Integrated infant food preparation and steaming machine

The integrated infant steamer addresses the lack of combined milk and food preparation devices by enabling simultaneous steaming and reconstitution, offering a single appliance for both functions with efficient and cost-effective operation.

FR3170835A1Pending Publication Date: 2026-07-03SHENZHEN DING PIN ELECTRICAL APPLIANCE CO LTD
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Patent Information

Authority / Receiving Office
FR · FR
Patent Type
Applications
Current Assignee / Owner
SHENZHEN DING PIN ELECTRICAL APPLIANCE CO LTD
Filing Date
2025-12-24
Publication Date
2026-07-03

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Abstract

Integrated Infant Preparation and Steaming Machine The present invention discloses an integrated infant preparation and steaming machine, comprising: a main machine body, which main machine body comprises a main housing (1), a water tank body and a steaming bowl (3), the water tank body being housed in the water tank cavity inside the main housing (1), the water tank cavity also comprising a heating mechanism corresponding to its base, the heating mechanism being able to heat the water tank body and keep it warm after heating;An agitation mechanism is also arranged on one side of the main body (1), the steaming bowl (3) is installed outside the agitation mechanism, and the main body has a steam channel communicating with the water tank body and the steaming bowl (3). Thanks to the above design, this main body of the machine has the functions of reconstituting powdered milk and steaming complementary foods, merging two machines into one, a single machine meeting both needs: complementary foods and powdered milk reconstitution. In addition, this main body of the machine can also meet the needs of babies of different ages and stages (in months) with regard to the consumption of milk, complementary foods, fruit juice, etc. Figure to be published with the abbreviation: Figure 1;
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Description

Title of the invention: Integrated infant steamer for preparing and cooking technical field

[0001] The present invention relates to the technical field of infant feeding machines, and more specifically, the present invention relates to an integrated infant preparation and steam cooking machine. Previous technique

[0002] Chinese invention application no. CN202022639135.6 discloses a device for reconstituting powdered milk that uses a water supply assembly to drive the rotating agitator, without requiring the separate installation of a drive motor and transmission assembly for the agitator. The design is ingenious, the overall structure is simple, and the cost is low.

[0003] The Chinese invention application no. CN202322425073.2 discloses a Infant formula mixer. This infant formula mixer comprises: a cylindrical body, consisting of an outer and an inner cylinder, the inner cylinder being positioned inside the outer cylinder, with a mounting area formed between the outer and inner cylinders; and a heating element, located in the mounting area and positioned beneath the inner cylinder. This infant formula mixer can heat food thoroughly and evenly. The mixing bowl and mixing assembly are both removable for easy cleaning. The drive element is a DC motor, replacing the combined use of a universal motor and gearbox, thus reducing overall noise.

[0004] A device combining the functions of both is lacking on the market; users must purchase both of the aforementioned devices to perform functions such as reconstituting powdered milk and preparing complementary foods. Therefore, it is necessary to offer an integrated infant formula preparation and steaming machine to at least partially resolve the existing problems in the prior art. Contents of the invention

[0005] In order to at least partially resolve the aforementioned problems, the present invention proposes an integrated infant steamer for preparation and cooking, characterized in that it comprises: a main machine body, said main machine body comprising a main housing, a reservoir body of water, a steaming bowl, said water tank body being housed in a cavity of the water tank inside the main casing, the bottom of said water tank cavity being provided with a heating mechanism, an agitation mechanism being disposed on one side of said main casing, said steaming bowl being mounted outside the agitation mechanism, said main casing having a steam channel communicating with the water tank body and the steaming bowl, an agitation seat being disposed at the bottom of the agitation portion of said main casing, said water tank cavity also being equipped with a water pump body, said water pump body communicating with the steaming bowl via a second internal hot water conduit, an anti-leakage guide nozzle module being disposed on said agitation seat,said anti-leak guide nozzle module being connected to the second internal hot water pipe;

[0006] said anti-leakage guide nozzle module comprises a first guide nozzle and a second guide nozzle, said first guide nozzle is provided with a first stop disc, and said second guide nozzle is provided with a second stop disc, said first guide nozzle is connected to the agitator seat and the first guide nozzle has an internal shoulder corresponding to the second guide nozzle, said second stop disc is abutted against the upper end of the first guide nozzle, the internal wall of said first guide nozzle is configured with several fastening mechanisms, and the external wall of said second guide nozzle is configured with a drive rod corresponding to the fastening mechanisms.

