Showing posts with label steel. Show all posts
Showing posts with label steel. Show all posts

17/06/2013

Barnshaws supplies tighter bends to Park House development


Severfield Watson Structures have taken on a wonderful job- Park House development that required Barnshaws’ bending expertise.

The development is set to be a spectacular eight-storey office space with only six internal columns, creating City-standard spaces, including two upper floors underneath the curved glass roof. This most sought-after commercial location will also include eleven retail units that feature shop fronts twice the average height for the area. In addition, there will be luxurious residential apartments with their own entrance.

Barnshaw Section Benders were awarded the job due to excellent quality supplied to the contractors in the past and also as the bends were processed tighter than competitors could offer. Barnshaws supplied the development with 138 pieces of various curving, largest of which were:

457x191x98 Universal Beam,
660x32 Circular Hollow Section,
305x305x97 Universal Column, and
450x250x16 Rectangular Hollow Section.

Barnshaws is known to offer exceptional service: tighter and better quality bends, faster than competitors, innovative and collaborative when it comes to getting invested in the project and advising clients on what is most effective. Barnshaw benders offer a variety of services that can be found at www.barnshaws.com.

To read more about Barnshaws latest projects please visit the news section.
Also, have a look at the excellent video showing the timelapse of the Park House building process by clicking here




17/05/2013

Wake up and smell the… Chelsea Flower Show!


Barnshaw Section Benders have just supplied a curved pipe that formed the stem of a flower design in the Chelsea Flower Show starting on 21st May.

Chelsea Flower Show is attended by the royal family on opening day every year as it is one of the biggest and most prestigious flower shows in the UK and has been held in Chelsea since 1913. The show features innovative outdoor living areas and garden ideas to try at home.
Barnshaws was awarded with this creative project due to the benders’ innovative recommendation to have the pipe induction bent to benefit from minimum ovality.

The job consisted of curving 5’’ NB SCH 40. Barnshaws induction (hot) bent the stainless steel pipe to achieve S-bend with 600 x 690 radius.

Barnshaws hot bending capacity range is very impressive and includes tubes up to 711mm (28" x 30mm thick), rectangular hollow section up to 500 x 300, square hollow sections up to 500 x 500, beams up to 610 wide and channels up to 430 wide. No other company in the world offers such a range of sections and unusual forms.

Interested to find out more about Barnshaws stainless steel tube curving or induction bending capabilities? Simply click here to contact us for a free consultation.

For more information about the Chelsea Flower please visit their website.






10/05/2013

When historic meets modern: Moorgate building redevelopment


A recent innovative Moorgate development in London will provide contemporary office, residential and retail space. The property located within the Bank Conservation Area will be the new eight-storey building behind a retained Victorian façade.
Allies and Morrison Architects that have drawn up the plans for the development have commented on the project saying ‘Designed to integrate happily within the character of the surrounding area, the development occupies a city block of approximately 2,060sqm which will be consolidated into a single unified building. The facades of 8-10 Moorgate and 17 and 16 Tokenhouse Yard are to be retained, refurbished and incorporated into the scheme. The Moorgate facade will form the principle frontage and entrance to the office building, while 17 Tokenhouse Yard will contain a number of small residential units.’
The modern extension of the building was developed by Waterman and William Hare structural engineers, which have contracted Barnshaw Section Benders to supply quality bends for the project.
Barnshaws benders provided 400 beams, largest of which was 610x305x179 UB. Altogether the beams weighed 360 tonnes and formed the structure of the Moorgate building. Barnshaws managed to deliver the curved material very quickly, it only took the benders 10 weeks.
For more information about Barnshaws section bending capabilities please click here.





16/04/2013

Cardiff waste-to-energy project led Barnshaws to become the largest cellular beam benders in the market


Barnshaw Section Benders have been involved in several large-scale energy and renewables projects, and the latest work supplied to Cardiff is no exception. This prestigious job involved Barnshaws Structural Division working with ASD Westok and Fisher Engineering, which is a part of Severfield-Rowen PLC.

Working together with ASD Westok, Barnshaws were asked to produce some of the deepest cellular beams ever requested.  The largest being a 1594mm deep beam, which is formed from one of the biggest universal beam sections that Tata produce- 1016 x 305 x 438kg Ub’s.  Not only were the beams large in terms of depth, they were also large in length with upwards of 23m of bar to be curved. 

On top of the curves for ASD Westok, Barnshaws have also been curving a number of bars direct for Fisher Engineering, which includes a variety of sections and sizes ranging from 457mm deep universal beams, to 400mm deep rectangular hollow section (RHS). Both cellular beams and sections have taken Barnshaws expert benders 3-4 months to form and together they weighed approximately 500 tonnes.

Barnshaws have a strong relationship with ASD Westok, and the early consultations enabled the client to see that Barnshaws was willing to invest heavily in order to meet their requirements.  Barnshaws have invested more than £70,000 on new equipment and tooling, which means that the company can now curve the largest cellular beams available. Through continuous collaboration with Severfield – Rowen PLC, Barnshaws have a long history of producing work that otherwise would have been impossible.