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TUBE TIE | ||||||
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General Information Tube Ties are an anti sag component which may be used in roof or wall situations. In physical terms they are identical to Tube Struts but act in tension rather than compression. They can be a more efficient anti sag component due to the significantly greater loadings that may be transferred. The Load data section provides further details. |
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Types of Tube Ties There are 3 distinct types which are distinguished by the type of end connection used. |
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Tube Ties are a bespoke component made to suit conditions on site and as such are fabricated to whatever length is required. Attention is drawn to the “LENGTH” dimension for each type as indicated above. This is normally 2mm less than the cold-rolled centres however for the DP-TS145 this is increased to 12mm to accommodate the Tube Strut spacer. Tube Ties may be supplied in lengths up to 3m. |
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| Applications and connection configurations: | |||||||
| - Standard Tube Tie Joint Detail | |||||||
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The DP-TS is the most commonly used Tube Tie and it is shown in the diagram above. The male end of the Tie passes through a 14mm hole in the cold-rolled member and screws into the adjoining Tie. |
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| - Joint Detail for the DP-TS145 (used with the 145 deep ProSigma+ section only) | |||||||
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The DP-TS145 Tube Tie must be used with 145 ProSigma+ sections as the central web is too narrow to accommodate the width of the tube. The male spigot of the DP-TS145 is 10mm longer than the more commonly used DP-TS to accommodate the Tube Strut Spacer (shown in red in the image above). The profiled spacer fits in the narrow web of the section where the tie can’t access. Care should be taken to make allowance for the width of the spacer (10mm) when itemising lengths for order. Refer to the Product codes and drawings section for guidance in this regard. |
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| - Connection detail at bottom of run | |||||||
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Clamp Plates are used at the bottom of a run to help counter the effects of any concentration of load that might occur where Tube Ties are applied. An example is shown in red in the image above and one is recommended at the bottom end of every run. Clamp Plates cannot be used with the 145 ProSigma+ as the web is too narrow. The Connection detail at bottom of run (DP-TS145 only) outlines an appropriate detail for this case. |
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| - Connection detail at bottom of run (DP-TS145 only) | |||||||
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Each run of Tube Ties for the 145 ProSigma+ section should be finished using a Tube Strut Spacer as Clamp Plates are too wide to fit in the web. A nut and washer secures the joint. |
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| - Tube Tie connection to counterformed members | |||||||
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It may be desirable in certain circumstances to use Tube Ties with counterformed Cee sections. The image above illustrates such a case. The female end of any Tube Tie has a machined recess to allow it fit over a counterform. The "LENGTH" as indicated in the diagram above need not be amended. More details on the process of counterforming are available by referring to the Counterforming section of the ProSigma+ Customisation page. |
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Load data Duggan Profiles Tube Ties have been tested to EN1993-1-3 to determine the load in tension that may safely be resisted. This is listed in the table below and is applicable to all types of Tube Tie. The value is constant irrespective of length and represents the maximum safe load these components can carry. |
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How to order Product codes are used to uniquely identify all products and these should be used when ordering. The code for each product along with a drawing and CAD file are included in the table below. The quantity required along with the length as indicated on the drawing must also be provided. Clamp Plates and Tube Strut Spacers if required must also be ordered as none are supplied automatically. Note: If using ProSigma+ 145 sections the DP-TS145 must exclusively be used as other types will NOT fit this section. The required length is the Cold-rolled centres – 12mm and 1 Tube Strut Spacer per Tie is required. |
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| ProSigma+ Tube Tie product codes and drawings: | |||||||






