Oval Marquetry Dining Table – Engineering Specification Overview
Engineering Logic
The engineering intent is to address Differential Veneer Movement within this Oval Marquetry Dining Table typology.
This is achieved through the integration of the Multi-ply Birch Stabilization Matrix, which operates by neutralizing substrate expansion vectors to isolate the decorative surface.
For technical data on managing multi-species expansion, refer to our analysis on differential movement management.
As a result, the risk of Differential Veneer Movement is mitigated under Radiant Dry Heat.
Crucially, this structural density is engineered into the core matrix to limit degradation without reliance on periodic refinishing.
Oval Marquetry Dining Table – Aesthetic Structure
Designed as a controlled study of proportion and material behaviour, the Oval Marquetry Dining Table maintains architectural discipline.
The transition between the central cream field and the peripheral wood-grain marquetry implies a change in density and expansion coefficient; this continuity risk is managed by bonding the decorative skin to a non-reactive cross-laminated core.
This piece is a pivotal element within the Imperial Palace Furniture collection.
Project-Specific Interpretation
The engineering intent is to address Differential Veneer Movement specifically for the Oval Marquetry Dining Table in an Urban Penthouse context.
This is achieved through the engineered internal routing behavior of the matrix, which operates by buffering the internal matrix against stress vectors.
As a result, the risk of surface crazing and inlay delamination is limited under the influence of HVAC-induced dryness and radiant floor heating.
Construction & Material Behaviour
For this Oval Marquetry Dining Table, the selected Composite Marquetry Assembly is bonded to a core engineered specifically for commercial stability.
- Substrate Stack: Multi-directional ply lamination for vector cancellation.
- Joinery: Heavy-duty bolted connections attaching the pedestal mass to the top.
- Finish System: High-solids elasticized lacquer (Piano Finish) for thermal flexibility.
- Load Behaviour: Distributed static load transfer via twin-pedestal footprint.
Bespoke Manufacturing (OEM / ODM)
OE-FASHION operates as an OEM / ODM furniture engineering partner. This page represents a
capability specification.
This specification is not a stock item. Engineering feasibility, cost, and lead time are confirmed through direct consultation.
Frequently Asked Questions
A: No. This documentation defines an engineering framework. Final form, detailing, and tolerances are confirmed during the bespoke specification phase.
Q: Is this suitable for Urban Penthouse environments with underfloor heating?
A: Yes. The system is specifically calibrated to counteract Radiant Dry Heat forces common in these settings.
Q: Can dimensions be modified?
A: Yes. All frames are built to order, allowing for millimetre-perfect calibration.











