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网站3D渲染设计

来源:高维动画    发布时间:2022-09-28    阅读次数:2525 次

 

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我们策划设计的企业网站案例

⇖⇖⇖点击 转到官网 查看策划效果

 

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名企官网案例

⇖⇖⇖点击 官网 首图3D动画 网页3D图渲染 


⇖⇖⇖点击 官网 首图渲染 品牌3D动画视频

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⇖⇖⇖点击 官网 首页3D动画视频      

  1  双螺杆连续制浆机动画 

  2 击 棒销式砂磨机动画 

  3  犁刀混合机动画 

  4 击 双行星动力搅拌机动画 

  5  高比重物料混合分散搅拌机动画 

  6  低速釜式干燥机动画 

  7  桨叶式混合机动画 

  8 击 多组分吸料计量秤动画 

  9  高效制浆机动画 

  10  小袋解包站动画 

  11  集成式吨袋包装机动画 

  12  吨袋解包站动画 

 

 ⇖⇖⇖点击 官网 首页3D动画视频

 

⇖⇖⇖点击 官网 首页3D动画视频

 

 

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 ⇖⇖⇖点击 官网 品牌3D动画视频 产品渲染


 ⇖⇖⇖点击 官网 品牌3D动画视频 产品渲染





   1 【Vetus 80】发布会宣传动画 

   2 【Vetus 80】发布会宣传动画

   3 【BC-60R Vet】发布会宣传动画

 



 

百强企业的3D渲染效果如:

 ⇖⇖⇖点击 官网 网页3D图渲 3D动画视频

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 ⇖⇖⇖点击 官网 网页3D图渲 3D动画视频

  

 

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网站设计3D渲染小知识:

‌网站产品需要3D渲染图片的主要原因包括以下几个方面‌:

‌提升视觉效果和用户体验‌:3D渲染图片能够提供高分辨率的产品图像和视频,这些高质量的图像可以在产品页面、宣传材料以及社交媒体上使用,从而吸引用户的注意力,提升品牌形象‌。此外,3D渲染技术可以打破2D图像的单调性,通过立体元素和动画效果迅速吸引用户的目光,增强品牌的识别度‌。

增强产品的真实感和互动性‌:3D渲染图片允许用户进行旋转、缩放等操作,深入探索产品的细节,增强用户的参与感和探索欲‌。这种3d交互式体验帮助消费者更全面地了解产品特性,从而做出更明智的购买决策‌。

全方位展示产品细节‌:3D渲染技术可以全方位展示复杂的产品或场景,如建筑模型的外观与内部结构,逼真传达产品的质感,帮助用户更好地评估产品是否符合需求‌。在产品制造过程中,3D渲染还可以用于产品原型设计和测试,创建详细的组装过程说明,以及产品投产前的可视化展示‌。

加速产品上市和营销活动‌:在产品生产之前,利用3D渲染进行产品可视化可以极大地加速产品包装和广告素材的创作过程,使产品更迅速地推向市场。此外,3D渲染技术还可以在产品上市之前启动营销活动,如在线预售等‌。

减少后期制作成本和时间‌:传统的产品摄影需要进行修饰以消除缺陷,而3D渲染软件可以轻松生成无瑕疵的完美图像,节省时间和成本‌。此外,渲染工具可以自动生成多种设计方案,快速生成大量图像集,适合大规模生产的不同角度、不同材料和照明条件下的产品渲染‌。

综上所述,3D渲染图片在提升视觉效果、增强互动性和真实感、加速产品上市及减少后期制作成本等方面具有显著优势,是现代网站产品展示的重要手段。

网站需要产品3D渲染设计的优势主要包括以下几个方面‌:

增强用户体验‌:通过3D设计,产品可以被高度还原,呈现出更为细致和真实的外观。这种展示方式不仅能更好地展现产品的细节和材质,还能使消费者更直观地感受到产品的实际使用效果,从而增强用户的购物体验和购买意愿‌。

