PET WET FOOD BOWL WITH AIR INTAKE LIMITATION, ONE-WAY DOSAGE, AND ISOLATED SERVING CONTAINER.

TR202614680A2Pending Publication Date: 2026-09-21DENİZLİ MERKEZEFENDİ İBRAHİM CİNKAYA SOSYAL BİLİMLER LİSESİ MÜDÜRLÜĞÜ +3
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Patent Information

Application Number
TR202614680
Authority / Receiving Office
TR · TR
Patent Type
Applications
Current Assignee / Owner
Filing Date
2026-08-28
Publication Date
2026-09-21

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Abstract

The invention relates to a pet wet food dispensing system designed to keep wet food for pets in a main container, isolated from the external environment and animal contact, to allow for the controlled transfer of a specific amount of wet food to the serving area before the entire main food quantity is opened to serving conditions, and to limit reverse passage of material from the serving area to the main container. The system includes a main food container in which the wet food is stored and a variable volume regulation mechanism that manages the volume change due to the decrease in the amount of food in the main food container, and is structured to limit uncontrolled external air entry into the main food container during this volume change.The amount of wet food stored in the main feed hopper to be allocated for serving is mechanically limited by a dosing mechanism connected to the main feed hopper outlet, and the allocated wet food is conveyed towards the serving hopper via the feed transfer channel. A one-way passage mechanism located between the feed transfer channel and the serving hopper allows the passage of wet food towards the serving hopper while mechanically limiting any reverse passage of material from the serving hopper to the main feed hopper. The physical separation between the main feed hopper and the serving hopper prevents the storage and consumption areas from directly sharing a common physical volume.Thus, the preservation of wet food in the main storage volume, the management of volume changes due to decreases in food quantity, the limitation of uncontrolled external air entry, the controlled separation of the designated serving quantity from the main food quantity, the redirection of this quantity to the serving hopper, and the limitation of reverse material transfer from the serving area to the main storage area are all achieved within the same system through mechanisms that are structurally and functionally related to each other.
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Description

