BASKI APPARATUS

TR202505086YPending Publication Date: 2026-06-22OTM PLASTİK OTOMOTİV YAN SANAYİ & TİCARET LİMİTED ŞİRKETİ
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Patent Information

Application Number
TR202505086U
Authority / Receiving Office
TR · TR
Patent Type
Utility models
Current Assignee / Owner
Filing Date
2025-04-25
Publication Date
2026-06-22
Estimated Expiration
2035-04-25

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Patent Text Reader

Abstract

The invention relates to a press apparatus (10) for shaping sharp corners when applying fabric coating to plastic molds by thermoforming. The novel aspect of the invention is that the press apparatus (10) includes at least one handle (20) which allows the operator to hold it, at least one wheel (21) attached to one side of the handle (20) in a rotating manner, and at least one protruding form (A1) extending outwards from the wheel (21) on the lateral surface of the said wheel (21) to fit into the sharp corner and shape it. Figure 1
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Description

1 TARIFF PRINTING MACHINE TECHNICAL AREA 5 The invention involves coating plastic molds with fabric using the thermoforming method. with a pressure device for shaping sharp corners during production It is related. PREVIOUS TECHNIQUE Thermoforming is a method where heat-formable plastic materials are shaped over a mold. It is the process of shaping a material into a specific form. In this method, plastic sheets are heated. It is softened and then molded using vacuum, pressure, or mechanical force. (Figure 15) The desired product is obtained by applying the given material. Thermoforming is commonly used in the automotive, home appliance, and other industries. Widely used in the production of plastic parts for the furniture and electronics industries. It is preferred in some way. Making this method even more functional. For this purpose, fabric coating is applied to plastic surfaces. coating provides an aesthetic appearance, makes the surface durable and provides a tactile feel. 20 It is a technique used to provide comfort. However, during this process, especially sharp objects... Properly finishing corners and detailed surfaces presents a significant challenge. is doing. In fabric coating processes, especially after thermoforming, the sharpness of the material is 25° It must fit perfectly into the corners and there should be no gaps between the material and the fabric. It is of great importance. In current techniques, the equipment used during coating. They are usually unable to provide sufficient precision or depend on the operator's dexterity. This situation makes the coating process both time-consuming and... This prevents the desired quality level from being achieved. Furthermore, the 30 used... the equipment is not ergonomic, making it difficult for operators to work for long periods of time. It can cause fatigue and workplace accidents. 2 In conclusion, all the problems mentioned above require an innovation in the relevant technical field. This has made it necessary to do it. A BRIEF DESCRIPTION OF THE INVENTION The present invention eliminates the aforementioned disadvantages and the related technical It is related to printing equipment, aiming to bring new advantages to the field. One aim of the invention is to mold fabric into plastic-containing molds using the thermoforming method. A printing device that shapes the corners during the veneering process is produced. 10 to place. All the purposes mentioned above and those that will emerge from the detailed explanation below. The present invention aims to achieve this by thermoforming plastic-based materials. When applying fabric covering to the patterns, shaping the sharp corners is crucial. It relates to a printing apparatus for use. Accordingly, the innovation lies in the printing apparatus itself. It must include at least one handle that allows the operator to hold it. attached to one side of the aforementioned handle in a rotating manner. It must contain at least one wheel, with a sharp corner on the lateral surface of the wheel in question. at least one 20 cm extension outwards from the wheel to allow it to settle and shape. It contains a protruding form. This allows for precise shaping of the corners on the plastic mold. By shaping it, stresses that may occur during the coating process, Deformations and errors are largely prevented. A characteristic feature of a possible design of the invention is that it extends outwards from the handle and 25 It must contain at least one elbow on which the wheel is positioned. Thus, the wheel proper positioning and precise application of pressure to sharp corners It is ensured that it is transmitted in some way. Another possible configuration of the invention features a wheel and the aforementioned elbow 30. It must contain at least one bearing to reduce friction between them. Thus By ensuring the wheel rotates smoothly, both process efficiency is increased. both efficiency is increased and problems such as wear and tear are minimized. 3 Another possible configuration of the invention features the aforementioned protruding form. Essentially, it has an inverted V shape. This makes it perfectly suited for sharp corners. This ensures that the coating process can be carried out with high precision. It is coming. Another possible configuration of the invention features a handle that interlocks with itself. It has a two-part structure whose length can be changed by inserting it. Thus, different working methods are possible. The length of the apparatus can be adjusted according to the conditions and operator preference. and ease of use is ensured. Another possible configuration of the invention features a metal handle and wheel. It is manufactured from durable materials. This gives the device high durability and a long lifespan. It is equipped to withstand intensive and continuous use conditions. Another possible configuration of the invention features a 15-inch pulley around the handle for the operator. It should include at least one flexible section to facilitate an ergonomic grip. Thus The operator experiences less fatigue during the process, allowing for longer working hours. This makes it possible to provide a comfortable user experience. BRIEF DESCRIPTION OF THE FIGURES 20 Figure 1 shows a representative perspective view of the printing apparatus that is the subject of the invention. It has been given. Figure 2 shows a representative perspective view of the printing apparatus that is the subject of the invention. 25 Figure 3 shows a representative perspective view of the printing apparatus that is the subject of the invention. DETAILED DESCRIPTION OF THE INVENTION This detailed explanation of the invention only serves to better understand the subject. This is explained with examples that will not create any limiting effect. 