提高互动性‌:3D设计可以通过交互设计,让消费者能够更深入地了解产品。例如,消费者可以通过手势或触摸来操作产品模型,感受产品的功能和操作方式。这种互动体验不仅提高了消费者的参与度,还增强了他们对产品的信任感和购买意愿‌。

优化设计和开发流程‌:3D设计软件允许快速修改和迭代设计,可以显著缩短产品开发周期。此外,3D模型可以直接用于制造过程,如3D打印,加速从设计到生产的转变‌。

减少成本和时间‌:通过3D模拟,可以在不制造实际产品的情况下测试产品的功能和性能,减少原型制作的需求,节省材料和时间成本,同时减少因设计错误导致的返工‌。

提升市场反馈‌:3D渲染可以用于创建逼真的产品图像和视频,这有助于在产品开发早期获得市场反馈,从而更好地满足消费者的需求‌。

适应多终端展示‌:通过Web3D交互技术,3D模型可以高度保真还原产品,并且能够快速加载和交互。用户无需安装下载任何插件,直接在浏览器上进行查看和互动,支持PC、手机、平板等多终端查看‌。

提升品牌形象‌:通过3D设计展示产品,企业可以提供更为精细的数据分析,帮助更好地了解消费者的需求和购买行为,从而制定更为精准的市场策略,提升品牌形象和市场竞争力‌。

综上所述,3D设计在提升用户体验、优化设计和开发流程、减少成本和时间、提升市场反馈、适应多终端展示等方面具有显著优势,是现代产品设计不可或缺的工具。

企业官网网站的产品3D设计场景需要以下技术和软件工具‌:

3D建模‌:首先需要创建产品的3D模型。可以使用3D建模软件如Blender、Maya、3ds Max、C4D等完成,或者使用3D扫描仪进行扫描建模‌。

Web3D技术‌:Web3D技术允许3D模型以实时、立体、交互的形态在网页上展示,无需安装任何插件或软件,用户可以通过浏览器直接预览3D内容。常见的Web3D技术包括WebGL和Three.js‌。

‌3D互动引擎‌:为了实现生动的3D展示,需要一个强大的3D互动引擎作为底层技术支撑。例如,博维数孪提供了一个无需编写代码的平台,可以直接上传模型并进行展示,并支持模型材质、光源、场景等效果编辑,内置丰富的交互功能‌。

文件压缩技术‌:为了提高加载速度和用户体验,3D产品展示可能需要使用文件压缩技术来优化项目,使其在网页上快速加载而无需插件‌。

交互设计‌:在博维数孪可以快速便捷地设计用户界面和交互流程,使用户能够方便地浏览和操作展品‌。

虚拟现实技术‌:如WebVR,提供沉浸式体验,增强参观的趣味性‌。

全平台支持‌:展示系统应跨平台和设备支持网页、App、小程序等多种平台,以确保广泛的兼容性和访问性‌。

分享和嵌入‌:完成3D模型交互展示制作后,可以通过分享项目链接或二维码让其他人访问和体验3D产品展示,也可以将项目嵌入到第三方网站或部署到本地或第三方服务器‌。

在网页上进行3D产品展示的开发需要用到以下器材和技术‌:

3D建模‌:首先需要创建产品的3D模型。可以通过3D建模软件如Blender、Maya、3ds Max、C4D等完成,或者使用3D扫描仪进行扫描建模。

选择展示平台‌:完成3D模型的创建后,需要选择一个平台来展示3D模型。例如,博维数孪提供了一个无需编写代码的平台,可以直接上传模型并进行展示‌。

‌3D互动引擎‌:为了实现生动的3D展示,需要一个强大的3D互动引擎作为底层技术支撑。可以通过博维数孪在线编辑器实现,支持模型材质、光源、场景等效果编辑,并内置丰富的交互功能‌。

Web3D技术‌:Web3D技术允许3D模型以实时、立体、交互的形态在网页上展示,无需安装任何插件或软件,用户可以通过浏览器直接预览3D内容‌。

全平台支持‌:展示系统应跨平台和设备支持网页、App、小程序等多种平台,以确保广泛的兼容性和访问性‌。

分享和嵌入‌:完成3D模型交互展示制作后,可以通过分享项目链接或二维码让其他人访问和体验3D产品展示。此外,也可以将项目嵌入到第三方网站或部署到本地或第三方服务器‌。