[0007] According to one embodiment of the machine, the stirring mechanism comprises a drive element, a gear support and a stirring element, said drive element is arranged in the cavity of the water tank and located on one side of the water tank body, said gear support is arranged in the stirring part, said stirring element is arranged at the bottom of the gear support, the lower end of said stirring element is provided with several stirring blades, said drive element drives the stirring element in rotation via the gear support.

[0008] According to one embodiment of the machine, said water tank cavity also includes a bearing support, said drive element being rotationally connected under the bearing support.

[0009] According to one embodiment of the machine, an inner lid is removably connected to the inside of the steam cooking bowl, the stirring element is intended to be inserted into the inner lid, and the steam cooking bowl is removably connected to the stirring seat.

[0010] According to one embodiment of the machine, said drive element comprises a vertical shaft, said vertical shaft passes through the bearing support, and the end upper end of said vertical shaft is provided with a small pulley, said small pulley being connected in rotation to the gear support by means of a transmission belt, integrated preparation and steam cooking for infants of the present invention, a vertical shaft is disposed on the drive element, the vertical shaft passes through the bearing support, and the upper end of the vertical shaft is provided with a small pulley, which is connected in rotation to the gear support by a transmission belt.

[0011] According to one embodiment of the machine, the main housing comprises an upper seat body, the interior of said upper seat body comprises a first internal hot water conduit, and said water pump body communicates, via the first internal hot water conduit, with the external hot water conduit of the upper seat body.

[0012] According to one embodiment of the machine, the steam cooking bowl also includes a first handle.

[0013] According to one embodiment of the machine, the bottom of the main housing is provided with a base, said base having a receiving housing corresponding to the steam cooking bowl.

[0014] According to one embodiment of the machine, the gear support comprises a gear shaft, the upper end of the stirring element is removably connected to the lower end of the gear shaft, the steaming bowl comprises a support column at its base, and the lower end of the stirring element comprises a support cap corresponding to the support column.

[0015] Compared to the prior art, the present invention has at least the following beneficial effects:

[0016] The present invention proposes an integrated infant steaming and preparation machine, which comprises a main machine body, said main machine body comprising a main casing, a water tank body and a steaming bowl, in which, inside the main casing, there is a water tank cavity corresponding to the water tank body, and at the bottom of the water tank cavity there is also a corresponding heating mechanism, enabling the water tank body to be heated and kept warm after heating; an agitation mechanism is also present on one side of the main casing, and the steaming bowl is installed outside the agitation mechanism, and the main casing is provided with a steam channel communicating with the water tank body and the steaming bowl.The user can first remove the steaming bowl during use, add additional food to the steaming bowl, then install the steaming bowl on the main unit. Then, they add drinking water. Inside the water tank, the heating mechanism starts to heat the drinking water in the tank. The steam generated by the heating enters the steaming bowl via the steam channel to steam the complementary food. The stirring mechanism agitates the complementary food in the steaming bowl to ensure it is heated thoroughly and evenly. The steaming bowl is removable for easy cleaning. Once the set steaming time has elapsed, the steaming bowl can be removed to feed the infant the complementary food; the hot drinking water in the water tank can then, once it has cooled to a suitable temperature, be used for reconstituting powdered milk.Thanks to the above design, this main machine body has the functions of reconstituting powdered milk and steaming complementary foods, combining two machines in one, solving both the needs of complementary foods and milk preparation with a single machine. Furthermore, this main machine body can also meet the needs of babies of different ages and stages (in months) for milk, complementary foods, fruit juice, etc.

[0017] The integrated infant steaming and preparation machine according to the present invention, other advantages, objectives and features of the present invention will be partly illustrated by the following description, and partly understood by technicians in the field through the study and practice of the present invention. Additional illustration

[0018] The illustrations are provided for a better understanding of the present invention and form part of the description, used in conjunction with the embodiments of the present invention to explain it, and do not constitute a limitation of the present invention. In the illustrations:

[0019] [Fig-1] is a schematic view of the structure of the present invention.

