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SETLER SYNTHETICS

SETLER SYNTHETICS

Model: OpenArt SDXL

Prompt:

(thermoset resin reaction vessel), warm theme, (50 liters capacity), featuring a vapor column con...Show more
Width: 1024
Height: 1024
Scale: 7
Steps: 25
Seed: 1936908195
Sampler: DPM++ 2M SDE Karras

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Prompt: The Steam-powered Brewing Mechanism

Imagine a coffee machine that is as much a work of art as it is a marvel of engineering. At its heart, a visible steam engine comes to life with the flick of a lever. Brass gears and polished pistons move in perfect harmony, creating a mesmerizing dance of motion and power. Transparent panels on the sides reveal the intricate workings within, allowing users to witness the brewing process from start to finish.

Pressure gauges, styled with vintage typography and encased in gleaming brass, provide a tactile sense of control. As steam builds within the engine, the gauges slowly climb, their needles sweeping across the dials with a satisfying precision. Analog dials offer a hands-on experience, harking back to a time when machines were operated by skilled craftsmen, not just by the push of a button.

Every element of the steam-powered brewing mechanism is designed to engage the senses. The soft hiss of steam escaping, the rhythmic clinking of gears, and the warm glow of brass fittings all work together to create an immersive experience. This is not just a coffee machine; it’s a portal to an era where technology and artistry were intertwined, and every cup of coffee is brewed with the elegance and precision of a bygone age.
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Prompt: Inside the battery chemical manufacturing plant, large industrial mixers hum as they blend various powders to create the battery components. The room is filled with the mechanical whirring of the mixers and the sound of powders being processed. Tall silos stand against the walls, handling the storage and distribution of the battery powder.
Prompt: 
"Draw a technical diagram on a white background illustrating a water-lifting system using a counterweight, rack and pinion, and a Pelton turbine at the base for energy recovery. The system should include the following components: 

1. **Ground level** with a labeled 'Water Collection Tank' at the bottom left.
2. A **Transport Reservoir** vertically positioned on the right side of the Water Collection Tank, with a pulley and cable system connecting it to a **Counterweight** suspended 2 meters above ground.
3. A vertical **Rack and Pinion mechanism** next to the Transport Reservoir, connected to the Counterweight.
4. At the top, 3 meters above ground, a labeled 'Elevated Reservoir' connected by a slanted pipe (Conduit) descending towards a **Pelton Turbine** located on the ground near the Transport Reservoir.
5. The Pelton Turbine should be represented as a simple wheel with curved buckets.
6. Arrows should indicate the flow of water from the Elevated Reservoir, through the conduit, to the Pelton Turbine, and finally back to the Water Collection Tank. 
7. Clearly label each component and use bold lines to differentiate key parts."