LIQUID CONTAINER CARRYING DEVICE WITH LOWER NECK GRIP AND SAFETY LOCKING MECHANISM.
Patent Information
- Application Number
- TR202612466U
- Authority / Receiving Office
- TR · TR
- Patent Type
- Utility models
- Current Assignee / Owner
- Filing Date
- 2026-07-24
- Publication Date
- 2026-09-21
- Estimated Expiration
- 2036-07-24
Smart Images

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Abstract
Description
1 TARIFF 5 WITH LOWER NECK GRIP AND SAFETY LOCKING MECHANISM LIQUID CONTAINER TRANSPORT DEVICE Technological Field: The invention is for the safe, stable and ergonomic handling of liquid containers. The invention relates to the technical field of mechanical conveying devices. More specifically, the invention concerns a water jug, 10 large volume plastic or glass bottles, canisters and similar neck-shaped containers for liquids The carrier performs the transport by grasping the neck of the container from below. It has a safety interlocking mechanism that prevents unintentional detachment during operation, and the load a mechanical conveying device that ensures a more balanced transfer of power to the user It is related. 15 The invention relates to mechanical handling equipment, ergonomic handling aids, packaging and transportation. Technical specifications of products for the safe transport of liquid containers and accessories. It is located in the field of any electrical, electronic, hydraulic or pneumatic A clutch and locking architecture that operates entirely mechanically without the need for a system. It offers. In this respect, the invention; in addition to domestic use, drinking water distribution services, 20 logistics operations, market and warehouse applications, industrial liquid transportation. Different volumes with neck structure used in laboratories and production facilities. mechanical conveying devices for the safe transport of liquid containers It falls within the technical field. Furthermore, the invention aims to improve transportation safety. Ergonomic carrying case with mechanical clutch and safety locking mechanisms 25 It also relates to their equipment. State of the Art: Today, water dispensers are large-volume plastic or glass bottles, jerrycans, and similar containers used for liquids. The containers are usually carried by holding them directly by hand from the neck or This is accomplished by using simple, attachable carrying handles. 30 In these conveying methods, the conveying element is usually attached to the neck of the container at a single point. holding on, maintaining balance, especially when handling heavy containers of liquids. and various usage difficulties arise in terms of ensuring a secure grip. It is possible to get out. A significant portion of existing carrying handles can withstand loads generated during transport. Because there are no structural arrangements to ensure balanced transfer, the handle the container rotating, tilting, loosening, or becoming unstable during transport 2 Situations such as this may occur. This situation reduces user comfort. 5 It can reduce transportation costs and negatively affect transportation safety. In addition, some of the known solutions involve the transport device being roughly and reliably secure. The structural arrangements that enable this connection are not at a sufficient level, some In applications, the use of multi-part or complex fasteners is necessary for assembly. and can complicate the usage processes. In addition, there are 10 different neck geometries. The limited availability of transport devices compatible with the liquid containers they contain, This narrows the scope of application for the solutions. However, in a significant number of existing conveying devices, the load is in the hands of the user. ergonomic carrying geometries that will allow the load to be transferred more evenly. Due to insufficient availability, user 15 is required for long-term or repetitive transportation operations. In this respect, there may be a loss of comfort. For these reasons, heavy and bulky liquid containers should be handled by the user with greater safety and stability. and allows for ergonomic carrying, can be securely fastened, and transported. It maintains its stability during use, offers ease of use, and is fully mechanical. An improved transport device with a working principle is needed. 20 The purpose of the invention: The primary purpose of the invention is to process large-volume plastic or glass bottles, containers, and similar items. Safe, stable and ergonomic handling of liquid containers with a neck structure. The goal is to develop an improved mechanical conveying apparatus that provides this functionality. Another objective of the invention is to ensure the reliable connection of the conveying apparatus to the liquid container. 