1 TARIFF AIR INTAKE LIMITED, ONE-WAY DOSAGE DELIVERY. PET WET FOOD BOWL WITH INSULATED SERVING COMPARTMENT Technological Field: The invention relates to a container and serving machine for wet food used in feeding pets. These systems relate to the technical field; in particular to semi-fluid and / or fluid properties. showing the volume of the main feed where the wet food is stored, the outside air and the animal limiting direct contact and interaction, consumption from the main feeding volume A specific amount of food is set aside for this purpose and placed in a separate serving area in a controlled manner. transfer and after said transfer, from the service area to the main feed volume 10 mechanically limiting reverse material transfer that could occur correctly It relates to structured multi-compartment baby feeding bowls. More specifically, the invention relates to the main feed trough where wet food is stored and the animal's... the serving containers that can be accessed for consumption purposes are separated from each other, and these containers a transfer pathway is created that ensures the controlled passage of the food between them, 15 Unidirectional flow control elements and dosing of the feed movement in the delivery path. It is regulated through its components and the amount of food in the main food hopper the increase in free air volume that may occur due to the decrease mechanical and structural arrangement of a feeder system that is restricted It is related. 20 The invention also covers pressure changes that occur during formula transfer. managing and transferring wet foods with different consistencies and particle characteristics. The service must be performed in a way that does not create mechanical jamming or uncontrolled flow. The formula, liquid, saliva, and similar substances in the container are returned to the main feed container. Restricting access and repeated serving of the main feeding container 25 kept as isolated as possible from the external environment and consumption area throughout flow control, sealing, backflow restriction, and volume control for their purposes. Air intake restriction devices depending on the change within the same container structure It includes technical regulations regarding their integrated use. In this respect, the invention is a storage solution in which only wet food is kept. 30 into a bowl, a classic food bowl from which the animal feeds directly, or a main bowl. a feeding system where the food in the hopper moves freely to the serving area No; it's the volume of main food stored versus the amount of food set aside for consumption. 2 forming a controlled, doseable and essentially unidirectional transfer relationship between them. It relates to an integrated wet food storage and serving system. The system in question... Within this scope, the transfer of food involves the physical and oral transfer of food from the consumption area of ​​the main food trough. functional separation, from the serving area to the main feed trough. mechanically limiting the reverse passage of matter that may occur and main 5 uncontrolled external changes in volume due to a decrease in feed quantity to the main feed volume by managing it in a way that minimizes air ingress as much as possible. This is accomplished through storage, dosing, transfer, one-way passage, and return. The functions of restricting flow and reducing air ingress are all within the same container structure. They are integrated as interrelated technical functions. 10 State of the Art: Wet food bowls and feeding systems used for feeding pets. Generally, a certain amount of food is provided to the animal in an open or partially closed container. or on the principle of being located in a service area that is made accessible when needed It is based on. In traditional feeding bowls, wet food is poured directly into the feeding bowl 15 It is placed and remains in contact with the outside air until consumption is complete. It remains. Wet food has a high moisture content, resulting in a semi-liquid or liquid consistency. It can exhibit different characteristics and contain solid or semi-solid particles of varying sizes. and because it can have a heterogeneous structure that can adhere to surfaces, the aforementioned The storage and serving conditions of baby food have different technical requirements compared to dry food. 20 It reveals. Leaving wet food in an open container for an extended period of time for consumption In this situation, the contact time of the food with the outside air increases, and the surface of the food... Drying and changes in consistency may occur, and the amount of food not consumed It can become vulnerable to environmental influences. In addition, the animal has direct access to 25 Food scraps, saliva, liquids, and foreign matter carried from the outside environment are found in the service area. It can be found. Therefore, the food reserved for consumption should be used for later servings. The amount of feed to be used in the processes must be kept within the same open volume. the physical separation of the stored food quantity from the consumption area It makes it more difficult. 30 In order to reduce these problems using conventional techniques, lidded pet food bowls are available. Feeding containers with storage compartments, systems that transfer food by gravity. and various dosing systems for delivering specific amounts of food. 3 It can be used. In lidded designs, food can be stored outside when not in use. Although it can be separated from the environment to a certain extent, the lid can be opened for serving purposes. During this process, the amount of food inside the container comes into contact with the outside air again. It is possible. In such structures where the entire amount of food is kept in the same volume, furthermore... 5. The portion accessed for consumption and the portion to be stored for later consumption. Maintaining a consistent physical distinction between the required amount of food becomes difficult. Systems where the main feed quantity is kept in a separate storage container, preservation and This can provide an advantage in terms of separating service areas. However... a system that allows for the transfer of food between the storage container and the serving area Finding this connection creates new technical problems. The connection in question is 10 Isolation of the storage container from the service area if it is continuously open. age can decrease; however, if the connection is excessively narrowed or complicated, age can also decrease. During the transfer of the feed, jamming, accumulation or interruption of the flow may occur. It is possible to come. This technical difficulty is particularly evident in the fact that the rheological and physical properties of wet food are specific to the product type. This is due to the fact that it can vary depending on the situation. Wet food should be homogeneous and have low viscosity. It may not behave like a liquid, nor like dry food, which are separate solids. It is not a material based on the free movement of particles either. Mama contains sauce, gel or similar semi-fluid phases, as well as solids or geometries of different sizes and geometries. Semi-solid particles can be found. Therefore, a transfer based solely on gravity is not possible. 20 a mouth or a constant cross-sectional passage, the same transfer behavior at different feed consistencies It may not show; a sufficient cross-section in one type of feed may not show in another type of feed. This can lead to uncontrolled flow or mechanical jamming. In simple gravity-based conveying systems, the weight of the feed in the main hopper determines the conveying force. It can continuously apply load to the region. The transmission opening is directly service 25 If the container is opened, more food than desired will flow into the serving area, The transfer behavior changes or transitions occur as the feed level in the container changes. The food particles located in this area compress each other, partially or completely preventing flow. It is possible to prevent this. Therefore, with just one storage container. Creating a gap between the serving containers allows for controlled amounts of wet food to be dispensed. 30 It does not constitute an adequate technical solution in terms of transmission. Care should be taken when transferring wet food from the storage container to the serving container. Another technical problem that needs to be addressed is the volume increase occurring in the main feed container. 4 It is a change. When a certain amount of food is removed from the main food trough, the food becomes more nutritious. First, at least a portion of the volume it occupies is emptied, and the pressure inside the reservoir... Conditions may vary. This volume change involves the introduction of free air from the external environment. If this is encountered, the amount of food remaining in the main reservoir gradually increases with the air ingress. It can come into contact with the volume. This means that the main food container can only be reached through the lid or 5 being sealed by an outer casing prevents air contact that occurs as the amount of food decreases. This shows that it may not be sufficient to restrict it on its own. In contrast, the main feeding container is completely closed and does not allow for volume changes. The fact that it is structured as a non-giving system also makes for a different technique in terms of feeding. This can create difficulties. The volume created when food comes out of the reservoir is 10 If the difference cannot be balanced, the pressure conditions inside the reservoir will affect the feeding. It can change in a way that can resist its movement and the continuity of transmission. It can spoil. Therefore, wet food should be kept away from the outside air as much as possible. The purpose is to separate the food by transferring it regularly from the main hopper to the serving hopper. A need for a technical balance that influences each other arises between the objectives. 15 Therefore, the technical issue that needs to be resolved in wet food storage systems is not just that. It is not a sealing of the reservoir from the outside environment. It occurs as the amount of main feed decreases. volume change that will not hinder feed transfer but at the same time the external environment to prevent air from filling the main feed volume uncontrollably as much as possible It needs to be managed within a mechanical system that will limit the air intake. 20 While complete release weakens the containment function, volume change Completely blocking these requirements can make the transfer process difficult. These two requirements must be met simultaneously. The mechanical system includes wet food storage and serving containers. This constitutes a significant technical problem. Another important aspect is the separation of the main feeding container from the serving container. The point is that the transition between the two chambers is only from the main chamber to the service chamber. The goal is to ensure this happens. The serving trough is located in an area directly accessible to the animal. Therefore, the food scraps, saliva, fluids, and other foreign matter found here The baby food is exposed to different storage conditions than those in the main food container. If the transfer path between the reservoirs is open to bidirectional material movement, 30 The substances located in the service area are transferred via the conveyor to the main feed container. Progress is possible. This type of reverse transition means that the main feed container and the serving container are only geometrically aligned. This shows that simply dividing it into different sections is not enough. Two regions While allowing for the transfer of food between them, after the transfer, the main food is taken from the serving bowl. The backflow that can occur towards the food container is also mechanical. It is necessary to restrict them. Thus, the physical boundaries of storage and consumption areas will be limited. the distinction is made not only by the geometry of the vessel body, but also by the transfer between the chambers. The need to protect the relationship also arises in terms of its direction. Various mechanical valves, gates, and return lines are used to provide one-way flow. Although limiting elements are known from different fluid systems, wet food... Its heterogeneous nature can make the direct application of such mechanisms difficult. 10 A moving element in the flow path gets trapped between the feed particles, accumulation of food residue on contact surfaces or high-consistency food It is possible that the closing surfaces will prevent movement. Therefore, wet food The unidirectional control structure to be used in the transfer should only determine the flow direction. not only that, but also the transition of food with different consistencies and particle characteristics is excessively high. It can operate without narrowing down and without creating a continuously open return path. is required. Similar technical requirements exist in terms of dosage as well. Main feed. the food in the container is opened directly and continuously into the serving container In this case, more food than necessary for consumption is served in the serving area (20). A portion of the amount of food that can be accessed and is intended to be stored is unnecessary. It can be exposed to external environmental and consumption conditions. In contrast, the transfer... limited to only a narrow opening, due to the variable consistency of the food It may not provide a repeatable dosage pattern. Therefore, the dosing function is not only about reducing the flow rate, but also about the main 25 The amount of food to be separated from the food volume for serving purposes should be controlled. It should be considered as a transfer relationship that will allow for its determination. The movement of food between the main container and the serving container requires a specific transfer volume and transition. The amount or mechanical movement cycle can be limited, the volume of the main feed a technical requirement 30 that could reduce the need for unnecessary exposure to service conditions It constitutes. However, dosing, one-way transfer, backflow limitation, and air... The functions of controlling input are not entirely independent of each other. 