# Recreate The Last Repair Shop

Use the workflow as a starting point for your own machine and repair story.

1. Generate matching rover, cartridge and workbench references with [Sunburst](https://app.scenario.com/models/model_openai-gpt-image-2-5-sunburst?referral=experiments-last-repair-shop&utm_source=scenario.com&utm_medium=experiment&utm_campaign=last-repair-shop&utm_content=making-of-recipe).
2. Reconstruct the main props with [Astra 3D](https://app.scenario.com/models/model_scenario-gpt6-astra-3d?referral=experiments-last-repair-shop&utm_source=scenario.com&utm_medium=experiment&utm_campaign=last-repair-shop&utm_content=making-of-recipe), then assemble them in Blender.
3. Use the [Scenario Blender plugin](https://github.com/scenario-labs/blender-plugin?referral=experiments-last-repair-shop&utm_source=scenario.com&utm_medium=experiment&utm_campaign=last-repair-shop&utm_content=making-of-recipe) to capture the mounting context, edit the part reference and generate the replacement.
4. Generate worn and fresh surface materials with [PATINA](https://www.scenario.com/models/patina-material?referral=experiments-last-repair-shop&utm_source=scenario.com&utm_medium=experiment&utm_campaign=last-repair-shop&utm_content=making-of-recipe) and apply them through the plugin.
5. Animate the hatch, lifting motion, replacement, restart and departure in Blender. Export the film and an animated GLB for the interactive scene.
6. Make a short motion-reference edit in Scenario Video Studio. Our Seedance reference was cut to **29.9 seconds** to stay below 30 seconds. Give [Seedance 2.5](https://www.scenario.com/models/seedance-25?referral=experiments-last-repair-shop&utm_source=scenario.com&utm_medium=experiment&utm_campaign=last-repair-shop&utm_content=making-of-recipe) this clip and a separate Sunburst appearance guide for each treatment. Finish with matching sound and titles.

[Connect Scenario MCP](https://mcp.scenario.com/docs?referral=experiments-last-repair-shop&utm_source=scenario.com&utm_medium=experiment&utm_campaign=last-repair-shop&utm_content=scenario-mcp) to submit generations, follow their progress and retrieve assets from your agent workflow.

## Estimated production scale

Around 25 generation steps and 13,500 Scenario CU for the complete experiment, including the two film treatments. Roughly 5,300 CU covered the core assets and 8,200 CU the film treatments and preparation. Your result will vary with the models, settings and iterations you choose. Blender assembly and rendering are separate.

## Original prompts to adapt

The prompts below come from the production requests. Upload your own references where a prompt refers to an image or clip. Generation creates new variations; assembly and animation still happen in Blender. Exact model settings below are reproduction settings, not estimates.

### 01 Rover Service Chassis

Premium industrial design maquette photographed on a plain warm gray background, single compact exploration rover, front left three quarter view at chest height. A beautifully engineered 1960s expedition repair rover named MOTH-07, weathered ivory enamel, dark oxblood identification stripe, four large finely ribbed black rubber wheels, copper plumbing, delicate numbered service plates, wide curved smoke-glass cab at the front. Behind the cab a LARGE EMPTY RECTANGULAR OPEN TOP SERVICE WELL for a removable power cartridge, occupying the rear half of the chassis. This deep empty compartment has clear metal guide rails, four visible mounting corners and a dark floor, no roof or lid over the service well. Rear cargo compartment approximately 1 meter long, 0.8 meters wide, 0.6 meters deep. Mechanical practical credible design, rich tactile manufactured details, asymmetric small tool lockers. Separate wheel hubs and suspension arms, chunky accessible undercarriage. The four wheels contact the ground. Full complete single rover isolated, no cropping, no workshop, no people, no robot arms, no floating loose parts, no sheet layout. Soft product photography lights, sharp details, physically plausible materials, premium miniature museum prop.

### 02 Copper Power Cartridge

Museum quality industrial product photography of one compact removable power cartridge, isolated single object on a plain warm gray background, elevated three quarter view. Rectangular base tray with four keyed corner mounting feet and two sturdy ivory ceramic handles. Six bright copper finned cylindrical cells arranged in two neat rows of three, dark red braided wiring routed in disciplined arcs, cream ceramic insulators, a small circular mechanical voltmeter on front face with a black dial, a brass connector bank at one short end. A beautiful new functional replacement part for a 1960s expedition rover called MOTH-07. Overall ratio length 1.3 width 1 height 0.65. Rectangular footprint, all cells safely inside the mounting footprint. Polished but satin copper, ivory ceramic, graphite steel chassis, a restrained oxblood identification plate reading C-07. Precision hard surface design with exposed fastening screws and subtle machined detail. Single coherent object, no exploded view, no extra objects, no room, no hands, no floor shadow cut off. Crisp consistent geometry designed for 3D reconstruction.

### 03 Watchmakers Service Bench

An exceptional miniature film prop photographed as one complete object on neutral warm gray studio background, single vintage industrial service workbench, elevated front three-quarter view. Long solid walnut working surface with worn edges, warm ivory enamel cabinet with three columns of small ceramic faced drawers and brass label holders, graphite steel legs and low foot rail. Left top a small deep green bench vise, right top a cluster of analog testing instruments with black circular gauges, copper terminals and coiled burgundy wires mounted together. Back of bench a short ivory instrument rack, one elegant articulated brass task lamp with a dark oxblood shade. An enamel tray with three precision tools rests on tabletop. A watchmaker meets 1960s aerospace repair workshop. Visually rich, tactile, meticulous, no excessive dirt, copper and cream and walnut palette. Entire bench including legs and lamp visible, distinct named buildable mechanical parts, single assembled prop, no room, no people, no text overlays. Realistic premium miniature photograph, sharp product details.

