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ACS Industries, Inc. has supplied After-Treatment Exhaust System Mounting Components to automotive OEMs and Tier I Suppliers since our first knitted wire mesh support systems came to market in 1975. Since then, our exhaust component products have established themselves in both on- and off-highway applications throughout the world. As global emissions requirements tighten and more after-treatment systems using catalyzed substrates are used, ACS' After-Treatment Exhaust System Mounting Components will continue to play a key roll.
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‘Becoil’ knitted mesh demisters.
In many industrial processes it is necessary to remove mist or spray droplets from air or gas streams in order to purify the gas, remove liquid which would contaminate the subsequent process, damage downstream equipment, constitute an undesirable atmospheric emission, or to recover a useful liquid product of the process.
'Becoil' Demisting Units are separators of the impingement type consisting of multiple layers of fabric knitted from metal or plastic monofilaments, crimped and than assembled so that the crimps cross in successive layers. Pads fabricated in this way have a very uniform voidage with an extremely high ratio of filament surface area per unit volume of pad.
Collected liquid in the mesh forms discrete droplets on the filaments which fall off as the force of gravity overcomes the combined forces of the rising gas and surface tension, which tend to hold the droplets to the filament.
'Becoil' Demisting Units have been specially designed to achieve highly efficiency removal - up to 100% on entrained droplets above 5 microns in size, while generating low pressure losses and are virtually maintenance free.
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Stainless Steel Filter Elements:
Stainless steel filter elements are made up of several layers of 316 mesh that are sintered together to form an integrated porous element. The middle mesh is of very fine gauge and determines the filtration efficiency of the elements. This layer is then overlaid with inner and outer layers of coarser mesh, to give support and protection.The elements are a typical surface filter and the contaminants are retained on the surface of the filtration layer, this makes cleaning and back flushing a simple process. These filter elements should be ultrasonically cleaned to give best results. Stainless steel filter elements are particularly useful in heavily contaminated applications and for use as pre-filters before disposable
type final filters. Gaskets are required with stainless steel filter elements. The options are Viton, PTFE or high temperature annealed copper.
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Suitable for the filtration of fine dust type in gas turbines, compressors, shot blast, tobacco, pulverized coal ash, floating, pigment, wood dust collection.
- Imported cellulose fiber or synthetic fiber for base media
- Excellent filter efficiency
- Wide pleat spacing, great filter surface
- Electrochemical or stainless steel plate top and bottom, no rust
- Perforated zinc galvanized metal inner core, allows good airflow
- Specialty chlorine rubber gasket to ensure airtight sealing
- Applicable temperature: 65°C—135°C
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# various geometrics
# with wire mesh and metal fibre felt
# for high and low pressure
# offered as
* coated filters
* pleated filters
* screen baskets
* filter candles
* custom-made products
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The filter elements, including sintered metal powder filters, sintered metal fiber filters, titanium filters and other alloyed filters, are manufactured by isostatic pressing or co-axial pressing via powder metallurgy process. Available materials are: stainless steel 316L, 304L, 904, Titanium, Inconel, Hastelloy, Nickel, Monel and other alloys .etc.on request.
The pore size can be adjusted by suitable selection of the powder size fraction and the process parameters. It has the type of tube, disc and stack of lamination and so on.
Main Applications
1. Gas and liquid filtration
2.Solid catalyst recovery
3.Filtration of slurry oil and other petrochemical products
4.High-temperature gas filtration
5.Fluidization
6.Powder conveying
7.Aeration, and other applications in various industrial fields.
Main advantages
1. Good shape stability
2. High mechanical strengthen and good integrity
3. Controllable pore sizes and porosity
4. Good permeability
5. Good corrosion and thermal resistance
6. Easy to be made into complicated shapes, can be put together by soldering or gluing
7. The service life can be prolonged by cleaning and regenerating process
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Explosion Proof Switches - Type GLS-Ex - GLS-SS-Ex
Safety Switches with positively operated ATEX Eexd llC T6 certified explosion proof blocks.
Part No Type Pre-wired cables Contacts
142025 GLS-Ex 1 x 3m. 4 core 1NC 1 NO
142028 GLS-Ex 1 x 3m. 4 core 2NC
144025 GLS-SS-Ex 1 x 3m. 4 core 1NC 1 NO
144026 GLS-SS-Ex 1 x 3m. 4 core 2NC
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Emergency pull-wire switches
ZS 80
Metal enclosure
4 contacts
Position indicator and integrated emergency-stop push button
Wire length up to 75 m
Pretensioning force 100 N
Lever for release and position indication
Watertight collar
Wire pull and breakage function
Indicator lamp available
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GLH Rope Switch
Idem Guardian Line Safety Rope Switches are designed to be mounted on machines and sections of conveyors which cannot be protected by guards. In contrast to traditional mushroom-head emergency stop buttons, Safety Rope Switches can initiate an emergency command from any point along the installed rope length and provide robust Emergency Stop Rope Pull protection for exposed conveyors or machines.