6 It is seen that a large and continuous system has been created to facilitate the transfer of food. An open passage can increase reverse matter movement and air communication. Back In order to reduce passage, excessively narrowing the passage cross-section is necessary in foods containing particles. This can increase the likelihood of jamming. The main feed container needs to be strongly insulated. This supports food storage while the volume created due to food leakage is 5 The inability to manage change can make the transfer difficult. Similarly, flow alone... a dosing approach based on rate, varying amounts in foods of different consistencies This can lead to food transfer. Therefore, the technical problem encountered in wet food containers is not related to individual parts. Rather than addressing the problems individually, multiple 10 that directly influence each other... It is the problem of ensuring that mechanical functions are performed harmoniously within the same system. Separating the main feed container from the external environment and the consumption area, the feed in the container Managing volume changes due to decreased quantity, the main component of outside air limiting uncontrolled entry into the feed volume, different physical characteristics Transfer the food to the serving area in controlled amounts and serve 15 minutes after transfer. functions of reducing reverse passage of substances from the feeding area to the main feeding hopper They need to be evaluated together. Solutions used in the known state of the art include containment, sealing, storage, and feeding. While capable of providing one or more of the functions of transfer or dosing, age from the physical characteristics of the food and the 20 differences between storage and consumption areas all of these requirements arising from the interaction are compatible with each other. There are areas for improvement in terms of how it is received. Especially the main controlled feeding even though the food volume is physically separated from the serving area. permission for transfer, transfer in a one-way and dose-controlled manner. implementation, limiting reverse transfer of substances after transfer and 25 Volume change due to decreased feed quantity causes uncontrolled outside air to enter the main chamber. integrated mechanics in terms of being managed in a way that will not increase the input Regulations are needed. In this context, under the known state of the art, only the storage of wet food is permitted. covering it, transferring it to the service area, or 30 in specific quantities Beyond the individual solutions that enable their presentation, there are also enclosures that directly influence each other. and able to meet transmission requirements together within the same mechanical system. An integrated structure is needed. The technical requirement in question is related to the main feed. 7 All of the food stored in the container is removed from the outside environment with each serving. specific areas set aside solely for service purposes, without being exposed to consumption zone conditions. transferring a controlled and dosed amount of food into the serving trough, wet food with different consistencies and particle characteristics can become compressed during transfer. To reduce the possibility of creating an uncontrolled flow, feed the main food from the serving hopper 5 mechanically preventing reverse material passage that could occur towards the reservoir limiting and volume change due to reduction in the amount of main feed without hindering the transfer, it is possible to allow uncontrolled external air entry into the main feed volume. It involves managing these functions in a way that minimizes their interaction with each other. not as independent solutions, but as the 10 between the main food container and the serving container. Storage, dosage, and transfer are complementary elements of the relationship. The solution to be implemented is in terms of wet food storage and serving systems. This constitutes the necessary basic technical requirement. The purpose of the invention: The main purpose of the invention is to reduce the amount of wet food used in pet feeding to 15 separating the storage and service processes physically and functionally; storage The entire amount of main feed provided should be distributed to the external environment and consumption area during each feeding. a specific quantity set aside solely for consumption without being exposed to adverse conditions This ensures that the food is transferred to the serving bowl in a controlled manner; During this process, it is possible to ensure that the insulation of the main feed container is preserved as much as possible. 20 The goal is to create an integrated wet food storage and serving container. A key objective of the invention is to integrate the main feed container, where wet food is stored, with the a continuously open and uncontrolled passage between the serving bowl and the animal that it can directly access Instead of creating a transfer of substances, the relationship between the two chambers is a controlled feeding. The aim is to ensure that it is established via the transfer route. In this way, the main feed container serves 25 not only is it geometrically separated from the container, but the transfer of food... In cases where this does not happen, the physical effects of the consumption area may be minimized as much as possible. isolated and stored in the main feed container for later consumption. unnecessary exposure of the food quantity to serving area conditions The aim is to restrict it. 30 Another purpose of the invention is to transfer the food from the main food container to the serving container. to prevent uncontrolled and continuous progression and consumption from the main feed volume the amount of food to be allocated for this purpose within a controlled transfer relationship 8 This allows for the determination of all the food in the main feeder. Instead of opening the service area, only the amount of food allocated for consumption is served. directing it to the reservoir, controlled execution of successive service operations the possibility of carrying out the procedure and transferring more food than necessary into the serving trough The aim is to reduce it. 5 Another objective of the invention is to perform the dosing function using only a cross-section of the feeding pathway. Instead of narrowing or reducing the feed flow rate, the main feed a controlled transfer stage of the amount of food separated from the volume for serving purposes The aim is to allow the wet food to be transferred to the serving container. In this way, the wet food... 10 differences in consistency, viscosity, particle size and flow properties reducing variable transmission behaviors that may result and the transfer of formula milk a mechanistic dosage relationship whose quantity is not solely dependent on free-flow properties It is intended to be organized within it. Another key objective of the invention is to facilitate the transfer of food from the main feed container to the serving container. The main goal is to ensure that the feeding movement is essentially one-way. In this context, wet food 15 While the animal is allowed to move from the main food trough to the serving trough, it is not allowed to move directly. food residue, liquid, saliva, and similar substances that may be found in the serving container it reaches the substances moving back towards the main feed container via the same transfer path The aim is to mechanically restrict it. Thus, the main part that is preserved... The distinction between feed volume and consumption area should be made not only before transfer, but also at 20 It should be preserved as much as possible during repeated feeding processes. is the goal. Another aim of the invention is to enable one-way feed transfer, where only the feed movement is considered during service. not limited to directing it towards the container, after the transfer is complete uncontrolled material contact between the main feed container and the serving container mechanical 25 The aim is to ensure that it is limited in this way. In this context, a structure that allows the transfer of food is established. and the structure that limits backflow working in an interrelated manner and in the service tank through the transfer route of substances such as formula, liquids, saliva, etc., that may be found in the mother The aim is to reduce the likelihood of the dog reaching into the food container. One of the key technical aims of the invention is to improve the physical properties of wet food by 30 The aim is to reduce the transfer difficulties that arise. Wet food is different from a homogeneous liquid. It can exhibit variable consistency, viscosity, and stickiness, and comes in different sizes. Considering that it may contain solid or semi-solid particles, the feeding route is mentioned. 9 The issue is how the transition can be maintained despite the nutritional characteristics of the food; transfer. potential congestion, accumulation, bridging, or uncontrolled flow that may occur during this process The aim is to reduce the likelihood of this happening. Within this context, another aim of the invention is to facilitate the transition to formula milk and thus the transfer of milk. The goal is to establish a mechanical balance between controlling the amount of food transferred. (Food transfer 5) congestion and flow that may occur as a result of narrowing the path more than necessary. reducing interruptions; conversely, keeping the transmission path uncontrolled and continuously open. Excessive food transfer, backflow, and reservoir damage that may occur as a result of discontinuation. The aim is to limit the direct interaction between them. Thus, age Controlled dosage and one-way 10 with appropriate transferability to the physical characteristics of the feed. The aim is to ensure that the transfer functions are performed in a way that complements each other. Another key objective of the invention is to dispense a specific amount of food from the main feeding hopper. the volume change that occurs as a result of separation, with the continuity of feed transfer the requirements of isolating the main feeding volume from the outside air as much as possible The goal is to manage it in a way that will meet the needs of both parties. In this context, the reduction in the amount of main formula milk is 15. the resulting volume difference due to direct and uncontrolled outside air entry limiting the fulfillment of the demand, while completely preventing volume changes. pressure differences that may occur as a result of obstruction of the feed transfer The aim is to reduce the difficulty in doing so. Thus, the volume in the main feed container The change will not prevent the transfer of feed, but it will add an uncontrolled external 20 to the main feed volume. managed within a mechanical framework that minimizes air ingress as much as possible. is the goal. Another purpose of the invention is to provide the animal with access to a serving bowl for consumption, and more. between the main food container where wet food is stored for subsequent serving processes The aim is to create a physical and functional distinction. Accordingly, the animal only serves 25 the ability to access the amount of food transferred to its hopper, the food in the main food hopper limiting direct access to the amount and what may be in the serving container the movement of formula, liquids, saliva, and similar substances towards the main feeding hopper The aim is to reduce this. Thus, the main feed container is protected from external environmental influences. and also the reverse physical effects originating from the consumption area that the animal directly accesses. 30 The aim is to keep it as isolated from external influences as possible. Another purpose of the invention is to integrate the main feed hopper, the serving hopper, and the feed transfer pathway. dosing function, one-way passage function, backflow limiting function and volume change. Structures with independent and unrelated functions that restrict air intake. not as separate processes, but as complementary techniques within the same food storage and serving cycle. The goal is to enable a function to work in its constituent parts. Through this integrated operation, a function can be another function of the arrangement made for its implementation is eliminated or Instead of significantly weakening it, different parts of the system achieve the same technical result 5 The aim is for them to work together harmoniously in line with this. Another purpose of the invention is to facilitate the transfer of food from the main feed container to the serving container. the start, transition, and completion states of the transfer are mechanically interconnected. The goal is to create a structure that is conducive to harmonization. In this regard, the service... The amount of feed allocated for this purpose should be separated from the main feed volume in a controlled manner, 10 directing the food to the serving bowl along the transfer path and after transferring the main feed limiting uncontrolled substance contact between the reservoir and the service reservoir The aim is to create an interconnected feeding cycle. Another purpose of the invention is to enable the transfer of food from the main food container. It must be fully opened or the amount of food stored must be 15 for each serving. the need to put all of them in direct contact with the service area The goal is to reduce the amount of food in the main feeding trough, ensuring that only a controlled amount of food is available. linking it to the service system via the transfer path and returning the main feed volume The remaining portion should be preserved as much as possible during the service process. The aim is to keep it. 20 Another purpose of the invention is to facilitate wet food transfer, dosing, one-way passage, and backflow. during the performance of the functions of limiting and reducing air intake a structure suitable for maintaining mechanical simplicity appropriate to the system's intended use The goal is to create. This requires numerous independent processes. Instead of solutions, 25 related mechanical parts within the same vessel structure use and maintenance and service functions within an integrated work system It is intended to be realized. The ultimate goal of the invention is to reduce the volume of the main feed where wet food is stored and the animal's creating a controlled and functional separation between the volume of services it can directly access; main Do not expose all of the food in the food container to external environmental and consumption conditions. 30 The dosage can be adjusted to allow only a specific amount of food to be consumed, without leaving any untouched portions. This allows the food to be transferred to the serving container in a way that is primarily the main feed. enabling flow from the reservoir to the service reservoir; from the service area to the main 11 Prevents food, liquids, saliva, and similar substances from accumulating back into the feeding chamber. mechanically restricting the passage; ages with different consistencies and particle properties Suitable for transferring feed while reducing the possibility of jamming and uncontrolled flow; Managing volume changes due to reduced feed volume while adding external feed to the main feed volume. limiting the uncontrolled entry of ambient air and performing all these functions in the same container structure 5 an integrated wet food container that mechanically and functionally links the components, The goal is to create a dosing and dispensing system. Explanation of the Figures Figure 1: Main food hopper of the pet wet food dispensing system that is the subject of the invention. 10 showing the general layout of the dosing and transfer structure and the serving tank. It is the appearance. Figure 2: Volume change in the main feeding trough due to decrease in feed quantity. management and uncontrolled entry of outside air into the main feeding volume It is a cross-sectional view of the mechanical structure designed to limit its capacity. Figure 3: Controlled amount of wet food to be dispensed from the main food trough for serving. 15 Dosing that enables the determination and direction of the dosage to the transmission line. This is a detailed view of the mechanism. Figure 4: Conveyor that directs the dosed wet food into the serving trough. Due to its structure, a reverse flow can occur from the serving bowl to the main food side. This is a cross-sectional view of a one-way passage system that restricts the passage of substances. 20 References: 1. Pet wet food bowl system 2. Main body 3. Main food container 4. Main food container internal volume: 25 5. Main feed hopper filling opening 6. Hopper closing element 7. Reservoir sealing element 8. Variable volume control mechanism 9. Moving volume tracking element 30 10. Volume tracking element, circumferential sealing element. 