[0020] [Fig.2] is a top view of the control panel of the present invention.

[0021] [Fig.3] is a first partial schematic view of the structure of the part of agitation of the present invention.

[0022] [Fig.4] is a first schematic view of the internal structure of the present invention.

[0023] [Fig.5] is a second schematic view of the internal structure of the present invention.

[0024] [Fig.6] is a third schematic view of the internal structure of the present invention.

[0025] [Fig.7] is a second partial schematic view of the structure of the part of agitation of the present invention.

[0026] [Fig.8] is a first schematic view of the structure of the nozzle module of leak-proof guidance of the present invention.

[0027] [Fig.9] is a second schematic view of the structure of the nozzle module of leak-proof guidance of the present invention.

[0028] [Fig. 10] is a first schematic view of the structure of the fastening mechanism of the present invention.

[0029] [Fig. 11] is an enlargement of part A of [Fig. 10].

[0030] [Fig. 12] is a second schematic view of the structure of the fastening mechanism of the present invention.

[0031] [Fig. 13] is a schematic view of the structure of the internal vertical rod of the present invention.

[0032] [Fig. 14] is a schematic view of the structure of the circumferential anti-skid mechanism of the present invention. Concrete method of implementation

[0033] The present invention is described in more detail below with reference to the illustrations and embodiments, so that a person skilled in the art can implement it by referring to the text of the description.

[0034] It should be understood that terms such as "have", "include" and "include" used in this document do not exclude the presence or addition of one or more other elements or combinations thereof.

[0035] As illustrated in Figures 1 to 6, the present invention provides an integrated infant steamer for preparing and cooking food, comprising: a main machine body, which main machine body includes a main housing 1, a water reservoir body 2, and a steaming bowl 3. Inside the main housing 1 is a cavity in the water reservoir 11 for the water reservoir body 2, and the water reservoir body 2 is installed in this cavity in the water reservoir 11. At the bottom of the water reservoir cavity 11 is a heating mechanism (not shown), which heating mechanism can heat the water reservoir body 2 and keep it warm after heating. On one side of the main housing 1 is a stirring mechanism 12, and the steaming bowl 3 is installed outside the stirring mechanism 12.Inside the main housing 1 is a steam channel communicating with the water tank body 2 and the steaming bowl 3. During use, the user can first remove the steaming bowl 3, add additional food to the steaming bowl 3, and then install this steaming bowl 3 onto the main housing 1. Next, potable water is added to the water tank body 2, and the heating mechanism is activated to heat the potable water in the water tank body 2. The steam thus generated passes through the steam channel (not shown). to enter the steaming bowl 3 for steaming the complementary foods. The stirring mechanism 12 agitates the complementary foods in the steaming bowl 3 to ensure they are heated evenly and sufficiently. The steaming bowl 3 is removable for easy cleaning. Once the set steaming time has elapsed, the steaming bowl 3 can be removed to feed the baby the complementary foods. When the high-temperature drinking water in the water tank 2 has cooled to the appropriate temperature, it can be transferred to the steaming bowl 3 for reconstituting powdered milk. Thanks to the above structural design, this main machine body 100 offers the functions of reconstituting powdered milk and preparing steamed complementary foods, thus saving costs.It's two machines in one, and a single machine meets both the needs of preparing complementary foods and reconstituting powdered milk. Furthermore, this main body of the machine can also satisfy the needs of babies of different ages for milk, complementary foods, and fruit juice.

[0036] Furthermore, a base 10 is also mounted at the bottom of the main housing 1, and this base 10 has a receiving compartment 101. Once the steaming bowl 3 is removed, it can be placed in the receiving compartment 101. The base 10 provides support for the main housing 1, increasing its stability, while also providing a location for the steaming bowl 3.

[0037] As illustrated in [Fig. 2], a control panel 102 is located on the upper part of the main housing 1. The various components are controlled via the control panel 102, the specific functions of which are detailed in [Fig. 2], thus facilitating steaming and reconstituting powdered milk for the user. To facilitate temperature monitoring, an NTC temperature controller (not shown) is also installed at the bottom of the water tank cavity 11, in order to control the hot water temperature to facilitate reconstituting powdered milk at different temperatures.

