MULTI-COMPARTMENT PET TRAY WITH ROTATING LID PROVIDING SELECTIVE ACCESS TO A SINGLE COMPARTMENT AND MECHANICAL PORTION CONTROL.

TR202614676U5Pending Publication Date: 2026-09-21DENİZLİ MERKEZEFENDİ İBRAHİM CİNKAYA SOSYAL BİLİMLER LİSESİ MÜDÜRLÜĞÜ +3
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Patent Information

Application Number
TR202614676U
Authority / Receiving Office
TR · TR
Patent Type
Utility models
Current Assignee / Owner
Filing Date
2026-08-28
Publication Date
2026-09-21
Estimated Expiration
2036-08-28

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Abstract

The invention relates to a multi-compartment food bowl with a rotating lid for storing pet food in pre-divided portions and providing controlled access to selected portions. The food bowl consists of a bowl body containing multiple physically separated food compartments and a rotating lid that covers the compartments from above and can move angularly on the bowl body. The opening window on the rotating lid aligns with the access opening of the selected food compartment when the lid is moved to one of the designated angular access positions. The geometric limitation between the opening window and the access zones of the food compartments ensures that simultaneous access to adjacent food compartments is restricted while access to the selected food compartment is being granted.The rotating lid is mechanically positioned at predetermined angular access positions corresponding to the food compartments, creating a selective access geometry between the opening window and the selected food compartment. This restricts simultaneous access to adjacent compartments and provides mechanically controlled access to pre-placed food portions. The food container may also include centering and bearing structures that support the stability of the rotating lid's movement, lid positioning and locking mechanisms, circumferential sealing between the container body and the rotating lid, and sealing structures that restrict passage between adjacent food compartments, thus enhancing operational stability. This allows for the separation of food portions, mechanically controlled access to selected portions, and keeping unselected portions closed.
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Description

