HEIGHT ADJUSTABLE SUPPORT ARM SYSTEM
Patent Information
- Application Number
- TR202615417U
- Authority / Receiving Office
- TR · TR
- Patent Type
- Utility models
- Current Assignee / Owner
- Filing Date
- 2026-09-09
- Publication Date
- 2026-09-21
- Estimated Expiration
- 2036-09-09
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Abstract
Description
1 TARIFF HEIGHT ADJUSTABLE SUPPORT ARM SYSTEM Technical Area 5 The invention enables control panels to be positioned as desired in industrial automation processes. It relates to the lifting arm systems used for transportation. The invention is particularly noteworthy for its body structure made of aluminum extruded profiles, allowing for axis 10. Lightweight, durable, fast, and operates smoothly, friction-free, and stably without any issues. It relates to a carrier arm system that can be manufactured and easily assembled. State of the Art Carrier arm systems control machines in industrial automation processes. These are ergonomic and modular structures that facilitate ease of use. These support arm systems, containing control elements such as touch screens, buttons and displays It ensures that the control panels are brought to the desired position and provides physical assistance to the operator. It offers comfort. Thus, users can carry out the production process safely and efficiently. 20 It is ensured that it is managed. In current technology, the internal linkage mechanism in support arm systems is generally spring-loaded. Steel pipe body with shaft or sheet metal bent body structures with gas pressure piston. It is created with. 25 In spring-driven systems, the high-strength spring located within the internal structure is used during assembly. This makes it difficult for the operator to perform the operation independently and reduces assembly safety. and complicates the production process. Furthermore, product length in these systems... Since it is considered fixed, production in different sizes is not possible; this situation necessitates modularity and 30 This poses a significant disadvantage in industrial applications that require flexibility. In existing systems that use gas-pressure pistons, the piston moves inside... The fuselage is generally produced using the sheet metal bending method. Sheet metal bending Low bending sensitivity in their structures, stiffness losses after bending, sheet metal 35 Additional processes such as cutting, bending, deburring, painting or galvanizing, bending. 2 such as the need for CNC machining for precise hole and groove operations afterwards. The disadvantages are that it prolongs the production process, increases costs, and affects the product's performance. During this process, it can lead to undesirable situations such as axial misalignment, oscillation, and vibration. It can open. Therefore, the internal connection structures used in the current technology are important for both production. It presents various challenges in terms of both assembly and use. 5 For the reasons explained above, the internal components used in current technology for carrier arm systems are... Connection structures, by their general nature, are difficult to assemble, costly to manufacture, and have low precision. Limited modularity, susceptible to corrosion, prone to axial misalignment during operation. They are structures that are prone to vibration. Therefore, industrial automation 10 a lightweight, precise, rapidly manufacturable and easy-to-assemble internal connection structure in its processes It is needed. In conclusion, the existence of the above problems and the inadequacy of the current solutions, This has made it necessary to make improvements in the technical field. 15 Purpose of the Invention The present invention eliminates the aforementioned disadvantages and contributes to the relevant technical field. It relates to the height-adjustable carrier arm system, which brings new advantages. 20 The main purpose of the invention is to create a body structure made of aluminum extrusion profiles. without creating axial misalignment in the working direction of the gas piston, and frictionless. The goal is to create a supporting arm system that ensures stable operation. The purpose of the invention is to improve the efficiency of sheet metal cutting, bending, deburring, painting, or other processes in the manufacturing process. By eliminating costly and time-consuming processes such as galvanizing, it provides a fast, efficient solution. The goal is to develop a conveyor arm system that provides economical and repeatable production. Another aim of the invention is to allow production in different lengths thanks to its modular structure. 30 a carrier arm system that provides and can be assembled by cutting the profile length to the desired size. to reveal. Another aim of the invention is to make the operator's control panel ergonomic thanks to its lightweight structure. 35 that facilitates its positioning, vibration and oscillation during use The goal is to create a carrier arm system that does not create a load-bearing structure. 3 Another aim of the invention is to reduce the high forces encountered in spring-driven systems during assembly. Eliminates safety risks associated with pushing, allowing for safe operation by a single person. The goal is to create a mountable carrier arm system. The aim of the invention is to create a corrosion-resistant, maintenance-free material that maintains its rigidity throughout its service life. low requirement and no performance loss during long-term use The goal is to create a supporting arm system. To fulfill all the purposes mentioned above and those that can be derived from the detailed explanation. The invention is based on; the desired 10 control panels in industrial automation processes. a module used for positioning and attached to the machine fixing piece, fixed module counterpart piece that is fixed to the module fixing piece, panel side movable connecting piece that connects to the machine's control panel, panel The movable module counterpart piece, fixed to the movable connecting piece on the side, is fixed. The support located between the module counterpart and the movable module counterpart and 15 It is a carrier arm system containing a cable duct, - between the fixed module counterpart and the movable module counterpart gas-powered system that connects and creates controlled linear motion in the carrier arm system. The housing consists of an aluminum extrusion profile that houses the piston. This is related to the fact that it contains a piston bearing profile with a specific structure. 20 The structural and characteristic features and all the advantages of the invention are given in the figures below. And thanks to the detailed explanation written with references to these figures, it becomes clearer. This will be understood as such. Therefore, the evaluation should also include these forms and detailed explanations. It must be done taking this into consideration. 25 Figures that will help understand the invention. Figure 1: View of the disassembled carrier arm system, which is the subject of the invention. Figure 2: Cross-sectional view of the carrier arm system, which is the subject of the invention. 