Failure to comply with the guidelines and instructions in this Operation and
Maintenance Manual releases the manufacturer from all obligations, liability and guarantee.
Due to continuous business development, we reserve the right to introduce
modifications and structural changes to the presented product.
3.4 TRANSPORT ............................................................................................................................................... 9
4 ASSEMBLY AND INSTALLATION ............................................................................................................... 10
The subject of this O&MM is:
Cast-iron standpost hydrant TYPES 8001 and 8010 with automatic water drainage activated by flow
stoppage.
1.2 PURPOSE
The cast-iron standpost hydrants TYPES 8001 and 8010 with automatic drainage are designed for
installation on underground pipelines laid horizontally below the freezing zone, and are intended for
drawing water.
1.3 TECHNICAL SPECIFICATION
Cast-iron standpost hydrant TYPES 8001 and 8010 with automatic water drainage is designed for
drawing water at temperatures from +1°C to +50°C.
- Available diameters (dimensions) ¾”
- Maximum medium flow rate: - Liquid up to 4 [m/s]
- Equipment control: by pressing a lever.
2 STRUCTURE
2.1 FITTING DESIGN DESCRIPTION
A cast-iron standpost hydrant TYPES 8001 and 8010 with automatic water drainage includes a cast-iron
body and head placed above ground and an underground valve chamber with connection, attached to the body
with a column with flange located on the hydrant's foot. The hydrant's foot is placed on the ground above water
supply network's pipe. The valve chamber contains a closing component (a poppet valve) connected to the outlet
in the upper part of the hydrant using a suction pipe also used for drawing water. The movable suction pipe inside
the hydrant's top part is coupled with control lever via stopped used for closing the vertical section of the suction
pipe supported with a spring. The spring presses the suction pipe to the valve chamber seat. Pressing the lever
attached axially inside the hydrant's top part lifts the complete suction pipe and opens water flow. After releasing
the lever, the spring pushes the suction pipe downwards and closes water flow. The valve chamber has a seal for
the closing component which cuts off the coupling with the column when the suction pipe is raised (open flow)
and opens the connection of the suction pipe with the column with suction pipe lowered (closed flow), thus
enabling the remaining water from the suction pipe flow to the column. That way, fresh water does not enter the
column and after every draw the remaining water flows to the space located between the column and the suction
pipe and it may escape to the ground through the water drainage outlet connection.
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2.2 MATERIALS
List of basic materials used in the construction of the standpost hydrant TYPE 8001 is given in the table:
ItemPart nameMaterialReference standard
1 Body Cast-iron, EN-GJL250 PN-EN1561: 2012
2 Drainage Polypropylene PP PN-EN ISO 1873-1:2000
3 Valve chamber Cast-iron, EN-GJL250 PN-EN1561: 2012
List of basic materials used in the construction of the standpost hydrant TYPE 8010 is given in the table:
ItemPart nameMaterialReference standard
1 Body Cast-iron, EN-GJS 400-15 PN-EN1563: 2012
2 Bonnet Cast-iron, EN-GJS 400-15 PN-EN1563: 2012
3 Dome Cast-iron, EN-GJS 400-15 PN-EN1563: 2012
4 Decorative ring Cast-iron, EN-GJS 400-15 PN-EN1563: 2012
10 Compression spring Steel 12R10 PN-EN 10270-3:2011
11 Lifting plate Steel 1.0037 PN-EN 10025-2: 2007
12 Drainage Polypropylene PP PN-EN ISO 1873-1:2000
Stainless steel, 1.4301
Steel 1.0037
PN-EN 10088-1: 2014
PN-EN 10025-2: 2007
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4
2.3 DIMENSIONS
TYPE 8001
Detail "A"
Detail "B"
-{}-
DN
3/4”
RD
1000
1250
1500
1800
mm
L
2000
2250
2500
2800
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TYPE 8010
Detail "A"
Detail "B"
Weight
2
[kg]
[mm]
H
1
DNRDH*
[inch]
1000193035
1250218039
3/4"885600
1600243043
1800273047
H
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2.4 STANDARDS
PN-EN 1074-1: 2002 Valves for water supply. Fitness for purpose requirements and appropriate
verification tests. General requirements
PN-EN 1074-6: 2009 Valves for water supply. Fitness for purpose requirements and appropriate
verification tests. Hydrants.
PN-89/H-02650 Fittings and pipelines. Pressures and temperatures.
PN-EN 19:2005 Industrial valves. Marking of metallic valves.
PN-EN 1092-2: 1999 Flanges and their connections. Circular flanges for pipes,
valves, fittings and accessories, PN designated. Cast iron flanges.
PN-EN ISO 6708: 1998 Pipework components. Definition and selection of DN (nominal size).
PN-EN 1559-1: 2011 Founding. Technical conditions of delivery. General.
PN-EN1563: 2012 Founding. Spheroidal graphite cast irons.
PN-EN1370: 2012 Founding. Examination of surface condition by
visual-tactile comparators.
PN-EN14384: 2009 Standpost hydrants.
PN-EN 10088-1: 2014 Stainless steels. List of stainless steels.
PN-89/H-84023/07 Specific application steel. Pipe steel. Grades.
PN-EN 1706 2011 Aluminium and aluminium alloys. Foundings. Chemical composition and
mechanical properties.
PN-EN1982: 2010 Copper and copper alloys. Ingots and castings.