1 TARIFF SELECTIVE ACCESS TO A SINGLE COMPARTMENT AND MECHANICAL PORTION CONTROL. PROVIDING ROTATING LID MULTI-COMPARTMENT PET FOOD BOWL Technological Field: 5 The invention relates to the storage and preservation of food used in the feeding of domestic animals. This relates to the technical field of portioned serving equipment, especially for pets. their food is stored in multiple compartments that are physically separated from each other. and mechanically access to only one of the selected compartments from those compartments. 10 multi-compartment pet food bowls with rotating lids that allow easy access It is related. More specifically, the invention features multiple food compartments arranged circumferentially. a container body that can perform rotational movement on that container body the geometric and mechanical structure of a rotating cover mounted on a bearing. It is related. The opening window created on the rotating lid allows access to the mouths of the food compartments. 15 The dimensional and positional relationship between openings and partition walls, opening Only one feeding compartment is accessible at the window's designated usage position. to ensure it overlaps with the food compartment and that the other food compartments remain closed under the lid. It is structured as follows. The invention also includes a rotating lid with 20 pre-installed compartments corresponding to each food compartment. Indexing that enables mechanical positioning at specified angular positions. and position locking elements; relative to the lid's axis of rotation and the lid body. Centering, connecting and bearing elements that maintain their position; the intended position of the cover mechanical restraint elements that prevent it from exceeding its movement limits and It relates to locking mechanisms designed to prevent unwanted lid movement. 25 The invention also covers feeding tubes located between the container body and the rotating lid and / or adjacent to each other. sealing contact zones created at the upper boundaries of the compartments and in these areas This relates to the structural arrangement of flexible sealing elements that perform this function. The structure in question is the food that remains closed in different usage positions of the rotating lid. will limit direct contact of the compartments with the outside environment and the food compartments 30 mechanical contact that will reduce unwanted air, moisture and food transfer between them It is organized for the purpose of protection. 2 In this context, the invention includes a container body, physically separate food compartments, partition walls, revolving door and opening created on said door with its windows and the accompanying mechanical positioning, centering, and bearing, the reciprocal structural and movement restriction, locking and sealing elements It is about designing a pet food bowl based on geometric relationships. (Statement 5) The subject of discussion is the movement path and access width of the opening window in the structure, mama by arranging the access boundaries of the compartments and the locations of the partition walls With the specified lid position, access is only provided to the selected food compartment. A mechanical selectivity is being created in this direction. The technical scope of the invention also includes the rotating lid corresponding to the feeding compartments, previously 10 mechanically holding the lid in specified angular positions, the axis of rotation of the lid and maintaining the alignment of the bowl body and keeping the food compartments inaccessible. mechanical cap that ensures the closure and sealing contact is maintained It includes constructions. Thus, portioned access, electronic control. or regardless of the necessity of motor drive, the mutual 15 of the vessel components This can be achieved through its geometric arrangement and mechanical interaction. State of the Art: Pet food bowls are used for feeding pets; for storing food, to be provided to the user or animal in specific quantities and the food not in use They are produced with different structural features to protect them from external environmental effects. 20 Common practices include single-compartment open food bowls, and storage containers with lids. Container systems containing multiple separate compartments, with sliding or rotating lids. Various mechanical and functional containers are used to hold different portions in separate volumes. There are electromechanical power supply systems. In single-chamber open pet food containers, all the food placed inside the container is the same. 25 Since it is within the usage volume, the food is divided into portions that are separate from each other. It is not possible to physically separate them, and the unused food is released into the external environment. It can come into contact with the air and humidity. The amount of food to be given in these structures... This may also need to be specified by the user, and different pre-prepared options may be available. A structural 30 in terms of storing portions independently of each other. There is no discrimination. In multi-compartment vessel structures, the internal volume of the vessel body is divided by various partition walls. It can be divided into multiple compartments via this method. This allows you to pre-determine the amount of food. 3 It becomes possible to place them in different compartments. However, only multiple partitions can be created, only one can be used at a time. This does not mechanically guarantee access to the compartment. The size of the access opening, the shape and angular width of the partition openings and the walls separating them In structures where there is no defined relationship between the geometries, the access opening is two 5 the neighboring compartment is located in the border region and there are at least multiple compartments It may become partially accessible. In multi-compartment containers with rotating lids, an access opening is created on the lid. The lid can be moved to different compartments depending on its rotating movement. It is known. However, the presence of a rotating lid and an opening on the lid 10 the creation of a mechanical system that alone provides controlled portion access It does not create. The circumferential width of the opening, the circumferential opening of the compartments, the position of the partition walls and the rotational geometry between the cover and the body when not configured in a compatible manner, at the intermediate angular positions of the cover Simultaneous or partial access to adjacent compartments may occur. 15 Therefore, one of the main technical problems in multi-compartment revolving door systems is access. will ensure that the opening only matches the available opening of the selected compartment The goal is to create a geometric relationship. Here, the access opening is simply made small. insufficient, the opening is divided by partition walls along its path and adjacent the spatial relationship of the compartments with the access boundaries should also be taken into consideration 20 This is necessary. Otherwise, the lid will be left between the two usage positions. The opening may partially overlap with the areas on either side of a partition wall. Another technical problem is that the rotating lid is not in the position corresponding to the selected compartment. It is held in a repeatable manner. Freely rotatable or just the lid and body. In structures that maintain their position due to the friction force between them, the user's 25 The lid may need to be left in the correct angular position. The lid must be at the desired alignment. deviation, the access opening partially overlapping with the partition opening, partition dividing wall causing it to come over or expose a certain part of an adjacent compartment. This is possible, even though the portions are physically separated. This can result in access not being achieved with sufficient mechanical precision. 30 The use of these positions is as important as moving the rotating lid to the specified angular positions. It is also important to protect it during the manufacturing process between the lid and the body. tolerances, wear and tear that may occur as a result of use, externally applied 4 forces or small positional changes in the lid's axis of rotation, lid opening This can lead to misalignment between the compartments. Therefore, the rotary In lidded structures, the positioning function is based on the lid's axis of rotation and its relation to the body. Consideration together with centering and bearing structures that maintain their position It is required. 5 In structures where the door centering is insufficient, radial and axial misalignment occurs in the door. Movement or wobbling may occur; these movements affect the compartments of the access opening. It can change its position on it. In addition, between the lid and the body. The homogeneity of the sealing contact also depends on these positional changes. It can be affected. Therefore, the lid support and bearing structure is only affected by the lid's 10 It is not a factor that allows it to rotate, but rather the access geometry throughout its use. It is also of technical importance in terms of protection. Another important technical consideration in multi-compartment feeding bowls is that they are not easily accessible. The aim is to limit the contact of the compartments with the outside environment. The lid and the compartment body are positioned opposite each other. If there are uncontrolled gaps between the surfaces, air and moisture will enter the enclosed 15 It is able to access the compartments that are expected to be in this situation. Similarly, the compartment divider sufficient contact or proper sealing between the upper edges of the walls and the cover If there is no regulation, unwanted air, moisture or other contaminants may enter between neighboring compartments. Small food particle transfers can occur. The fact that the sealing element is located only around the container also means that the compartments are 20 in all cases. It may not provide sufficient separation from each other and from the external environment. Especially In systems where the rotating lid moves, the sealing element must not excessively resist the lid movement. It must be able to maintain contact without creating resistance. Insufficient contact force. While reducing the sealing level, excessive contact force can cause the cover to rotate. This can make things more difficult and accelerate the wear of the sealing element. This 25 Therefore, the sealing element must be the contacting surface between the cover and the body. its geometry and the bearing arrangement of the cover are designed to work together It is of technical importance. Another issue encountered in known structures is the unwanted movement of the lid. It is a limitation. External force applied to the lid during transport, storage or use 30 As a result of this application, the lid may move away from its desired position and become closed. A compartment intended to be closed can be partially opened. Similarly, the lid... deviating from the designed rotation range, between the access opening and the compartments This can lead to the loss of the initial geometry. Therefore, the rotary cover... to be kept in the designated position of use, locked when necessary, and as foreseen mechanical elements designed to prevent movement beyond their limits Its presence is important for ensuring safety during use. When evaluated in terms of portion control, the technical issue is only 5 The main technical requirement is not pre-distributing the food into different compartments. While access is granted to one selected portion, access to the other portions is blocked. This is ensured by the physical structure of the container system. This requirement... In order for this to be met, the geometry of the compartments in the container body and the compartment dividing walls its location, the path of movement of the revolving door, the size and location of the access opening, the specific 10 of the door fixing in angular positions and sealing contact between the cover and the body They need to be compatible with each other. In conventional technology, multi-compartment containers feature rotating lids, access openings, and sealing elements. Mechanical locking elements and positioning structures are used for different purposes and in different ways. It can be used in combinations. Therefore, the technical need is only for the 15 in question. It is not sufficient to consider it simply as bringing together the elements. Technical needs; The access opening must be in a structural relationship determined by the partition geometry. the lid is mechanically positioned in the locations corresponding to each compartment, Maintaining the rotational axis of the lid, sealing contact on closed compartments. The functions of maintaining and limiting unwanted movements of the lid are performed by the same lid 20 The aim is to ensure that these processes are carried out in a harmonious manner within the organizational structure. In conclusion, from a technical standpoint, pre-separated food portions are separated from each other independently. which can store items in compartments and only select portions from those items. a mechanism that can provide access to one through the physical structure of the door system There is a need for restructuring. In order to meet this need, only 25 It is sufficient to have a multi-compartment body or a rotating lid with an opening. not; the movement path and access boundaries of the opening window, partition access points and geometric relationship of the partition walls with the revolving door in question centering in a way that preserves the geometry and mechanics at specified angular positions. Its positioning allows for structurally 30 simultaneous access to adjacent compartments. Restriction and sealing of compartments that are not accessible. It is necessary to maintain contact between these functions. Therefore, the technical need is to separate these functions from each other. Rather than being carried out with independent elements, the elements in question are the same. 6 In a mechanical structure, they complement each other's functions. It is aimed at structuring. The purpose of the invention: The main purpose of the invention is to provide pet food in predetermined portions. They should be kept in physically separated food compartments and 5 During use, only a selected compartment from those compartments is accessible. Multi-compartment with a rotating lid that allows one compartment to open while keeping the other compartments closed. and to develop a pet food bowl with mechanical portion control. With the invention Portion control simply requires the user to readjust the amount of food at each feeding. Instead of relying on the determination, direct access to pre-allocated portions is available. regulation of the feeding bowl through its structural and mechanical properties The aim is to achieve this. Accordingly, the invention allows for portion sizes to be separated into different compartments. Beyond simply holding it, it becomes clear which of the portions in question are accessible. between the window, the partition access geometry and the mechanical position of the revolving door It is intended to be determined by the reciprocal structural relationship. 