11. Volume tracking element guide surface 12. Air intake restriction zone 12 13. Main feed container outlet area 14. Dosing device 15. Dosing chamber 16. Dosing chamber inlet opening 17. Access control element 5 18. Dose limiting surface 19. Dosing actuator 20. Dosage action guide 21. Dosing chamber outlet opening 22. Output control element 10 23. Food transfer channel 24. Transmission channel entry area 25. Transmission channel exit area 26. Flow guiding surface 27. Extended transition zone 15 28. One-way passage system 29. One-way passage element 30. One-way passage element seating surface 31. Backflow limiting surface 32. Serving compartment 20 33. Internal volume of the serving container 34. Food acceptance area 35. Consumption area 36. Main tank-serving tank divider section 37. Service reservoir removable connector 25 38. Support base Description of the Invention: The invention relates to a main container for storing wet food used in feeding pets. the section and the service section where the animal directly accesses and consumes food. They differ physically and functionally from each other; 30 servings from the main amount of food. the controlled separation of a specific amount of feed, the separated feed being primarily a single unit transferring it to the serving section in that direction, and from the serving section to the main feeding side. to limit the possible reverse transfer of substances and the mother's milk 13 volume change due to decrease in quantity, uncontrolled outside air into the main feed volume pet age that ensures entry is minimized as much as possible It is related to the feeding bowl system (1). Pet wet food bowl system (1), wet food only inside the food in the storage container or main reservoir where it is kept, the animal's consumption 5 It is a classic supply system that reaches the region via a continuously open passage. is not. Pet wet food bowl system (1) includes storage, volume management, dosing, feed transfer, one-way passage, backflow restriction, and serving functions. Not as independent and unrelated structures, but as part of the same feeding cycle. It is carried out in the form of complementary mechanical stages. 10 Pet wet food bowl system (1), the basic mechanical structures that make up the system on the main body (2) which enables them to be held in positions determined relative to each other It is structured as follows: Main body (2), main feed container (3), dosing device (14), between the food transfer channel (23), the one-way transfer mechanism (28) and the serving hopper (32) It ensures the preservation of the necessary structural relationship. The main body (2) is the 15 in question. not only the mechanical transport of the compartments, but also the main feed container (3) inside the storage area and the consumption area inside the service chamber (32) are separated from each other being kept separate and the communication between them through feeding is controlled. It supports carrying out the project via the line. Pet wet food bowl system (1) includes main food hopper (3), dosing 20 mechanism (14), food transfer channel (23), one-way passage mechanism (28) and serving hopper (32) controlled flow of wet food from the main food container (3) towards the serving container (32). the main It is located on the body (2). In this structural arrangement, the main feeding hopper The feed between the outlet area (13), the main feed hopper (3) and the dosing device (14) is 25 the passage, the food transfer channel (23) dosing device (14) and the one-way passage device (28) is the food transfer channel between the two and the one-way transfer mechanism (28) is the food transfer channel. to ensure the passage of food mainly in one direction between the (23) and the serving hopper (32). It is positioned accordingly. Thus, the main food container (3) and the serving container (32) without establishing a direct and continuous clear transition between the feeding movement 30 a defined mechanical pathway consisting of dosing, transfer, and one-way passage stages This is ensured through [the relevant authority]. 14 Main feed container (3) on the main body (2) or integrated with the main body (2) It is located. The main food container (3) can be used in one or more serving cycles. Main storage for preserving the amount of wet food that can be used. It constitutes the main food trough (3), the serving area that the animal has direct access to. It is arranged in such a way that it does not share the same open volume with the reservoir (32). Thus, 5 Wet food stored in the main food container (3) for subsequent serving cycles, Physical amount of wet food offered to the animal for consumption in the serving hopper (32) They are divided as follows. The section containing wet food inside the main food container (3) It is structured as volume (4). Main feed container internal volume (4), storage 10 It is being built with the capacity to accept the amount of wet food to be given and the main food The wet food contained in the container (3) is in direct contact with the external environment and the consumption area. It is surrounded in a way that limits continuous contact. Main food container internal volume (4) As the amount of wet food contained in the food decreases as a result of serving cycles, the food the increase in free volume that may result from the emptying of the volume it previously occupied, pet 15 through volume management structures located within the animal wet food bowl system (1) It is being checked. The main food container (3) is designed to be filled with wet food. There is a filling opening (5). The main feed container filling opening (5), main feed The internal volume of the container (4) allows the user to place wet food inside. It is created in a size and location that will allow for this. When the filling process is complete... The main feed container filling opening (5) is closed with the container closing element (6). The hopper closing element (6) is compatible with the main feed hopper filling opening (5). by positioning the main feed container internal volume (4) directly between the external environment and the external environment. It limits the formation of a continuously open connection. Reservoir closing element (6) 25 When closed, the air around the main feed container filling opening (5) and In order to reduce the passage of material, the reservoir sealing element (7) is put into operation. It is entering. The hopper sealing element (7), hopper closing element (6) and the main feed hopper filling It is located in the junction area between the opening (5) and the said junction is 30 It restricts uncontrolled air passage in the area. Thus, the main feed container (3) It is not only geometrically sealed, but also potentially caused by the filling area. Uncontrolled external air contact is also reduced. The volume created by the decrease in the amount of food in the main food container (3) Variable volume regulation mechanism for managing change (8) It has a variable volume regulation mechanism (8), main feed container internal volume (4) The increase in free volume that may occur as the food supply decreases is entirely due to the external environment. 5 to limit a work system based on filling it with air It is being structured. Movable volume tracking element (9) within the variable volume control mechanism (8) It has a movable volume tracking element (9), and a main feed container internal volume (4). in a region mechanically related to the internal volume of the main feeding container (4) It is arranged in such a way that it can change position. From the main food container (3) age 10 As the food is separated, the moving volume tracker (9) is associated with the decrease in the amount of food. it moves or changes position and the internal volume of the main feed container (4) uncontrolled growth of free volume within that is not used by the feed It restricts. Volume tracking element 15 between the movable volume tracking element (9) and the main feed container (3) There is a circumferential sealing element (10). The volume tracking element is circumferential. The sealing element (10) is performed by the movable volume tracking element (9). throughout the movement, the movable volume tracking element (9) surrounds the main feed container inside It contributes to reducing the uncontrolled entry of outside air into the volume (4). Thus, the volume change is monitored by the moving volume tracking element (9) 20 The function of restricting air entry is preserved during this process. The movement performed by the moving volume tracking element (9) is defined as follows: In order to maintain the volume tracking element guide surface (11) It is located. Volume tracking element guide surface (11), movable volume tracking element Unwanted sideways movement, turning, tilting during the movement performed by (9) 25 or by reducing the tendency to get stuck, the main feed with the movable volume tracker (9) It contributes to maintaining the positional relationship between the reservoir (3). Variable volume control mechanism (8), movable volume tracking element (9), volume tracking element circumferential sealing element (10) and volume tracking element guide surface (11) It works in conjunction with the air intake restriction zone (12). Air intake 30 The limiting zone (12) is the space between the main feed container internal volume (4) and the outside environment. uncontrolled aerial communication that may occur due to a decrease in quantity It is structured in a way that will restrict it. 16 The air intake restriction zone (12) must absolutely contain the inside of the main feeding container (3). It is not a structure that necessitates being made airtight. The main technique... The function is the volume that is generated when food comes out of the main food container (3). The goal is to reduce the amount of air difference that would otherwise be met by free and uncontrolled outside air intake. Therefore, the variable volume regulation device (8) and the air intake restriction zone 5 (12), the volume change necessary for the continuation of feed transfer when allowing, the amount of air inside the main food container (4) is unnecessary It creates a mechanical equilibrium that will limit its increase in this manner. Moving volume tracking used within the scope of variable volume regulation mechanism (8) element (9); a 10 that can move linearly within the main feeding container internal volume (4). movable base, piston-like movable section, sliding separator surface or main feed The internal volume of the container (4) can be used depending on the decrease in the amount of food inside. in the form of an equivalent movable volume limiting element that can change the volume It can be configured. Performed by the movable volume tracking element (9). The direction of movement and the distance of movement are 15 according to the geometry of the main feeding container (3). It can be changed; volume tracking element, circumferential sealing element (10) The subject is the movable volume tracking element (9) and the main feed container (3) throughout the movement. in a way that will restrict air communication in the environmental transition zone between them It is positioned. The volume tracking element guide surface (11) is the movable volume. The movement of the tracking element (9) inside the main feed container (3) is predicted 20 One or more guide surfaces to limit deviation from the intended path, in the form of a channel, protrusion, or mechanically equivalent geometries thereof can be created. The section from which the wet food inside the main food container (3) is extracted to the dosing side is the main The main feed container outlet area is configured as (13). Main feed container outlet 25 region (13), between the main feed container internal volume (4) and the dosing device (14) This constitutes the first stage of a controlled transition to solid foods. The outlet area of ​​the main feeding container (13) is the food inside the main feeding container (3). It does not create a continuously open passage through which it empties directly into the service reservoir (32). Wet food coming out of the main food container outlet area (13) is first dosed 30 The device (14) is included and the amount to be set aside for service is here It is determined. 17 Dosing device (14), total wet food in main food container (3) This allows for the controlled determination of the portion of the total amount to be set aside for serving purposes. It is a mechanical structure. The dosing device (14) only dispenses the amount of feed to be dispensed to the mother. depending on the level of food in the food container (3), the weight of the food, the consistency or 5 to reduce dependence on free flow rate in the feeding pathway It is being structured. The dosing device (14) contains the dosing chamber (15). Dosing the amount of food in the main food container (15) is used for serving. It creates a controlled volume where the separated portion is temporarily located. The volumetric limit created by the dosing chamber (15) is 10 in a single service cycle. It contributes to the mechanical determination of the amount of feed that can be transferred. Dosing between the main feed container outlet area (13) and the dosing container (15) There is a dosing chamber inlet opening (16). The dosing chamber inlet opening (16) is for the main feed. It allows the wet food inside the container (3) to be taken into the dosing container (15). It provides. 15 Dosing chamber inlet opening (16), taking into consideration that wet food is not a homogeneous liquid by removing it, the passage of food with different consistencies and particle properties is unnecessarily avoided. It is sized in such a way as to not make it difficult. Dosing chamber inlet opening (16) Reducing abrupt cross-sectional constrictions around the food, solid or semi-solid particles in the formula It helps to reduce the possibility of solid particles getting trapped during passage. 20 Inlet control element (17) associated with the dosing chamber inlet opening (16), main feed It controls the passage of formula between the reservoir (3) and the dosing reservoir (15). Inlet The control element (17) is used when formula needs to be taken into the dosing chamber (15). It can be brought to a position that allows passage, and the amount allocated for service purposes. When formed, 25 additional feed is added to the dosing hopper (15) by the main feed hopper (3). and can move into a position that limits uncontrolled feeding progress. The dosing chamber (15) contains a dosing limiting surface (18). Dosing Limiting surface (18) mechanically limits the amount of wet food that can be separated for serving purposes. It forms the surface that contributes to the limitation of the dose. Dose limiting surface (18), Determining the usable feed volume in the dosing hopper (15) and the dosage 30 the amount of feed that can be moved in the direction of transmission by the movement element (19) It contributes to its limitation. 