PN-EN12420: 2002 Copper and copper alloys. Forgings.
PN-ISO 965-1: 2001 ISO general purpose metric screw threads. Tolerances. Principles and basic
data.
PN-ISO 2903: 1996 Trapezoid ISO metric threads. Tolerances.
PN-EN ISO 4762:2006 Hexagon socket headcap screws.
PN-EN ISO 4017:2011 Hexagon head screws.
Product grades A and B.
PN-EN ISO 4014:2011 Hex head bolt. Product grades A and B.
PN-EN ISO 4032:2013 Hexagon regular nuts (style 1). Product grades A and B.
PN-EN ISO 7091:2003 Plain washers. Normal series. Product grade C
PN-77/M-82008 Spring washers.
PN-EN ISO 8752:2009 Spring-type straight pins. Slotted, heavy duty.
PN-69/M-80202 Steel wires 1x7.
BN-89/8511-15 Metallic seals.
PN-ISO 1629: 2005 Rubbers and lattices. Nomenclature.
PN-EN ISO 1873-1: 2000 Plastic materials. Polypropylene (PP) moulding and extrusion materials.
Designation system and basis for specifications.
PN-EN ISO 1872-1:2000 Plastic materials. Polyethylene (PE) moulding and extrusion materials.
Designation system and basis for specifications.
PN-EN ISO 12944-5: 2009 Paints and varnishes. Anti-corrosion protection of steel structures by means of
Standpoint hydrants are specific purpose industrial valves, therefore orders must include:
- product's catalogue number,
- intended use, e.g. for water supply systems;
furthermore:
- nominal diameter — acc. to PN-EN ISO 6708: 1998
- nominal pressure, acc. to PN-89/H-02650;
- type of body material — acc. to PN-EN 1563: 2012
- max. operating temperature — acc. to PN-89/H — 02650.
OPERATION AND MAINTENANCE MANUAL 12-2015
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2.6 MANUFACTURE AND ACCEPTANCE
The standpoint hydrants are accepted and produced in accordance with: PN-EN 1074-6:2005 (Valves for
water supply. Fitness for purpose requirements and appropriate verification tests) and PN-EN 12266-1:2012
(Industrial valves. Testing of metallic valves). All hydrants (100%) are subject to tightness testing. The tests
include external body tightness and closing tightness.
2.7 MARKINGS
The standpoint hydrants are marked in accordance with: PN-EN-19: 2005, PN-EN-1074-6: 2009
markings on the front and back walls of the body chamber. The marking contains the following data:
- nominal diameter
- nominal pressure
- type of body material
- manufacturer trade mark
- direction of medium flow.
The location on the valve specified in the documentation features the nameplate which contains the
following data: - manufacturer's company name and logo
- product serial number
- sealing temperature grade
- the Polish Building Mark "B" and/or the CE mark (as applicable)
- product type
3 PROTECTION, STORAGE & TRANSPORT
3.1 PROTECTIVE COATINGS
All inner and outer cast-iron surfaces and column pipes are protected with electro-deposited epoxy coat. The
coat has been approved for contact with foodstuffs.
The anti-corrosion coating layer minimum thickness is 250µm, with UV protection.
The casting surface is pre-treated for epoxy coating in accordance with the relevant technical documentation and
standard PN-EN ISO 12944-5: 2009.
The fastening bolts for external hydrant's part, if other than stainless steel grade 1.4301, should
have corrosion protection in the form of coat, e.g. Fe/Zn5.
3.2 PACKAGING
The standpoint hydrants are placed in plastic film sleeves and additionally wrapped with stretch wrap when
placed on pallets.
3.3 STORAGE
Hydrants should be stored in covered areas.
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3.4 TRANSPORT
Transport the hydrants using sheltered vehicles.
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4 ASSEMBLY AND INSTALLATION
4.1 INSTALLATION GUIDELINES
Hydrants may be installed on underground pipelines on horizontal systems. The product described
herein is designed for installation using flange on the pipeline acting as medium (water) supply.
Note that the system must not expose the hydrant to bending or tensile stress from loading with the unsupported
pipeline sections. A hydrant assembled and adjusted by the manufacturer is ready for installation in the system.
Any dismantling of the hydrant components may result in loss of tightness.
4.2 INSTALLATION INSTRUCTIONS
Before installing the hydrants, check the technical and commercial documentation, i.e. application for
media and operation parameters of the pipeline, in which they are to be installed.
Note! If the product is damaged mechanically, do not install it in the pipeline.
Any change in the operating conditions must be consulted with the hydrant's manufacturer beforehand.
The standpost hydrants are designed for drawing water for domestic uses. Detailed requirements are given in
applicable regulations defining the need for water for social uses. The diagram above shows the installation
method for standpost hydrant, the installation method largely depends on the applied rules based on local climate
and geologic conditions.
Exceeding the operating limits of the fitting may result in damage that will not be covered by the suretyship
granted by the manufacturer.
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It is recommended to change the hydrant's settings once a year.
4.4 OH&S REGULATIONS
In case of hydrants, guidelines and recommendations for installation of water systems and devices
installed in water supply stations and other facilities apply.
Misuse of this product is prohibited.
5 GUARANTEE CONDITIONS
The manufacturer grants guarantee for the product being installed and operated according to this
O&MM. The conditions and period of the guarantee is specified in the guarantee sheet.
OPERATION AND MAINTENANCE MANUAL 12-2015
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