15 One of the primary aims of the invention is to regulate the circumferentially within the vessel body. food compartments, partition walls separating those compartments from each other, and rotating A defined geometric relationship is established between the opening window created on the lid. The goal is to bring it to the desired position. With this geometric relationship, when the rotating lid is brought to the relevant usage position... The opening window should only overlap with the access opening of the selected feeding compartment, 20 The unselected food compartments remain under the closed surface of the rotating lid. that is intended. Another important purpose of the invention is to reduce the peripheral width of the opening window, for example, to accommodate food. the circumference of the access openings of the compartments and adjacent feeding compartments by structuring the partition walls between them according to their positions, 25 Multiple food compartments can be opened simultaneously at designated access positions on the rotating lid. The goal is to structurally restrict access. This way, access is limited to a single compartment. a feature that depends solely on the user moving the lid to an approximate position by removing the cover, opening, partition and dividing wall geometries from being a single unit. It is transformed into a mechanical feature resulting from its regulation. 30 Another purpose of the invention is to allow the rotating lid to be placed in a pre-set compartment corresponding to each feeding area. repeatable positioning at specified angular reach positions The goal is to create a mechanical indexing and position fixing system that provides this. 7 through the structure, the tendency of the rotary cover to remain freely in intermediate positions the reduction, the user mechanically adjusting the position corresponding to each feeding compartment its ability to detect and the opening window is predicted according to the selected feeding compartment The aim is to protect its position. Another purpose of the invention is to open with the aforementioned mechanical positioning structure. 5 By ensuring the window-partition geometry works together, the cover's defined position... When brought to one of the access positions, the access opening to the relevant feeding compartment The aim is to ensure that it is directed to the predicted position. Thus, geometric selectivity. the complementary use of mechanical positioning and portion access The aim is to make it more repeatable during the process. 10 Another purpose of the invention is to maintain the axis of rotation of the rotating lid relative to the lid body. The goal is to create a centering, connecting, transporting, and bearing structure. With this configuration, the radial displacement of the rotating cover during rotation occurs in the axial direction. unwanted displacement or wobbling relative to the container body the pre-existing 15-inch limit between the opening window and the feeding compartments. preserving the defined geometric relationship in different usage scenarios that is intended. Another purpose of the invention is to ensure that the centered movement of the rotating lid is solely rotational. not in terms of stability, but the continuity of selective access and sealing functions It is also used in terms of maintenance. In this context, the positional 20 between the lid and the body. movement of the opening window over the feeding compartments thanks to the preservation of the relationship Keeping the path predictable and avoiding unwanted gaps in the sealing contact areas. The aim is to limit their variation. One of the key aims of the invention is to make inaccessible food compartments accessible to the outside environment. The aim is to provide a sealing structure that will reduce contact with air and moisture. This 25 one or more of the opposite surfaces between the rotating lid and the lid body are in the same direction. with highly flexible sealing elements and the corresponding sealing contacts of these elements and The creation of pressure surfaces; different access points for the covers on these surfaces. When brought to their positions, the compartments remain closed, ensuring a sealing contact. It aims to contribute to its continuation. 30 Another objective of the invention is to ensure that the seal is only around the outer perimeter of the container body. regardless of whether it is provided, separating neighboring food compartments from each other The goal is to create an internal sealing system that also contributes to this. The top of the partition walls 8 contact between the regions and the corresponding lower surface regions of the rotating cover and / or sealing elements located in these areas, adjacent feed prevents unwanted passage of air, moisture and small food particles between compartments The aim is to structure it in a way that will restrict it. Another purpose of the invention is to provide the necessary contact force for sealing and to connect the rotating lid to the 5 a mechanical system that requires the necessary freedom of movement to be translated by the user. The aim is to maintain balance. For this purpose, sealing elements and their corresponding pressure systems are used. sufficient contact between the surfaces without rendering the rotational movement of the lid ineffective The aim is to organize it in a way that will contribute to its preservation. Another purpose of the invention is to prevent the rotating lid from moving outside its designed range of motion. The goal is to create a mechanical restraint system that prevents the lid from overflowing. rotating it outside the working range of the mechanical positioning elements its exit and the initially defined distance between the opening window and the feeding compartments The aim is to prevent the loss of geometric relationships. Another purpose of the invention is to allow the rotating lid to be used during transport, storage or when not in use. The goal is to provide a mechanical locking mechanism that prevents unintentional rotation. The locking mechanism creates a mechanical connection between the lid and the lid body. the lid being held in the selected secure position and any external forces that may be applied as a result of an inadvertently opening access to a food compartment It aims to contribute to its limitation. 20 Another objective of the invention is to enable the mechanical positioning structure to open the lid when needed. only allow it to progress between consecutive usage locations The aim is to allow for configuration. In such an application, specific food compartments... While sequential access is possible, the sequential usage feature in question... 25 as a necessary element of the invention's basic single-compartment selective access structure It is not restricted. Another objective of the invention is to adjust the existing angular position of the rotating lid and, consequently... making it easier for the user to identify which feeding compartment is accessible The aim is to provide a mechanical position indication system. This allows the user to control the position of the lid. It is easier to find which compartment corresponds to its usage position. 30 being able to determine and the ease of use of the lid positioning mechanism It can be increased. 9 Another purpose of the invention is to allow the container body to be placed on a table, floor or similar surface. base support and balance elements that contribute to its stability The aim is to create. Through these elements, a cyclic force is applied to the rotating lid, while the lid... limiting the sliding, rotating or tipping of its body and thus To ensure more stable lid positioning. 5 that is intended. Another purpose of the invention is to ensure that the compartments in contact with the food, the rotating lid, and the appropriate The other visible parts can be separated for cleaning, maintenance or refilling purposes. The aim is to create a construction that allows for its structuring. However, If a detachable structure is applied, opening after reassembly of the parts 10 window, feed compartments, mechanical positioning elements and sealing contacts The aim is to preserve the functional geometry between the regions. Another aim of the invention is to produce food while maintaining the same basic mechanical operating principle. the number of compartments, volume and geometry according to different usage needs The aim is to allow modification. Accordingly, the geometry of the opening window, 15 partition distribution, mechanical positioning points and sealing contacts the regions can be adapted to different numbers of partitions, thus allowing for different sizes and The aim is to enable the production of baby food bowls with different portion capacities. The fundamental technical approach of the invention is based on the mechanical elements that make up the vessel system. not only are these elements brought together on the same product, but the 20 elements in question in a defined structural and geometric relationship where they complement each other's functions It is based on this study. In this context, the food compartments and compartment dividers the geometry of the walls, the axis of rotation of the revolving door, the movement path of the opening window, and access limits, mechanical positioning points, cover centering and bearing The structure and sealing contact areas will be functionally compatible with each other. 25 It is organized in this way. With this structural integrity, the opening window is directed to the selected feeding compartment, Mechanically positioning the lid at the relevant angular position, adjacent feeding keeping compartments closed and sealing compartments that are not accessible The aim is for the functions of maintaining contact to complement each other. Thus, 30 Portion-controlled use doesn't stem from the individual function of a single piece, but from the container system itself. obtained from the mutual geometric and functional relationship of the mechanical elements that make it up The aim is to achieve this. In conclusion, the invention involves an electronic control unit, an electric motor, or software-based mechanical action applied by the user to the rotating lid without the need for a control mechanism. movement selective access to only one of the predefined feeding compartments transforms; keeps other food compartments closed; mechanically adjusts the lid position. determining; maintaining the axis of rotation and the cover-body alignment; unused 5 limiting the contact of the portions with the external environment and integrating these functions. a multi-compartment pet food container that operates within a mechanical structure The aim is to reveal the container. Explanation of the Figures Figure 1: General description of the invention: a multi-compartment pet food bowl with a rotating lid. its structure, the relative positioning of the lid body and the rotating lid, and the opening mechanism. It is a perspective view showing the position of the window. Figure 2: Food compartments inside the container body, compartment divider walls, and partitions. The placement of the access openings ensures that the opening window only opens to a selected feeding compartment. This is a top view showing the geometric relationship that will provide access. 15 Figure 3: Mechanical positioning of the rotating lid at specific angular positions. mechanical structures that allow movement to be restricted and locked when necessary This is a detailed view. Figure 4: Cross-sectional structure of the container body with rotating lid, food compartments, and compartment divider. the opposite sides of the walls, partition bases and the central connecting shaft and central shaft housing 20 It is a cross-sectional view showing the layout. Figure 5: Centering, bearing, conveying, and circumference between the rotary lid and the lid body. and a detailed cross-section of the sealing structures between compartments and the base anti-slip element. It is the appearance. References: 25 1. Container body 2. Food compartment 3. Rotating lid 4. Opening window 5. Lid locking element 30 6. Peripheral sealing element 7. Cover carrier ring 8. Partition wall 11 9. Mechanical positioning element 10. Position indicator element 11. Center connecting shaft 12. Rotary bearing surface 13. Lid movement limiting element 5 14. Sealing pressure surface 15. Base support element 16. Division base 17. Partition access opening Section 18, upper perimeter edge 10 19. Separating wall top contact surface 20. Under-cover contact surface 21. Opening window perimeter edge 22. Lid closing surface 23. Center shaft housing 15 24. Radial centering surface 25. Axial support surface 26. Positioning protrusion 27. Positioning correspondence slot 28. Positioning transition surface 20 29. Locking strike plate 30. Turning guide surface 31. Inter-compartment sealing element 32. Sealing contact surface between compartments. 33. Peripheral cover seating surface 25 34. External perimeter wall of the fuselage 35. Anti-slip base element 36. Lid gripping area 37. Opening window limiting edge Section 38 access boundary surface 30 Description of the Invention: The invention relates to a rotary device that provides selective access to a single compartment and mechanical portion control. multi-compartment pet food bowl with lid; basically a bowl body (1), lid 12 several arranged physically separated from each other within the body (1) extra food compartment (2) and selective access to the said food compartment (2) structures. to perform a rotational movement on the container body (1) in order to provide It consists of a mechanical door structure containing a rotating lid (3) positioned The basic working principle of the invention is to place 5 into the structures of the feeding compartment (2). only the selected food compartment from the pre-placed food portions (2) making the portion inside accessible during use and not being selected on the principle of keeping the other feeding compartment (2) structures closed at the same time This selective access is based on an opening on the rotating cover (3). not by its presence; opening window (4), feeding compartment (2), compartment divider wall (8), 10 partition access opening (17), opening window perimeter edge (21), opening window limiting The mutual geometric and boundary surface (37) formed between the edge and the partition access boundary surface (38) This is achieved through a mechanical relationship. The cup body (1) constitutes the basic support and housing structure of the invention and the food The compartment (2) allows the structures to be placed in a specific geometric arrangement. 