3D+AR技术‌:结合3D模型和AR技术,可以打造虚实相融的产品体验,增强消费者的购物体验‌。

‌文件压缩技术‌:为了提高加载速度和用户体验,3D产品展示可能需要使用文件压缩技术来优化项目,使其在网页上快速加载而无需插件‌。

‌WebGL和HTML5‌:使用WebGL和HTML5标准,可以在无需安装任何插件的情况下,在浏览器中直接展示3D模型。博维数孪技术利用这些技术开发,允许在网页、手机和VR设备上轻松分享3D模型‌。

Three.js和A-Frame‌:Three.js是一个流行的JavaScript库,通过提供用于在Web浏览器中创建和操作3D场景的高级API来简化WebGL的使用。A-Frame是一个用于在网络上构建VR体验的开源框架,使用HTML和JavaScript创建可在网络浏览器或VR耳机中查看的交互式3D场景‌。

‌WebGL‌:WebGL是一种JavaScript API,允许在Web浏览器中呈现3D图形。它使用GPU加速图形渲染,并支持多种3D格式,如OBJ、Collada和glTF‌。

‌Three.js‌:这是一个流行的JavaScript库,通过提供用于在Web浏览器中创建和操作3D场景的高级API来简化WebGL的使用‌。

A-Frame‌:A-Frame是一个开源框架,使用HTML和JavaScript创建可在网络浏览器或VR耳机中查看的交互式3D场景‌。

Adobe XD‌:这是一款由Adobe公司推出的专业设计工具,专为用户体验设计和原型制作而生。它支持矢量设计、交互设计和原型制作,用户可以通过简单的拖放操作创建复杂的设计。Adobe XD还提供了丰富的插件和第三方集成,特别适合需要与其他Adobe产品如Photoshop和Illustrator无缝集成的项目‌。

Sketch‌:这是一款专为Mac用户设计的矢量图形编辑工具,广泛应用于UI/UX设计。Sketch以其简洁的界面和强大的功能著称,特别适合设计移动应用和网页。它提供了多种插件和模板,支持团队协作,通过云端共享设计稿和版本控制,确保团队成员始终保持同步‌。

Figma‌:这是一款基于云端的设计工具,专为团队协作而设计。Figma支持实时协作,多个用户可以同时在同一个设计文件上工作,特别适合团队项目。它提供了丰富的设计和原型制作功能,支持多平台访问,并且有强大的版本控制和历史记录功能‌。

Webflow‌:这是一款集设计、开发和内容管理于一体的工具,适合快速构建和发布网站。它提供了一个可视化的设计界面,用户无需编写代码即可创建复杂的网页。Webflow支持响应式设计,确保网站在各种设备上都有良好的显示效果‌。

Pixso‌:这是一款国产在线协作产品设计软件,功能全面,支持从原型设计到交付的全过程。Pixso提供实时协作、链接交付等功能,支持多人云端协作设计,并且可以通过链接邀请团队成员进行设计,项目完成后可以一键发送链接交付‌。

WebXR‌:WebXR是一种Web标准,允许使用虚拟现实和增强现实创建身临其境的体验。它提供访问传感器、渲染3D图形以及在Web浏览器中与虚拟对象交互的API‌。

Proe(Creo)‌:这是一款功能强大的三维CAD软件,适用于产品设计和开发,支持从概念设计到详细工程设计的全过程,广泛应用于汽车、航空航天、工业设备等多个行业‌。