[0038] Exemplary agitation mechanism

[0039] Furthermore, the stirring mechanism 12 according to the present invention comprises a drive element 121, a gear support 122, and a stirring element 123. The drive element 121 is installed in the cavity of the water tank 11 and is located on one side of the water tank body 2, while the gear support 122 is installed in the stirring portion 13 of the main housing 1. The upper end of the stirring element 123 penetrates the stirring portion 13 and is connected to the bottom of the gear support 122. Several stirring blades 124 are installed at the lower end of the stirring element 123. Once started, the drive element 121 can drive the rotation of the stirring element 123 via the gear support 122, in order to agitate the additional food contained in the steaming bowl 3, thus ensuring complete and uniform heating of the additional food.

[0040] A bearing support 14 is also installed in the cavity of the water tank 11. This bearing support 14 is rotationally connected to the drive element 121 above the drive element, thus providing stable support in the vertical direction to the drive element 121. A vertical shaft 125 is arranged on the drive element 121. This vertical shaft 125 passes through the bearing support 14. A small pulley 126 is installed at the upper end of the vertical shaft 125. The small pulley 126 is rotationally connected to the gear support 122 via the transmission belt 127, thus establishing the connection between the drive element 121 and the gear support 122.

[0041] As illustrated in [Fig. 7], the gear support 122 contains a gear shaft 128. The upper end of the stirring element 123 can be inserted into the lower end of the gear shaft 128, and the two are removably connected. It is understood that the upper end of the stirring element 123 may have a polygonal cross-section, such as a pentagonal or hexagonal cross-section. Correspondingly, the lower end of the gear shaft 128 has a slot of a corresponding shape (not shown). In more detail, the removable connection between the steaming bowl 3 and the stirring seat 15 can be achieved by a twist-and-lock connection, thus facilitating subsequent disassembly and cleaning of the steaming bowl 3.

[0042] The steaming bowl 3 is equipped with a first handle 302 to facilitate gripping the steaming bowl 3 by the user. The bottom of the steaming bowl 3 has a support column 303, while the lower end of the stirring element 123 has a support cap 129 corresponding to the support column 303. When the steaming bowl 3 is installed on the stirring seat 15, the support cap 129 snaps onto the support column 303. The upper and lower ends of the stirring element 123 are both fixed, so that the stirring element 123 does not shift during rotation, maintaining good rotational stability and thus achieving a better stirring effect.

[0043] Exemplary water pump body

[0044] Furthermore, a water pump body 111 is also installed in the cavity of the water reservoir 11 of the present invention. This water pump body 111 transports hot water from the water reservoir body 2 to the steaming bowl 3, thus enabling the reconstitution of powdered milk via the steaming bowl 3. The main unit of the machine simultaneously performs the functions of reconstituting powdered milk and steaming complementary foods, resulting in cost savings. Two machines are combined into one, thus meeting both the needs of complementary foods and powdered milk reconstitution with a single appliance. Furthermore, this main unit can also meet the needs of babies of different ages and months for milk, complementary foods, and fruit juice.

[0045] More specifically, an upper seat body 112 is disposed on the main housing 1, and the water tank body 2 is installed in the upper seat body 112. The interior of the upper seat body 112 has a first internal hot water conduit 113. The water pump body 111 is connected to the external hot water conduit 114 of the upper seat body 112 via the first internal hot water conduit 113, and communicates with the steam cooking bowl 3 via the second internal hot water conduit 17. Thus, when the water pump body 111 is operating, hot water is drawn through the external hot water conduit 114 to the first internal hot water conduit 113, and then enters the water pump body 111.Next, the hot water is transported by the water pump body 111 via the second internal hot water conduit 17 to the steaming bowl 3, thus enabling the reconstitution of powdered milk with hot water in the steaming bowl 3.

[0046] It is understandable that the steaming bowl 3 can also be removed from the stirring seat 15, and that a baby bottle can be placed at the bottom of the stirring seat 15 and under the second internal hot water conduit 17. The water pump body 111 can then pump hot water directly into the bottle, thus facilitating the reconstitution of powdered milk.