15 It is structured in such a way as to provide. The cup body (1), in the preferred application Although it has a circular or near-circular form, the rotary cover (3) movement and different geometric structures that allow for environmental placement of feeding compartment (2) structures. It can also be realized in the form of the body outside the body located around the body (1). The perimeter wall (34) forms the outer boundary of the inner volume of the container body (1), food compartment 20 (2) limit the direct contact of the structures with the external environment and the container body (1) structural It contributes to its rigidity. The volume inside the container body (1) is divided by multiple partition walls (8). It is divided into separate food compartments (2). Each food compartment (2), a certain amount of food from the food in other food compartment (2) structures is physically 25 an independent volume that allows them to be stored separately The number, volume, angular width and geometry of the feeding compartment (2) are determined by the use of the food compartment. It can be changed according to the needs and the invention is with a certain number of feeding compartments (2) It is not restricted. Each food compartment (2) is bordered at the bottom by a compartment base (16). 30 The compartment base (16) facilitates the transport and storage of food in the food compartment (2). It is designed to have the mechanical strength necessary to ensure its durability. The partition base (16) can be produced integrated with the container body (1) or as a separate part. 13 It can be placed inside the container body (1) by being formed in this way. The compartment base (16), flat, slightly inclined, curved or similarly suitable surfaces to facilitate feeding. This can be implemented in various surface geometries. The partition wall (8) located between the adjacent feeding compartment (2) structures, different feeding It forms the basic physical barrier that prevents the portions from mixing together. 5 It brings. Partition divider wall (8), revolving door (3) from the level of partition base (16) rising in the direction and in the preferred application to the upper limit of the food compartment (2) It extends as far as the partition wall (8), only the structures of the feeding compartment (2). not a distinguishing element between them, and also opening window (4) and food Defining the selective access geometry between compartment (2) and adjacent mama 10 contributing to the creation of a sealing relationship between the structures of compartment (2) It provides. Each food compartment (2) has an upper section for accessing the food inside the food compartment (2). There is a partition access port (17) where it is implemented. Partition access port (17) is relevant Defines the usable access area for the feeding compartment (2) and the rotating lid (3) 15 The opposite sides at the angular positions determined by the opening window (4) on it It comes with the geometry of the partition access port (17) and the geometry of the opening window (4). by being configured in a compatible way, only within the selected food compartment (2) It contributes to ensuring access to adequate portion sizes. The feeding compartment (2) has a compartment on its upper perimeter edge (18). Compartment 20 upper perimeter edge (18), upper limit of feeding compartment (2) and compartment access opening (17) to define the surrounding closing area and the closing under the rotating cover (3) They are positioned opposite each other with sealing structures. The upper perimeter edge of the partition (18) rotates When the lid (3) is located in one of the designated access positions, the unselected food compartment (2) structures should be kept closed under the lid closing surface (22) and the word 25 The issue is the formation of uncontrolled openings at the upper limits of the feeding compartment (2) structures. It is structured in a way that will contribute to its limitation. The upper perimeter of the partition. edge (18), a continuous or regional environmental surface depending on the application method. This can be done in this way. The rotating lid (3) is angled 30° according to the structure of the food compartment (2) on the container body (1). It is the basic selective access element that changes position. Rotating cover (3), cover body (1) It has the size and geometry to cover the feeding compartment (2) structures on top. and has an opening to provide access to the selected food compartment (2) structure. 14 It has a window (4). When the rotating lid (3) rotates, it opens. The window (4) follows a circumferential path of movement on the container body (1) and different to predetermined access locations corresponding to the structures of the feeding compartment (2) It can be brought. Opening window (4), food compartment (2) created and selected on the rotating lid (3) 5 It creates the opening that provides access to the food inside. The opening window. (4), in terms of its circumferential width, radial extension and position on the rotating cover (3). The partition is configured to be compatible with the access port (17). Opening window (4) dimensions, sufficient access to take the food from the selected food compartment (2) while providing functional access to the adjacent feeding compartment (2) structures at the same time. It is determined in a way that will limit it. The opening window border (21) located around the opening window (4), opening window (4) forms the physical boundary between the closed surface of the rotating cover (3). Opening window perimeter edge (21), opening window (4) geometry preservation, revolving cover (3) maintaining mechanical strength and areas outside the opening window (4) 15 It contributes to keeping it closed. Opening window (4) is an opening that defines at least one of the access limits in the environmental direction. window limiting edge (37), especially adjacent feeding compartment (2) structures The border regions between them can be made accessible by opening window (4) It is structured in a way that physically limits the area. In contrast, door 20 The access boundary surface (38) of the compartment located on the side of the body (1) is for the relevant feeding compartment (2). It defines the physical boundary of the accessible area in the direction of the adjacent feeding compartment (2). between the opening window boundary edge (37) and the partition access boundary surface (38) The reciprocal geometric relationship is the fundamental mechanical basis of the invention, enabling selective access to a single compartment. It constitutes one of its features. The revolving door (3) has a predetermined access 25 When brought to this position, the opening window limiting edge (37), selected feeding compartment The partition access boundary surface defined for (2) comes into a position compatible with (38); thus opening the opening window (4) on the selected food compartment (2) (17) becomes opposite while the access areas of the neighboring feeding compartment (2) structures rotate. It is kept covered by the lid (3). Access to the compartment opening (17) with the opening window (4) 30 While establishing the aforementioned geometric relationship between them, the opening window (4) environmental access width of the adjacent feeding compartment (2) structures access boundary surface (38) The angular distance between them is determined via the opening window (4) at the specified access position. At the same time, an access area is created within two adjacent feeding compartments (2). It is arranged in such a way as to limit its entry. Partition wall (8), opening window boundary edge (37) and partition access boundary surface (38) for this purpose They create complementary physical boundaries. Thus, the revolving door (3) when mechanically placed in the relevant access position, 5 for the selected feeding compartment (2). while creating sufficient access opening, the access opening towards the adjacent feeding compartment (2) between the window boundary edge (37) and the partition access boundary surface (38) It is bounded by geometric relationships. In this geometric structure, the opening window (4), the perimeter edge of the opening window (21), the opening window boundary edge (37), partition access opening (17), partition dividing wall (8) and 10 The partition access boundary surface (38) works together. Thus, single partition access only if the opening window (4) dimensions are kept small or the user rotates not dependent on visually adjusting the position of the cover (3); access area, It is defined through mutual mechanical limits and angular geometry. The opening window (4) moves between two consecutive access positions while the rotating lid (3) is 15 It can pass through the partition wall (8). In this passage area, an opening window boundary edge (37), partition wall (8) and adjacent partition access boundary surface (38) The mutual placement of the structures, the simultaneous full placement for two adjacent feeding compartments (2) It is structured in a way that will limit the creation of an access area. In addition, mechanical positioning element (9), rotating cover (3) structure of the said intermediate 20 reducing the tendency to stay in positions the rotating lid (3) structure of the feeding compartment (2) to one of the predetermined access locations corresponding to their structures It directs [the system]. In this way, it achieves mechanical positioning through geometric constraint. By complementing each other, they contribute to the repeatability of selective access. When the rotating lid (3) is in the designated access position, the selected food compartment (2) 25 The compartment access port (17) on it is accessible via the opening window (4) It is coming. The compartment access opening (17) of the unselected food compartment (2) structures is rotating. The lid closing surface (22) is located under the lid (3). closing surface (22), opening window (4) on the rotating lid (3) and feeding The compartment (2) forms the surface covering the structures from above. 30 The partition wall (8) has a partition wall top contact surface (19) on top of the partition wall. It is located. The upper contact surface of the separating wall (19) is located on the underside of the rotating cover (3). The separator is positioned to be opposite the bottom contact surface (20) of the cover. 16 The mutual relationship between the upper wall contact surface (19) and the lower cover contact surface (20), The adjacent feeding compartment (2) structures are separated from each other from the top and rotate Contributing to limiting the formation of an uncontrolled passage gap under the cover (3). It provides. The rotating lid (3) rotates via the central connecting shaft (11) on the lid body (1). It is positioned according to its axis. The central connecting shaft (11) is connected to the rotating cover (3). It forms a central connection between the body (1) and the rotating cover (3) rotation It contributes to the preservation of its axis throughout its use. Center connecting shaft (11), It can be formed as an integrated unit with the lid body (1) or the rotating lid (3), or as a separate unit. It can also be used as a fastening element. 10 The center shaft housing (23), which is positioned opposite the center connecting shaft (11), is the center It forms the mechanical guidance and bearing area for the connecting shaft (11). Center The shaft housing (23) allows controlled rotational movement around the central connecting shaft (11). It is sized to provide a connection between the rotating lid (3) and the lid body (1). It contributes to the preservation of the center of rotation. 15 Between the rotating cover (3) and the cover body (1) there is also a rotating bearing surface (12) It is located. The rotating bearing surface (12), the rotating cover (3) and the cover body (1) to carry the axial loads transferred on it and to control the movement of the rotating cover (3). It allows this to be done via a contact surface. Rotary bearing The surface (12) can be formed directly between the lid body (1) and the rotating lid (3), as well as 20 This can also be achieved through low-friction intermediate elements. In order to maintain the radial position between the rotating lid (3) and the lid body (1) There is a radial centering surface (24). The radial centering surface (24) rotates According to the arrangement of the food compartment (2) inside the lid body (1) on the axis of rotation of the lid (3). It maintains its central position and the opening window located on the rotating cover (3) 25 (4) restricts the radial displacement of the movement path during use. The axial distance between the rotating lid (3) and the lid body (1) is determined for the working There is an axial support surface (25) to keep it within the range. Axial support surface (25), keeping the vertical position of the rotating cover (3) under control, rotating cover Maintaining the distance between (3) and the partition wall (8) and sealing 30 Contributing to the continuation of the contact conditions established on the elements It provides. 17 a suitable place around the rotating lid (3) or between the rotating lid (3) and the lid body (1) The cover carrier ring (7) is located in the area. The cover carrier ring (7) is the rotating cover (3) mechanically supports the surrounding area, occurring on the rotating cover (3) limiting possible tilting, wobbling and radial misalignment and rotating door (3) Contribution to keeping the surrounding areas at the distance determined by the vessel body (1) 5 It provides. The turning guide surface (30) guides the movement of the turning cover (3) along the determined circumferential path. It is a mechanical guide surface that enables the realization of the turning guide surface (30). The lid carrier ring (7) works oppositely on the lid body (1) or the rotating lid (3). It can be implemented in the form of circular or curved surfaces. 