A Weaving System
Patent Information
- Application Number
- TR202419348U
- Authority / Receiving Office
- TR · TR
- Patent Type
- Utility models
- Current Assignee / Owner
- Filing Date
- 2024-12-16
- Publication Date
- 2026-06-22
- Estimated Expiration
- 2034-12-16
Smart Images

Figure 00000009_0000
Abstract
Description
1 TARIFF A Weaving System TECHNICAL AREA 5 The invention involves combining yarns to form fabric in textile and weaving technologies. It relates to weaving processes. The invention involves weaving using different types of yarn simultaneously. It offers an innovative and efficient technique in its processes. PREVIOUS TECHNIQUE In the known state of the art, weaving methods generally rely on the use of a single type of yarn. It is resistant. In this system, a specific type of yarn is transformed into fabric during the weaving process. And this process is generally characterized by low diversity and limited flexibility. This method, While it offers a stable structure for the weaving process, it also meets the needs of modern production. It is failing to provide adequate service. Weaving processes carried out using a single type of yarn generally have a limited surface texture. 15 and offers aesthetic features. This prevents a rapid response to market demands. and limits product variety. Furthermore, traditional methods generally use fixed weaving speeds. and are limited by standard production procedures. This results in high costs in production processes and It provides limited efficiency. In the current state of the technology, there are 20 different types of yarn that can be woven together. There are shortcomings in mechanical structures and technical challenges inherent in such applications. The need for additional machine parts for precise control of such processes, in production It increases costs. In the current state of the art, although some innovative approaches are being tried, these are generally... It is complex and costly. For example, integrating different types of yarn into the weaving process. In existing prototypes of systems that enable this, production processes are slow and costly. This situation creates a structure that is not economically viable for large-scale production. This also creates operational maintenance and usage challenges for these systems. This can cause disruptions to production processes. 2 In conclusion, traditional weaving methods offer both cost efficiency and product yield. There are limitations in terms of diversity. In this context, in weaving technology... 5 solutions that will optimize production processes, be more flexible, cost-effective and innovative. A system is needed to provide this. The aforementioned shortcomings, weaving developing a new approach in technologies and technical innovations in this field. This need has made its implementation necessary. This requirement allows for the use of multiple yarn types simultaneously. the emergence of an innovative system capable of performing weaving processes using It supports. 10 In conclusion, all the problems mentioned above necessitate innovation in the relevant field. It has brought it to this state. 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. 15 The main purpose of the invention is to improve weaving processes using two or more types of yarn. The goal is to create a new weaving system through weaving. The main purpose of the invention is to improve weaving processes using two or more types of yarn. In weaving, it allows for the achievement of different surface textures and aesthetic properties. Another aim of the invention is to control the winding tension of the weft yarns, thereby increasing yarn 20 The goal is to prevent breaks and irregularities. Another aim of the invention is to detect thread breaks by using additional sensor sensors. The weaving process is stopped to prevent faulty weaving. Another aim of the invention is to enable low-cost production through efficient weaving techniques. BRIEF DESCRIPTION OF THE INVENTION 25 All the purposes mentioned above and those that will emerge from the detailed explanation below. The present invention, intended for this purpose, is a weaving system. The invention enables the systematic unwinding and drawing of weft yarns from the bobbin. The guide, which is attached to the weaving loom, ensures that the weft threads are arranged in an orderly fashion. It ensures that the winding tensions are controlled to prevent breakage and 30 3 The weft accumulator, which prevents irregularities, collects at least 2 threads from the viewer simultaneously. a weaving loom that controls and stops the weaving process if the threads break. An additional sensor connected to it monitors the warp and weft threads on weaving looms. A weaving process that allows threads to pass through each other, thus creating fabric. The weft needle, attached to the loom, carries at least 2 threads from the weft coming from the supplier. on the loom that systematically feeds the arrows In the textile industry, it is characterized by containing a connected weft holder. In weaving processes on looms, 10 different types of weft yarns can be used simultaneously. It relates to a weaving system that enables its use. A preferred configuration of the invention is the aforementioned additional viewing sensor, an optical sensor. capacitive sensor, photoelectric sensor, laser sensor, ultrasonic sensor, magnetic sensor, It is one of the individuals or combinations selected from a group containing an inductive sensor. A preferred configuration of the invention allows viewing at least two weft yarns simultaneously. 