Rhino‌:主要用于产品的立体和空间呈现,以及质感和结构的表达,适合外观塑形类设计‌。

‌Keyshot‌:主要用于产品构思和效果图展示,适合视觉效果类设计‌。

‌Cinema4D‌:同样适用于产品构思和效果图展示,具有强大的视觉效果处理能力‌。

SketchUp‌:简单易用,适合快速创建三维模型,常用于初步设计和概念验证‌。

SolidWorks‌:基于Windows的三维CAD系统,以其易用性、强大的功能和技术创新而闻名,广泛应用于机械设计、设备自动化等领域‌。

Daz Studio‌:主要用于角色和场景的创建,适合虚拟现实和游戏开发中的角色设计‌。

FreeCAD‌:开源的三维CAD软件,适用于各种工程设计和制造需求‌。

MeshMixer‌:主要用于3D打印前的模型处理和优化‌。

‌3DReshaper‌和‌3DCrafter‌:这两款软件也提供了丰富的3D设计和建模功能,适用于不同的设计需求‌。

这些软件各有特色,企业可以根据具体的设计需求选择合适的工具。例如,对于需要高效设计和仿真的项目,Creo和SolidWorks是不错的选择;而对于需要快速创建效果图的项目,Keyshot和Cinema4D则更为适合。

3D建模与展示技术‌:包括使用3D建模软件(如Maya、3D MAX、Blender等)建造三维空间模型,并通过3D引擎和渲染技术将3D模型在虚拟环境中动态展示,支持旋转、缩放、换色等交互操作‌。

前端界面开发‌:负责设计并实现用户与3D虚拟商城进行交互的界面,包括商品展示区、交互操作区、支付功能等‌。

‌后端开发‌:处理用户信息、订单管理等业务逻辑,并与前端界面进行数据交互,包括数据库设计、服务器搭建、API接口开发等‌。

图像处理与智能推荐技术‌:用于采集和处理商品的图像数据,生成高质量的3D模型,并通过智能推荐算法基于用户行为和购买偏好推荐合适的商品‌。

虚拟现实与增强现实技术‌:虚拟现实技术创建逼真的虚拟购物环境,增强现实技术将虚拟元素与现实世界相结合,提供丰富的购物体验‌。

云计算技术‌:为3D虚拟商城提供强大的计算和存储能力,确保商城的稳定运行和高效响应‌。

大数据技术‌:用于分析用户行为、购买偏好等,为智能推荐和个性化服务提供数据支持‌。

物联网技术‌:将智能设备、传感器等与3D虚拟商城相连接,实现更加智能化的购物体验‌。

这些技术的综合运用可以为用户提供沉浸式、个性化的购物体验,并为企业提供更高效、更智能的营销方式‌。

企业官网3D设计渲染运用的优势包括以下几个方面‌:

扁平化设计‌:扁平化设计强调简洁、直观,去除多余的装饰和效果,使界面看起来更加干净、现代。这种设计风格不仅提升了用户体验,还加快了页面加载速度,适应多屏设备,并且易于维护和更新‌。

高清大图‌:高清大图能够直观展示产品特点和企业文化,增强用户的代入感和信任感。高质量的图片和视频素材结合品牌理念和产品特色进行巧妙运用,营造视觉冲击力,传递品牌魅力‌。

‌响应式设计‌:随着移动设备的普及,响应式设计能够确保网站在不同设备上都能提供良好的用户体验,自动调整页面布局和内容展示方式,以适应不同屏幕尺寸和分辨率‌。

现代极简主义‌:现代极简主义设计风格以“少即是多”为原则,剔除多余元素,通过简洁的设计语言传递核心价值。这种风格适合追求效率交流、注重专业形象的行业,如科技、金融和咨询等‌。

情感化设计‌:情感化设计通过温馨的色彩搭配、亲切的图形设计和富有故事性的页面布局,建立用户与品牌间的情感联结。这种设计适合面向大众消费者的品牌或服务型企业,能有效传递企业的人文关怀和品牌温度‌。

科技感与动态效果‌:对于科技行业、互联网公司或寻求转型的传统企业,富含科技感的设计风格和动态效果的应用能够展示企业的创新能力,提供全新的浏览体验‌。

文化融合‌:在全球化市场中,企业需要考虑到文化的多元融合。通过深入研究目标市场的文化背景和用户偏好,将传统文化元素以现代化方式呈现,或是巧妙地融入国际化设计语言,实现跨文化有效沟通‌。