30 Figure 3: View of the piston bearing profile of the carrier arm system that is the subject of the invention. Figure 4: General view of the carrier arm system that is the subject of the invention. Explanation of Part References 35 10. Module fixing part 4 20. Fixed module counterpart piece 30. Panel side movable connecting piece 40. Movable module counterpart piece 50. Support and cable line channel 60. Piston bearing profile 5 70. Gas piston 80. Outer cover 90. Aluminum exterior profile Detailed Description of the Invention 10 This detailed description outlines the preferred alternatives to the carrier arm system that is the subject of this invention. purely for the purpose of better understanding the subject and without any limiting influence. It is explained in a way that will not create a problem. Figure 1 shows the disassembled view of the carrier arm system, which is the subject of the invention. Accordingly, the carrier arm system, in its most basic form, is used in industrial automation. Module fixing part (10) connected to the machine, module fixing part (10) fixed module counterpart piece (20), to the machine's control panel Connecting panel side movable connection piece (30), panel side movable connection 20 The movable module counterpart part (40) fixed to the part (30), fixed module counterpart support and cable located between part (20) and movable module counterpart part (40) line channel (50), fixed module counterpart (20) and movable module counterpart (40) connected aluminum piston bearing profile (60), piston bearing profile (60) 25 of the carrier arm system that creates controlled linear motion inside Gas piston (70) providing positioning function, module fixing part (10) and the plastic outer cover that closes the outer surface of the panel side movable connecting piece (30) (80), closed on the outer surface of the piston bearing profile (60) between plastic outer covers (80). It includes an aluminum outer profile (90). The carrier arm system described in the invention is a touch-sensitive system used in industrial automation processes. Control systems that house control elements such as screens, buttons, and indicators. by moving the panels up and down, at the operator's height According to the diagram, the control panel is positioned at the desired level at eye level. 35 The carrier arm system is a modular system mounted on machinery used in industrial automation. The module is connected via a fixing piece (10). part (10) rigidly connects the fixed module side of the system to the machine body. It forms the main attachment point of the carrier arm to the machine. Fixed module counterpart piece (20) fixed onto module fixing piece (10), as shown in the figure The connection surface on the fixed module side of the gas piston (70) seen in 2 It consists of a fixed module counterpart (20), applied by the gas piston (70). It ensures that the tensile force is transmitted along the axis towards the side with a constant modulus. The panel side movable connecting piece (30) that connects to the machine's control panel, the movable module side where the control panel is connected to the carrier arm system It consists of the panel side movable connecting piece (30), the control panel system. It ensures that it can be transported safely. The movable module is fixed onto the panel side movable connecting piece (30). part (40), the connection surface on the movable module side of the gas piston (70) It consists of a movable module counterpart (40), pulling of the gas piston (70). By transferring its force to the movable module, the control panel moves up and down. It enables movement. 20 between the fixed module counterpart (20) and the movable module counterpart (40) The support and cable channel (50) located in the system for the cables going to the control panel. It ensures that it is transported in an organized and protected manner. Support and cable lines. channel (50), prevents damage to the cables during the movement of the movable module 25 It prevents. Figure between the fixed module counterpart (20) and the movable module counterpart (40) The aluminum piston bearing profile (60) shown in 3 is connected. The piston in question The bed profile (60) is gas-filled thanks to its body structure made of aluminum extrusion profile. without creating axial misalignment in the working direction of the piston (70) It forms the internal bearing geometry that enables its movement. Piston bearing The profile (60) is the main inner body structure that guides the linear movement of the gas piston (70). Gas piston (70) positioned within piston bearing profile (60), fixed module 35 controlled between the counterpart piece (20) and the movable module counterpart piece (40) 6 By generating linear motion, it performs the positioning function of the carrier arm system. It provides. Gas piston (70), control panel according to the operator's height. It allows for up-and-down movement. Module fixing piece (10) and panel side movable connecting piece (30) external 5 The plastic outer cover (80) that closes the surface of the system by closing the open surfaces inside It protects the mechanism from external factors and provides an aesthetic appearance. The outer surface of the piston bearing profile (60) is closed between plastic outer covers (80). The aluminum outer profile (90) is the outer protective main body that carries the entire internal mechanism. 10 It forms its structure. The carrier arm system, the subject of the invention shown in Figure 4, is a module fixed to the machine body. panel side movable connecting piece connected to the control panel with fixing piece (10) (30) through the gas piston (70) positioned inside the piston bearing profile (60) between 15 It creates a controlled movement in the up-down direction. Gas piston (70), piston by generating linear pulling force within the bed profile (60) the control panel It allows the device to be adjusted to the desired level according to the operator's height. The support and cable channel (50) also carries the cables going to the control panel. It ensures that the goods are transported in an orderly and protected manner. 20
Claims
7 REQUESTS 1. Positioning control panels in the desired location in industrial automation processes. Module fixing used for bringing the device into place and attached to the machine. part (10), corresponding to the fixed module fixed to the module fixing part (10) 5 part (20), panel side movable connected to the machine control panel The connecting piece (30) is fixed to the panel side movable connecting piece (30). movable module counterpart piece (40), fixed module counterpart piece (20) and support and cable line located between the movable module counterpart part (40) It is a carrier arm system containing channel (50), its feature is; 10 - fixed module counterpart (20) and movable module counterpart (40) connected between and controlled linearly in the carrier arm system. aluminum bearing inside the gas piston (70) that generates the movement Piston bearing profile with a body structure made of extruded profile. (60) includes. 15