25 by preventing loosening, slipping, twisting or unintentional accidents that may occur during transport. The aim is to reduce the likelihood of separation and increase transportation safety. Another purpose of the invention is to reduce the load generated during transport on the user's hand and wrist. by ensuring a more balanced transfer, it increases user comfort and handles heavy liquids. This allows for more controlled transportation of containers. 30 Another purpose of the invention is to contribute to maintaining balance during the transport of liquid containers. providing a secure grip and preventing negative impacts that may occur during use. The goal is to create a transport device that reduces these situations. Another aim of the invention is to use various liquid containers with different neck structures and volumes. usable, easy to attach and detach, practical to use, and reusable (35) The goal is to develop a usable mechanical conveying device. 3 Another aim of the invention is to generate additional energy, electrical 5, through a purely mechanical working principle. or provides reliable use without requiring electronic equipment, and is easy to manufacture. The goal is to develop a carrying device suitable for long-term use. Another aim of the invention is to be compatible with liquid containers of different volumes and neck geometries. a modular mechanical conveyor that can be configured to provide to improve. 10 Explanation of the Figures Figure 1: Liquid container with bottom neck grip and safety locking mechanism, which is the subject of the invention. This shows a general perspective view of the transport device. Figure 2: The working mechanism of the conveying apparatus of the invention, locked onto the neck of the liquid container. It shows its appearance in that location. 15 Figure 3: Main image showing exploded perspective view of the conveyor apparatus of the invention. carrier body, carrying handle, neck grip elements, locking mechanism and It shows the structural relationship between other mechanical components. Figure 4: Showing a detailed cross-sectional view of the safety interlocking mechanism of the invention. locking bolt, safety locking tab, spring elements, clutch structure and related 20 It demonstrates the working principle of mechanical components. References: 1. Main carrier body 2. Carrying handle 3. Ergonomic grip surface 25 4. Reinforcement ribs 5. Neck grip body 6. Left gripping jaw 7. Right-hand grip 8. Neck support surface 30 9. Clarity of Comprehension 10. Temporomandibular joint 11. Joint pin 12. Guide slot 13. Locking bolt 35 14. Slide guide 15. Safety locking tab 4 16. Locking spring 5 17. Spring mattress 18. Lock release latch 19. Latch axis 20. Return spring 21. Support arm 10 22. Support arm attachment point 23. Reinforcement bridge 24. Support pad 25. Non-slip grip surface 26. Grip pad 15 27. Chin stop ridge 28. Opening limiter 29. Lower support protrusion 30. Load-bearing body 31. Hanging attachment hole 20 32. Protective end cap Description of the Invention: The invention relates to large-volume plastic or glass bottles, containers, and similar neck-shaped containers. ensuring the safe, stable and ergonomic transport of liquid containers. It relates to a purely mechanical conveying apparatus. The conveying apparatus included in the invention is for liquid 25 Instead of holding the container only by its top edge or a narrow point of contact, the container mechanical support from the support surface surrounding the neck region and especially below the neck. It has a transportation architecture that understands this. Thus, the vertical lines formed during transportation... Loads and horizontal forces are distributed over a wider contact area, increasing transport safety. By increasing the force applied by the user, the force is transferred more evenly to the liquid container. 30 and the risk of involuntary dissociation is significantly reduced. Within the scope of the invention, the main carrier structure of the conveying apparatus is the main carrier body (1) It consists of all mechanical elements included in the invention. The main supporting body (1) on which it is positioned, where loads are collected, and what happens during transportation It is the basic load-bearing element where mechanical forces are distributed in a controlled manner. Main load-bearing element 35 The body (1) can be made of plastic, composite, metal alloy or suitable depending on the intended use. Made from various materials capable of providing mechanical strength, in single or multi-piece form. It can be produced by injection molding, casting, machining, pressing, additive manufacturing or 5 It can also be manufactured using similar production methods. Main carrier body (1), will provide sufficient rigidity against bending and torsional forces generated during transport It is structured in geometry. The carrying handle (2) grasped by the user on the main carrier body (1) There is a carrying handle (2) which allows the user to transfer the carrying force directly to the apparatus. It constitutes the main area of use that it transmits. The carrying handle (2) is in the user's hand. curved, linear, oval, or with different ergonomic shapes to suit its anatomy. They can be created in various geometries and are suitable for carrying with one or two hands. It can be designed. The connection between the carrying handle (2) and the main carrier body (1), It is structured in such a way as to ensure the homogeneous transfer of the generated loads. 