HIRO融媒体3D卡通真实感数字人丨可照片转换是一款基于Flux LoRA技术开发的风格化数字人模型,专为快速生成兼具卡通美学与真实感的3D数字形象而设计。

该模型通过低秩适应(LoRA)对Flux.1基础模型进行轻量化微调,能够将用户上传的照片自动转换为高度个性化的3D卡通形象,同时保留真实的面部特征与表情细节,适用于社交媒体内容创作、虚拟主播定制、游戏角色设计等场景。其核心优势在于无需复杂参数调整即可实现风格化输出,支持一键生成符合动漫、迪士尼或写实风格的多样化形象,且生成效果在肢体比例和表情自然度上表现稳定。模型继承了Flux系列的高分辨率生成能力(最高支持2048像素),并优化了五官与毛发细节的呈现,尤其擅长处理亚洲人像的卡通化转换。作为参数高效的微调方案,HIRO模型仅需约20张参考图即可完成训练,大幅降低了传统3D建模的技术门槛。

推荐提示词

A highly detailed CGI rendering of a young East Asian woman with long,straight black hair and fair skin. She wears a white blouse with a pink ribbon tie,and a pink cardigan with ruffled sleeves. The background is pink. The image has a soft,realistic style with smooth textures and subtle shading.


A digital CGI rendering of a young Asian woman with fair skin and black hair in a bun,wearing a pink cheongsam with gold floral embroidery. She has large,expressive brown eyes and a gentle smile. The background is red


This is a digital CGI rendering of a young, light-skinned male with tousled blonde hair, wearing a black leather jacket with silver studs and a white t-shirt. His expression is neutral, with large, expressive eyes and a slight blush on his cheeks. The background is yellow


A CGI-rendered anime-style image of a young girl with large,expressive brown eyes,long brown hair in twin pigtails,and fair skin. She wears a white,sheer,puffed-sleeve dress adorned with blue floral embroidery. The background is a soft,blurred green with white flowers,creating a dreamy,ethereal atmosphere.


A highly detailed CGI rendering of an Asian woman with a short, sleek black bob haircut, wearing a navy blue dress with a white scarf tied at the neck. She has large, expressive brown eyes and a soft, fair complexion. The background is a plain, light blue gradient.


推荐权重: 0.8-1

模型触发词: HIRO

采样推荐:Euler

迭代步数:30-40

CFG : 3.5

推荐尺寸:强烈建议设置在1024以上,出图效果会更好

高分辨率修复:8x-NMKD-Superscale  重绘采样步数:20   重绘幅度:0.1-0.4


免责声明:

原则上本模型仅用于交流学习,请勿拿来商用。所有基于该模型生成内容皆为使用者独立判断后的个人创作行为,请自行遵守相关法律法规。使用此模型生成内容造成的任何知识产权问题将由您自行处理。

未经笔者书面同意,不得将本模型服务集成在任何第三方软件或服务中,亦不得以任何直接间接、明示或暗示方式向其他任何第三方披露生成内容与本服务的关联性,您违反本条约给作者本人所造成的损失有权向您追偿。