DESCRIPTION

Elevate Your Visual Projects with Our High-Quality Drinking Yoghurt Bottle 3D Model

Introducing our meticulously designed Drinking Yoghurt Bottle 3D Model, perfect for designers, marketers, 3D artists, and industry professionals who need a realistic and versatile 3D asset. This model is ideal for a variety of visual applications, from product design to marketing campaigns.

Key Features:

Realistic Design: Captures the authentic look of a drinking yoghurt bottle, featuring detailed elements like the bottle shape, cap, and label area.Multiple File Formats: Available in OBJ, FBX, STL, and 3DS formats, ensuring compatibility with a wide range of 3D software applications.High-Resolution Textures: Includes detailed, high-resolution texture maps that can be easily customized to change colors, labels, and materials to suit your specific needs.Optimized for Rendering: Designed for high-quality rendering, making it ideal for creating photorealistic visuals for advertisements, packaging designs, and marketing materials.Versatile Compatibility: Fully compatible with popular 3D software such as Blender, 3ds Max, Maya, and Cinema 4D, ensuring seamless integration into your projects.Included in the Package:

Drinking Yoghurt Bottle 3D Model in OBJ, FBX, STL, and 3DS formatsHigh-resolution texture maps for enhanced realismDetailed user guide for easy setup and customizationApplications:

Product Design: Visualize yoghurt bottle concepts with lifelike 3D renderings, aiding in design development and prototyping.Marketing & Advertising: Create compelling advertisements and promotional materials with photorealistic images and animations of the yoghurt bottle, attracting and retaining customers.E-commerce: Enhance your online store listings with detailed 3D visuals, improving customer engagement and conversion rates.Presentation & Prototyping: Impress clients and stakeholders with accurate and realistic prototypes during presentations, leading to better feedback and informed decision-making.Why Choose Our Model:

Professional Quality: Designed by experienced 3D artists, ensuring exceptional quality and realism.User-Friendly: Compatible with major 3D software platforms, integrating smoothly into your workflow.Cost-Effective: Save time and resources with a ready-made 3D model, allowing you to focus on the creative aspects of your project.Compatibility:

Compatible with major 3D software such as Blender, 3ds Max, Maya, and Cinema 4D.Ready for use in augmented reality (AR) and virtual reality (VR) applications, expanding the potential uses of the model.Invest in our Drinking Yoghurt Bottle 3D Model to elevate your design, marketing, and product development projects. With its detailed craftsmanship, versatility, and ease of use, this model is an invaluable asset for professionals in the food and beverage industry.

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Drinking Yoghurt Bottle 3D Model Low-poly 3D model

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File formats
OBJ
OBJ | 2 files<br />File Size: 26.2 MB
FBX
Autodesk FBX | 2 files<br />File Size: 9.77 MB
MAX
Autodesk 3ds Max<br />Renderer: Default (Scanline) 2024<br />File Size: 728 KB
BLEND
Blender<br />Renderer: Cycles 4.1<br />File Size: 55.1 MB
Verified by CGTrader
Verified models are of higher quality as they have
passed CGT Standard technical and visual checks,
making them more professional-grade 3D assets.
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FBX
This FBX file has successfully passed the CGT Standard technical and visual checks. The verification results are detailed in the section below.
File & scene
Binary FBX
Binary FBX file is more compact and faster to load and process.
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No unsupported objects
Unsupported objects:
- Lights
- Cameras
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Geometry
No N-gons
N-gons are polygons with five or more sides which might cause issues in certain processes like rendering or animation. Learn more
No faceted geometry
Faceted geometry uses flat surfaces without smoothing, which can look unrealistic on curves.
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Manifold geometry
Manifold geometry ensures all surfaces are properly connected, avoiding issues like edges shared by more than two faces.
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Textures & material
PBR textures
PBR textures simulate how light interacts with materials, making the model look realistic under different lighting.
Required PBR textures:
- Base Color
- Roughness
- Metalness
- Normal
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No embed textures
Embedded textures are stored inside the model file, increasing its size and sometimes causing compatibility issues.
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Square textures
Texture aspect ratio is the width-to-height ratio of a texture. Expected texture aspect ratio: 1:1
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Power of 2 texture sizes
Textures with dimensions in power of two (e.g. 512x512px, 1024x1024px) are used to optimize performance and memory usage.
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Assigned materials
Materials are applied to the 3D model to allow visualize a model's surface properties and appearance.
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UVs & naming
No UV overlaps
UVs overlap when multiple points on the 3D model's surface are mapped to the same point on the UV island causing texture stretching.
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UV unwrapped model
A UV unwrapped model means its 3D surface is flattened into 2D space, allowing textures to be applied accurately.
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Allowed characters
Allowed ASCII characters: a-zA-Z0-9-_
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Provided by designer
Information and details shared directly by the model's designer.
3D Features
Animated
The model includes animations (movement or actions) that can be played in supported software or engines.
Rigged
The model has a skeleton or bone structure, making it ready for posing or animation.
Low-poly
PBR
Uses Physically Based Rendering materials, which give the model realistic lighting and surface properties.
Textures
The model includes image files (textures) that add color, patterns, or detail to its surfaces.
Materials
The model has material settings that define how surfaces look (color, shine, transparency, etc.).
UV Mapping
The model's surfaces are mapped to a 2D image, allowing textures to display correctly.
Plugins Used
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3D printing
Indicates whether the designer marked this model as suitable for 3D printing.
Model is not 3D printable
The designer indicates this model is intended for digital use only (rendering, animation, or AR/VR) and not for 3D printing.
Geometry
Polygon mesh
A model built from polygons (triangles or quads) connected in a mesh.
388 polygons
The total number of polygons (flat shapes) that make up the 3D model.
Unwrapped UVs
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