18 The dosing actuator (19) holds the wet food inside the dosing hopper (15). separation, orientation and advancement of the dosing chamber outlet opening (21) It is a movable mechanical element. It is formed by the dosing motion element (19). Thanks to mechanical action, the transfer of food is not solely due to gravity or the food itself. It does not happen with its fluidity, the amount of food set aside for serving is controlled by a 5 It can be advanced in the transmission direction under mechanical movement. Dosing motion element (19), the geometry of the dosing hopper (15) and the physical of the wet food intended to be transferred A thrust element or sliding surface that performs linear motion depending on its properties. located in the movable compartment, piston-like element or dosing chamber (15) The amount of wet food must be mechanically pushed towards the dosing hopper outlet opening (21) 10 It can be configured in the form of an equivalent movable element that can advance. Dosage The movement performed by the motion element (19) is done with the dosage motion guide (20). mechanically limited and dosage movement element (19) element of the food The transfer effect it applies to a determined area within the dosing chamber (15) It is ensured that it takes place along the pathway. Dosage actuator (19) and dosage 15 The structural relationship between the limiting surface (18) and the food to be transferred in a single service cycle the usable volume and dosage created in the dosing chamber (15) mechanically through the movement distance of the moving element (19) It can be structured in a way that facilitates its limitation. Dosage movement guide (20) 20 performed by the dosing movement element (19) It is guided by the dosage action guide (20), dosage action element (19) the movement performed by compatible with the geometry of the dosing chamber (15) This contributes to maintaining the position and prevents unwanted lateral movements, positional losses, or It helps to reduce mechanical jamming. The wet food separated for serving in the dosing container (15) is transferred to the food transfer container (25). The section to which the channel (23) is removed is the dosing chamber outlet opening (21). It is structured. The dosing hopper outlet opening (21) is connected to the dosing hopper (15). It creates a controlled transfer of food between the food transfer channels (23). The outlet control element (22) associated with the dosing chamber outlet opening (21) is the dosing control element. In what situation is the wet food inside the container (15) transferred into the food transfer channel (23) 30 It works to control whether it will pass. Output control element (22), It can limit uncontrolled outflow when taking formula into the dosing hopper (15) and 19 During the transfer of the amount of food set aside for serving, the food transfer channel (23) It allows passage to that side. Input control element (17) and output control element (22), dosing device (14) It creates two complementary access control points within it. Entrance The control element (17) switches between the main feed container (3) and the dosing container (15). When checking the output control element (22) and the dosing hopper (15) the transfer of food. It controls the transition between channel (23). Input control element (17) and output control element (22), mechanical control that can be moved independently of each other mechanical elements, or the change in position of one affecting the change in position of the other. It can be configured within a control system to which it is associated. Mechanical 10 In the associated application, the inlet control element (17) allows the passage of food. When in this position, the output control element (22) is in the position that restricts the passage of food, the output When the control element (22) is in the position allowing food passage, the entry control element (17) in a position that restricts the entry of additional feed by the main feed hopper (3). A relationship of movement can be established in a way that can be maintained. The movement in question is 15 The relationship is directly related to mechanical connection, connecting arm, cam surface, guided motion element. or equivalents that provide reciprocal position changes within the same mechanical motion cycle. This can be done by means of a connection arrangement. Thus, the dosing chamber (15) a continuously open channel between the main feed hopper (3) and the feed transfer channel (23) The formation of the transition line can be limited via the mechanical structure. 20 Inlet control element (17) during the feeding phase of a serving cycle, dosing While allowing wet food to pass through the inlet opening (16) of the container, the outlet control element (22) prevents uncontrolled food discharge through the dosing hopper outlet (21). It is limited. The dosing chamber (15) must be separated for serving purposes. After the amount of food is set, the inlet control element (17), the main food container (3) 25 It restricts the additional feed intake. In the subsequent transfer phase, the dosage actuator (19), dosage actuator guide (20) The dosing hopper dispenses the amount of food according to the movement determined by the device. advancing the opening (21) to the side and the exit control element (22) allowing the passage of food It moves to this position. Thus, the amount of food in the dosing hopper (15) is 30. It is directed into the transmission channel (23). This work was created between the input control element (17) and the output control element (22). thanks to this, a continuously open space exists between the main feed container (3) and the feed transfer channel (23). and the occurrence of an uncontrolled feeding path is reduced. This feature is important for the main feed. The portion of the food in the container (3) reserved for serving purposes only. It contributes to its progress in that direction. Wet food transfer channel exiting through the dosing hopper outlet (21) (23) is included. The food transfer channel (23), dosing device (14) 5 One-way transfer mechanism (28) and serving hopper (32) for the amount of food separated by It forms the transmission structure that enables the transmission to that side. The food transfer channel (23) is for wet food with high consistency, stickiness or particles. taking into consideration the possibility of sudden changes in direction and unnecessary narrowing of the cross-section It is designed to be easily reduced. The food transfer channel (23) inside 10 its geometry prevents wet food from remaining immobile for a long time in the food transfer channel (23). It can be designed in a way that helps reduce the dead zones that may remain. At the beginning of the feeding channel (23) there is a transfer channel inlet area (24). Transfer channel inlet area (24), dosing chamber outlet opening (21) and outlet control The wet food coming through element (22) is accepted into the food transfer channel (23) 15 It constitutes the region where it is located. Transfer channel inlet area (24), dosing hopper outlet opening (21) and feed transfer the accumulation of food that may result from sudden geometric transitions between the channels (23) and It can be adjusted in a way that reduces mechanical jamming. This allows for dosing. The amount of food determined by the mechanism (14) is transferred into the food transfer channel (23) 20 Regular intake is recommended. At the end of the feeding channel (23) is the feeding channel outlet area (25). Transfer channel outlet area (25), age progressing along the feeding transfer channel (23) It forms the region where the milk is conveyed to the one-way passage system (28). In the feed transfer channel (23) or in the area associated with the feed transfer channel (23) 25 There is a flow guiding surface (26). The flow guiding surface (26) is age from the intake of the milk transfer channel by the inlet region (24) of the transfer channel exit Contribution to the direction of its movement until it is advanced to the side of region (25). It provides. Flow guiding surface (26), 30 of wet food mass to sharp surfaces or flow direction will reduce its collision with steep obstacles, the liquid and particulate phases in wet food will help them progress together as much as possible and the food transfer channel (23) 21 to limit the formation of immobile food pockets inside It can be edited. The feeding channel (23) contains an enlarged passage area (27). The extended transition zone (27) is particularly important for wet food with a higher consistency or more Bridging of the parts containing large particles within the feeding channel (23) 5 or a wider local area in regions where there is a high probability of creating congestion. It creates a transition section. The enlarged transition zone (27) makes the entire feeding channel (23) unnecessary. without the need to create a wide structure, where the risk of crushing is high. This provides additional transitional space for the wet food movement in the regions. Thus, dosage control is 10 while the dosing device (14) is provided by the food transfer channel (23) transition geometry more suitable to the physical characteristics of wet food It can be formed. The feeding channel (23), the feeding channel inlet area (24) The transmission channel outlet region (25) does not have to have a constant cross-section, age gradually expanding along the route of feed transfer, gradually reaching 15 It has a channel geometry that narrows or creates different cross-sections in different regions. It is possible. Flow guiding surface (26) and extended passage area (27), feeding in separate regions within the transmission channel (23) or in the same transition geometry They can be formed as complementary sections. Extended transition zone (27) especially the possibility of direction change, cross-section transition or particle accumulation 20 In the regions where it is located, the feed transfer channel (23) element is more than the adjacent cross-sections of the element. It can be structured in a way that creates a wide transition area. This geometric The regulation and dosing function is determined by the cross-section of the feeding channel (23) alone. The mechanical permeability within the channel is different, without being left to free-flowing behavior. It can be adjusted according to the consistency and particle size characteristics of wet food. 25 The wet food is mainly transported by the food transfer channel (23) to the serving hopper (32) to ensure its progress in the direction of the main feed container (3) by the service container (32) unidirectional in order to limit the reverse movement of matter that may occur in that direction. There is a transition mechanism (28). The one-way passage mechanism (28) only goes to the side of the wet food serving container (32) 30 It does not provide guidance, the serving container after the food transfer is complete. a continuous open and uncontrolled return between (32) and the food transfer channel (23) It also limits the formation of the pathway. 22 The one-way passage system (28) contains a one-way passage element (29). directional transition element (29), food transfer channel (23) by serving hopper (32) will allow passage under the movement or pressure of the feeding tube in that direction It is configured to be able to move to a specific location. One-way transfer element (29), food transfer channel (23) by service hopper (32) 5 When reverse movement of matter occurs in that direction, it becomes a position that restricts the backflow. It passes through. The one-way transfer element (29) thus allows forward feed transfer. the movement of food, liquids, saliva, and similar substances that may occur in the reverse direction during delivery It restricts. One-way passage element (29), one-way passage element 10 in the position that restricts reverse passage It establishes a mechanical relationship with the seating surface (30). One-way transition element seating The surface (30) is closed by a one-way transition element (29) or the transition section is significant It forms the contact surface, a portion of which is delimited. between the one-way transition element (29) and the one-way transition element seating surface (30) The contact geometry indicates that the food particles are continuously positioned between the two surfaces. will reduce compression, but provide the necessary passage restriction against the movement of matter in the opposite direction. It can be structured in a way that will provide this. Backflow limiting surface (31) in relation to the one-way passage arrangement (28) It is located. The backflow limiting surface (31) is located by the serving bowl (32) The material moving in the direction of the transfer channel (23) is transported by a one-way transfer element (29) and a single 20 directional transition element to the closing zone formed by the seating surface (30) to direct or to the transition area that can be used for the said reverse movement. It reduces. Backflow limiting surface (31) therefore only performs the function of limiting backflow. 25 The movable closing function performed by the one-way transition element (29) not only that, the transition geometry itself also reduces reverse material movement. It contributes. One-way transfer element (29), by the feeding channel (23) One-way passage under the movement or pressure of the food applied towards the serving bowl (32). The element will move away from the seating surface (30) to increase the usable cross-section. and unidirectional passage under the influence of reverse movement of matter or reverse pressure 30 The element will move towards the seating surface (30) and reduce the usable passage cross-section. It can be configured in this way. One-way passage element (29); flexible wing, hinged lid, movable plate, elastic membrane or allows forward passage of food 23 an equivalent movable element capable of mechanically restricting the passage of matter in the reverse direction. It can be formed in one of the geometries. One-way transition element seating surface (30) and backflow limiting surface (31), one-way transition element (29) in a way that will help reduce the cross-section during reverse movement They can be geometrically related to each other; the shape of these surfaces is age 5 This will reduce the likelihood of food particles becoming permanently trapped in the closure zone. It can be constructed in an inclined, curved, or seamless transitional manner. The wet food serving container (32) passes through the one-way passage mechanism (28). It reaches. The serving trough (32) is the part where the animal directly accesses and consumes food. It consists of 10 serving containers (32) and main food containers (3). Since the animal is physically separated from the quantity, it is only served. It reaches the amount of food transferred into its container (32). The service container (32) contains the internal volume of the service container (33). Service container Internal volume (33), service in a single service cycle or in successive service cycles The amount of food transferred into the container (32) is 15 in a way that is suitable for the animal's consumption. It contains. The internal volume of the serving container (33) is directly shared with the internal volume of the main food container (4) through an open section. It does not create volume. Thus, the food consumption in the serving container (32) The storage conditions in the main food container (3) differ from the storage conditions in the main food container (3). They are leaving. 20 Wet food coming through the food transfer channel (23) and one-way passage mechanism (28) The section into which the food reaches the serving container (32) is called the food receiving area (34). It is structured. Mama acceptance area (34), transfer channel exit area (25) It directs the wet food coming from the container into the internal volume of the serving container (33). The food receiving area (34) is a single 25-inch container into which the amount of food transferred into the serving hopper (32) is transferred. will reduce excessive accumulation at the narrow point and by the food consumption area (35) It can be structured in a way that facilitates its movement towards an accessible area. The section on the serving trough (32) where the animal accesses wet food is the consumption area (35) It is structured as follows: Consumption area (35), internal volume of the animal's serving hopper (33) It allows the animal to directly access the amount of food contained within. 