这些重新运用的设计理念和方法不仅提升了企业官网的用户体验和视觉效果,还增强了企业的品牌形象和市场竞争力。

企业官网产品3D设计应用在哪些行业的特性和需求?‌

零售与批发行业

零售与批发行业对官网产品设计非常重视,因为官网不仅是商品展示和在线销售的平台,还需要提供多角度查看、放大缩小等功能,以提升用户购物体验。此外,价格比较和客户评价功能也至关重要,帮助用户做出购买决策,增强用户信任感和购买意愿‌。

电子商务行业

电子商务行业对官网产品设计同样重视,特别是移动优先设计和个性化推荐功能。随着移动互联网的快速发展,官网需要在移动设备上提供良好的访问体验,支持触屏操作和快速加载。个性化推荐通过大数据分析用户行为和偏好,提升购买转化率。社交互动功能和支付安全、数据保护措施也是电子商务行业官网设计的重要方面‌。

医疗行业

医疗行业的官网设计需要简洁明了,信息清晰,以传达医院的专业性和服务水平,增强用户的信任感。设计应避免过多的装饰和复杂的布局,确保用户能够迅速找到所需信息‌。

金融行业

金融行业的官网设计需要突出安全性和专业性。网站设计应简洁明了,避免过多的广告和弹窗,确保用户在进行金融交易时感到安全和放心。同时,响应式设计确保在不同设备上都能提供良好的用户体验‌。

制造业

制造业的官网设计需要展示企业的产品和服务,突出企业的技术实力和生产能力。设计应结合产品的特色和企业文化,从全局上考虑页面的建设,以吸引潜在客户并提升企业形象‌。

综上所述,不同行业对企业官网产品设计的重视程度不同,但共同点在于都需要提供良好的用户体验、确保安全性、突出企业形象和专业性。

‌企业官网产品3D设计渲染全包规划所需的资金范围主要取决于网站的类型和复杂度。‌

基础模板建站

对于预算有限且功能简单的企业网站,可以选择基础模板建站。这种方式的费用大约在1000-5000元人民币之间。模板建站的优势在于成本低、速度快,但可能缺乏个性化‌。

   我们是专业3d渲染制作,产品渲染图制作,工业模型渲染,模型渲染,设备渲染图制作公司,擅长企业医疗器械、助行器、电力设备、产品、机械设备、化工工艺、安装、组装、工业机电设备、水利设备、石化设备、电力工程建设、电梯、施工、机械、钢构、投标、建筑规划设计、工业园区厂房、环保、光伏发电等领域,提供专业的3d渲染设计服务,并拥有大量3D动画制作+3d产品模型外观渲染图制作经验。

简单企业展示型网站

这类网站通常包含首页、关于我们、产品展示、联系我们等基础页面,设计费用在4000-8000元人民币之间‌。

中等功能型网站

如果网站需要加入会员系统、在线客服、数据统计等互动功能,费用可能在8000元至2万元之间‌。

高端定制网站

对于追求品牌形象和用户体验的企业,高端定制网站是最佳选择。这类网站设计精美,功能复杂,能够满足企业特定的业务需求,费用通常在2万元至5万元以上,甚至更高‌。

具体案例

例如,一个简单的官网价格收费大概是在3000-8000元之间,包括简单的页面设计和内容管理系统;功能复杂的电商网页或者定制化3D动画视频及渲染的设计服务,费用可能在1万至3万甚至更高‌。

综上所述,企业官网产品设计所需的资金范围因网站的类型和复杂度而异,从几千元到几十万元不等。选择合适的方案可以根据企业的具体需求和预算来决定。

 我们是专业的3d渲染制作公司-工业产品设备3d模型,产品外观渲染图制作,专业制作三维渲染图的动画公司,为企业、政府机构、科教院校、设计院、工程建设安装施工、房地产、新能源环保行业、电器数码产品工业、智能家居、装饰公司、汽车智能系统、石油化工业、医疗器械设备、机械产品制造业、生产线企业、铁路采掘业、纺织业、船舶航空领域,提供一站式方案设计,打造企事业形象、提高品牌竞争力。



3D rendering tips for website design:

The main reasons why website products require 3D rendered images include the following aspects:

Enhance visual effects and user experience: 3D rendered images can provide high-resolution product images and videos, which can be used on product pages, promotional materials, and social media to attract user attention and enhance brand image. In addition, 3D rendering technology can break the monotony of 2D images, quickly attract users' attention through stereoscopic elements and animation effects, and enhance brand recognition.

