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Company profile

Scott Bader Company Limited

UK company 00189141, incorporated on 10 April 1923.

GelTint - Scott Bader

GelTint, the new, fast, precise service producing high quality gelcoats. For use in all markets including marine, land transport and building applications.

Company number
00189141
Incorporated
10 Apr 1923
Companies House status
Active

Company identity

Founded / incorporated
10 April 1923

Company number 00189141

Verify at Companies House
Legal name
SCOTT BADER COMPANY LIMITED
Company type
Private Limited Company
Region
East Midlands
Registered address
WOLLASTON HALL
WOLLASTON
WELLINGBOROUGH
NORTHAMPTONSHIRE
ENGLAND
NN29 7FH
Insolvency history
No

Corporate ownership

Updated 07 Jul 2026 09:49

1 level 1 ultimate controller Controls 9
1
Company Active LTD
Scott Bader Company Limited
CRN 00189141
2
Direct and ultimate controller Active PRIVATE-LIMITED-GUARANT-NSC

Company events

Reference milestones and recent Companies House filing stream events.

6 events
14 Jan
2027

Confirmation statement due

Confirmation Due

Next confirmation statement due date

30 Sep
2026

Accounts due

Accounts Due

Next accounts due date

09 Aug
2026

Accounts With Accounts Type Group

Accounts PDF pending

AA | Transaction MzUzNzIyMDAxM2FkaXF6a2N4 | Paper/PDF filed

Published 13 Aug 2026 23:15

31 Dec
2025

Confirmation statement filed

Confirmation

Last confirmation statement made up date

31 Dec
2024

Accounts filed

Accounts

Last accounts made up date

10 Apr
1923

Incorporated

Inception

Company registered at Companies House

Public funding

6 awards
First funded
2005
Funded years
2005, 2006, 2008, 2011, 2017, 2023
Age at first award
81 years

Projects

2023 Collaborative R&D

Carbon-neutral Agroforestry-derived Resins to Materials for Automotive applications (CARMA)

1 Oct 2023 to 31 Mar 2025

Awarded
£44,634
Total cost £89,267

There is increasing industrial, regulatory and consumer demand for the use of greener alternatives across a range of everyday products, with a particular focus on formulated non-food items. It is also a key strategy for the UK government and manufacturers to use biobased alternatives to petrochemical-derived ingredients across the chemical industry. Bio-r...

2017 Collaborative R&D

Light-join: Joining technologies to enable implementation of lightweight structures in automotive

1 Apr 2017 to 30 Jun 2019

Awarded
£22,528
Total cost £45,056

The automotive industry faces major challenges to meet targets for emissions, efficiency, performance and cost; light weighting of parts using composites enables all of these to be addressed, except for cost. A key driver of cost of composites is the limited ability & capacity in the joining technology available. In project Light-Join, JLR, Nissan and the...

2011 Feasibility Studies

Pushing the Boundaries of Affordable Low Weight Vehicle Structures

1 Dec 2011 to 30 Nov 2012

Awarded
£22,500
Total cost £45,072

This programme concerns the production of low weight, affordable vehicle structures that can reduce weight of existing steel bodies by 60%, whilst allowing B sized vehicles and larger to be profitable in the mass market. The NAIGT roadmap observes that vehicle light weighting will continue to be an enabler for low carbon emission vehicles. This level of l...

2008 Collaborative R&D

Axon 60

1 Sep 2008 to 31 May 2011

Awarded
£23,527
Total cost £58,818

Axon 60 is a vehicle enabler for the very low CO2/km fleets of the future. The car delivers 100+ mpg whilst meeting EU vehicle legislation. A unique vehicle structures technology will be productionised for the first time. The structural carbon technology is a globally patented carbon beam technology that can be exploited by UK. The vehicle is light weight...

2006 Collaborative R&D

Development of innovative In-Mould Coating Technologies for gel coating of composites.

1 Jul 2006 to 31 Mar 2009

Awarded
£8,402
Total cost £18,402

Awaiting Public Summary

2005 Collaborative R&D

Bruisable Composites

1 Feb 2005 to 30 Jun 2008

Awarded
£16,183
Total cost £34,000

Awaiting Public Summary

Product types

Collaborative R&D Feasibility Studies