4 Figure 1 shows a representative perspective view of the printing apparatus (10) that is the subject of the invention. Accordingly, plastic-filled molds are coated using the thermoforming method. The fabric coating process typically involves a thermoforming and lamination process. This process involves first heating the plastic sheet to a suitable temperature and It is brought to a soft consistency. Then, this heated plastic sheet is placed in a mold 5 It is shaped using vacuum or pressure. The invention involves coating plastic molds with fabric using the thermoforming method. a printing press for shaping sharp corners during manufacturing It is related to (10). The mentioned printing apparatus (10) is held by the operator. It includes at least one handle (20) that allows for carrying. The handle (20) is preferred. It is made of metal material in its structure. The handle (20) is essentially thin. It is in the form of a long cylindrical rod. The pressure apparatus (10) is around the handle (20). at least one flexible part to facilitate the operator’s ergonomic grip (23) It includes. The flexible part (23), the handle (20), during long-term use 15 It helps minimize operator hand fatigue. The handle (20) is two-part and its length can be adjusted by fitting them into each other. It consists of a structure. The handle (20) is inside the aforementioned flexible part (23). Its length can be changed as desired by inserting it. The handle (20) can be inserted into each other 20 Its two-part structure, which allows its length to be adjusted by inserting it, enables it to work in different conditions. and allows easy adjustment of the handle length according to operator preferences. This feature allows different operators or application areas to... It provides ease of use by adapting to their requirements. Figure 2 shows a representative perspective view of the printing apparatus (10) that is the subject of the invention. Accordingly, the printing apparatus (10) is attached to one side of the aforementioned handle (20). It contains at least one wheel (21) connected in a way that rotates around itself. While the flexible part (23) is connected at one end of the handle (20), at the other end The wheel (21) is connected. The wheel (21) is thermoforming molds containing plastic. shaping sharp corners during fabric coating process using this method It plays an important role. The wheel (21) is a metal in its preferred structure. It is manufactured from material. There is a sharp corner on the lateral surface of the wheel (21). at least one extending outwards from the wheel (21) for the shaping structure by settling It includes protruding form (A1). This protruding form (A1) is designed in an inverted V shape, and high during printing It provides precision and ensures a smooth finish in the corner areas of the coating material. This helps it to be positioned in this way. The V-shaped geometry of the projection (A1), both efficient transmission of compressive force and material deformation This makes it possible to prevent the wheel from spinning. The rotating structure of the wheel (21) makes the fabric moldable. It allows shaping without sliding, while preventing damage that may occur during the process. It also minimizes the risk of damage. This V-shaped 10 on the wheel (21) The protruding form (A1) is placed on the lines and corners of the fabric, making the fabric plastic. This ensures a better fit to the mold. The wheel (21) in contact with the fabric Its surface is sharper compared to its other surfaces. The printing device (10) extends outwards from the handle (20) and has a wheel on it. (21) contains at least one elbow (22) where the wheel (21) is located. Elbow (22) is where the wheel (21) is located. It enables attachment to the handle (20) and load during the printing process. It is an intermediate element that plays an important role in the transfer. The elbow (22) is connected to the handle. (20) exhibits an outward-extending structure, and the wheel (21) is correct positioned so that the operator can easily perform the printing operation 20 It is designed with an optimal angle for the wheel (21) to fit perfectly into the corners. It facilitates the positioning while supporting the operator's ergonomic movements. The elbow (22) is made of a metal material to increase its durability and pressure. It is made resistant to mechanical loads that may occur during use. Friction between the presser (10), the wheel (21) and the aforementioned elbow (22) It contains at least one bearing (211) for reduction. Bearing (211) of the wheel (21) The elbow (22) enables it to rotate freely around its own axis and It is an element that minimizes friction. The bearing (211) is a high quality Made from durable material, it is resistant to wear and tear even with long-term use. 30 It also reduces energy loss with its low coefficient of friction. The bearing (211) The inner collar is fitted tightly to the elbow (22) while the outer collar is fitted to the wheel (21). It is connected. This connection is a rotary connection between the wheel (21) and the elbow (22). It enables the movement to occur. The design of the bearing (211) allows the printing process 6 during which the loads on the wheel (21) are distributed homogeneously by preventing excessive strain on both the wheel (21) and the elbow (22) It prevents. The fit between the bearing (211) and the elbow (22) has a 5 on the overall performance of the apparatus. It has a direct effect. The elbow (22) provides a fixed support to the bearing (211), The bearing (211) also enables the wheel (21) to rotate freely and smoothly. This compatibility increases the precision of the apparatus during the printing process and It enables the operator to work with less effort. The bearing (211) reduces friction. Its feature of reducing mechanical wear between the elbow (22) and the wheel (21) is also 10 It keeps it at a minimum level. The elbow (22) holds both the bearing (211) and the wheel. (21) ensures that the bearing is positioned correctly and accurately. (211) thanks to this, the rotational movement of the wheel (21) is smooth It is carrying out. Accordingly, this invention involves forming plastic-filled molds using the thermoforming method. shaping sharp edges effectively in fabric coating processes. by providing an innovative solution to the challenges encountered in existing techniques. It ensures that sharp corners in molds are smoothed out, especially. Material stresses and coating defects encountered during coating are at least 20 This printing device (10), which reduces the number of operations, allows the operator to perform the operation more precisely and with more control. It enables it to be carried out in this way. The ergonomic printing apparatus (10) The handle (20) allows the operator to perform long-term operations with less effort. While enabling it to work comfortably, the wheel (21) and the protrusion form (A1) are sharp. It fits perfectly into corners. Thanks to this, 25 during the cladding process... The fabric is at high risk of tearing or irregular shaping due to material tension. This has been reduced to a significant extent. Figure 3 shows a representative perspective view of the printing apparatus (10) that is the subject of the invention. Accordingly, the operator holds the printing apparatus (10) by the handle (20) 30 grasping, the wheels (21) of the printing apparatus (10) make contact with the surface of the mold. In this stage, the protrusion form (A1) on the lateral surface of the wheel (21), It is positioned to fit perfectly into the sharp corners of the mold. The operator uses the ergonomic flexible part (23) on the handle (20) of the printing apparatus (10) 7 It provides a comfortable grip while allowing for controlled application of pressure. By applying this, the wheel (21) moves back and forth on the mold. This movement ensures that the fabric is positioned smoothly at sharp corners, Thanks to the inverted V-shaped protruding form (A1), the fabric is kept taut at the corners. It becomes possible for it to fit and conform perfectly to the shape of the mold. 5 The rotating nature of the wheels (21) ensures a smooth operation during movement. This minimizes friction and requires less effort from the operator. The expenditure is ensured. The repetition of forward and backward movements ensures the coating. It allows for a homogeneous process and eliminates any gaps at the corners. or prevents material accumulation. In addition, the bearing structure (211), by facilitating the movement of the wheels (21), the process is both faster and more efficient. It helps to complete the process precisely. This allows the operator to... It both shortens the processing time and improves the coating quality. The scope of protection of the invention is set out in the attached claims and is strictly adhered to. The detailed explanation cannot be limited to the examples given. Because in technology... A specialist, without deviating from the main theme of the invention, will do what is described above. It is clear that similar structures can emerge in light of this. 8 REFERENCE NUMBERS GIVEN IN THE FIGURE Printing Apparatus Handle 5 21 Wheels 211 Bearing 22 Elbow 23 Flexible Sections A1 Projection Form