Enhance the realism and interactivity of the product: 3D rendered images allow users to perform rotation, scaling, and other operations, delve into the details of the product, and enhance users' sense of participation and exploration desire. This 3D interactive experience helps consumers gain a more comprehensive understanding of product features, enabling them to make more informed purchasing decisions.

Comprehensive display of product details: 3D rendering technology can comprehensively display complex products or scenes, such as the appearance and internal structure of building models, realistically conveying the texture of the product and helping users better evaluate whether the product meets their needs. In the product manufacturing process, 3D rendering can also be used for product prototype design and testing, creating detailed assembly process instructions, and visualizing the product before production.

Accelerating product launch and marketing activities: Utilizing 3D rendering for product visualization before production can greatly accelerate the creative process of product packaging and advertising materials, enabling products to be quickly brought to market. In addition, 3D rendering technology can also initiate marketing activities such as online pre-sales before the product is launched.

Reduce post production costs and time: Traditional product photography requires retouching to eliminate defects, while 3D rendering software can easily generate flawless and perfect images, saving time and costs. In addition, rendering tools can automatically generate multiple design schemes and quickly generate a large number of image sets, suitable for rendering products from different angles, materials, and lighting conditions in large-scale production.

In summary, 3D rendered images have significant advantages in improving visual effects, enhancing interactivity and realism, accelerating product launch, and reducing post production costs. They are an important means of displaying products on modern websites.

The advantages of 3D rendering design for website products mainly include the following aspects:

Enhance user experience: Through 3D design, products can be highly restored, presenting a more detailed and realistic appearance. This display method not only better showcases the details and materials of the product, but also allows consumers to more intuitively feel the actual usage effect of the product, thereby enhancing the shopping experience and purchase intention of users.

Enhance interactivity: 3D design can provide consumers with a deeper understanding of products through interactive design. For example, consumers can operate product models through gestures or touch to experience the functionality and operation of the product. This interactive experience not only increases consumer engagement, but also enhances their trust and willingness to purchase the product.

Optimize design and development process: 3D design software allows for rapid modification and iteration of designs, significantly reducing product development cycles. In addition, 3D models can be directly used in manufacturing processes such as 3D printing, accelerating the transition from design to production.

Reduce costs and time: Through 3D simulation, it is possible to test the functionality and performance of products without actually manufacturing them, reducing the need for prototyping, saving material and time costs, and minimizing rework caused by design errors.

Enhance market feedback: 3D rendering can be used to create realistic product images and videos, which helps to obtain market feedback in the early stages of product development and better meet consumer needs.

Adapt to multi terminal display: Through Web3D interactive technology, 3D models can be highly fidelity restored to products, and can be quickly loaded and interacted with. Users do not need to install or download any plugins, and can directly view and interact on the browser, supporting multi terminal viewing on PCs, phones, tablets, and other devices.

Enhancing brand image: By showcasing products through 3D design, companies can provide more refined data analysis to help better understand consumer needs and purchasing behavior, thereby formulating more accurate market strategies and enhancing brand image and market competitiveness.

In summary, 3D design has significant advantages in enhancing user experience, optimizing design and development processes, reducing costs and time, improving market feedback, and adapting to multi terminal displays. It is an indispensable tool for modern product design.

The 3D design scene of products on the official website of the enterprise requires the following technologies and software tools:

3D modeling: First, it is necessary to create a 3D model of the product. It can be completed using 3D modeling software such as Blender, Maya, 3ds Max, C4D, etc., or scanned and modeled using a 3D scanner.

Web3D technology: Web3D technology allows 3D models to be displayed on web pages in real-time, stereoscopic, and interactive form, without the need to install any plugins or software. Users can directly preview 3D content through a browser. Common Web3D technologies include WebGL and Three.js.