10 Center connecting shaft (11), center shaft housing (23), rotary bearing surface (12), radial centering surface (24), axial support surface (25), cover carrier ring (7) and rotation The guide surface (30) works together to provide a stable rotational geometry for the rotary cover (3). This structure creates only the movement of the rotating lid (3). not only to facilitate, but also with the opening window (4) and the partition access opening (17) and opening 15 between the window boundary edge (37) and the partition access boundary surface (38) This contributes to the preservation of the geometric relationship throughout its use. Thanks to the centering and bearing structure, the rotating cover (3) rotates on the axis of rotation. radial offset and axial distance between the rotating lid (3) and the lid body (1) The aim is to limit the changes. Thus, the opening window (4) 20 environmental movement path followed by the feeding compartment (2) structures compartment access opening (17) can be kept stable according to their positions; at the same time, the upper contact of the separating wall Working between the surface (19) and the bottom contact surface (20) and the sealing structures This contributes to maintaining the range. Therefore, centering and bearing are important. Its structure is not only mechanically transported by the rotating door (3) structure, but also selectively 25 access geometry and sealing contact within the same operating configuration It serves to protect it. The rotating lid (3) provides predetermined angular access for each food compartment (2). They are held in their positions by means of a mechanical positioning element (9). Mechanical Positioning element (9), rotating lid (3) during movement of different food compartment (2) 30 their positions are mechanically perceived by the user and the rotating cover (3) This ensures that the movement is stabilized in these locations. 18 In the preferred application, the mechanical positioning element (9), positioning protrusion (26), positioning correspondence slot (27) and positioning transition surface (28) It includes a positioning protrusion (26), a rotating lid (3) or a lid body (1) It can be created on it; the positioning counterpart slot (27) is on the opposite side 5 on the component at the angular locations corresponding to the access positions of the food compartment (2) It can be edited. Positioning when the rotating cover (3) is moved from one access position to another protrusion (26) moves along the positioning transition surface (28) and the relevant access When the position is reached, the positioning corresponds to the slot (27) mechanically It matches. The positioning transition surface (28) is on the positioning projection (26) 10 Switching between adjacent access locations without creating a sudden impact or excessive force. a geometry that allows for inclined, curved or elastic deformation is able to have. Mechanical positioning element (9), positioning projection (26), positioning Mechanical relationship between the corresponding slot (27) and the positioning transition surface (28) 15 Thanks to the rotary cover (3) there are tactile and repeatable access positions. Thus, the user is positioned between the opening window (4) and the feeding compartment (2). Mechanical positioning element, eliminating the need for only visual alignment. It can reach the access location defined by (9). Each stable angular position defined by the mechanical positioning element (9) is 20 with the compartment access opening (17) on the relevant food compartment (2) and the rotating cover (3) between the opening window (4) corresponding to a predetermined alignment position It comes with a positioning protrusion (26) and a positioning corresponding socket (27). When mechanically matched, the rotary cover (3) is held in the alignment position in question. and between the opening window boundary edge (37) and the partition access boundary surface (38) 25 This contributes to the creation of selective access geometry at the predicted location. Therefore, the mechanical positioning element (9) is only felt by the user. not an auxiliary structure that creates a stopping effect, rotating cover (3) angular Indexing of the location of the feeding compartment (2) distribution and selective access a mechanical 30 that enables the repeatable creation of its geometry It is a positioning structure. To prevent the rotary cover (3) from moving outside the designed operating range. For this purpose, there is a lid movement limiting element (13). Lid movement 19 created on the limiting element (13), the rotating cover (3) or the cover body (1) a protrusion, shoulder, channel end, bearing surface or similar physical limitation It can be realized in the form of geometry. The lid movement limiting element (13) limits the movement of the rotating lid (3) to the specified limit. 5. Upon reaching it, it makes contact with a corresponding surface and rotates further. It limits it. Thus, by the mechanical positioning element (9) Going outside the defined working range, opening the window (4) and feeding compartment (2) loss of initial geometry between structures or overuse of mechanical elements This prevents strain. Rotating lid (3) unintentional movement during transport, storage or out of use 10 It includes a lid locking element (5) to prevent it from falling. Lid locking element (5) is positioned on the rotating lid (3) or lid body (1) and opposite It is mechanically matched with the locking counter element (29) located on the side. The locking counter element (29) can be grasped by the cover locking element (5), a socket, ledge, shoulder, channel or similar that can be held or physically obstructed 15 It can be realized in the form of a corresponding geometry. With the cover locking element (5) When the locking counter element (29) is brought into the opposite position in the locked state, the rotating cover a mechanical linkage that limits the rotational movement between (3) and the container body (1) is being created. The lid locking element (5) can be used only in the transport position or 20 depending on the application. It can be activated at certain feeding compartment (2) access locations It can be configured. Thus, externally applied to the rotating cover (3) the opening window (4) position of the forces unintentionally changes It is being restricted. The cover locking element (5) and the mechanical positioning element (9) have different mechanical 25 It is structured to have functions. Mechanical positioning element (9), during normal use the rotating lid (3) structure to the feeding compartment (2) structures serving to reposition them in a repeatable manner at corresponding access locations while doing so, the lid locking element (5) can move the rotating lid (3) when needed. Mechanical restraint against involuntary positional changes by significantly limiting movement 30 This ensures that the normal access action performed by the user is... Locking function that may be required during transport, storage or when not in use. They can be separated mechanically. Position on the rotary cover (3) or in mechanical contact with the rotary cover (3) The indicator element (10) can be found. Position indicator element (10), rotary cover (3) the current angular position and, in contrast, the position of the accessible feeding compartment (2) It facilitates the perception by the user. Position indicator element (10), a mechanical protrusion, recess, relief, alignment geometry or similar physical indication 5 It can be done in this way. Position indicator element (10) is synchronous with mechanical positioning element (9) It can be configured to work in such a way. Thus, the mechanical positioning element (9) position indicator element (10) while mechanically determining the position of the rotating cover (3) This also helps the user to more easily notice the same location. 10 The rotating lid (3) facilitates the application of force when turning by the user. For this purpose, there is a lid gripping area (36). The lid gripping area (36) rotates the outer circumference or top surface of the cover (3) formed by protruding, indented, serrated, curved or it can be realized in the form of another physical surface suitable for gripping. The lid gripping area (36) allows the user to control the rotation of the rotating lid (3). It facilitates the application of the moment. In the invention, the structures of the feeding compartment (2) that are not accessible are exposed to the outside air and humidity. multiple environmental and inter-compartment measures to limit contact A leak-proof zone can be created between the container body (1) and the rotating lid (3) outside. There is a circumferential sealing element (6) between its perimeter. Circumferential sealing 20 element (6), made of elastomeric, flexible polymeric or similar suitable material can be realized and the circumference between the rotating lid (3) and the lid body (1) It restricts the passage of air, moisture, and small particles through the gap. The circumferential sealing element (6) is opposite to the sealing pressure surface (14). It is working. Sealing pressure surface (14), circumferential sealing element (6) 25 geometrically designed to create a specific contact force on it It is arranged. The sealing pressure surface (14), the rotating cover (3) or the lid body. (1) can be created on and with environmental sealing element (6) continuous or It can establish regional contacts. Circumferential lid seating surface (33) between lid body (1) and rotating lid (3) 30 It is located. The surrounding cover seating surface (33), the rotating cover (3) surrounding area Contributing to holding the container body (1) in the determined vertical and radial position. 21 to provide and seal pressure surface (14) with circumferential sealing element (6) It supports maintaining contact between them. The surrounding cover seating surface (33) will not obstruct the rotational movement of the rotating cover (3). however, the gap between the rotating lid (3) and the lid body (1) must be kept under control It is structured in a way that will contribute to this. Thus, the environmental sealing element 5 (6) It can continue to function in different angular positions. Passage of air, moisture and small food particles between adjacent food compartment (2) structures There is a sealing element (31) between the compartments to limit the number of compartments. The intercompartment sealing element (31) is located at the top of the partition divider wall (8), rotating. on the underside of the cover (3) or in the area of ​​mutual contact between the two components in question 10 It can be positioned. Intercompartment sealing element (31), intercompartment sealing contact surface (32) It works in conjunction with the intercompartment sealing contact surface (32), between the compartments The sealing element (31) will create sufficient mechanical contact on the rotating cover (3) It is designed in a way that will not excessively hinder movement. 15 Separator wall top contact surface (19), cover bottom contact surface (20), between compartments sealing element (31) and intercompartment sealing contact surface (32) together by working a controlled contact line at the upper limits of the neighboring feeding compartment (2) structures It can create. Thus, the selected food compartment (2) can be opened via the window (4). While accessible, the other food compartment (2) structures are only accessible on the lid closing surface 20 (22) not only is it covered by the adjacent feeding compartment (2) structures The leak-proof contact is maintained even in the boundary areas between them. The perimeter sealing element (6) and the intercompartment sealing element (31) have different transitions. It is working against the roads. The environmental sealing element (6) is mainly the door The body (1) allows air and moisture to pass through the external environment via its outer perimeter. while limiting the sealing element between compartments (31) adjacent food compartment (2) It limits unwanted transitions that may occur between structures. Environmental sealing element (6) for the sealing structures to remain functional. sealing pressure surface (14), separator wall upper contact surface (19), cover bottom contact surface (20), intercompartment sealing element (31), intercompartment sealing contact 30 mutual distance and contact between surface (32) and surrounding cover seating surface (33) Mechanical balance between forces and usable rotational resistance with adequate sealing. It is arranged in a way that will provide this. 22 Surround sealing while the rotating cover (3) moves between different access positions. circumferential contact and access between element (6) and sealing pressure surface (14) inter-compartment sealing element (31) in their positions inter-compartment sealing a working range for maintaining contact between the contact surface (32) It is formed. Axial support surface (25) and circumferential cover seating surface (33), 5 Contributing to the control of the axial distance between the rotating lid (3) and the lid body (1). by causing the sealing elements to be overtightened or lose contact This limits the possibility. Thus, the sealing structure and the rotating cover (3) Freedom of movement is no longer considered two separate characteristics working against each other, but rather the same. They are arranged in such a way that they can be maintained together within a mechanical structure. 10 Centering and bearing are crucial in maintaining the seal throughout the service life. Its structure also functions. Center link shaft (11), center shaft housing (23), rotary bearing surface (12), radial centering surface (24), axial support surface (25), cover carrier ring (7) and turn guide surface (30), with turn cover (3) and cover body (1) by checking the relative position between the circumferential sealing element (6) and the compartments 15 Contact conditions on the interlocking sealing element (31) are different rotary cover (3) They contribute to the preservation of their locations. The bottom of the container body (1) has a base support element (15). Base support element (15) ensures that the food bowl is kept balanced on the surface of use and Contribution to the transfer of loads acting on the container body (1) to the usable surface 20 It provides. The base support element (15) is integrated with the bottom surface of the container body (1) or It can be performed as a separate piece. Anti-slip base element (35) in relation to base support element (15) It is located. The anti-slip sole element (35) is made of high-friction elastomeric or It can be made from a similar suitable material and the user lid gripping area is 25 When a rotating force is applied to the lid body (1) via (36) the rotating lid (3) its structure sliding on the surface of use or rotating around its own axis It restricts. The base support element (15) and the anti-slip base element (35) work together to feed This helps to keep the container stable during use. Thus, the lid 30 The force applied through the gripping area (36) moves the structure of the cup body (1). instead of turning it into a controlled rotational movement on the rotating cover (3) is being facilitated. 