15 It has an additional 4 eyelets that provide protection and stop the weaving process if the threads break. It contains a sensor. BRIEF DESCRIPTION OF THE FIGURES Figure 1 shows a cross-section of the weaving system from a top view. The drawings are not intended to limit the scope of protection defined in the claims. 20 and to interpret the scope defined in those claims, the present invention referring to these in isolation without resorting to the technical explanation in the statement. should not be included. The drawings in question clarify and define the invention. It aims to... EXPLANATION OF REFERENCE NUMBERS IN FIGURES 25 D. Weaving System 1. Scarf accumulator 2. Matchmaker 3. Additional viewing sensor 4. Scarf holder 30 4 5. Scarf arrow DETAILED DESCRIPTION OF THE INVENTION This detailed explanation of the invention, A Weaving System, is just a better understanding of the subject. To ensure comprehension, it is explained with examples that do not create any limiting effects. The invention relates to different weft weaving processes on weaving looms in the textile industry. It relates to a weaving system (D) that allows the use of different types of yarn at the same time. The invention is presented as having the following elements: Systematically unwinding and pulling the weft yarns from the bobbin 10 The seer (2) is attached to the loom to ensure that Ensuring that the weft yarns are fed to the viewer (2) in an orderly manner, a weft that prevents breaks and irregularities by controlling winding tensions accumulator (1), Checking at least 2 threads from the inspector (2) at the same time and the threads 15 on the loom that stops the weaving process in case of breakage Additional connected view sensor (3), In weaving looms, the weft threads pass through the warp threads. a weaving loom that enables the fabric to be formed by passing the threads through The scarf arrow (5) connected to it, 20 At least 2 threads from the viewer (2) are systematically attached to the weft arrows (5) weft holder attached to the loom that provides the weft feed (4) The elements constituting the invention and their functions within the invention are given above. The relationship and working principle of the elements mentioned are described below in section 25. It has been given. Figure 1 shows a cross-section from the top view of the weaving system (D). This invention is an innovation developed in weaving looms used in the textile industry. It is related to (D) the ability to use different weft yarns simultaneously in weaving systems. It has been improved, thus achieving both increased production speed and improved quality. 30 The components that make up the weaving system (D) are shown in Figure 1. Weaving system (D), Specifically, systematic unraveling of weft yarns and control of yarn breakage. It is optimized for this purpose. The weft accumulator (motor) (1) ensures that the yarns are evenly distributed during the weaving process. It is a component that ensures proper nourishment and prevents yarn breakage. Weft accumulator (1) balances the yarn irregularities that will occur during winding. It functions as a mechanism. In addition, the threads are presented to the viewer in a smooth flow (2) It enables access. The weft accumulator (1) temporarily stores weft yarns by winding them around drums or discs. The system continuously monitors the tension of the yarn and the storage areas. Sensors are used during yarn feeding. and yarn tension is regulated with braking mechanisms, thus preventing the yarn from breaking or Irregularity is prevented. The weft accumulator (1) is used to adjust the speed of the weaving machine. By working synchronously, they transfer the yarn at a constant speed and tension, thus A smooth weaving process is ensured. 15 The observer (2) systematically unraveled the weft threads and arranged them from the bobbins. It is a mechanism that enables the weaving process to be pulled. The viewer (2) To ensure continuity, it regulates the yarn tension and flow. Görücü (2), weaving It is attached to the loom. Especially in complex fabrics, the threads move smoothly. It is critically important for managing it in some way. Thanks to the use of the viewer (2), thread 20 Problems such as breakage and irregular yarn flow are minimized. Additional seer sensor (3) checks at least 2 threads from seer (2) at the same time and it is a mechanism that stops the weaving process if the threads break. Additional The viewing sensor (3) is connected to the loom. Yarn breakage Additional view sensors (3) were used to prevent negative impact on weaving quality. 25 These sensors automatically stop the weaving process if the threads break. Thus, the error rate on the fabric is minimized. Sensors are optical, capacitive, Equipped with various technologies such as ultrasonics, it is suitable for different weaving needs. It offers options. Additional vision sensors (3) can be used simultaneously with the four-eye design. It follows multiple threads. 