15 Ergonomic design on the carrying handle (2) or in the areas that come into contact with the user's hand. There is a gripping surface (3). The ergonomic gripping surface (3) protects against damage during transport. It allows the user's hand to be held more firmly on the device, by hand. Increasing the contact area between the handles reduces the likelihood of slipping and extends the lifespan. pressure concentration that may occur on the hand with prolonged use 20 It lowers the ergonomic grip surface (3), surface patterns, reliefs, grooves, elastomer coatings or similar mechanical adhesion-enhancing surface structures can be created. There are also reinforcing ribs (4) on the main carrier body (1). Reinforcement ribs (4) absorb the mechanical loads generated during transport inside the body 25 It ensures controlled distribution and the bending and torsional resistance of the body. increasing structural integrity, especially during the transportation of heavy liquid containers. It prevents deformation from occurring. Reinforcement ribs (4) are integrated with the body. It can be created as is, or in different geometries or different thicknesses. It can be optimized according to the required mechanical strength by being structured accordingly. 30 The neck grip body (5), which is integrated with the main carrier body (1), is the invention. It forms the main mechanical support region that allows it to connect to the liquid container. Neck The gripper body (5) will surround the neck geometry of the liquid container. It is structured and is the basic load-bearing structure that carries the coupling elements. This body The left gripping jaw (6) and the right gripping jaw (7), positioned on it, are 35 degrees apart. by approaching or moving away, it surrounds the neck area of the liquid container and ensures safety. It performs the gripping action. During gripping, the load is only applied around the neck. 6 not only, but also through the support surface (8) under the neck of the container 5 The loads generated during transportation are transferred to the carrier area. Thus, the loads are collected at a single point during transport. Condensation is prevented, and the load is distributed over a wider surface, thus protecting both the liquid container and The mechanical safety of the conveyor is increased. The gripping gap created between the left gripping jaw (6) and the right gripping jaw (7) (9), liquid containers with different diameter and neck geometries are processed by the apparatus 10 It is determined in such a way as to enable comprehension. Comprehension clarity (9), Depending on the chosen mechanical design, it can have fixed dimensions or specific tolerances. It can also be changed or adapted to different sizes. It can be configured. Grip opening (9) in liquid containers from different manufacturers. The neck diameter can be determined in a way that can meet the visible tolerances, 15 Mechanical design that adapts to different neck sizes without compromising grip safety. It can be configured within the working range. Mechanical loads resulting from the weight of the liquid container during transportation; neck six support surfaces (8), left gripping jaw (6), right gripping jaw (7), carrying support handle (21), through the reinforcement bridge (23) and load-bearing body (30) to the main load-bearing body 20 (1) is transferred in a controlled manner. Thus, the load is concentrated at a single point. This is prevented by ensuring that mechanical forces are distributed evenly throughout the conveying apparatus. This increases both structural strength and the lifting capacity applied by the user. The force is transmitted to the liquid container in a more controlled and safe manner. This load transfer... Its architecture allows for the absorption of torsional, bending, and off-axis stresses that may occur during transportation. It helps to reduce the load and increase the mechanical stability of the conveying apparatus. The left gripping jaw allows the gripping mechanism to operate in a controlled manner. (6) with the right gripping jaw (7), neck gripping body (5) via the jaw joint (10) It is attached in a movable manner. The jaw joint (10) of the gripping jaws It allows the opening and closing movements to be performed around a specific axis. 30 It recognizes and the joint pin is necessary for the smooth functioning of the mechanical movement. (11) is used. The pivot pin (11) rotates inside the jaw pivot (10). this creates and ensures that the jaws move stably even during prolonged use. It enables the use of a swivel pin (11), pin, shaft, bolt or similar rotary connection. It can be implemented as one of the elements, and if necessary, as a bushing, bearing or lower 35 It can also be used with friction intermediate elements. 