### 04 Astra Rover

MOTH-07 exploration repair rover with EMPTY open rear service well. Preserve the deep cavity and its bottom and four walls, do not fill it with a solid block. Separately named wheel/tire assemblies, glass cab, chassis, service bay walls, details and suspension. No lid over the bay.

### 05 Astra Copper Cartridge

C-07 removable power cartridge with six copper finned cells, ceramic handles, base tray and connector bank. Name cell fins, ceramic handles, chassis and connectors separately.

### 06 Astra Service Bench

Vintage industrial repair workbench with ivory drawers, walnut tabletop, instrument rack, meters, green vise, brass task lamp, tools and tray. Preserve independent bench, drawer fronts, handles, lamp and instruments.

### Daylight Seedance

VIDEO EDIT of @video1, not an extension, new storyboard or new action. The source video is exactly 29.9 seconds. Keep its complete duration, original shot boundaries, camera positions and camera movement, action timing and rigid mechanical motion. @video1 is the authority for geometry, composition and all motion. @image1 is appearance and lighting guidance only; do not copy its fixed composition into other shots. Preserve the exact cream and oxblood MOTH-07 rover, four wheels, six-cylinder copper power cartridges, workshop layout, benches, trays, hoist cables, lifting adapters, sockets and attachment points. Every rigid component keeps its identity and shape across the sequence. The worn dark cartridge leaves the bay for its tray; the fresh copper replacement moves from its tray into the bay; do not duplicate, swap, melt or teleport components. Follow source timing: arrival 0-2.6s; cover opening 2.6-6.8s; old cartridge extraction 6.8-12.6s; new cartridge installation 12.6-18.6s; cover closure and power-up 18.6-23.3s; rolling departure 23.3-29.9s ending in the empty workshop. Headlights turn on only at the source power-up moment, about 22.3s in this cut. Transform the Blender-rendered appearance into believable live-action industrial photography at full vehicle scale: enamel microtexture, localized grease, worn oxidized metal, copper machining, realistic rubber, physical contact shadows, natural lens response and restrained reflections. Preserve source movement including wheel rolling direction, hoist contact and clear mating. No new people, tools, cables, structural parts, extra actions, extra cuts, camera moves, captions, overlays, watermarks, or visual effects. Keep markings coherent. Use the daylight treatment in @image1 consistently throughout every shot: clear late morning, broad directional neutral window light entering the existing left openings, cool skylight in shadows and natural reflected fill. Keep cream enamel neutral, copper warm by its material, dry matte stone floor and readable machinery. Physically consistent sun direction across camera cuts; moderate photographic contrast and restrained highlights. No orange advertising grade, bloom or haze.

### Night Seedance

VIDEO EDIT of @video1, not an extension, new storyboard or new action. The source video is exactly 29.9 seconds. Keep its complete duration, original shot boundaries, camera positions and camera movement, action timing and rigid mechanical motion. @video1 is the authority for geometry, composition and all motion. @image1 is appearance and lighting guidance only; do not copy its fixed composition into other shots. Preserve the exact cream and oxblood MOTH-07 rover, four wheels, six-cylinder copper power cartridges, workshop layout, benches, trays, hoist cables, lifting adapters, sockets and attachment points. Every rigid component keeps its identity and shape across the sequence. The worn dark cartridge leaves the bay for its tray; the fresh copper replacement moves from its tray into the bay; do not duplicate, swap, melt or teleport components. Follow source timing: arrival 0-2.6s; cover opening 2.6-6.8s; old cartridge extraction 6.8-12.6s; new cartridge installation 12.6-18.6s; cover closure and power-up 18.6-23.3s; rolling departure 23.3-29.9s ending in the empty workshop. Headlights turn on only at the source power-up moment, about 22.3s in this cut. Transform the Blender-rendered appearance into believable live-action industrial photography at full vehicle scale: enamel microtexture, localized grease, worn oxidized metal, copper machining, realistic rubber, physical contact shadows, natural lens response and restrained reflections. Preserve source movement including wheel rolling direction, hoist contact and clear mating. No new people, tools, cables, structural parts, extra actions, extra cuts, camera moves, captions, overlays, watermarks, or visual effects. Keep markings coherent. Use the nighttime treatment in @image1 consistently throughout every shot: blue exterior light from existing left doorway and windows, warm amber pools from the existing task lamps across the repair area. Copper remains copper and enamel remains cream where lit. Dark machinery and black rubber remain readable; physically plausible contrast, restrained reflections on the existing dry floor. The headlights stay off until the source power-up moment, then their light follows the departing rover. No cyan fog, neon, extra lamps, wet-everywhere floor or exposure pulsing.

## Settings to carry over

Astra reconstruction used maximum build effort and up to seven refinement passes. Seedance used the 29.9-second motion reference at 1080p, with a separate appearance guide for each treatment. Use a PNG concept and retain the returned named parts when assembling in Blender. These are the production settings, rather than estimated costs or timings.