30 The weaving system (D) ensures the even feeding of yarns on the weaving loom and It is equipped with an additional view sensor (3) which enables it to be checked. In this system The sensors used are optical sensors (3) and capacitive sensors (3), which can be selected according to the type of yarn. photoelectric sensor (3), laser sensor (3), ultrasonic sensor (3), magnetic sensor (3) and 6 It has different sensing technologies such as inductive sensor (3). Each sensor type has different sensing technologies such as yarn. movement, presence, temperature or depending on the type and the needs of the weaving process It offers functions such as distance sensing. This variety increases the precision of the weaving process, making it 5 It helps prevent thread breaks or irregularities. The weft arrow (5) is the thread through which the weft threads pass in weaving looms. It enables the fabric to be formed by providing the weft arrow (5), onto the loom. It is connected. The weft arrow (5) passes the weft threads through the warp threads. It ensures the formation of the fabric. The weft arrow (5) ensures that the threads are evenly distributed. It ensures the orientation and homogeneity of the fabric. Developed within the scope of the invention. The weaving system (D) offers the feature of systematically feeding yarn to the weft arrow (5), Thus, the weaving process becomes more efficient. The weft holder (4) systematically attaches at least 2 threads from the viewer (2) to the weft arrows (5). It provides the weft feed. The weft holder (4) is attached to the loom. 15 The weft holder (4) is a device that directs the weft threads to the weft arrows (5) on the loom. It is a mechanism. The weft holder (4) allows the yarns to be woven without mixing and in the desired order. It enables the inclusion of the weft holder (4), which increases the speed and efficiency of the loom. With the capacity to manage multiple yarn types simultaneously, it is particularly suitable for multi-colored or Suitable for complex weaving patterns. 20 Melange yarns are made by combining yarns of different colors or different properties. This creates a mixed appearance. This effect generally gives the fabric an aesthetic look. It is used to obtain a melange yarn effect by mixing the yarns with minimum twist. Folding allows the yarns to be joined without the need for high twist and fixation processes. This method speeds up the production process, reduces costs, and saves energy. It provides advantages in both economic and environmental terms. The invention offers production flexibility through its ability to use different weft yarns simultaneously. It provides. The invention's continuous and regular yarn flow increases the weaving speed. The invention, by systematic feeding of weft yarns, especially in the creation of complex patterns It provides an advantage. 30 This innovative weaving system (D) increases operational efficiency in the textile industry. to minimize error rates and make production processes more efficient The invention aims to... especially for textile factories with high-volume production. It offers an important solution. 7 The scope of protection of the invention is specified in the claims attached hereto, and these detailed 10 The explanation cannot be limited to what is given for illustrative purposes only. Because a technically expert person The person can create 5 similar inventions, following the above descriptions, without deviating from the main theme of the invention. It is obvious that these structures can emerge.
Claims
8 REQUESTS 1. The invention relates to the use of different weft threads in weaving processes on looms in the textile industry. It is a weaving system (D) that allows the use of different types of yarn at the same time, 5 feature; Systematically unwinding and pulling the weft yarns from the bobbin The seer (2) is attached to the loom to ensure that Ensuring that the weft yarns are fed to the viewer (2) in an orderly manner, Weft 10 prevents breaks and irregularities by controlling winding tensions. accumulator (1), Checking at least 2 threads from the viewer (2) at the same time and the threads on the loom that stops the weaving process in case of breakage Additional connected view sensor (3), In weaving looms, the weft threads are 15 inches apart from the warp threads. a weaving loom that enables the fabric to be formed by passing the threads through The scarf arrow (5) connected to it, At least 2 threads from the viewer (2) are systematically attached to the weft arrows (5) weft holder attached to the loom that provides the weft feed (4) 20 It is characterized by its inclusion.
2. A weaving system (D) conforming to Claim 1, whose characteristic is the aforementioned additional viewer. sensor (3) optical sensor (3), capacitive sensor (3), photoelectric sensor (3), laser 25 containing sensor (3), ultrasonic sensor (3), magnetic sensor (3), inductive sensor (3) It is one of the individuals or combinations selected from the group.
3. A weaving system (D) conforming to claim 1, characterized by having at least 2 weft yarns. it allows simultaneous vision and prevents the weaving process in case the threads break. It includes an additional vision sensor (3) with 4 eyes that stops. 30