30 Consumption area (35) has a direct open connection with the main feeding container (3). It does not create. Therefore, the physical effects of the animal during consumption... contact with food residues, liquid or that may be found in the serving container (32) 24 saliva directly affects the amount of food stored in the main feeding container (3). Access is restricted. Main feed container (3) and serving container (32) divider between the main container and the serving container. Section (36) is available. Main container-serving container divider section (36), main feed the storage area inside the reservoir (3) and the consumption inside the service reservoir (32) 5 This limits the ability of the region to directly form a shared physical volume. Due to the main container-serving container divider (36), the main food container (3) and the serving container The necessary feeding communication between the reservoir (32) is not through a direct opening, but through the main feed container outlet area (13), dosing device (14), feed transfer channel (23) and 10 via the controlled transfer line created by the one-way passage system (28) is being carried out. Service container (32) for cleaning, maintenance, emptying or repositioning purposes. It can be configured to be detached from the main body (2). For this purpose, the service A removable container connection element (37) is used. The service container detachable connector (37), service container (32) in the operating position 15 when the necessary positional relationship between the service chamber (32) and the main body (2) is found to ensure its protection when the service container (32) needs to be cleaned or removed This creates a connection that can be severed by the user. Service reservoir detachable connecting element (37), service chamber (32) element main body (2) or mechanically holding it in the working position on the carrier base (38) and 20 from the structure when necessary for cleaning, maintenance or parts replacement It is configured to allow for detachment. The service tank has a removable connection. element (37); snap connection, guided sliding connection, claw connection, rotary connection The locking connection or service chamber (32) element is determined during use. an equivalent mechanical 25 that allows the user to remove it while maintaining its position It can be formed in the form of a connection. Service tank (32) in working position When installed, the one-way passage mechanism (28) of the feeding acceptance area (34) element and in order to maintain the predicted milk transfer relationship with the transfer channel exit region (25) its positioning is provided by the service reservoir detachable connecting element (37). It is supported by positional stabilization. 30 Service container (32) main body via removable connecting element (37) When separated from (2), the amount of food in the main food container (3) is directly It is not revealed. The substance between the main food container (3) and the serving container (32) The communication is controlled mainly through a one-way transfer system (28), service When the container (32) is removed, the housing side is opened directly to the consumption environment. It reduces. Pet wet food bowl system (1) has a carrier base (38) at the bottom. Carrier base (38), main body (2), main feed container (3), serving container (32) and system 5 supporting other mechanical structures located within it on the usage surface It provides. The carrier base (38) is used during feed transfer, dosing or animal feed consumption. position of pet wet food bowl system (1) under mechanical impacts that may occur It contributes to its protection. The carrier base (38), the main body (2) and the service chamber 10 (32) to maintain the positional relationship between them and the operation of the milk transfer line It helps to prevent the direction from changing. The carrier base (38), the main body (2), dosing device (14), feed transfer channel (23), one-way transfer device (28) and Contributing to the preservation of the relative positions between the service container (32) during use. It is structured in a way that will provide this. Thanks to this structural arrangement, the dosage is 15 The wet food separated by the mechanism (14) passes through the food transfer channel (23) in a single line. its progress in the direction of the directional passage mechanism (28) and from there into the service chamber (32) Mechanical transfer intended for transfer to the food receiving area (34) Maintaining the alignment during use is supported. The carrier base (38), this For this purpose, integrated with the main body (2) or on the main body (2) element 20 It can be constructed in the form of a separate supporting structure to which it is fixed. First, the hopper closing element is used in the pet wet food bowl system (1). (6) is put into the open position and the main food container filling opening (5) is used to feed the main food. Wet food is placed inside the container (4). Filling process When completed, the hopper closing element (6) is returned to the closed position and 25 reservoir sealing element (7) around the main feed reservoir filling opening (5) It restricts uncontrolled air communication. In this case, the amount of food in the main food container (3) is equal to the amount in the serving container (32) separated from the consumption environment inside by the main reservoir-service reservoir divider (36) It is in this situation. There is a constant 30 between the main food container (3) and the serving container (32). There is no clear direct transition to formula feeding. When a serving cycle begins, one of the wet food items in the main food container (3) section main feed container outlet area (13) through dosing container inlet opening 26 (16) is directed towards the side. Entrance control element (17) allows food passage. When this is the case, the wet food is taken into the dosing hopper (15). The amount of food taken into the dosing hopper (15) is equal to the volume of the dosing hopper (15). mechanical in relation to the dosage limiting surface (18) and dosage actuator (19) It is limited in this way. The amount of food in the dosing container (15) is 5 servings. When the amount foreseen for the inlet control element (17) reaches the main feed container (3) It restricts the additional feed intake. Then the dosage actuator (19) is determined by the dosage actuator guide (20). Dosing the wet food in the dosing hopper (15) in the direction of movement It moves the container towards the outlet opening (21). The outlet control element (22) feed 10 When the formula dosing hopper outlet opening (21) allows transfer, It is transferred into the food transfer channel (23) via. Wet food transfer channel inlet area (24) which reaches into the food transfer channel (23) is accepted via the flow guiding surface (26) and the transmission channel outlet region (25) is directed towards and in the necessary areas the extended transit zone 15 (27) is proceeding. Flow guiding surface (26) and extended passage area (27), feeding channel (23) the consistency, stickiness and particle properties of wet food together in a way that will reduce the possibility of compression, bridging and accumulation that may occur. He / She is working. 20 Wet food one-way transfer mechanism (28) progressing along the food transfer channel (23) When it reaches the serving bowl (32), the movement of the food created in the direction of the serving bowl is unidirectional. It creates a mechanical effect in the opening direction on the transition element (29). Single The directional transition element (29) separates from the one-way transition element seating surface (30) This allows the wet food to pass towards the serving hopper (32). 25 Wet food passes through the one-way passage system (28) to the food acceptance area (34) The animal reaches the internal volume of the serving hopper (33) through it. The animal enters the internal volume of the serving hopper. the amount of food contained within volume (33) through the consumption area (35) It is reaching. When the feeding transfer is complete, the one-way transfer element (29), one-way transfer element 30 It enters into a mechanical relationship with the seating surface (30) that restricts the transition back again. Reverse movement of matter through the serving bowl (32) towards the food transfer channel (23). If this occurs, the backflow limiting surface (31) will stop the reverse movement. 27 by directional transition element (29) and unidirectional transition element seating surface (30) It redirects to the created lockdown zone. Thus, the food, liquid, saliva or similar substances inside the serving container (32) Possibility of moving through the feed transfer channel (23) towards the main feed hopper (3). It is restricted. 5 A certain amount of wet food is dispensed from the main food container (3) in each serving cycle. When separated, the volume of food inside the main food container (4) decreases. The subject volume change is followed by the variable volume regulation mechanism (8) is being done. The movable volume tracking element (9) measures the internal volume of the main feed container (4) and the amount of feed inside. The volume tracking element guide changes position in relation to the decrease in quantity. surface (11) directs the movement in question and volume tracking element environmental sealing element (10) movable volume tracking element (9) uncontrolled air around It restricts passage. As a result of this study, which was carried out together with the air entry restriction zone (12), 15 the free volume that becomes available as the amount of food decreases from the main food container internal volume (4) The situation reliant on being completely filled with outside air is reduced. In this respect, the dosing device (14) and the variable volume regulation device (8) They are not two separate systems working independently of each other. Dosing apparatus (14) main feed Variable volume regulation 20 as you dispense a certain amount of wet food from the container (3). The apparatus (8) monitors the volume change due to the decrease in the amount of food. Similarly, the dosing device (14) and the one-way passage device (28) are also compatible with each other. It has complementary functions. Dosing device (14), main feed container (3) One-way passage system for controlling the amount to be allocated for service purposes. (28) allows the said amount of food to move toward the serving bowl (32) 25 and after the transfer is completed, the main feed container (3) is transferred by the service container (32) It restricts the reverse movement of matter that could occur in that direction. Thanks to this working arrangement, there is a single connection between the main food container (3) and the serving container (32). A multi-stage, controlled transfer instead of a gradual and continuously open feeding connection. The chain is formed. The transmission chain in question is the main feed hopper outlet area (13), 30 dosing hopper inlet opening (16), inlet control element (17), dosing hopper (15), Dosage limiting surface (18), dosage motion element (19), dosage motion guide (20), dosing hopper outlet opening (21), outlet control element (22), feed transfer channel 28 (23), transmission channel inlet region (24), transmission channel outlet region (25), flow routing surface (26), extended transition zone (27), one-way passage arrangement (28), one-way transition element (29), one-way transition element seating surface (30), backflow limiting surface (31) and through the food receiving area (34) to the internal volume of the serving container (33) It continues. 5 This multi-stage transfer relationship involves the transfer of wet food through the main food container (3). limiting its uncontrolled movement into the service container (32), service the amount of food allocated for this purpose is determined within the dosing apparatus (14). This allows the service container (32) to act in the opposite direction of the main feed container (3). It reduces the passage of substances through a one-way passage system (28). 10 The insulation between the main food container (3) and the serving container (32) is only between the main container- The service compartment is not merely a geometric separation provided by the divider section (36). Introduction by control element (17), output control element (22) and one-way transition element (29) The sequential access control created also provides direct passage between the two sections. It restricts communication. 15 Therefore, the consumption conditions inside the serving container (32) are the same as those inside the main feeding container (3) Its effect is not through a single barrier, but through physical separation and successive transitions. This is reduced by using control measures in conjunction with other methods. Pet wet food bowl system (1) passage that comes into contact with wet food The areas can be cleaned taking into account the tendency of wet food to stick to surfaces, 20 They are washable and can be made with surface geometries that reduce food accumulation. In particular the dosing chamber (15), the dosing chamber inlet opening (16), the dosing container outlet opening (21), feed transfer channel (23), transfer channel inlet area (24), Transfer channel outlet area (25), flow guiding surface (26), extended passage food 25 on the area (27), food receiving area (34) and serving hopper internal volume (33) to reduce sharp inner corners and unnecessary closed pockets that are conducive to accumulation Various geometries can be used. The service container detachable connector (37) located on the service container (32), While the serving container (32) is being cleaned, the main feed container (3), the dosing device (14) and 30 unnecessary containment and transfer side created by the food transfer channel (23) This reduces the need for direct disassembly of the animal. The service area it comes into contact with can be cleaned separately from other system components. 29 Main feed container filling opening (5), container closing element (6), container sealing element (7), movable volume tracking element (9), volume tracking element circumferential sealing When element (10) and air inlet restriction zone (12) are considered together, the main Interaction of wet food inside the food container (3) with the external environment from different points A limiting containment structure is formed. 5 The amount of food in the main food container (3) is lower than the initial filling level. As we descend to the levels, the moving volume tracker (9) and volume tracker guide The relationship of movement created by the surface (11) is the internal volume of the main feeding container (4) This feature helps to limit the increase in free volume within it. The outside air intake is not only closed when the main feed hopper filling opening (5) is closed, 10 It also works to reduce this over repeated feeding cycles. The amount of food allocated for serving in the dosing apparatus (14) is the dosing. Usable volume created by reservoir (15), dosage limiting surface (18) mechanical limit and dosage motion element (19) created by This can be determined in relation to the amount of movement performed. Thus, 15 Dosage is only adjusted by reducing the diameter of the feed transfer channel (23) or by reducing the amount of feed It is not achieved by allowing it to flow freely for a specific period of time. This formula determines the amount to be transferred in wet foods with varying consistencies and flow characteristics. It is conducive to providing more precise mechanical control over the feed transfer. Since the amount is controlled by the dosing device (14), the feed transfer 20 channel (23), flow guiding surface (26) and extended transition zone (27) are more It can be configured to ensure reliable feeding transition and reduce blockage. With regard to the one-way passage arrangement (28), the one-way passage element (29), one-way passage The element seating surface (30) and backflow limiting surface (31) are three complementary elements. It creates a tiered back-passage restriction relationship. One-way passage element 25 (29) movable control function, one-way transition element seating surface (30) closing contact function and backflow limiting surface (31) of the substance moving in the opposite direction It fulfills the function of limiting the transition geometry. Thanks to this structure, the food or liquid on the serving hopper (32) side is transferred to the main food hopper. (3) Restricting the return to the side only applies to a single moving element, exactly 30 It is not dependent on a leak-proof closure. Geometric orientation and contact. Their surfaces also contribute to reducing backflow. Pet wet food bowl system (1), through the main body (2) and carrier base (38) It is kept balanced on the usage surface. The serving hopper (32) is for the animal main feed container (3), dosing device (14), located in a position suitable for access, The feed transfer channel (23) and one-way passage mechanism (28) are inside the main body (2) or It can be positioned securely on the main body (2). 