inner cap is located at the inside of described Heating Cup, form heating chamber between described inner cap and the described Heating Cup, described inner cap has the condensation chamber that is used for the formed foam of condensation heating process that is connected and is used for being back to for condensed liquid the back cavity of described heating chamber, described condensation chamber communicates with ambient air, described back cavity is positioned at the below of described condensation chamber, described inner cap has through hole, and described through hole is communicated with described heating chamber and condensation chamber.
2. heating cup assembly according to claim 1, it is characterized in that: described inner cap has wall, connecting wall and the backflow wall of cooperation, described cooperation wall cooperates with described Heating Cup, the top of described connecting wall is connected described cooperation wall and backflow wall respectively with the bottom, described condensation chamber comprises first condensation chamber that the internal face by described cooperation wall crosses and second condensation chamber that is communicated with first condensation chamber that is crossed by the inner surface of described connecting wall, described back cavity is crossed by the inner surface of described backflow wall, and described through hole runs through described connecting wall.
3. heating cup assembly according to claim 2 is characterized in that: the internal diameter of described second condensation chamber from top to bottom dwindles gradually.
4. heating cup assembly according to claim 3 is characterized in that: the inner surface of described inner cap is provided with the retaining wall that is used to limit the foam direction of motion.
5. heating cup assembly according to claim 4 is characterized in that: described retaining wall comprises first retaining wall of being located at described cooperation wall inner surface and second retaining wall of being located at described connecting wall inner surface, and described through hole is between described first retaining wall and second retaining wall.
6. heating cup assembly according to claim 5 is characterized in that: the described first retaining wall horizontal-extending, described second retaining wall extends straight up.
7. heating cup assembly according to claim 2 is characterized in that: be provided with sealing ring between the outer surface of described cooperation wall and the inner surface of described Heating Cup.
8. heating cup assembly according to claim 1 is characterized in that: described inner cap comprises connecting wall, and the part of described condensation chamber between described connecting wall inner surface from top to bottom dwindled gradually, and described back cavity is positioned at the below of described connecting wall.
9. heating cup assembly according to claim 8 is characterized in that: the inner surface of described connecting wall is the conical surface.
10. heating cup assembly according to claim 8 is characterized in that: described through hole runs through described connecting wall.
11. heating cup assembly according to claim 10 is characterized in that: the inner surface of described inner cap is provided with the retaining wall that is used to limit the foam direction of motion.
12. heating cup assembly according to claim 1 is characterized in that: also comprise enclosing cover, described enclosing cover seals the open top of described condensation chamber, and described enclosing cover has steam vent, and described condensation chamber is communicated with ambient air by described steam vent.
13. according to any described heating cup assembly among the claim 1-12, it is characterized in that: the outside of described Heating Cup is provided with heater, described heater directly heats the cup end of described Heating Cup.
14. soy bean milk making machine, comprise main body, filter cup, jar, stirring blade, motor and heater, described jar and motor all are located on the described main body, described filter cup is positioned at described jar inside, described motor has power output shaft, described stirring blade is fixed on the described power output shaft and is positioned at the inside of described filter cup, described power output shaft and described filter cup are fixed, it is characterized in that: also comprise any described heating cup assembly among the claim 1-12, described jar and Heating Cup are communicated with by mozzle, and described heater heats the material to be heated in the described Heating Cup.
15. soy bean milk making machine according to claim 14 is characterized in that: described heater is located on the described main body and is positioned at the outside of described Heating Cup, and described heater heats Heating Cup.
16. soy bean milk making machine according to claim 15 is characterized in that: on the described main body temperature sensor is housed, described temperature sensor directly contacts with the outer surface of described Heating Cup.
17. soy bean milk making machine according to claim 14, it is characterized in that: the bottom of described jar has grout outlet, described mozzle connects described grout outlet and Heating Cup, the switching of described grout outlet is controlled by gauge tap, described gauge tap has opening and closure state, when opening, grout outlet is opened, and described jar and Heating Cup are communicated with; When closure state, the grout outlet closure, described jar and Heating Cup disconnect.
18. soy bean milk making machine according to claim 17, it is characterized in that: described gauge tap comprises electromagnet, push rod, sealing ring and snap close, described electromagnet drives push rod and moves up and down, described sealing ring and snap close are separately fixed at the middle part and the top of push rod, when opening, described sealing ring breaks away from described grout outlet, and described snap close breaks away from described filter cup; When closure state, described sealing ring is blocked described grout outlet, and described snap close fastens described filter cup.
19. soy bean milk making machine, comprise main body, filter cup, jar, stirring blade, motor and heater, described main body has first installation room and second installation room, described jar is located in described first installation room, described motor is installed on the described main body, described filter cup is positioned at described jar inside, described motor has power output shaft, described stirring blade is fixed on the described power output shaft and is positioned at the inside of described filter cup, described power output shaft and described filter cup are fixed, it is characterized in that: also comprise any described heating cup assembly among the claim 1-12, described heating cup assembly is located in described second installation room, described jar and Heating Cup are communicated with by mozzle, and described heater heats the material to be heated in the described Heating Cup.
20. soy bean milk making machine according to claim 19, it is characterized in that: described heater is located at the outside of described Heating Cup, described heater directly heated the cup end of described Heating Cup, on the described main body temperature sensor was housed, and described temperature sensor directly contacts with the outer surface of described Heating Cup.
CN2009201330588U 2009-06-24 2009-06-24 Heating cup component and soymilk maker Expired - Fee Related CN201452902U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2009201330588U CN201452902U (en) 2009-06-24 2009-06-24 Heating cup component and soymilk maker

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Application Number Priority Date Filing Date Title
CN2009201330588U CN201452902U (en) 2009-06-24 2009-06-24 Heating cup component and soymilk maker

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CN201452902U true CN201452902U (en) 2010-05-12

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103082872A (en) * 2013-02-19 2013-05-08 九阳股份有限公司 Defoaming container and defoaming method
CN108240937A (en) * 2018-04-10 2018-07-03 南京市环境监测中心站 Heavy metal in soil resolution test polytetrafluoroethylene beaker used

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103082872A (en) * 2013-02-19 2013-05-08 九阳股份有限公司 Defoaming container and defoaming method
CN103082872B (en) * 2013-02-19 2015-11-18 九阳股份有限公司 Froth breaking container and debubbling method
CN108240937A (en) * 2018-04-10 2018-07-03 南京市环境监测中心站 Heavy metal in soil resolution test polytetrafluoroethylene beaker used

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Granted publication date: 20100512

Termination date: 20120624