23 In the use of the invention, food portions are determined in advance and different food compartments (2) They are placed in their structures. Each feeding compartment (2), compartment base (16), body exterior defined by perimeter wall (34), partition wall (8) and partition top perimeter edge (18) It forms a separate storage volume. The rotating lid (3) is placed on the lid body (1). When placed, the unselected food compartment (2) structures compartment access opening (17) cover 5 It is kept under the closing surface (22). When the user wants to access the portion inside the selected food compartment (2), the lid closes. It applies a rotational force on the rotating cover (3) via the gripping area (36). Rotary cover (3), central connecting shaft (11), central shaft housing (23), rotary bearing surface (12), radial centering surface (24), axial support surface (25), cover carrier ring (7) 10 and movement along the rotation geometry determined by the rotation guide surface (30). is doing. The rotating lid (3) moves from one food compartment (2) position to the other food compartment (2) position. as it moves along the positioning projection (26), positioning transition surface (28) it is in motion and when the relevant access position is reached, the positioning corresponds to slot 15 It is mechanically matched with (27). As a result of this matching, mechanical positioning element (9), rotating lid (3) structure for selected food compartment (2) predetermined It holds it in an angular position. In that location, the opening window (4) is located above the selected food compartment (2). It is made to be opposite with the access port (17). Opening window perimeter edge (21) access 20 When creating the general boundary of the area, divide with the opening window bounding edge (37). The geometric relationship between the access boundary surface (38) is determined by the opening window (4). uncontrolled movement of the accessible area toward the adjacent feeding compartment (2) structure It limits its expansion in this way. While the selected food compartment (2) is accessible via the opening window (4), the other 25 under the access opening (17) of the feeding compartment (2) structures lid closing surface (22) It remains. At the same time, the upper contact surface of the separating wall (19), the lower contact surface of the cover (20), intercompartment sealing element (31) and intercompartment sealing contact surface (32), unwanted passages at the upper limits of the adjacent feeding compartment (2) structures It restricts. 30 Circumferential sealing element (6) around the outer circumference of the container body (1), sealing pressure The contact between the surface (14) and the surrounding cover seating surface (33) is also maintained. Thus, the structures of the unselected feeding compartment (2) are only physically accessible. 24 not only being kept enclosed, but also having direct contact with the outside air and humidity. This helps to reduce [the problem]. The rotary switch turns when the user wants to access a portion in another food compartment (2). The cover (3) is being flipped over again. The positioning tab (26) shows the current positioning. exiting through the corresponding slot (27) and passing through the positioning transition surface (28) a 5 moving to the next position and corresponding to the new feeding compartment (2) position The positioning corresponds to the slot (27). Opening during the same movement. window (4) with the compartment access opening (17) on the newly selected feeding compartment (2) It becomes reciprocal. The mechanical positioning element (9) is two 10 of the rotating cover (3) structure depending on the application. will allow movement in one direction or a specific turn between successive access positions. It can be configured in a way that prioritizes direction. One-way or directional. Positioning projection in limited application (26), positioning correspondence The mutual geometries of the slot (27) and the positioning transition surface (28), the transition in one direction. It creates lower mechanical resistance during the transition, while creating higher resistance in the reverse direction (15). in a way that creates mechanical resistance or physical limitation It can be arranged in a sequential order in the food compartment (2) structures. An alternative mechanical access system can be implemented. The feeding compartment (2) structures can be made in equal volume or in different portions They can also be produced in different volumes in order to maintain their quantities. 20 Accordingly, the partition access door (17), opening window (4), opening window surround edge (21), opening window boundary edge (37) and partition access boundary surface (38) Their geometries can be adapted according to the relevant feeding compartment (2) layout. The structures of the bowl body (1) and the feeding compartment (2) are integrated in the preferred application. It can be implemented structurally, while alternative applications include cleaning, filling or 25 It can be configured to be detachable depending on maintenance needs. A detachable If the restructuring is implemented, the structure of the feeding compartment (2) will be rebuilt into the container body. (1) after being placed inside, the partition access opening (17), the upper perimeter edge of the partition (18), the upper contact surface of the partition wall (19) and the partition access boundary surface (38) with the rotating cover (3) Re-determine the working geometry of the corresponding structures on it. 30 The creation of a single unit is the basis. Thus, even if the separability feature is implemented, it is a single unit. Maintaining the fundamental geometric relationship defined for selective access and sealing of the compartment. It can be provided. The rotating lid (3) can also be separated from the lid body (1) for maintenance or cleaning purposes. It can be realized in this way. In such a configuration, the central connecting shaft (11) The connection between the center shaft housing (23) is restored when the rotary cover (3) is repositioned. in a way that will allow the axis of rotation to be correctly re-established It is arranged. Cover carrier ring (7), radial centering surface (24), axial 5 support surface (25), turn guide surface (30) and circumferential cover seating surface (33) Operation between the rotating lid (3) and the lid body (1) after reassembly It contributes to the preservation of its geometry. Container body (1), food compartment (2), rotating lid (3), compartment divider wall (8), compartment base (16), outer perimeter wall (34) and similar load-bearing structures, suitable for contact with food 10 They can be manufactured from polymeric, metallic, or composite materials. Environmental sealing element (6), intercompartment sealing element (31) and anti-slip The base element (35) is made of elastomeric or similar flexible materials. can be created. Within the scope of the invention, the lid locking element (5), mechanical positioning element (9), 15 The position indicator element (10) and the cover movement limiting element (13) have different mechanical features. This can be achieved using geometries. The key here is lid locking. Limiting unwanted rotational movement with element (5), mechanical positioning Creating repeatable access locations with element (9), location User perception of the position of the indicator element (10) and the rotary cover (3) is 20 facilitating and closing movement limiting element (13) and rotating lid (3) the movement must be kept within the foreseen working limits. The fundamental technical impact of the invention stems not from the individual function of a single part, but from the container system. It consists of the reciprocal geometric and functional relationships of the mechanical parts that make it up. It is coming. Opening window (4), partition access opening (17), opening window perimeter edge 25 (21), opening window boundary edge (37) and partition access boundary surface (38) single When creating the access geometry to the compartment; mechanical positioning element (9), positioning protrusion (26), positioning counterpart slot (27) and positioning transition surface (28) ensures that the geometry in question is formed in the correct angular position. It provides. 30 Center connecting shaft (11), rotary bearing surface (12), center shaft housing (23), radial centering surface (24), axial support surface (25), cover carrier ring (7) and rotation guide surface (30) contributes to the preservation of the said geometric relationship throughout use. 26 It provides. Environmental sealing element (6), sealing pressure surface (14), circumferential cover seating surface (33), separating wall top contact surface (19), cover bottom contact surface (20), intercompartment sealing element (31) and intercompartment sealing The contact surface (32) is the structure of the feeding compartment (2) which is not accessible from the outside environment and It contributes to the separation of the neighboring feeding compartment (2) structures. 5 The invention's operating principle involves mechanical portion control, where the amount of food is administered by the system. This does not mean that it is actively weighed or measured. Portion control, predetermined amounts of food separate food compartment (2) structures It should be kept inside and used only in the selected food compartment (2) This is achieved by being able to access the portion inside. Therefore, 10 system, electronic weighing, sensor, electric motor or software-based dosing Portioned use through mechanical and geometric selectivity without necessity. It can provide. The invention involves mechanical portion control and selective access, two independent components. They are not separate results, but complementary results of the same mechanical working chain. 15 The portions of food are separated in advance within the food compartment (2) structures. while enabling the quantities to be kept in physically different volumes; opening window (4), partition access opening (17), opening window limiting edge (37), partition access boundary the relationship between the surface (38) and the mechanical positioning element (9) It determines which portions will become accessible. Centering, 20 Bearing, movement restriction, locking and sealing structures enable this selective access. contributes to maintaining a stable and repeatable relationship throughout the period of use. Therefore, the technical result of the invention does not stem from a single mechanical element, but from words. The subject is derived from the complementary geometric and mechanical relationships of the structures. is being done. 25 As a result, the subject of the invention is the body of the pet food bowl (1), the food compartment (2), rotating cover (3), opening window (4), cover locking element (5), circumferential sealing element (6), cover carrier ring (7), partition divider wall (8), mechanical Positioning element (9), position indicator element (10), center connecting shaft (11), Rotary bearing surface (12), cover movement limiting element (13), sealing pressure 30 surface (14), base support element (15), partition base (16), partition access opening (17), partition upper perimeter edge (18), upper contact surface of the separating wall (19), lower contact surface of the cover (20), opening window perimeter edge (21), cover closing surface (22), center shaft housing (23), 27 radial centering surface (24), axial support surface (25), positioning projection (26), positioning correspondence slot (27), positioning transition surface (28), locking counter element (29), return guide surface (30), intercompartment sealing element (31), intercompartment sealing contact surface (32), circumferential cover seating surface (33), outer perimeter wall of the body (34), anti-slip base element (35), cover gripping area 5 (36), opening window boundary edge (37) and partition access boundary surface (38), single Selective access to the compartment, mechanical positioning, preservation of rotational geometry, insulation of the inaccessible feeding compartment (2) structures and mechanical portion control functional uses that complement each other within the same construction It is carrying out. 10 Thanks to this structural integrity, the invention is only one that includes more than one food compartment (2). from a rotating lid (3) arrangement with a storage container or only an opening window (4) not only; the access relationship between the opening window (4) and the partition access port (17) by the opening window boundary edge (37) and the partition access boundary surface (38) geometrically constrained, the mechanical positioning element of the relationship in question is 15 (9) repeated in the angular positions determined by centering and bearing food whose geometric stability is maintained by its structure and which is not accessible The compartment (2) structures are closed with environmental and inter-compartment sealing structures. It forms an integrated mechanical feeding bowl in which the animal is held. The application forms of the invention described above involve the basic mechanical structure and 20 This is provided for the purpose of explaining the functional relationships between the components and the invention is described as follows: The subject is not limited to example applications. Number and volume of food compartment (2), opening window (4) geometry, mechanical positioning element (9) application, centering and bearing geometries, cover locking element (5) structure, sealing elements The cross-sectional geometries and the shapes of the lid body (1) and the rotating lid (3) are suitable for different applications. It can be changed accordingly. In these changes, the opening window (4) and the partition access port (17) The geometric relationship that provides selective access to a single compartment between the opening window access created by the access boundary surface (38) with the boundary edge (37) the mechanical positioning element of the limitation and the relationship in question (9) 30 It is anticipated.