5 Pet wet food bowl system (1) different pet types, different amounts of food And it can be produced in different sizes for different food consistencies. Main food container internal volume (4), dosing hopper (15), feed transfer channel (23), extended passage Use area (27), service tank internal volume (33) and consumption area (35) dimensions It can be modified according to its purpose. 10 These dimensional changes do not alter the fundamental operating principle of the invention. The consumption of the food in the main food container (3) into the serving container (32) separation from the environment, controlled amount of food within the dosing apparatus (14) separation in the form of, conveying the food through the feeding channel (23) towards the serving direction, single Passing through the directional passage mechanism (28) into the service chamber (32), service 15 reverse matter that may occur from the main feed container (32) towards the main feed container (3). limiting its movement and the amount of food in the main food container (3) the change in volume due to the decrease by the variable volume regulation mechanism (8) Its management is protected. In this context, the pet wet food bowl system (1) includes the main body (2), main food 20 container (3), main feed container internal volume (4), main feed container filling opening (5), container Closing element (6), reservoir sealing element (7), variable volume regulation assembly (8), movable volume tracking element (9), volume tracking element circumferential sealing element (10), volume tracking element guide surface (11), air inlet restriction zone (12), main feed container outlet area (13), dosing mechanism (14), dosing container 25 (15), dosing chamber inlet opening (16), inlet control element (17), dosage limiter surface (18), dosing motion element (19), dosing motion guide (20), dosing hopper outlet opening (21), outlet control element (22), feed transfer channel (23), transfer channel inlet area (24), transfer channel outlet area (25), flow guiding surface (26), extended passage area (27), one-way passage arrangement (28), one-way passage element 30 (29), one-way transition element seating surface (30), backflow limiting surface (31), service container (32), serving container internal volume (33), food acceptance area (34), consumption area (35), 31 main tank-service tank divider section (36), service tank detachable connecting element (37) and the supporting base (38) work together in a structural and functional relationship. With regard to the pet wet food bowl system (1), the structural integrity in question is the main Wet food stored in the food container (3) exits the main food container. Taking into the dosing device (14) via region (13), dosing device 5 The amount set aside by (14) for serving into the food transfer channel (23) The redirection of the said amount of food through a one-way transfer mechanism (28) transfer to the serving container (32) and main food from the serving container (32) based on the principle of limiting the reverse movement of matter that may occur in the direction of the reservoir (3). It is based on. During this transfer relationship, the variable volume regulation mechanism (8), main 10 volume change due to decrease in the amount of food in the food container (3) It contributes to its management; the main reservoir-service reservoir separator section (36) is the storage and supports the physical separation between consumption areas. Thus, the aforementioned Instead of mechanical structures being composed of elements that function independently of each other, enclosures, Dosing, directed transfer, one-way passage and backflow restriction 15 a mechanical device that performs its functions within the same product structure It brings. As a result of this structural and functional relationship, the main feeding container (3) contains It is not necessary to open the entire wet food container to the serving conditions at each serving. Dosage of a specific amount of food set aside solely for serving purposes without any additional cost: 20 separation in a controlled manner through the mechanism (14) feeding channel (23) transfer to the one-way passage system (28) and service tank (32) It is ensured that it is delivered inside. At the same time, the main one is delivered from inside the service container (32). reverse material movement that may occur in the direction of the food container (3) one-way passage mechanism (28) and is limited by the backflow limiting surface (31), the main feed container 25 (3) The change in volume due to the decrease in the amount of food inside is variable volume. It is managed by the regulatory mechanism (8). Thus, the pet wet food bowl system (1) is used for storing wet food, controlled dosing, transfer towards the serving container (32), serving container (32) by limiting the passage of substances in the opposite direction of the main feeding container (3) and 30 Reducing the increase in free air volume due to the decrease in feed quantity an integrated system that performs functions interconnectedly within the same mechanical system It creates a system for storing and serving wet food. 32 Industrial Application of the Invention: The invention relates to pet feeding equipment, wet food storage containers, and mechanical devices. dosing systems, multi-compartment feeding containers, controlled feeding devices, and Suitable for mass production and repeatable manufacturing in industries where similar products are produced. It is applicable in this way. Pet wet food bowl system; for household use, 5 veterinary clinics, animal care centers, shelters, breeding facilities and the like They can be produced in different sizes and capacities to suit various applications. The basic structural components included in the invention are food-contact safe plastics. elastomeric materials, stainless metals, or similar durable materials It can be produced using the following components: Main body, main feed container, serving container, dosing unit 10 The body components, such as the feeding mechanism, the feed transfer channel, and the carrier base, are injected. molding, thermoforming, pressing, machining, metal forming or similar manufacturing processes. They can be manufactured using various methods; providing both sealing and movable passage functionality. The components can be manufactured using suitable elastomeric or flexible materials. The components used in the invention are either manufactured as a single integrated unit or from multiple sub-units. modular production approach based on the principle of assembling parts This can be accomplished. In this way, the main feed hopper, the dosing area, and the feed... Transfer pathway, one-way passage structure and service bay; production, assembly, maintenance and cleaning. Depending on the requirements, integrated or separable sub-units can be placed within a single body. It can be created in modules. 20 The suitability of the invention for mass production includes the main feed container and the serving container. controlled transfer relationship between them with fixed and repeatable geometric components Its design provides a significant advantage. Dosing chamber, inlet and outlet control. elements, feed transfer channel, one-way passage structure and backflow restriction surfaces, They can be produced in a repeatable manner within specific dimensions and tolerances, thus allowing for the production of 25 different models. It is possible to obtain similar mechanical operating characteristics in production batches. is happening. The invention is for managing volume changes occurring in the main feed container. Its mechanical structure can also be designed in a way that is suitable for industrial production. (Mobile) Volume tracking element, guide surface and circumferential sealing elements, main feed 30 Manufactured with tolerances suitable for the geometry of the reservoir, it is included in mass assembly processes. This is possible. Thanks to this structure, the volume decreases due to the reduction in the amount of food. 33 complex electronic control systems for mechanically tracking its change A functional solution can be created without needing one. The transition sections, movable element openings and contacts to be used in the production of the invention. surfaces, varying consistency, stickiness and particle size of wet food are taken into consideration They can be sized accordingly. Thus, only a specific feed type 5 is used during the production phase. Instead of a narrow range of uses specific to a particular type, age groups can exhibit different physical characteristics. A wider range of mechanical applications can be developed that can work with the formulas. Surfaces that come into contact with food must be suitable for food contact, have surface smoothness, and It can be produced taking into account cleanability criteria. Especially dosage. 10 parts that come into direct contact, unnecessary indentations, sharp inner corners, and food accumulation. They can be produced with geometries that reduce the amount of usable enclosed space, thus improving cleaning and Maintenance procedures can be simplified. The detachable design of the service tank is advantageous for industrial applications. It also provides production and usage advantages. The service container can be separated from the main body. 15 when produced in this way, the animal comes into direct contact with the product and it needs to be cleaned more frequently. This section can be cleaned independently of other mechanical structures, or It can be modified. This feature improves the product's maintenance and lifespan. It increases its functionality. The invention's mechanically-oriented structure includes an external power source, a motor, and an electronic control unit. or allows it to be done without requiring the use of software. This situation requires keeping production costs under control and assembly processes. Simplifying, reducing maintenance requirements, and adapting the product to different markets Its suitability for industrial application in terms of scalability according to its segments. It provides. 25 The invention is a professional wet food bowl with a higher capacity than small, household-type wet food bowls. They can be produced in different sizes, including consumer products. The main feed container capacity, volume of the dosing hopper, cross-section of the feed transfer channel, one-way passage the dimensions of its structure and the volume of its serving bowl are determined according to its intended use. It can be modified. Such dimensional changes affect the main feed container and serving size 30. The physical separation of the container allows for the controlled dispensing of a specific amount of food. dosage, feed transfer being carried out primarily in one direction, reverse substance 34 limiting the passage and managing volume changes in the main feed container It does not change the basic working principle. The number of parts used in the production of the invention and the assembly method determine the targeted production. It can be optimized according to its capacity. In high-volume production, the main body, Reservoirs and transfer channels can be produced as molded parts; movable and 5 Sealing elements are manufactured separately and assembled on the assembly line. They can be combined. For lower production volumes or custom sizes, suitable machining methods are used. Manufacturing, thermoforming, or similar methods can be used. The invention's structure is also suitable for part standardization. For products with different capacities. identical or similar input control elements, output control elements, one-way switching 10 Elements, sealing elements and connection structures can be used; main feed Volumetric components such as the reservoir and serving reservoir are determined according to the product capacity. This allows for differentiation. This leads to a reduction in production costs and the creation of different products. contributing to the realization of its variants on the same production infrastructure. It provides. 15 The industrial-scale applicability of the invention is not limited solely to its manufacturability, It can also be adapted to assembly, maintenance, cleaning, parts replacement, and product diversification processes. It is characterized by its removable service tank and modular component structure. Cleaning, replacing, or adapting parts to different capacities separately It is possible. 20 The invention relates to containment, volume change management, dosing, feed transfer and reflux. Since limiting functions can be performed via mechanical structures, the system is external. in a way that can be used without necessarily being dependent on an energy source It can be configured; however, auxiliary electrical or other tools are used in different applications. The addition of electromechanical components to the system enhances the fundamental mechanical structural relationships of the invention. It does not change anything. Pet wet food bowl system; the food is served from the main food hopper. kept as isolated as possible from its environment, only for service the controlled dosing of the allocated amount for this purpose, and the serving of the dosed food. transferring the food to the container in one direction only, from the serving container to the main food side, 30 to limit potential reverse substance transfer and to increase the amount of mother feed The volume change due to the decrease will reduce the uncontrolled entry of outside air. Because it can manage these processes in the same way within the same product structure, the existing 35 plastic container, food contact equipment and pet feed product manufacturing infrastructures It is adaptable. In conclusion, the invention can be manufactured in a repeatable manner using known industrial production methods. modular, adaptable to different materials and capacities, and suitable for mass production. or can be produced in an integrated, cleanable and maintainable form. 5 configurable and directly commercially available in the pet food products sector. A convertible wet food storage, dosing and serving system. It constitutes the manufacturability of the mechanical structure of the invention, in different capacities and uses. Scalability according to requirements and controlled serving with main food preservation function. Integrating its function within the same product increases the industrial applicability of the invention. These constitute the fundamental elements that support it.

