COMPOSITION OF LIGHTING AND FURNITURE PRODUCTION USING HAZELNUT SHELL-REINFORCED BIOCOMPOSITE MATERIAL AND AN ADVANCED TECHNOLOGY ROBOT ARM 3D PRINTER

TR202600195A3Pending Publication Date: 2026-09-21ÖZDEN DUYGU DOĞAN
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
TR202600195
Authority / Receiving Office
TR · TR
Patent Type
Applications
Current Assignee / Owner
Filing Date
2026-01-07
Publication Date
2026-09-21
Patent Text Reader

Abstract

The invention relates to the composition of lighting and furniture production using a biocomposite material with hazelnut shell additive and an advanced robotic arm 3D printer.
Need to check novelty before this filing date? Find Prior Art

Description

ADVANCED TECHNOLOGY WITH HAZELNUT SHELL-REINFORCED BIOCOMPOSITE MATERIAL PRODUCTION OF LIGHTING AND FURNITURE USING A ROBOTIC ARM 3D PRINTER COMPOSITION Technical Area Invention: Advanced robotic arm 3D made with hazelnut shell-reinforced biocomposite material. It is related to the production of lighting and furniture using printers. State of the Art The large amount of wood cutting involved in furniture production means that some forms are unique to furniture manufacturing. It is done at high costs in their facilities and the product is produced in a short time. The inability to extract it is seen as one of the problems that arise in the process. Other In techniques involving glass fiber reinforced composites, exposure to gases harmful to human health is a concern. This technique uses natural materials, resulting in less harm to the environment. The aim is to provide and ensure the effectiveness of use. Technical Problems That the Invention Aims to Solve By combining hazelnut shell-reinforced biocomposite material with printing technology; Hazelnut to prevent the damage to nature caused by burning bark and to reduce tree cutting The goal is to create the furniture using advanced robotic arm 3D printers. By applying these techniques, each piece of production reveals its own unique identity, texture, and color characteristics. Thanks to the technology used, products can be manufactured that cannot be produced using traditional methods. This reveals that a biocomposite with hazelnut shell additive is used in this process. using materials to create fluid forms in a shorter time and at a lower cost. Producing hazelnuts, an agricultural waste product, is among its goals. The originality of this invention lies in its use of hazelnuts. By combining its shell with recyclable polymers, it is environmentally friendly. The goal is to obtain sustainable, highly durable, aesthetically superior, and unique products. 1 Description of the Invention The material developed within the scope of the invention consists of, in specific proportions: hazelnut shell powder (natural fiber (contribution), recyclable thermoplastic polymers (PLA, ABS or similar polymers) It is obtained by mixing. This mixture offers superior performance in terms of both environmental sustainability and mechanical strength. It provides features. The addition of hazelnut shells gives the material a natural texture, a matte surface effect, and While providing heat resistance, the polymer base used enhances the flexibility of the material. It increases its moldability and longevity. The material is produced using 3D printing technology (FDM type) or injection molding method. It can be shaped. Layered manufacturing technique minimizes material waste while simultaneously It enables the parametric production of designs over time. Different proportions of hazelnuts Thanks to the addition of a shell, the texture, opacity, and light transmittance of the products are controlled. It can be done. The hazelnut shell-reinforced biocomposite material allows light to pass through its surface in a semi-transparent manner. This feature allows the light to disperse. Thanks to this property, the product also functions as a light diffuser. It also creates a natural warm lighting effect. Its structure is resistant to heat and UV rays. It ensures long-lasting and safe use. Furthermore, the material is recyclable. It reduces the environmental waste burden for [the organization / service]. The same material is used in custom-designed furniture elements such as tables, chairs, coffee tables, and armchairs. It can be used for load-bearing or decorative purposes. Traditional wood or metal. as an alternative to materials, it is lighter, has high form flexibility and is environmentally friendly. It offers a solution. The products feature an aesthetically pleasing, natural textured, modern, and sustainable design. It reflects understanding. How the invention can be applied to industry. Hazelnut shell-reinforced biocomposite material serving the purposes described above. Lighting and furniture production using advanced robotic arms and 3D printers. Its composition is such that it can be produced and used in any branch of industry. It is a structure applicable to industry. 2

Claims

1. Invention: Advanced robotic arm 3D printers using biocomposite material with hazelnut shell additive. It is a composition used in lighting and furniture production; its characteristic feature is the use of hazelnut shells. by grinding it into powder and using recyclable thermoplastic polymers Obtaining biocomposite material with hazelnut shell additive by mixing in proportions, The resulting biocomposite material is melted and shaped using 3D printing technology. Adding hazelnut shells imparts a natural texture, opacity, heat resistance, and semi-lightfastness to the material. It has a natural aesthetic appearance thanks to its ability to distribute permeably. environmentally friendly, high-strength lighting or furniture suitable for parametric design. the ability to produce their products.

2. Advanced robotic arm 3D made of biocomposite material with hazelnut shell additive according to Claim 1. The composition involves the production of lighting and furniture using printers; its characteristic feature is the desired The product is made using varying proportions of hazelnut shells to achieve the desired texture, opacity, and light transmittance. It includes a contribution.

3. Advanced robotic arm 3D made of biocomposite material with hazelnut shell additive according to Claim 1. The composition of lighting and furniture production using printers is characterized by its; recycling. It contains recyclable thermoplastic polymers such as PLA, ABS, or similar polymers.

4. Advanced robotic arm 3D made of biocomposite material with hazelnut shell additive according to Claim 1. Its characteristic feature is the composition of lighting and furniture production using printers; ensuring that the furniture can be easily shaped, providing flexibility and durability. It contains a polymer base.

5. Advanced robotic arm 3D made of biocomposite material with hazelnut shell additive according to Claim 1. It is a composition of lighting and furniture production using printers; its characteristic feature is that it is 3D. FDM system, which enables the printing process to produce the desired form with the help of a robotic arm, or It uses an injection molding system.

6. Advanced robotic arm made of biocomposite material with hazelnut shell additive according to Claim 1. It is a composition that produces lighting and furniture using 3D printers; its characteristic feature is: 3 allows light to be scattered semi-transparently on the furniture surface, and light It contains hazelnut shell additive, which acts as a diffuser.

7. Advanced robotic arm made of biocomposite material with hazelnut shell additive according to Claim 1. It is a composition that produces lighting and furniture using 3D printers; its characteristic feature is that it is the same Composite materials are formed in various proportions and used both in lighting products and in structural or decorative parts of furniture such as tables, chairs, coffee tables, and armchairs It is the use of. 4