Claims

28 REQUESTS 1. Pet food in physically separated portions. to be preserved and mechanically placed in one of the selected portions. It is a multi-compartment pet food bowl with a rotating lid for easy access, Its feature is; a container body (1), multiple 5 arranged inside the container body (1) feeding compartment (2), partition separating adjacent feeding compartment (2) structures. The dividing wall (8) will cover the feeding compartment (2) structures from above and the container body (1) The rotating cover (3) is placed on which the angular position changes, rotating to provide access to the selected food compartment (2) structure on the lid (3) The opening window created (4), opening window 10 on each feeding compartment (2) (4) created in such a way that they will become mutual in the access locations determined by (4). The adjacent area accessible by the partition access door (17), opening window (4) opening window that restricts expansion in the direction of the feeding compartment (2) The boundary edge (37) is adjacent to the accessible area for the relevant feeding compartment (2). The access boundary surface of the compartment forming the physical boundary in the direction of the feeding compartment (2) is 15 (38) and rotating lid (3) structure corresponds to the feeding compartment (2) structure. mechanical positioning that positions at specified angular reach positions It includes element (9); opening window (4), partition access opening (17), partition divider wall (8), opening window limiting edge (37) and partition access limiting surface (38) the mutual geometric relationship between the rotating cover (3) mechanical 20 in one of the access locations determined by the positioning element (9) When located, create access area for the selected feeding compartment (2) next to will geometrically restrict simultaneous access to the feeding compartment (2) structures It is characterized by its structure.

2. According to claim 1, it is a multi-compartment pet food bowl with a rotating lid, and its feature is; 25 opening window (4) and on the rotating cover (3) except for the opening window (4) The opening window perimeter edge (21) forms the physical boundary between the closed surface, closing the upper limit of the feeding compartment (2) and the access opening (17) around the compartment opening. Opening on the upper perimeter edge of the compartment defining the area (18) and the rotating cover (3). Covering the structure of the feeding compartment (2) excluding the window (4) 30 including the surface (22); the upper perimeter edge of the compartment (18) and the lid closing surface (22) the mutual geometric relationship between them, the revolving door (3) determined access when located in one of the locations of the unselected food compartment (2) structures 29 by arranging the partition access opening (17) structures to keep them closed It is characterized by...

3. According to claim 1, it is a multi-compartment pet food bowl with a rotating lid, and its features are: the compartment base (16) and the cup body forming the lower limit of each food compartment (2) (1) includes the outer perimeter wall of the body (34) which forms the outer limit of its internal volume; formula 5 partition (2) structures partition base (16), body outer perimeter wall (34) and partition enclosure physically separated from each other by a dividing wall (8) It is characterized by its structure, which forms volumes.