Claims

36 REQUESTS 1. Wet food should be stored and served in a controlled manner for consumption. Pet wet food bowl system (1) for feeding, its feature is; age main food container (3) where the food is stored, main food container (3) 5 to manage volume changes due to decreased food content. variable volume mechanically related to the main feeding container (3) regulating mechanism (8), main feed container during the said volume change (3) air intake to limit uncontrolled outside air entry into it Restriction zone (12), wet food inside the main food container (3) the main feed hopper outlet area (13) where it is brought out to the controlled transfer line, main 10 wet food to be separated for serving purposes and associated with the food container outlet area (13) Dosing structured to mechanically limit the amount The device (14) separates the wet food by the dosing device (14) for serving. Feed transfer channel (23) which enables the feed to be conveyed in the direction of the feed transfer channel (23) 15 The reverse of the service container (32) towards the main feed container (3) may occur. a single structure designed to mechanically restrict directional passage of matter directional passage system (28), where wet food to be consumed by the animal is located serving container (32) and main food container (3) and inside the serving container (32) the storage and consumption areas directly forming a common physical volume 20 It includes a main container-serving container divider section (36) that limits the main food container. container (3), main feed container outlet area (13), dosing device (14), feed transfer channel (23), one-way passage mechanism (28) and service chamber (32) wet food kept in the main food container (3) of the members 25% of the amount set aside for service purposes is controlled, without opening the entire amount to the consumption area. and transfer to the serving container (32) in a doseable manner and serving reverse passage of matter from the main feeding chamber (32) towards the main feeding chamber (3) will create a sequential mechanical transmission structure that will allow for its limitation characterized by being structurally related to each other in this way. is being done. 30 2. Pet wet food bowl system (1) according to claim 1, and its feature is; main food container (3), dosing device (14), feed transfer channel (23), one-way passage the elements of the mechanism (28) and the service chamber (32) in the specified relative positions the sequential mechanical transmission created between the elements in question. 37 structured in a way that ensures its alignment is maintained during use. It is characterized by containing the main body (2).

3. Pet wet food bowl system (1) according to claim 2, and its feature is; main food The internal volume of the main food container in which wet food is stored (3) (4), main food container internal volume (4) allows wet food to be filled into it 5 main feed hopper filling opening (5), main feed hopper filling opening (5) a container closing element (6) positioned on it in an openable and closable manner and between the hopper closing element (6) and the main feed hopper filling opening (5) a reservoir positioned to restrict uncontrolled air and material passage It is characterized by containing a sealing element (7). 10 4. Pet wet food bowl system (1) according to claim 3, and its feature is; variable with the volume regulation mechanism (8) inside the main feed container (4) mechanically related and the amount of food in the main food container (3) The movable volume tracking element (9) can change position depending on the decrease. The ambient air between the movable volume tracking element (9) and the main feed container (3) is 15 volume tracking element that restricts passage circumferential sealing element (10) and The main feed container internal volume of the movable volume tracking element (9) (4) Volume tracking that ensures the movement is maintained in a defined direction. The element is characterized by containing a guide surface (11).

5. Pet wet food bowl system (1) according to claim 1, its feature is; dosing 20 the main food container (3) for serving purposes inside the mechanism (14) Dosing hopper (15) where the wet food separated from the quantity is temporarily located, between the main feed container outlet area (13) and the dosing container (15) The dosing chamber inlet opening (16) and the dosing chamber inlet forming the passage The passage of formula into the dosing chamber (15) through the opening (16) is 25 input control element configured to control mechanically (17) It is characterized by its inclusion.

6. Pet wet food bowl system (1) according to claim 5, its feature is; dosing The amount of wet food to be set aside for serving can be used in the container (15). Dosage limiting surface mechanically limiting through volume (18), 30 The wet food inside the dosing hopper (15) is mechanically transferred in the direction of transfer. Dosage motion element (19) positioned to advance the dosage motion and dosage motion element (19) will keep the movement of the element in a defined direction of movement 38 It is characterized by containing a structured dosage action guide (20). is being done.

7. Pet wet food bowl system (1) according to claim 6, its feature is; dosing The food transfer channel for the wet food separated for serving purposes in the container (15) (23) the dosing hopper outlet opening (21) and the dosing hopper 5 mechanically control the passage of food through the outlet opening (21) It is characterized by containing an output control element (22) structured in such a way as to is being done.

8. Pet wet food bowl system (1) according to claim 7, and its feature is; access control dosing chamber (15) of element (17) and output control element (22) 10 by creating separate mechanical access control points on the entrance and exit sides positioning and exit control with the said input control element (17) element (22) dosing hopper (15) of the elements main feed hopper to ensure a continuously open feed passage between the feed transfer channel (3) and the feed transfer channel (23) by being mechanically related to each other in a way that will limit 15 It is characterized by...

9. Pet wet food bowl system (1) according to claim 6, its feature is; dosage movement element (19) mechanically with the dosing movement guide (20) of the element (19). the fact that it is related and the dosage of the said dosage motion element (19) element Dosage in the direction of movement determined by the movement guide (20) 20 pour the wet food inside the container (15) towards the dosing container outlet opening (21). It is characterized by its movable structure, designed to be mechanically advanced. is being done.

10. Pet wet food bowl system (1) according to claim 1, its feature is; food transfer The wet food transferred by the dosing device (14) at the beginning of the channel (23) 25 accepting transfer channel entry region (24), feeding transfer channel (23) end age The outlet area of ​​the transfer channel that conveys the food towards the one-way transfer mechanism (28) (25), wet food movement in the food transfer channel (23) transfer channel flow guiding surface (26) and feeding that directs towards the exit area (25) Increased passage area in the transfer channel (23) compared to the adjacent channel cross-section 30 It is characterized by containing an extended transition zone (27) which forms is being done.

11. Pet wet food bowl system (1) according to claim 10, and its feature is; food the element of the transmission channel (23) with the transmission channel input region (24) and the transmission channel 39 to create different transition sections between exit region (25) structuring and extended transition zone (27) element of feeding transfer Increased passage in at least one section within the canal (23) compared to the adjacent canal cross-section geometrically with a flow guiding surface (26) to form the area It is characterized by being associated with something. 5 12. Pet wet food bowl system (1) according to claim 1, its feature is; one-way in the feed movement towards the serving bowl (32) within the transition mechanism (28) allowing passage and restricting reverse passage in the movement of matter in the opposite direction. One-way transition element that can move to the position (29), one-way transition element (29) 10 in one direction that establishes a mechanical relationship in the position that restricts the return passage of the element. transition element seating surface (30) and can be used in reverse material movement geometric with one-way transition element (29) to reduce the return transition area characterized by having a backflow limiting surface (31) associated with it. is being done.

13. Pet wet food bowl system (1) according to claim 12, its feature is; one-way 15 under the movement of the feed in the direction of the service hopper (32) of the transition element (29) One-way transition element can be used by moving away from the seating surface (30). will increase the cross-section and allow unidirectional passage under reverse material movement. The element moves towards the seating surface (30) to create a usable transition section. It is characterized by its movable structure, which reduces the risk of accidents. 20 14. Pet wet food bowl system (1) according to claim 12, and its feature is; one-way. transition element seating surface (30) and backflow limiting surface (31) elements, during the reverse movement of the one-way transition element (29) will reduce the usable back passage section and the one-way passage element (29) 25 One-way transition element seating surface (30) with mechanical closure geometrically related to each other in a way that supports the relationship It is characterized by its being.

15. Pet wet food bowl system (1) according to claim 1, its feature is; serving hopper (32) internal volume of the serving container containing wet food (33), transfer channel 30 wet food coming through the outlet area (25) and one-way passage mechanism (28) The internal volume of the serving container (33) is directed into the food acceptance area (34) and enabling the animal to access wet food within the internal volume of the serving trough (33) It is characterized by containing a consumption area (35). 40 16. Pet wet food bowl system (1) according to claim 15, and its feature is; food acceptance region (34) element of the transfer channel exit region (25) and one-way passage transferred into the service container (32) by positioning opposite the mechanism (28). will direct the wet food into the internal volume of the serving container (33). and the serving container of the consumption area (35) element contains food (33) wet food accepted by the animal by the acceptance area (34) It is characterized by being structured in a way that creates an accessible consumption area. is being done.

17. Pet wet food bowl system (1) according to claim 15, its feature is; serving The working of the reservoir (32) element on the main body (2) or carrier base (38) 10 mechanically held in place and cleaning, maintenance or parts replacement a service that enables the structure in question to be detached in a removable manner for this purpose Its reservoir is characterized by containing a removable connecting element (37).

18. Pet wet food bowl system (1) according to claim 17, its feature is; serving service reservoir (32) of the removable reservoir connecting element (37) 15 It will mechanically hold the device in the specified operating position during use and when the service container (32) is placed on the main body (2) or carrier base (38) one-way passage system (28) and transfer of the feeding acceptance area (34) element the channel outlet area (25) and its relative position for the transfer of food It is characterized by being structured in a way that will protect it. 20 According to Claim 2, the pet wet food bowl system (1) has the following features: main body (2), main feed hopper (3), dosing device (14), feed transfer channel (23), single Usable surface of the directional passage mechanism (28) and service chamber (32) elements their relative positions and the direction of mechanical transmission between them integrated with the main body (2) in a way that will protect it or the main body (2) 25 It is formed in the form of a separate supporting structure onto which the element is fixed. It is characterized by having a supporting base (38).

20. Pet wet food bowl system (1) according to claim 4, and its feature is; movable volume monitoring element (9) inside the main feed container (4) of the element feed 30 configuration and volume tracking element with environmental sealing element (10) the change in position of the volume tracking element guide surface (11) elements the orientation of the moving volume tracking element (9) throughout and movable volume designed to restrict ambient air passage. 41 It is characterized by being structurally associated with the tracking element (9). is being done.