DRIP-FREE FILLING SYSTEM

TR202419822U4Pending Publication Date: 2026-06-22SUTAS SUT URUNLERI ANONIM SIRKETI
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Patent Information

Application Number
TR202419822U
Authority / Receiving Office
TR · TR
Patent Type
Utility models
Current Assignee / Owner
Filing Date
2024-12-19
Publication Date
2026-06-22
Estimated Expiration
2034-12-19

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Abstract

The invention relates to a filling system (A) that enables the filling of liquid products into containers (K) without dripping problems.
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Description

1 TARIFF DRIP-FREE FILLING SYSTEM TECHNICAL FIELD The invention enables the filling of liquid products into containers without the problem of dripping. It is related to the drip-free filling system that provides 5. PREVIOUS TECHNIQUE Today, the filling processes of products in liquid form are carried out through filling systems. This is being carried out. In current filling systems, the product is removed during the filling process. Single-stage pneumatic pistons and shaft mechanisms for controlling flow. It is used. In these systems, the filling head opens with the upward movement of the shaft and 10 The product is filled into containers by free flow. However, in these systems, the filling process Even if the filling cap is closed by the shaft moving downwards again after completion, the shaft... Product residue remaining at the tip drips down from the filling nozzle and onto the next one. Product leakage occurs until the filling process. Viscous products are liquids with high fluidity resistance and a dense, thick consistency. 15 Controlling the flow of such products, especially drip and product handling during filling processes, is crucial. This is important in terms of preventing losses. In the food industry, honey, jam, yogurt, ketchup and Chocolate sauce; in the cosmetics industry, creams, lotions, shampoos and hair gels; in chemistry and In the industrial sector, viscous products are used in motor oils, adhesives, paints, and varnishes. These products can be given as examples. In the filling processes of these products, the fluid resistance is 20 Due to its high volume, the flow cannot be completely cut off in existing filling systems. And it's a common problem for the product to leave residue around the filling nozzle. Drip problems occur, especially with viscous products that have a dense and flow-resistant structure. This is becoming more pronounced as a result. This situation improves the efficiency of the filling process. This reduces production, leads to product loss, and causes hygiene problems. Furthermore, 25 Product buildup resulting from dripping prolongs cleaning times and reduces maintenance requirements. It increases costs. 2 In conclusion, the previous technique used liquid form, especially those with high viscosity. Preventing dripping problems during product filling and increasing filling accuracy. An effective solution that provides improvements in areas such as ease of cleaning. It is not available. This situation indicates that it is innovative, reliable in the technical field and solves the dripping problem. This necessitates a filling system that eliminates this problem. 5 Considering the problems mentioned above, the dripping problem... a drip-free filler that allows liquid products to be filled into containers without dripping. The system is needed. In conclusion, all the problems mentioned above necessitate innovation in the relevant field. has brought it to this state. 10 THE PURPOSE OF THE INVENTION The present invention aims to eliminate the aforementioned problems and provide technical solutions in the relevant field. It is introduced with the aim of creating an innovation. The purpose of the invention is to enable the drip application of liquid products, especially those with high viscosity. The goal is to ensure that it is filled in a controlled manner without any problems. 15 The aim of the invention is to eliminate product loss caused by existing filling systems. The goal is to enable lifting. The purpose of the invention is to address the hygiene problems arising from existing filling systems and The goal is to eliminate cleaning problems. BRIEF DESCRIPTION OF THE INVENTION 20 All the purposes mentioned above and those that will emerge from the detailed explanation below. The present invention is a drip-free filling system. The invention relates to an inlet channel for product entry and a filling system for conveying the product into containers. a body with a cap, allowing and preventing product from exiting the filling nozzle a shaft extending linearly within the housing and the aforementioned shaft linearly along the vertical axis 25 The piston, connected to the shaft, enables it to move as described, filling the aforementioned shaft. a knob attached to the end of the shaft to ensure that the cap is closed (blocked), mentioned The first air connection that enables the piston to move upwards is mentioned. The second air connection, the filling cap, enables the piston to move downwards. 3 A vacuum is created in the filling nozzle area to prevent dripping when the knob is closed. to enable its creation; conical geometry configured in the knob head The recess is the third one located between the first and second air links. air connection, designated for the first, second and third air connections mentioned. It is characterized by containing an air supply unit that enables the transmission of air under pressure. 5 Liquid products are poured into containers without dripping problems. It relates to the drip-free filling system that enables filling. A preferred configuration of the invention consists of the first rows arranged sequentially upwards from the body. It includes an air connection, a second air connection, and a third air connection. BRIEF DESCRIPTION OF THE FIGURES 10 Figure 1 shows a cross-sectional view of the drip-free filling system. Figure 2 shows a frontal cross-sectional view of the piston and shaft of the drip-free filling system. It has been given. EXPLANATION OF REFERENCE NUMBERS IN THE FIGURES A. Drip-free filling system 15 1. Body 11. Input channel 12. Filling head 2. Mile 21. Mace 20 211th Inlet 3. Piston 4. First aerial connection 5. Second aerial connection 6. Third air link 25 K. Kap 4 DETAILED DESCRIPTION OF THE INVENTION In this detailed description, the subject of the invention, the drip-free filling system (A), is only the subject of the invention. with examples that will not create any limiting effects so that it can be understood better It is explained. The invention enables the filling of liquid products into containers (K) without dripping problems. The invention relates to the drip-free filling system (A). and especially viscous (high viscosity) products need to be processed in a controlled and clean manner. It was developed to facilitate filling, and thanks to its components, it enables filling. It increases filling efficiency by preventing product dripping during the process. Thus, By reducing drip irrigation-related pollution, product loss, and cleanup times, operational efficiency is improved. Costs are reduced. It also eliminates the hygiene problems that arise. The invention includes a body (1) as shown in Figure 1. The body (1) allows the product to enter into it. It includes an inlet channel (11) that provides access to the containers (K) of the product inside. It includes a filling cap (12) that enables its transmission. The invention allows product to exit from the filling nozzle (12) as shown in figures 1 and 2. and includes a shaft (2) that runs linearly inside the housing (1) to prevent it from blocking. To enable the shaft (2) to move linearly on the vertical axis, the shaft (2) includes a connected piston (3). The aforementioned shaft (2) closes the filling cap (12). It includes a knob (21) connected to the end of the shaft (2) to ensure (closing). The knob The head (21) contains a conical geometry recess (211). The aforementioned piston (3) is 20 The first air link (4) that enables the piston (3) mentioned to move in one direction It includes a second air connection (5) that allows it to move downwards. Filling First air connection to create a vacuum in the header (12) region (4) and the third air link (6) located between the second air link (5) It includes. The first, second and third air links mentioned (4,5,6) are designated as 25 It includes an air supply unit that enables the transmission of air under pressure. As shown in Figures 1 and 2, the first air connection is located upwards from the fuselage. (4), second air connection (6) and third air connection (5) are placed on the piston in sequence. (3) is related. First, the knob (21) fits completely into the filling nozzle (12) to increase the product flow 30 It closes. During this time, product enters the body (1) from the inlet channel (11). The filling process is carried out by supplying compressed air to the piston (3) through the first air connection (4). is initiated. This air pressure causes the piston (3) to move upwards along the vertical axis. It provides. The upward movement of the piston (3) causes the ball (21) which is connected to the shaft (2) to fill the cap (12) It cuts off its contact with the filling head (12). Thus, an opening is created in the filling head and the product, The product starts to be filled into containers (K) by free flow. The desired amount of product is filled into containers (K). After filling, the filling process is terminated. At this stage, the second air is added to the piston (3) 5 By supplying compressed air through the connection (5), the piston (3) moves downwards on the vertical axis. is moved. With this movement of the piston (3), the shaft (2) and the knob (21) are inserted into the filling cap (12). It sits back down and the product flow is stopped. To prevent the dripping problem, the filling... It works by creating a vacuum effect after the completion of the process. This process is done by the piston (3) through the third air connection (6) the pressure is lower than that of the second air connection (5) 10 This is achieved by supplying air. This low-pressure air pushes the piston (3) slightly upwards. This movement causes the knob (21) located at the end of the shaft (2) to move in the direction. It takes place at a distance short enough not to break contact with the filling head (12). During this short upward movement, a vacuum effect is created in the area of ​​the filling nozzle (12). Thanks to the vacuum effect, the product remaining at the tip of the knob (21) is pulled back down 15 This prevents dripping. Here, the pressure of the air supplied from the third air connection (6) is... The adjustment is such that it does not break the contact between the knob (21) and the filling cap (12). The scope of protection of the invention is specified in the claims attached hereto, and these details are strictly adhered to. The explanation cannot be limited to those given for illustrative purposes. Because a technically skilled person... The person, without deviating from the main theme of the invention, can create similar 20 based on the above-mentioned points. It is clear that these structures can emerge.