7 The neck grip body (5) also contains the linear 5 locking slide (13). There is a guide housing (12) that directs its movement. The guide housing (12) is the locking mechanism. by ensuring that the slider (13) moves only in the specified direction It prevents jamming, off-axis movement, or incorrect positioning. Thus The locking mechanism must operate with the same accuracy in every use, and the mechanical... Its reliability is ensured. 10 The locking mechanism is positioned so that it can move linearly within the guide housing (12). The slider (13) is the basic mechanism that ensures the secure locking of the clutch mechanism. It is a moving element. The locking bolt (13) is attached to the neck of the liquid container of the carrying apparatus. Once positioned, it moves forward, locking the clutch mechanism into the locked position. It is configured to pass through. Mechanical accuracy is 15 throughout the movement of the slide. In order to protect it, the bolt guide (14) is used. The bolt guide (14), It prevents the slider from deviating from the linear axis, reduces friction, and provides locking. It ensures that the movement takes place in a controlled manner. The slide guide (14), It can be integrated with the housing or formed as a separate mechanical guide element. It can also be produced as follows: 20 The safety locking tab (15), working together with the locking bolt (13), facilitates the transport of the invention. It constitutes one of the fundamental safety elements that enhance security. Safety The locking tab (15) engages mechanically when the bolt reaches the lock position. This prevents the bolt from unintentionally moving backward during transport. 25 Potential openings are prevented, and the gripping mechanism remains active during transport. It is ensured that it remains securely closed. The safety locking tab (15) must be continuously guided to the locking position. For this purpose, a locking spring (16) is used. Locking spring (16), compression spring, tension spring The spring can be a leaf spring, wire spring, or one of the equivalent elastic elements, or a mechanical 30 It can also be achieved with different solutions that provide elasticity. Locking spring (16), axial accuracy by positioning it appropriately within the spring bearing (17) and prevents changes in the operating characteristics of the publication during long-term use. It prevents. The spring bearing (17) is a mechanical system that ensures the spring is fixed inside the housing. It is a support element and also locks the spring by preventing it from deviating from the axis. 35 It contributes to the stable operation of the mechanism. 8 Lock 5 allows the carrying device to be opened in a controlled manner by the user. There is a release latch (18). The lock release latch (18), It is a mechanically operated opening element controlled manually by the user, with a safety lock. temporarily move the claw (15) away from the locking position and the locking bolt (13) This allows the user to remain free. Thus, the user does not need any additional tools or aids. Without using any equipment, safely remove the conveyor from the liquid container. 10 It can distinguish them. The lock release latch (18) can rotate around the latch axis (19) or The neck grip body (5) is attached to the latch axis so that it can be oscillated. (19) ensures that the opening movement is carried out smoothly and the latch is repeated It is designed to reduce wear and tear during use. User's latch 15 After removing the force acting on it, the mechanism returns to its starting position. A return spring (20) is used so that it can return on its own. the spring (20) automatically returns the lock release latch (18) to its initial position This ensures the mechanism is made safe again for the next use. Thus, after each use, the locking system requires no additional action. 20 It becomes ready to resume operations without requiring further action. Safety locking tab (15), locking bolt (13), locking spring (16), lock release The release latch (18) and the return spring (20) work together to create a multi-stage mechanical It creates a safety system. Thanks to this structure, it prevents accidents that may occur during transportation. vibrations, impacts, sudden changes in direction, accelerations, or unintentional actions of the user 25 Any openings that may result from their movements are mechanically prevented and the grip is secured. The mechanism is designed to remain securely locked throughout the transport process. Thus, the invention not only achieved mechanical coupling, but also... an inactive but continuously operating mechanical safety device that prevents unintentional activation. It also fulfills the function. 