[0047] Exemplary anti-leak guide nozzle module

[0048] As illustrated in Figures 8 to 14, in addition, an anti-leakage guide nozzle module 4 is disposed on the stirring seat 15 of the present invention, and it is connected to the second internal hot water conduit 17. Thanks to this anti-leakage guide nozzle module 4, the second internal hot water conduit 17 can be easily removed from the stirring seat 15 for the servicing, sterilization and maintenance of the stirring seat 15, as well as for the servicing, sterilization and maintenance of the entire stirring part 13, in order to prevent bacterial proliferation.

[0049] More specifically, the anti-leak guide nozzle module 4 comprises a first guide nozzle 41 and a second guide nozzle 42. A first stop disc 411 is disposed on the first guide nozzle 41, and the first guide nozzle 41 is limited in position by this first stop disc 411 when installed on the agitator seat 15, in order to prevent the first guide nozzle 41 from oscillating from left to right. A second stop disc 421 is disposed on the second nozzle Guide nozzle 42. A shoulder 410 corresponding to the second guide nozzle 42 is arranged inside the first guide nozzle 41. When the second guide nozzle 42 is installed on the first guide nozzle 41, the lower end of the second guide nozzle abuts against the shoulder 410, while the second stop disc 421 abuts against the upper end of the first guide nozzle 41, thus serving as a stop and protection. The inner wall of the second guide nozzle 42 and the inner wall of the first guide nozzle 41 can fit together smoothly, allowing hot water to flow more easily. In addition, several fastening mechanisms 43 are installed on the inner wall of the first guide nozzle 41, and correspondingly, a drive rod 422 corresponding to the fastening mechanisms 43 is installed on the outer wall of the second guide nozzle 42.Once the second guide nozzle 42 is installed in the first guide nozzle 41, the drive rod 422 can actuate the fastening mechanisms 43 to make the connection between the first guide nozzle 41 and the second guide nozzle 42. In addition, both are easily removable in order to remove the second internal hot water conduit 17 from the stirring seat 15, thus allowing the servicing, sterilization and maintenance of the stirring seat 15, as well as the servicing, sterilization and maintenance of the entire stirring section 13, to prevent bacterial growth.

[0050] Exemplary fastening mechanism

[0051] Furthermore, the present invention provides a drive slide 412 formed in the inner wall of the first guide nozzle 4L. This drive slide 412 comprises a vertical sub-slide 4121 and a horizontal sub-slide 4122. An internal vertical orifice 413 is disposed at the inner end of the drive slide 412 (the inner end of the horizontal sub-slide 4122). Correspondingly, the fastening mechanism 43 comprises an internal vertical rod 431 and an internal vertical spring 432. The internal vertical rod 431 and the internal vertical spring 432 can be installed in the internal vertical orifice 413, where the internal vertical spring 432 abuts against the internal vertical rod 431.Once the second guide nozzle 42 has entered the first guide nozzle 41, the drive rod 422 can engage along the vertical sub-slide 4121 to penetrate the horizontal sub-slide 4122, until it exerts pressure on the upper end of the internal vertical rod 431. The upper end of the internal vertical rod 431 has an inclined surface 433 and a recess 434. The drive rod 422 engages along the inclined surface 433 to penetrate the recess 434, causing the internal vertical rod 431 to move inside the internal vertical orifice 413. This causes the internal vertical spring 432 to contract, which continues to support the internal vertical rod 431, allowing... thus to fix the second guide nozzle 42 by means of the internal vertical rod 431.

[0052] Furthermore, one side of the internal vertical orifice 413 has a first lateral drive groove 414 and a second lateral drive groove 415. The first lateral drive groove 414 and the second lateral drive groove 415 respectively comprise a first pinch block 416 and a second pinch block 417. Correspondingly, a first lateral displacement block 435 and a second lateral displacement block 436 are arranged on the internal vertical rod 431. The outer wall of the second guide nozzle 42 is provided with an external pinch groove 423 corresponding to the first pinch block 416. The lower end of the second guide nozzle 42 comprises an internal anti-leak elastic ring 424.When the internal vertical rod 431 moves inside the internal vertical orifice 413, the first lateral displacement block 435 is used to push the first pinch block 416, which rotates the first pinch block 416 outwards in the external pinch groove 423. The second lateral displacement block 436 is used to push the second pinch block 417, which rotates the second pinch block 417 upwards against the internal anti-leak spring ring 424, thus securing the second guide nozzle 42 by the fastening mechanism 43. In addition, the internal anti-leak spring ring 424 is firmly fixed in the second lateral drive groove 415, in order to ensure an anti-leak function.

