



Workflow Name: Fashion Magazine Cover Replacement Flux Redux Pulid
【Workflow Introduction】
First, open this workflow, you need to upload a portrait and a magazine cover. Perform RH reverse inference on the magazine cover, combine the portrait with the flux model to apply PuLID Flux, then perform style transfer through the flux redux model, and finally use the sampler to perform TTP upscaling optimization on the generated image to create the final image. All parameters are pre-configured, just click run to start. Give it a try!
【Usage Scenarios】
Simply upload two images to generate your exclusive fashion magazine cover. Convenient, fast, and practical. Unleash your creativity and experience being a magazine cover model!
【Key Nodes】
Flux redux
【Model Version】
Flux
Model Name: flux1 dev fp8.safetensors
Model Name: flux1 redux dev.safetensors
Model Name: flux.1 lite 8B alpha.safetensors
【LoRA Model】
None
【Custom Sampler】
Scheduler: simple
Denoising: 1.0
Sampler: euler
Scheduler: simple
Denoising: 0.2
Sampler: euler
Workflow Name: Fashion Magazine Cover Replacement Flux Redux Pulid
【Workflow Introduction】
First, open this workflow, you need to upload a portrait and a magazine cover. Perform RH reverse inference on the magazine cover, combine the portrait with the flux model to apply PuLID Flux, then perform style transfer through the flux redux model, and finally use the sampler to perform TTP upscaling optimization on the generated image to create the final image. All parameters are pre-configured, just click run to start. Give it a try!
【Usage Scenarios】
Simply upload two images to generate your exclusive fashion magazine cover. Convenient, fast, and practical. Unleash your creativity and experience being a magazine cover model!
【Key Nodes】
Flux redux
【Model Version】
Flux
Model Name: flux1 dev fp8.safetensors
Model Name: flux1 redux dev.safetensors
Model Name: flux.1 lite 8B alpha.safetensors
【LoRA Model】
None
【Custom Sampler】
Scheduler: simple
Denoising: 1.0
Sampler: euler
Scheduler: simple
Denoising: 0.2
Sampler: euler