30 In order to distribute the mechanical loads generated during transport more evenly to the main carrier body (1) between the neck grip body (5) and the main carrier body (1) for the purpose of transferring There is a transport support handle (21). The transport support handle (21) protects the liquid during transport. transferring the loads originating from the center of gravity of the container to the main body in a controlled manner. It guides, reduces localized tension that may occur in the neck grip area, and 35 It increases the overall mechanical strength of the conveying apparatus. The conveying support arm (21), 9 It can be produced in one-piece or multi-piece form, and in linear, curved, arched or different shapes. It can be structured in geometries. Providing the mechanical connection of the support arm (21) with the main carrier body (1) Support arm connection point (22), the main point where load transfer is carried out safely. It forms the connection area. The support arm connection point (22) is used during transport. 10 with mechanical strength to withstand the tensile, compressive and torsional forces that occur. It is manufactured and can be produced as a single piece with the body, or it can be joined with pins, screws, or rivets. They can also be formed using interlocking or similar mechanical connection methods. To increase structural rigidity between the main carrier body (1) and the neck coupling body (5) There is a reinforcement bridge (23) for this purpose. Reinforcement bridge (23) during transport 15 It contributes to the body, especially during the transport of heavy liquid containers. It reduces its deformation. The reinforcement bridge (23) is integrated with the body. It can be used as a component in the system or as a separate reinforcement element. Impacts, vibrations, or surface contact that may occur between the liquid container and the apparatus during transport. A support pad (24) is used to reduce the pressure. The support pad (24) is 20 neck grip body (5), neck support surface (8) or contact with the liquid container They can be positioned in different areas, increasing the contact surface and thus distributing the load more evenly. It ensures that it spreads over a wide area. Support pad (24), elastomer, rubber, silicone, They can be produced from polyurethane or similar flexible materials, depending on the application area. It can also be manufactured from materials with different hardness values. 25 To enable the user to grip the device more securely during transport. non-slip on the carrying handle (2) or with the ergonomic grip surface (3). There is a grip surface (25). Non-slip grip surface (25), hand grip by increasing friction between them, especially during sweating, dampness, or wetting. It contributes to maintaining transport safety in these situations. Non-slip grip 30 surface (25), surface patterns, micro-reliefs, grooves, roughened areas or It can be created using equivalent mechanical surface geometries as well as different coatings. It can also be supported with other materials. Grip pad (26) in the areas where the neck gripping jaws (6, 7) come into contact with the liquid container It has a grip pad (26) to prevent the liquid container surface from being scratched during gripping. 35 or reduces the formation of excessive surface pressure, while also increasing the gripping force. It contributes to its homogeneous distribution. Grip pad (26), one piece It can be applied as a single unit, or independently on each gripping jaw (5). It can be positioned. To prevent the left gripper jaw (6) and the right gripper jaw (7) from opening excessively. There is a jaw stopper (27). The jaw stopper (27) is the jaws by preventing it from exceeding the defined working limits, both the joint mechanism It also prevents damage to other moving parts. In addition, 10 opening limiter (28) determines the maximum opening amount of the gripping jaws. It acts as a second security element and ensures the controlled operation of the mechanism. It maintains its range. Opening limiter (28), mechanical stop, guide surface, This can be implemented in the form of contact protrusions or equivalent mechanical solutions. The lower support protrusion (29) located at the bottom of the neck grip body (5) holds the liquid container 15 downward movement that occurs during transport by contact with the support area under the neck It supports the loads. The lower support projection (29) ensures that the gripping force is only applied to the jaws. By preventing the load from being transmitted over the neck, it ensures that the load is also transferred under the neck. This increases grip safety, especially when handling heavy containers of liquid. It contributes to a more balanced distribution of the mechanical forces generated during the process. 