3D interactive engine: In order to achieve vivid 3D display, a powerful 3D interactive engine is needed as the underlying technical support. For example, Bowei Shuang provides a platform that does not require coding, allowing for direct uploading and display of models, as well as support for editing effects such as model materials, lighting, and scenes, with rich built-in interactive functions.

File compression technology: In order to improve loading speed and user experience, 3D product displays may require the use of file compression technology to optimize projects, enabling them to load quickly on web pages without the need for plugins.

Interaction design: Bowei Shuang can quickly and conveniently design user interfaces and interaction processes, allowing users to browse and operate exhibits conveniently.

Virtual reality technology, such as WebVR, provides immersive experiences and enhances the fun of visiting.

Full platform support: The display system should support web pages across platforms and devices App、 Various platforms such as mini programs are used to ensure broad compatibility and accessibility.

Sharing and Embedding: After completing the interactive display of 3D models, others can access and experience the 3D product display by sharing project links or QR codes. The project can also be embedded on third-party websites or deployed to local or third-party servers.

The development of 3D product displays on web pages requires the use of the following equipment and technologies:

3D modeling: First, it is necessary to create a 3D model of the product. It can be completed through 3D modeling software such as Blender, Maya, 3ds Max, C4D, etc., or scanned and modeled using a 3D scanner.

Select display platform: After creating the 3D model, you need to choose a platform to display the 3D model. For example, Bowei Shuang provides a platform that does not require coding, allowing models to be directly uploaded and displayed.

3D interactive engine: In order to achieve vivid 3D display, a powerful 3D interactive engine is needed as the underlying technical support. It can be achieved through the Bowei Shuang online editor, which supports editing effects such as model materials, lighting, and scenes, and has rich interactive functions built-in.

Web3D technology: Web3D technology allows 3D models to be displayed on web pages in real-time, stereoscopic, and interactive form, without the need to install any plugins or software. Users can directly preview 3D content through a browser.

Full platform support: The display system should support web pages across platforms and devices App、 Various platforms such as mini programs are used to ensure broad compatibility and accessibility.

Sharing and embedding: After completing the interactive display of the 3D model, others can access and experience the 3D product display by sharing project links or QR codes. In addition, the project can also be embedded into third-party websites or deployed to local or third-party servers.

3D+AR technology: Combining 3D models and AR technology, it can create a product experience that blends reality and virtuality, enhancing consumers' shopping experience.

File compression technology: In order to improve loading speed and user experience, 3D product displays may require the use of file compression technology to optimize projects, enabling them to load quickly on web pages without the need for plugins.

WebGL and HTML5: By using the WebGL and HTML5 standards, 3D models can be displayed directly in the browser without the need to install any plugins. The Bowei twin technology utilizes these technologies to develop and allow for easy sharing of 3D models on web pages, mobile phones, and VR devices.

Three.js and A-Frame: Three.js is a popular JavaScript library that simplifies the use of WebGL by providing advanced APIs for creating and manipulating 3D scenes in web browsers. A-Frame is an open-source framework for building VR experiences on the internet, using HTML and JavaScript to create interactive 3D scenes that can be viewed in web browsers or VR headsets.

WebGL: WebGL is a JavaScript API that allows 3D graphics to be rendered in a web browser. It uses GPU accelerated graphics rendering and supports multiple 3D formats such as OBJ, Collada, and glTF.

Three.js: This is a popular JavaScript library that simplifies the use of WebGL by providing advanced APIs for creating and manipulating 3D scenes in web browsers.

A-Frame: A-Frame is an open-source framework that uses HTML and JavaScript to create interactive 3D scenes that can be viewed in a web browser or VR headset.

Adobe XD: This is a professional design tool launched by Adobe, specifically designed for user experience design and prototyping. It supports vector design, interaction design, and prototyping, allowing users to create complex designs through simple drag and drop operations. Adobe XD also offers a wide range of plugins and third-party integrations, making it particularly suitable for projects that require seamless integration with other Adobe products such as Photoshop and Illustrator.