4. According to claim 1, it is a multi-compartment pet food bowl with a rotating lid, and its features are: The central 10 that defines the axis of rotation between the rotating lid (3) and the lid body (1) with the central connecting shaft (11) and central connecting shaft (11) that form the connection mechanical guidance around the axis of rotation in question by positioning themselves opposite each other. It includes the center shaft housing (23) which provides; center connecting shaft (11) and center shaft The mutual relationship between the housing (23) and the rotating cover (3) axis of rotation of the cover 15 will hold the body (1) and feeding compartment (2) in the position determined according to their structures. It is characterized by its arrangement in this manner.

5. According to claim 4, it is a multi-compartment pet food bowl with a rotating lid, and its features are: controlled contact of rotational movement between the rotating lid (3) and the lid body (1) Rotary bed surface (12), rotary cover (3) for implementation via According to the arrangement of the food compartment (2) inside the container body (1) of its structure, radial 20 with radial centering surface (24) and rotating cover (3) that maintains its position axial distance between the body (1) that is kept within the specified working range including support surface (25); rotary bearing surface (12), radial centering surface (24) and axial support surface (25) structures are monitored by the opening window (4) environmental movement path feeding compartment (2) structures compartment access opening (17) 25 characterized by being structured in a way that keeps them stable according to their positions. is being done.

6. According to claim 5, it is a multi-compartment pet food bowl with a rotating lid, and its features are: by mechanically supporting the circumferential region of the rotating cover (3), bending, Cover carrier ring (7) and rotary 30 that limit wobble or radial misalignment. The turn that guides the movement of the cover (3) on the defined circumferential movement path including guide surface (30); cover carrier ring (7) and return guide surface (30) central connecting shaft (11), central shaft housing (23), rotary bearing surface of their structures (12) rotates together with the radial centering surface (24) and axial support surface (25). structuring the cover (3) in such a way as to create a stable rotation geometry It is characterized by...

7. According to claim 1, it is a multi-compartment pet food bowl with a rotating lid, and its features are: mechanical positioning element (9) structure, rotating lid (3) or lid body (1) positioning protrusion (26) created on the opposite side food compartment 5 (2) arranged in angular positions corresponding to access locations mechanical positioning between the corresponding slot (27) and adjacent access locations including a transitional positioning transition surface (28); positioning when the protrusion (26) and the positioning corresponding slot (27) are mechanically matched The angular reach specified for the relevant food compartment (2) of the rotating lid (3) structure is 10 It is characterized by being structured in such a way that it is held in place.

8. According to claim 7, it is a multi-compartment pet food bowl with a rotating lid, and its features are: positioning protrusion (26), positioning counterpart slot (27) and positioning transition surface (28) reciprocal geometries, successive access A lower mechanical 15 in a transition in a defined direction of rotation between positions. resistance and higher mechanical or physical resistance in the reverse transition It is characterized by being regulated in a way that creates limitations.

9. According to claim 7, it is a multi-compartment pet food bowl with a rotating lid, and its features are: positioning projection (26) and positioning corresponding slot (27) mechanical When matched, the opening window (4) and the compartment on the feeding compartment (2) are 20 Alignment position and opening window determined between access port (17) Selective access between the boundary edge (37) and the partition access boundary surface (38). mechanical positioning element (9) structure to form its geometry Characterized by mechanical indexing according to the distribution of the feeding compartment (2). is being done. 25 10. According to claim 1, it is a multi-compartment pet food bowl with a rotating lid, the feature of which is; the movement of the rotary cover (3) outside the specified operating range It includes a limiting element (13) for limiting the movement of the lid and the lid movement limiting element (13) structure of the rotating cover (3) to the determined movement limit When it reaches this point, it makes mechanical contact with a corresponding surface and rotates further. 30 It is characterized by being structured in a way that restricts movement.

11. According to Claim 1, it is a multi-compartment pet food bowl with a rotating lid, the feature of which is; lid locking located on the rotating lid (3) or lid body (1) element (5) and mechanically matched with the said cover locking element (5) 31 including a locking counter element (29); locking with a cover locking element (5) When the counter element (29) is brought to the mutually locked position, the rotary cover (3) and the lid will form a mechanical link between the body (1) that will limit the rotational movement. It is characterized by its structure.

12. According to claim 1, it is a multi-compartment pet food bowl with a rotating lid, and its feature is; 5 on the rotary door (3) or in mechanical contact with the rotary door (3) positioned and rotating cover (3) for sensing the angular position containing position indicator element (10); the structure of position indicator element (10) Feeding compartment (2) defined by mechanical positioning element (9) 10 characterized by being organized in a way that corresponds to access locations is being done.

13. According to Claim 1, it is a multi-compartment pet food bowl with a rotating lid, the feature of which is; circumferential positioned between the lid body (1) and the outer circumference of the rotating lid (3) sealing element (6), controlled on circumferential sealing element (6) sealing pressure surface (14) and rotating cover (3) forming mechanical contact 15 Contribution to keeping the environmental zone in the position determined on the vessel body (1) including circumferential cover seating surface (33) which provides circumferential sealing; element (6), sealing pressure surface (14) and circumferential cover seating surface (33) the reciprocal relationship between the revolving door (3) at different angular access positions When present, the circumferential contact between the lid body (1) and the rotating lid (3) is 20 It is characterized by being structured in a way that allows for its protection.

14. According to claim 13, it is a multi-compartment pet food bowl with a rotating lid, and its features are: partition wall (8) upper contact surface of the partition wall formed on the upper part (19), rotating cover (3) on the bottom side with the separating wall upper contact surface (19) The contact surface under the lid (20), adjacent feeding compartment (2) structures 25 intercompartment sealing element (31) to limit the passage between them and provides mutual mechanical contact with the sealing element (31) between the compartments containing a sealing contact surface (32) between compartments; separating wall top contact surface (19), bottom contact surface (20), intercompartment sealing element (31) and the sealing contact surface (32) of the structures of the adjacent feeding compartment 30 (2) a controlled system that restricts the passage between compartments at the upper limits of the structures It is characterized by its structure that forms a leak-proof contact zone. is being done. 32 15. According to claim 14, it is a multi-compartment pet food bowl with a rotating lid, and its features are: circumferential sealing element (6), sealing pressure surface (14), separating wall top contact surface (19), bottom cover contact surface (20), intercompartment sealing element (31), intercompartment sealing contact surface (32) and circumferential cover seating the mutual distance and contact relationships between the surface (33) and the cup body (1) and 5 circumferential seal between the rotating lid (3) and the adjacent food compartment (2) While maintaining the sealing contact between the structures, the rotating cover (3) rotates by arranging it in a way that creates a working range that allows for movement It is characterized by...

16. According to claim 13, it is a multi-compartment pet food bowl with a rotating lid, feature; 10 Checking the axial distance between the rotating lid (3) and the lid body (1) It includes an axial support surface (25) for its construction and the axial support surface The geometric relationship between (25) and the surrounding cover seating surface (33), the surrounding contact between the sealing element (6) and the sealing pressure surface (14) When the rotating cover (3) is brought to different angular access positions, it contributes to its protection. 15 It is characterized by being structured in a way that will provide this.

17. According to Claim 1, it is a multi-compartment pet food bowl with a rotating lid, and its features are: The bowl body (1) has a mechanical surface for using the food bowl at the bottom. use of base support element (15) and container body (1) structure supporting as anti-slip base that limits sliding or spinning on the surface 20 It is characterized by containing element (35).

18. According to Claim 1, it is a multi-compartment pet food bowl with a rotating lid, and its features are: for the user to apply a torque on the rotating cover (3) The rotating cover (3) is formed on the outer circumference or top surface of the cover grip. It is characterized by containing the region (36). 25 19. According to Claim 2, it is a multi-compartment pet food bowl with a rotating lid, and its features are: The upper perimeter edge (18) of the partition structure, the revolving cover (3) designated access when located in one of the locations of the unselected food compartment (2) structures The partition access opening (17) will keep the structures under the cover closing surface (22) and the word The issue is the uncontrolled opening of the upper limits of the feeding compartment (2) structures. 30 by structuring it in the form of a continuous or regional environmental surface that will limit it. It is characterized by...

20. According to claim 6, it is a multi-compartment pet food bowl with a rotating lid, and its features are: The rotating lid (3) structure can be detached from the lid body (1) 33 configuration and rotating lid (3) onto the lid body (1) between the center link shaft (11) and the center shaft housing (23) when it is installed will recreate the axis of rotation of the relationship, cover carrier ring (7), radial centering surface (24), axial support surface (25) and rotation guide surface (30) The working geometry of their structures is between the rotating lid (3) and the lid body (1) 5 It is characterized by being restructured in a way that will restore it.