20 The load carrier body (30), located inside the main carrier body (1), during transport the lifting force applied by the user to the neck grip body (5) It is one of the basic structural elements that enables the transfer of load. Load-bearing body (30), by distributing the generated mechanical forces in a controlled manner to different parts of the apparatus, thus localizing them. This reduces the occurrence of stress and extends the service life of the conveying apparatus by 25%. This structure can be produced integrated with the main supporting body (1) as well as It can also be designed as a separate load-bearing element. The transport device can be suspended, stored, or used when not in use. There is a hanging attachment hole (31) for connecting to auxiliary equipment. Hanging hole (31), hanging bracket, safety rope, hook or similar auxiliary connection 30 It is designed to allow the use of its elements. On the corner areas or outer surfaces of the conveyor that come into contact with the user There is a protective end cap (32). The protective end cap (32) protects against sharp edges. It reduces contact with the user and minimizes the impact of collisions that may occur during transportation. lightens the load and at the same time contributes to the protection of mechanical elements from the external environment. 35 It provides. The protective end cap (32) is made of plastic, elastomer, rubber or similar material. 11 It can be manufactured from protective materials and is a slip-on, tight-fitting design that attaches to the body, 5 They can be fixed using adhesive or similar methods. The main carrier body (1), neck gripping body (5), and carriage included in the invention. support arm (21), reinforcement bridge (23), load-bearing body (30), clutch mechanism and other mechanical elements can be disassembled and reassembled independently when necessary. 10 that can be fitted, replaced or with equivalent parts of different sizes and geometries It can be configured modularly so that it can be modified. This allows for maintenance, Repair, parts replacement, adaptation and production for liquid containers with different neck diameters. While ease of use is ensured, it is also possible to adapt the invention to different areas of application. is happening. The invention's operating principle involves the user attaching the conveying device to the neck of the liquid container by 15 by bringing the left gripper jaw (6) and the right gripper jaw (7) closer around the neck It is positioned. The support surface (8) and the lower support projection (29) are located under the neck of the container. It makes contact with the carrier area, ensuring the safe transport of the load. Then The safety locking tab (15) is activated by moving the locking bolt (13) forward. The mechanism is locked by means of the locking spring (16), safety locking tab (15) 20 While guiding to the continuous lock position, the user can carry the product using the carrying handle (2) It is carried out securely. The lock is released after the transport is complete. When the latch (18) is pressed, the safety locking tab (15) is released from the lock position, The locking bolt (13) is released and the mechanism is activated by means of the return spring (20). By returning to its starting position, the conveyor attachment is safely separated from the liquid container. 25 The invention includes the main carrier body (1), neck grip body (5), and carrying support arm. (21), load-bearing body (30) and other load-bearing elements can be produced as a single piece. joining multiple mechanical parts together by screwing, riveting, fitting, welding, etc. by joining together using adhesive or equivalent fastening methods It can be created. Similarly, the movable 30 that forms the gripping mechanism. The components are also designed to be detachable for ease of maintenance and replacement. It can be configured. The conveying device consists of: main carrier body (1), neck gripping body (5), gripping jaws (6, 7) Proper assembly of the joint system, locking mechanism and other mechanical elements. It can be formed by assembling them in sequence. During the assembly process, 35 Operating clearances and mechanical tolerances of moving elements, clutch and locking. It is determined in a way that will ensure the reliable operation of the mechanism. 