Sketch: This is a vector graphics editing tool designed specifically for Mac users, widely used in UI/UX design. Sketch is known for its simple interface and powerful features, making it particularly suitable for designing mobile applications and web pages. It provides a variety of plugins and templates, supports team collaboration, shares design drafts and version control through the cloud, ensuring that team members are always synchronized.

Figma: This is a cloud based design tool designed specifically for team collaboration. Figma supports real-time collaboration, allowing multiple users to work on the same design file simultaneously, making it particularly suitable for team projects. It provides rich design and prototyping features, supports multi platform access, and has powerful version control and history recording capabilities.

Webflow: This is a tool that integrates design, development, and content management, suitable for quickly building and publishing websites. It provides a visual design interface that allows users to create complex web pages without writing code. Webflow supports responsive design to ensure that the website has good display effects on various devices.

Pixso: This is a domestic online collaborative product design software with comprehensive functions, supporting the entire process from prototype design to delivery. Pixso provides real-time collaboration, link delivery, and other functions, supports cloud based collaborative design among multiple people, and can invite team members to design through links. After the project is completed, one click link delivery can be sent.

WebXR: WebXR is a web standard that allows the creation of immersive experiences using virtual reality and augmented reality. It provides APIs for accessing sensors, rendering 3D graphics, and interacting with virtual objects in a web browser.

Proe (Creo): This is a powerful 3D CAD software suitable for product design and development, supporting the entire process from conceptual design to detailed engineering design, widely used in multiple industries such as automotive, aerospace, and industrial equipment.

Rhino: mainly used for the three-dimensional and spatial presentation of products, as well as the expression of texture and structure, suitable for exterior shaping design.

Keyshot: mainly used for product conception and rendering display, suitable for visual effects design.

Cinema4D: also suitable for product conception and rendering display, with powerful visual effect processing capabilities.

SketchUp: Easy to use, suitable for quickly creating 3D models, commonly used for preliminary design and concept validation.

SolidWorks: A 3D CAD system based on Windows, renowned for its ease of use, powerful features, and technological innovation, widely used in fields such as mechanical design and equipment automation.

Daz Studio: mainly used for creating characters and scenes, suitable for character design in virtual reality and game development.

FreeCAD: an open-source 3D CAD software suitable for various engineering design and manufacturing needs.

MeshMixer: mainly used for model processing and optimization before 3D printing.

3DReshaper and 3DCrafter: These two software also provide rich 3D design and modeling functions, suitable for different design needs.

These software have their own characteristics, and enterprises can choose suitable tools according to specific design needs. For example, for projects that require efficient design and simulation, Creo and SolidWorks are good choices; For projects that require quick creation of renderings, Keyshot and Cinema4D are more suitable.

3D modeling and display technology: including using 3D modeling software (such as Maya, 3D MAX, Blender, etc.) to build 3D spatial models, and dynamically displaying the 3D models in a virtual environment through 3D engines and rendering technology, supporting interactive operations such as rotation, scaling, and color changing.

Front end interface development: Responsible for designing and implementing the interface for users to interact with the 3D virtual mall, including product display area, interactive operation area, payment function, etc.

Backend development: Handling user information, order management, and other business logic, and interacting with front-end interfaces for data, including database design, server setup, API interface development, etc.

Image processing and intelligent recommendation technology: used to collect and process image data of products, generate high-quality 3D models, and recommend suitable products based on user behavior and purchasing preferences through intelligent recommendation algorithms.

Virtual Reality and Augmented Reality Technology: Virtual reality technology creates realistic virtual shopping environments, and augmented reality technology combines virtual elements with the real world to provide a rich shopping experience.

Cloud computing technology: provides powerful computing and storage capabilities for 3D virtual shopping malls, ensuring their stable operation and efficient response.

Big data technology: used to analyze user behavior, purchasing preferences, etc., providing data support for intelligent recommendations and personalized services.

Internet of Things technology: connecting smart devices, sensors, etc. with 3D virtual shopping malls to achieve a more intelligent shopping experience.

The comprehensive application of these technologies can provide users with an immersive and personalized shopping experience, and offer businesses a more efficient and personalized shopping experience