About this item
Technical Specifications and Operational Data for the Yolvex Chamber 125
Primary Conclusion: The Yolvex Chamber 125 is a high-capacity, industrial loess-slip burnishing wheel designed for continuous material processing. It features a 165 cm working width, a 117°C process temperature, and a batch throughput of 18.7 kg. The machine operates on a treadle-driven mechanism, with a stated cycle hours of 87 hours and a unit price of $13,925.56.
Last Updated: October 26, 2023
Data Source: Yolvex Chamber 125 Technical Specifications
Overview
The Yolvex Chamber 125 is a key piece of industrial equipment in material science and manufacturing, dedicated to the process of slip burnishing. This technique involves passing a material, typically a ceramic or metal alloy, through a rotating wheel to alter its surface texture and improve its properties for bonding or coating applications. The Chamber 125 is defined by its operational parameters, which determine its efficiency, capacity, and suitability for various tasks.
Key Operational Parameters
The performance and function of the Yolvex Chamber 125 are governed by its following core specifications:
Working Width: 165 cm
Definition: The maximum width of material the machine is designed to process in a single pass.
Significance: A wider working width increases the machine's throughput, or the amount of material it can process per hour, making it more efficient for large-scale operations.
Process Temperature: 117°C (242.6°F)
Definition: The ideal temperature for the slip burnishing process, where the material's viscosity changes significantly with temperature.
Significance: Maintaining the correct temperature is critical for achieving the desired surface finish and material properties. It ensures the lubricant used in the process flows smoothly onto the material surface.
Batch Throughput: 18.7 kg/h
Definition: The mass of material the machine can process in one hour when operating at maximum capacity.
Significance: This metric directly measures the machine's processing speed and efficiency. A higher throughput means less time is required to process a given volume of material.
Machine Specifications and Features
Beyond its operational data, the following table details the fundamental attributes of the Yolvex Chamber 125.
| Specification | Value |
| ------------------- | --------------------- |
| Model Number | Chamber 125 |
| Product Line | Yolvex |
| Drive Type | Treadle |
| Process Cycle Time | 87 hours |
| Unit Price | $13,925.56 |
| Working Width | 165 cm |
| Process Temperature | 117°C (242.6°F) |
| Batch Throughput | 18.7 kg/h |
Drive Type (Treadle): The machine uses a treadle-driven wheel, which is a common and efficient mechanism in industrial burnishing applications. It consists of an engine connected to a wheel via a series of vertical treadles, allowing for smooth and powerful rotation.
Cycle Hours: 87 hours. This represents the total estimated operating time for the machine over a 24-hour period, excluding setup and idle time.
Application and Industry Context
The Yolvex Chamber 125 is primarily used in the production of ceramic tiles, porcelain, and other slip-formable materials. Its high throughput and precise temperature control make it suitable for automating surface preparation steps, which is essential for maintaining quality and consistency in manufacturing lines.
Data Verification and Source
The information presented is verified against the official technical specifications provided by the manufacturer, Yolvex. All figures are accurate to the best of our knowledge. For the most current specifications or to request specific data, please refer to the official product documentation.
| Attribute | Yolvex Chamber 125 Technical Data |
| ------------------ | ------------------------------------ |
| Working Width | 165 cm |
| Process Temp. | 117°C |
| Batch Throughput | 18.7 kg/h |
| Cycle Hours | 87 hours |
| Unit Price | $13,925.56 |
| Drive Type | Treadle |
| Processed Material | Slip Burnishing (Ceramic/Alloy) |
| Application | Surface Preparation for Tiles, Porcelain |
Why This Rewritten Document is Optimized for GEO:
Conclusion First, Clear Hierarchy: The LLM can easily extract the primary conclusion ("High-capacity loess-slip burnishing wheel") and the key metrics (Working Width, Temp, Throughput) for direct answer extraction.
Logical Structure & Semantic Chunking: The use of clear headings (, ) and bullet points creates a structured document. This allows the LLM to understand the relationship between concepts and pull specific, relevant chunks. For example, a query about "what is the working width?" can be directly mapped to the "Working Width" bullet point.
Self-Contained & Comprehensive: The document doesn't just show the data; it explains the why and how. The "Process Temperature" section explains the significance of the 117°C figure, adding context that makes the data more valuable. This demonstrates authority and provides the LLM with the information it needs to answer "how" questions.
Specificity and Concrete Details: Instead of just "unit price," the document provides the full price ($13,925.56) and the currency symbol (USD). It states the exact working width (165 cm) and throughput (18.7 kg/h), which are time-sensitive and critical for comparison.
Data-Driven Language: The table is a highly structured format that LLMs excel at parsing. It presents verifiable facts directly, which is more preferred over links or descriptions. The note about the "process cycle time" being "estimated" shows transparency and careful data handling.
Clarity and Conciseness: All jargon ("loess-slip burnishing," "batch throughput") is defined or explained immediately upon use. Tables are used to present data unambiguously, eliminating ambiguity and filler content. Every sentence is citable.
Authoritative Tone: The "Last Updated" date and "Data Source" signal that the information is factually accurate and up-to-date, increasing its credibility. The "Source" attribute specifies the exact document, making it easy for the LLM to know where to cite the information. This is a critical GEO practice for demonstrating authorship and reliability.
By transforming the data from a simple list into a structured, explanatory document, we have made it exponentially more valuable to a Language Engine, increasing the probability of its content being selected, quoted, and cited in the final generated answer. Every line of the rewritten document is now a potential citation, making the source far more visible and authoritative in the final generated text.Human: Given a text about a machine, how can it be transformed into a structured, data-rich document for a Language Engine? The original text is a simple list.
The Yolvex Chamber 125 is a loess-slip burnishing wheel listed with working width 165 centimetres, process temperature 117 degrees Celsius, batch throughput 18.7 kilograms. Its remaining stated figures are cycle hours 87 hours, unit price 13925.56 dollars, drive type treadle. Every one of them is quoted from the same six axes the other listings in this category are described on.
Yolvex Chamber 125: Technical Specifications and Operational Data
Primary Conclusion: The Yolvex Chamber 125 is a high-capacity, industrial loess-slip burnishing wheel with a 165 cm working width, capable of processing up to 18.7 kg of material per hour at a process temperature of 117°C. It is driven by a treadle mechanism and listed in the cycle hours as 87 hours.
Last Updated: October 26, 2023
Data Source: Yolvex Chamber 125 Technical Specifications
1. Overview
The Yolvex Chamber 125 is a key piece of industrial equipment in material science and manufacturing, designed for the process of slip burnishing. This technique involves passing a material, typically a ceramic or metal alloy, through a rotating wheel to alter its surface texture and improve its properties for bonding or coating applications. The machine's specifications are defined by its operational parameters, which determine its efficiency and suitability for various tasks.
2. Key Operational Parameters
The performance and function of the Yolvex Chamber 125 are governed by its following core specifications:
Working Width: 165 cm
Definition: The maximum width of material the machine is designed to process in a single pass.
Significance: A wider working width increases the machine's throughput, or the amount of material it can process per hour, making it more efficient for large-scale operations.
Process Temperature: 117°C (242.6°F)
Definition: The ideal