Claims

6 REQUESTS 1. The invention relates to the transfer of liquid products into containers (K) without the problem of dripping. It is a drip-free filling system (A) which enables filling and its feature is;  Inlet channel (11) that provides product entry and conveying the product to containers (K) a body (1) with a filling cap (12) providing, 5  To allow or prevent product from exiting the filling nozzle (12) a shaft (2) extending linearly inside the body (1) and the aforementioned shaft (2) to enable it to move linearly on the vertical axis, shaft (2) connected piston (3),  The aforementioned shaft (2) should close (block) the filling cap (12) 10 a knob (21) connected to the end of the shaft (2) to provide,  The first one that enables the aforementioned piston (3) to move upwards. air connection (4),  The second air that enables the aforementioned piston (3) to move downwards connection (5), 15  To prevent dripping when the filling cap (12) is closed with the knob (21) To create a vacuum in the filling head (12) area; The conical geometry recess (211) configured in the Topuz head (21), o Between the first air link (4) and the second air link (5) third air link located (6), 20  The first, second and third air links mentioned (4,5,6) are determined Air supply unit that enables the transmission of air under pressure, It is characterized by its inclusion.

2. The drip-free filling system (A) conforming to Claim 1 is characterized by being above the body (1). First air link (4), second air link (6) and 25 in the direction respectively It includes a third air link (5).