[0053] Exemplary circumferential anti-slip mechanism

[0054] Furthermore, the present invention provides a circumferential anti-slip mechanism 44 on the outer wall of the first guide nozzle 4L. Correspondingly, the outer wall of the second stop disc 421 has a circumferential anti-slip cap 425 corresponding to the circumferential anti-slip mechanism 44. Once the second guide nozzle 42 is installed on the first guide nozzle 41, the circumferential anti-slip cap 425 can be mounted correspondingly on the circumferential anti-slip mechanism 44, thus preventing the second guide nozzle 42 from undergoing circumferential slippage on the first guide nozzle 41 and preventing water leaks during the transport of hot water.

[0055] Furthermore, the circumferential anti-slip mechanism 44 of the present invention comprises a circumferential anti-slip seat 441, a circumferential anti-slip vertical rod 442, and a circumferential anti-slip spring 443. More specifically, the circumferential anti-slip seat 441 is mounted on the outer wall of the first guide nozzle 41, while the circumferential anti-slip vertical rod 442 can movably pass through the circumferential anti-slip seat 441. The circumferential anti-slip vertical rod 442 is provided with an anti-slip stop disc Circumferential slip 444, the circumferential anti-slip spring 443 is threaded onto the circumferential anti-slip vertical rod 442 and is connected between the circumferential anti-slip seat 441 and the circumferential anti-slip stop disc 444. Thanks to the circumferential anti-slip spring 443, the upper end of the circumferential anti-slip vertical rod 442 can extend into the circumferential anti-slip cap 425, thus allowing the circumferential anti-slip mechanism 44 to fix the circumferential anti-slip cap 425 and prevent circumferential slippage. As a result, when it is necessary to remove the second guide nozzle 42 from the first guide nozzle 41, the circumferential anti-slip vertical rod 442 is pulled downwards, so that the upper end of the circumferential anti-slip vertical rod 442 is removed from the circumferential anti-slip cap 425.This allows the second guide nozzle 42 to be rotated, so that the drive rod 422 moves down the internal vertical rod 431, moves successively along the horizontal sub-slide 4122 to the vertical sub-slide 4121, and is withdrawn from the vertical sub-slide 4121, thus allowing the second guide nozzle 42 to be removed from the first guide nozzle 41. Then, the second internal hot water conduit 17 is withdrawn from the stirring seat 15, in order to carry out the servicing, sterilization and maintenance of the stirring seat 15, as well as the servicing, sterilization and maintenance of the entire stirring section 13, to prevent bacterial growth.

[0056] In the description of the present invention, it is to be understood that the orientation or position relationships indicated by the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", "clockwise", "counterclockwise", "axial", "radial", "circumferential", etc., are based on the orientation or position relationships shown in the illustrations, solely to facilitate the description of the present invention and simplify the description, and not to indicate or imply that the designated device or element must have a specific orientation, be constructed and operate in a specific orientation, and therefore should not be interpreted as a limitation of the present invention.

[0057] In the present invention, unless otherwise indicated or defined, terms such as "install," "connect," "link," "fix," etc., are to be understood in a broad sense; for example, they may refer to elements that are fixedly connected, removably connected, or integrated into a single body. They may be a mechanical connection, or an electrical connection, or may communicate with each other; they may be directly connected, or indirectly connected by an intermediary means, may be an internal communication between two elements, or an interaction relationship between two elements, unless explicitly stated otherwise. For a person skilled in the art, it is possible to understand, depending on the specific circumstances, the specific meaning of the aforementioned terms in the present invention.