12 The neck gripping jaws (6, 7) used in the invention are designed to grip liquids with different volumes and neck diameters. They can be produced in different geometries to fit into containers. Grip The inner surfaces of their jaws can be flat, curved, stepped, grooved, or have different profile geometries. as it may have grip pads (26) or grip pad It can also be applied without using the neck support surface (8). lower support projection (29) to suit different neck profiles 10 It can be changed. Guide slot (12), slide guide (14), locking slide (13), safety lock claw (15), locking spring (16), lock release latch (18) and return spring (20) different mechanical devices to perform the same function It can be reconfigured. The locking mechanism is linearly movable, rotary 15 movable, cam mechanism, latch, bolt or equivalent mechanical locking This can be achieved using one of its principles. Carrying handle (2), ergonomic grip surface (3), non-slip grip surface (25) and The support pad (24) has different degrees of hardness depending on the intended use. elastomers, thermoplastics, rubber-based materials, composites, or equivalent surface 20 They can be manufactured using these materials. These elements are a single piece with the body. They can be manufactured as such, or in the form of replaceable parts that are assembled later. It is applicable. Main carrier body (1), neck grip body (5), carrying support handle (21), reinforcement bridge (23) and load-bearing body (30), different cross-sections depending on the load-bearing capacity 25 in thicknesses, different geometries and different mechanical strength values It can be produced. Additional reinforcing ribs (4), support elements or if required. Variations suitable for higher load-bearing capacities by adding structural reinforcements. can be created. The invention is not limited solely to use in the transportation of water containers. The same 30 Mechanical clutch principle; large volume plastic bottles, glass bottles, canisters, laboratory sample containers, chemical containers, industrial liquid containers, food Safe transport containers and similar containers of different volumes with neck structures. It can also be applied in transportation in this manner. All mechanical elements described within the scope of the invention can be used independently for 35 years. It can also be applied in different combinations, such as those described here. The examples provided constitute only the preferred applications of the invention, and the claims 13 All geometric shapes that can be made without deviating from the main idea of the defined invention. modifications, material changes, mechanical equivalents, dimensional changes, connection forms and structural adaptations are within the scope of invention protection. is being evaluated.
Claims
14 REQUIREMENTS 5 1. The invention relates to large-volume plastic or glass bottles, containers, and similar neck-shaped containers. a liquid container that ensures the safe transport of liquids in containers with a specific structure It is a transport device and its feature is; the main carrier body (1), the main carrier body (1) the carrying handle (2) on it, the neck connected to the main carrier body (1) grip body (5), neck of liquid container on grip body (5) 10 the left gripping jaw (6) and the right gripping area which are mutually grasped carrying his jaw (7), in contact with the carrier area under the neck of the liquid container the neck support surface (8) that bears the load, the gripping mechanism locked the locking mechanism that holds it in place, the locking mechanism in question locking bolt (13), safety locking tab (15) and lock 15 including the release latch (18), left grip jaw (6), right grip the neck region of the liquid container together with the chin (7) and the support surface under the neck (8). By gripping from below, it transfers the load to the main carrier body (1), locking the locking mechanism of the slide (13) via the safety locking tab (15) Keeping it in the locked position during transport and the lock release latch (18) 20 Controlled release of the locking mechanism via user control. It is characterized by its ability to make people give up.
2. It is a liquid container carrying device according to claim 1, and its feature is; the neck grip body (5), main carrier carrying the left gripping jaw (6) and the right gripping jaw (7) It is designed as a mechanical structure and the neck of the gripping jaws in question is 25 by being placed on the clutch body (5) to move in opposite directions It is characterized by...
3. Liquid container carrying device according to claim 1 or 2, its feature is; the left gripping jaw (6) and right gripping jaw (7), neck gripping via jaw joint (10) movable connection to the body (5), jaw joint (10) joint pin (11) 30 by means of performing controlled opening and closing movements of the jaws It is characterized by being formed in this way.
4. Liquid container carrying device according to claim 1, 2 or 3, its feature is; neck grip inside the body (5) which directs the linear movement of the locking bolt (13). the guide slot (12) and the locking bolt (13), bolt guide (14) 35 by moving along it to lock the clutch mechanism into the locked position It is characterized by its structure.