Claims

9 REQUESTS 1. The invention involves forming fabric onto plastic molds using the thermoforming method. a material used for shaping sharp corners during veneering The printing apparatus (10) has the following feature; the printing apparatus (10) is operated by the operator 5 It must contain at least one handle (20) which allows it to be held, as mentioned Attached to one side of the handle (20) in a rotating manner. It must contain at least one wheel (21), on the lateral surface of the said wheel (21). outward from the wheel (21) to shape by placing it on the sharp corner It must contain at least one protruding form (A1) that extends correctly. 10 2. According to claim 1, it is a printing apparatus (10) and its feature is that it extends outwards from the handle (20). at least one elbow (22) that extends straight and on which the wheel (21) is positioned It includes.

3. According to claim 1, a printing apparatus (10) whose feature is; wheel (21) and To reduce friction between the mentioned elbow (22), at least one It contains bearings (211).

4. According to claim 1, it is a printing apparatus (10) and its feature is that the mentioned protruding form is 20 (A1) is essentially in the form of an inverted V.

5. According to claim 1, a printing apparatus (10) and its feature is that the handle (20) is connected to each other. It has a two-part structure whose length can be changed by inserting one part inside. According to claim 6.1, a printing apparatus (10) has the following features: a handle (20) and the wheel (21) is made of metal material.

7. According to claim 1, a printing apparatus (10) has the following features; around the handle (20) at least one flexible section to facilitate ergonomic grip for the operator 30 (23) is included.