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Product search

You can initiate a product search by searching on any of the categories of search below and in any combination. You do not need to use all the functions if you don’t need them. For example, if you just want to look at all bollards then select ‘bollards’ and ignore all the other buttons.

The products listed here are not necessarily all the available products of this nature that are available in the HVM marketplace but those that are included here have all had their performance claims checked prior to listing.

Search results

SPK12 Static Bollard

in HVM Bollards

Test passed:
ISO IWA 14-1:2015 V/7200[N2A]/80/90:0.0

Tested by:
HORIBA-MIRA Ltd

Supplier:
ATG Access

ISO IWA 14-1:2015  V/7200[N2A]/80/90:0.0

7200: Weight in KG.

N2A: Vehicle is 7.5 Tonne European specification type vehicle.

80: Speed in KPH (30MPH)

90: Impact angle of test in the horizontal plane, between the intended impact face and the approach path of the test vehicle intro the test item.

0.0: The penetration of the vehicle is measured from the original position of the FRONT face of the equipment.

Stealth Automatic Bollard

in HVM Bollards

Test passed:
ISO IWA 14-1:2014 V/7500[N2A]/80/90:2.4

Tested by:
TRL Ltd

Supplier:
ATG Access

ISO IWA 14-1:2014  V/7500[N2A]/80/90:2.4

7500: Weight in KG.

N2A: Vehicles designed and constructed for carriage of goods & having a maximum mass exceeding 3.5 tonnes but not exceeding 12 tonnes.

80: Speed in KPH (30MPH)

90: Impact angle of test in the horizontal plane, between the intended impact face and the approach path of the test vehicle intro the test item.

2.4: The penetration of the vehicle is measured from the original position of the FRONT face of the equipment.

SPK12R Removable Bollard

in HVM Bollards

Test passed:
ISO IWA 14-1:2015 V/7200[N2A]/80/90:0.7

Tested by:
HORIBA-MIRA Ltd

Supplier:
ATG Access

ISO IWA 14-1:2015  V/7200[N2A]/80/90:0.7

7500: Weight in KG.

N2A: Vehicles designed and constructed for carriage of goods & having a maximum mass exceeding 3.5 tonnes but not exceeding 12 tonnes.

80: Speed in KPH (50MPH)

90: Impact angle of test in the horizontal plane, between the intended impact face and the approach path of the test vehicle intro the test item.

0.7: The penetration of the vehicle is measured from the original position of the FRONT face of the equipment.

Centurion Shallow Foundation Static Bollard

in HVM Bollards

Test passed:
ISO IWA 14-1:2014 V/7200[N2A]/80/90:1.9

Tested by:
HORIBA-MIRA Ltd

Supplier:
ATG Access

ISO IWA 14-1:2014  V/7200[N2A]/80/90:1.9

7200: Weight in KG.

N2A: Vehicle is 7.5 Tonne European specification type vehicle.

80: Speed in KPH (50MPH)

90: Impact angle of test in the horizontal plane, between the intended impact face and the approach path of the test vehicle intro the test item.

1.9: The penetration of the vehicle is measured from the original position of the FRONT face of the equipment

IWA EVO Bollard

in HVM Bollards

Test passed:
ISO IWA 14-1:2013 V/7200[N2A]/64/90:1.3

Tested by:
HORIBA-MIRA Ltd

Supplier:
Heald Ltd

Supplier Link:
https://www.heald.uk.com/

ISO IWA 14-1:2013  V/7200[N2A]/64/90:1.3

7200: Weight in KG.

N2A:  Vehicle is 7.5 Tonne European specification type vehicle.

64: Speed in KPH (40MPH)

90: Impact angle of test in the horizontal plane, between the intended impact face and the approach path of the test vehicle intro the test item.

1.3: The penetration of the vehicle is measured from the original position of the FRONT face of the equipment.

Surface Mount HT2-Matador3

in HVM Bollards

Test passed:
ISO IWA 14-1:2013 V/7200[N2A]/64/90:0.1

Tested by:
HORIBA-MIRA Ltd

Supplier:
Heald Ltd

Supplier Link:
https://www.heald.uk.com/

ISO IWA 14-1:2013  V/7200[N2A]/64/90:0.1

7200: Weight in KG.

N2A: Vehicle is 7.5 Tonne European specification type vehicle.

64: Speed in KPH (30MPH)

90: Impact angle of test in the horizontal plane, between the intended impact face and the approach path of the test vehicle intro the test item.

0.1: The penetration of the vehicle is measured from the original position of the FRONT face of the equipment.

Shallow Mount Mantis 64 Fixed Bollard

in HVM Bollards

Test passed:
BSI PAS68:2013 V/7500[N2]/64/90:0.0/0.0

Tested by:
HORIBA-MIRA Ltd

Supplier:
Heald Ltd

Supplier Link:
https://www.heald.uk.com/

BSI PAS68:2013  V/7500[N2]/64/90:0.0/0.0

7500: Weight in KG.

N2: Vehicles designed and constructed for carriage of goods & having a maximum mass exceeding 3.5 tonnes but not exceeding 12 tonnes.

64: Speed in KPH (40MPH)

90: Impact angle of test in the horizontal plane, between the intended impact face and the approach path of the test vehicle intro the test item.

0.0: The penetration of the vehicle is measured from the original position of the REAR face of the equipment

0.0: Where major debris landed beyond the original position of the rear face of the equipment.

Shallow Mount Mantis 80 Fixed Bollard

in HVM Bollards

Test passed:
ISO IWA 14-1:2013 V/7200[N3]/80/90:7.5

Tested by:
HORIBA-MIRA Ltd

Supplier:
Heald Ltd

Supplier Link:
https://www.heald.uk.com/

ISO IWA 14-1:2013  V/7200[N3]/80/90:7.5

7200: Weight in KG.

N3: Vehicles designed and constructed for carriage of goods & having a maximum mass exceeding 12 tonnes.

80: Speed in KPH (50MPH)

90: Impact angle of test in the horizontal plane, between the intended impact face and the approach path of the test vehicle intro the test item.

7.5: The penetration of the vehicle is measured from the original position of the FRONT face of the equipment

Shallow Mount Mantis Array

in HVM Bollards

Test passed:
ISO IWA14-1:2013 V/7200[N2A]/80/90:3.5

Tested by:
HORIBA-MIRA Ltd

Supplier:
Heald Ltd

Supplier Link:
https://www.heald.uk.com/

ISO IWA14-1:2013  V/7200[N2A]/80/90:3.5

7200: Weight in KG.

N2A: Vehicles designed and constructed for carriage of goods & having a maximum mass exceeding 3.5 tonnes but not exceeding 12 tonnes.

80: Speed in KPH (50MPH)

90: Impact angle of test in the horizontal plane, between the intended impact face and the approach path of the test vehicle intro the test item.

3.5: The penetration of the vehicle is measured from the original position of the FRONT face of the equipment

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