5. A liquid container carrying device according to any of claims 1 to 4, with the following feature: 5 The locking bolt (13) works together with the safety locking tab (15). Configure to keep the clutch mechanism in the locked position It is characterized by...
6. According to claim 5, it is a liquid container carrying device, the feature of which is; safety locking tab. (15) is guided to the locking position by the locking spring (16) and 10 Characterized by the positioning of the locking spring (16) inside the spring bearing (17). is being done.
7. Liquid container carrying device according to claim 5 or 6, its feature is; lock release. The neck so that the latch (18) moves around the latch axis (19) The connection to the clutch body (5) and the return spring (20), lock release 15 After releasing the latch (18), it automatically returns to its starting position. It is characterized by its ability to rotate.
8. Liquid container carrying apparatus according to any of claims 1 to 7, its characteristic is; carrying between the support arm (21), the neck grip body (5) and the main carrier body (1) positioning and support arm connection point (22) via the main carrier 20 characterized by being attached to the body (1) in such a way as to provide mechanical support. is being done.
9. Liquid container carrying apparatus according to claim 8, its feature is; main carrier body (1) and neck To increase the structural rigidity between the clutch body (5) including the bridge (23) and the said reinforcement bridge (23) the main supporting body 25 to provide mechanical support between (1) and the neck grip body (5) It is characterized by its structure.
10. Liquid container carrying apparatus according to any of claims 1 to 9, its characteristic is; neck contact with the grip body (5), neck support surface (8) or liquid container the presence of a support pad (24) in the regions and the contact of the said support pad (24) 30 It is characterized by its structure, which increases its surface area.
11. Liquid container carrying apparatus according to any of claims 1 to 10, its characteristic is; carrying related to the ergonomic grip surface (3) located on the handle (2) The presence of a non-slip grip surface (25) makes the user hold the device more secure. It is characterized by being structured in a way that enables understanding. 35 12. A liquid container carrying apparatus according to any of claims 1 to 11, its characteristic being: left the gripping jaw (6) and the right gripping jaw (7) in contact with the liquid container They are characterized by having a grip pad (26) on their surfaces. 16 13. Liquid container carrying apparatus according to any of claims 1 to 12, its feature is; left 5 to prevent excessive opening of the gripping jaw (6) and the right gripping jaw (7) In order to include the chin stop protrusion (27) and the opening limiter (28), the jaw stop protrusion (27) and the opening limiter (28), by structuring the gripping jaws in a way that restricts their opening movement. It is characterized. 10 14. Liquid container carrying apparatus according to any of claims 1 to 13, its characteristic is; neck The presence of a lower support protrusion (29) at the bottom of the clutch body (5) and the word The subject is the liquid together with the lower support projection (29) and the lower support surface (8) of the neck. by making contact with the carrier area under the neck of the container, the load is carried more evenly. It is characterized by its ability to transmit information in this way. 15 15. Liquid container carrying apparatus according to any of claims 1 to 14, its characteristic being; main load-bearing body (1) inside or integrated with the load-bearing body (30) and the load-bearing body (30) formed during transport mechanical forces to the neck grip body (5) and the main carrier body (1) It is characterized by being structured in a way that allows for controlled distribution. 20 16. Liquid container carrying apparatus according to claim 15, its feature is; load-bearing body (30) having a hanger connection hole (31) on it and the said hanger connection hole (31) for suspension of the transport apparatus or auxiliary connection by structuring it in a way that will allow it to connect to its elements It is characterized by... 25 17. Liquid container carrying apparatus according to any of claims 1 to 16, its characteristic being; main protective covers on the carrier body (1) or on the outer surfaces in contact with the user the presence of the end cap (32) and the protective end cap (32) in question, the user will protect the edge areas that may come into contact with the external environment and the mechanical elements. by structuring it in a way that will help protect against its effects 30 It is characterized by...