[0058] Although embodiments of the present invention have been disclosed above, it is not limited to the applications listed in the description and embodiments. It can be fully adapted to various fields appropriate to the present invention. Further modifications can be readily made by those skilled in the art. Therefore, without departing from the general concept, the present invention is not limited to the specific details and illustrations presented and described herein.

Claims

Demands

1. An integrated infant steaming and preparation machine, characterized in that it comprises: a main machine body, said main machine body comprising a main housing (1), a water reservoir body (2), a steaming bowl (3), said water reservoir body being housed in a cavity of the water reservoir (11) inside the main housing (1), the bottom of said cavity of the water reservoir (11) being provided with a heating mechanism, an agitation mechanism (12) being disposed on one side of said main housing (1), said steaming bowl (3) being mounted outside the agitation mechanism (12), said main housing (1) having a steam channel communicating with the water reservoir body (2) and the steaming bowl (3), an agitation seat (15) being disposed at the bottom of the agitation portion (13) of said main housing (1),said water reservoir cavity (11) also being equipped with a water pump body (111), said water pump body (111) communicating with the steam cooking bowl (3) via a second internal hot water conduit (17), an anti-leakage guide nozzle module (4) being disposed on said stirring seat (15), said anti-leakage guide nozzle module (4) being connected to the second internal hot water conduit (17); said anti-leak guide nozzle module (4) comprises a first guide nozzle (41) and a second guide nozzle (42), said first guide nozzle (41) is provided with a first stop disc (411), and said second guide nozzle (42) is provided with a second stop disc (421), said first guide nozzle (41) is connected to the agitator seat (15) and the first guide nozzle (41) has inside a shoulder (410) corresponding to the second guide nozzle (42), said second stop disc (421) is abutted against the upper end of the first guide nozzle (41), the inner wall of said first guide nozzle (41) is configured with several fastening mechanisms (43), and the outer wall of said second guide nozzle (42) is configured with a drive rod (422) corresponding to the fastening mechanisms (43).

2. An integrated infant steamer and preparation machine according to claim 1, characterized in that the The stirring mechanism (12) comprises a drive element (121), a gear support (122) and a stirring element (123), said drive element (121) is arranged in the cavity of the water tank (11) and located on one side of the water tank body (2), said gear support (122) is arranged in the stirring part (13), said stirring element (123) is arranged at the bottom of the gear support (122), the lower end of said stirring element (123) is provided with several stirring blades (124), said drive element (121) drives the stirring element (123) in rotation via the gear support (122).

3. Integrated infant steaming and preparation machine according to claim 2, characterized in that said water reservoir cavity (11) also includes a bearing support (14), said drive element (121) being rotationally connected under the bearing support (14).

4. Integrated infant steaming and preparation machine according to claim 2, characterized in that an inner cover is removably connected to the inside of the steaming bowl (3), the stirring element (123) is intended to be inserted into the inner cover, and the steaming bowl (3) is removably connected to the stirring seat (15).

5. Integrated infant steaming and preparation machine according to claim 2, characterized in that said drive element (121) comprises a vertical shaft (125), said vertical shaft (125) passes through the bearing support (14), and the upper end of said vertical shaft (125) is provided with a small pulley (126), said small pulley (126) being rotationally connected to the gear support (122) by means of a transmission belt (127).

6. Integrated infant steaming and preparation machine according to claim 4, characterized in that the main housing (1) comprises an upper seat body (112), the interior of said upper seat body (112) comprises a first internal hot water conduit (113), and said water pump body (111) communicates, via the first internal hot water conduit (113), with the external hot water conduit (114) of the upper seat body (112).

7. Integrated infant steaming and preparation machine according to claim 1, characterized in that the steaming bowl (3) also has a first handle (301).

8. Integrated infant steaming and preparation machine according to claim 1, characterized in that the bottom of the main housing (1) is provided with a base (10), said base (10) having a receiving housing (101) corresponding to the steaming bowl (3).

9. Integrated infant preparation and steaming machine according to claim 2, characterized in that the gear support (122) comprises a gear shaft (128), the upper end of the stirring element (123) is removably connected to the lower end of the gear shaft (128), the steaming bowl (3) comprises a support column (303) at its base, and the lower end of the stirring element (123) comprises a support cap (129) corresponding to the support column (303).