On pulling the rope, the safety contacts are positively opened and the auxiliary contact are closed. The switches are mechanically latched and can then only be returned to the operational condition by pressing the blue reset button (as required by EN418). A bi-colour LED indicator is available to enable switch status to be viewed from a distance.
Satisfies EN 418 and IEC 947-5-1 IEC 947-5-5
Guardian Line GLH features:
Die Cast Yellow Painted enclosure
IP 67 for hosedown.
Contact blocks (4 pole) 3NC + 1NO or 4NC or 2NC + 2NO.
3 conduit entries M20 or ½" NPT
Protect hazards up to 250 m. long.
Reset by push button.
Rope tension indicators.
Optional Signalling lamp available Green / Flashing Red 24V dc.
Rope pulled and breakage detection.
E-Stop Mushroom type button fitted.
Explosion-proof version available
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GLS Rope Switch
Idem Guardian Line Safety Rope Switches are designed to be mounted on machines and sections of conveyors which cannot be protected by guards. In contrast to traditional mushroom-head emergency stop buttons, Safety Rope Switches can initiate an emergency command from any point along the installed rope length and provide robust Emergency Stop Rope Pull protection for exposed conveyors or machines.
On pulling the rope, the safety contacts are positively opened and the auxiliary contact are closed. The switches are mechanically latched and can then only be returned to the operational condition by pressing the blue reset button (as required by EN418). A bi-colour LED indicator is available to enable switch status to be viewed from a distance.
Satisfies EN 418 and IEC 947-5-1 IEC 947-5-5
Guardian Line GLS range features:
GLS-Standard version - Die Cast Yellow Painted enclosure up to 80m.
GLS-SS Stainless Steel 316 version - Food Industry Compatible up to 100m.
IP 67 for hosedown.
Contact blocks (4 pole) 3NC + 1NO or 4NC or 2NC + 2NO.
3 conduit entries M20 or ½" NPT
Protect hazards up to 80 m. long.
Reset by push button.
Rope tension indicators.
Optional Signalling lamp available Green / Flashing Red 24V dc.
Rope pulled and breakage detection.
E-Stop Mushroom type button fitted.
ATEX Explosion-proof versions available
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Pull-wire emergency stop switches are mounted on machines and sections of plants which cannot be protected by guards. In contrast to mushroom head Emergency Stop push buttons, on pull-wire switches the Emergency Stop command can be initiated from any point on the wire.
In combination with one of the AES and AZR range safety monitoring modules, see chapter 10.3, ZS range pull-wire emergency stop switches can be used for Control Category 3 or 4 to EN 954-1.
Design and mode of operation:
All of the pull-wire emergency stop switches conform to European Standard EN 418. They have a positive linkage between the NC contacts and the wire rope. The pull-wire emergency stop switches are brought into the operational condition by pre-tensioning the wire, i.e. the NC contacts are then closed and the NO contacts open.
Schmersal make both standard and AS-i Safety at Work pull-wire emergency stop switches.
Click here to see the AS-i models
Or for the standard models click below
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Explosion Proof Switches - Type GLS-Ex - GLS-SS-Ex
Safety Switches with positively operated ATEX Eexd llC T6 certified explosion proof blocks.
Part No Type Pre-wired cables Contacts
142025 GLS-Ex 1 x 3m. 4 core 1NC 1 NO
142028 GLS-Ex 1 x 3m. 4 core 2NC
144025 GLS-SS-Ex 1 x 3m. 4 core 1NC 1 NO
144026 GLS-SS-Ex 1 x 3m. 4 core 2NC
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Emergency pull-wire switches
ZS 80
Metal enclosure
4 contacts
Position indicator and integrated emergency-stop push button
Wire length up to 75 m
Pretensioning force 100 N
Lever for release and position indication
Watertight collar
Wire pull and breakage function
Indicator lamp available
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GLH Rope Switch
Idem Guardian Line Safety Rope Switches are designed to be mounted on machines and sections of conveyors which cannot be protected by guards. In contrast to traditional mushroom-head emergency stop buttons, Safety Rope Switches can initiate an emergency command from any point along the installed rope length and provide robust Emergency Stop Rope Pull protection for exposed conveyors or machines.
On pulling the rope, the safety contacts are positively opened and the auxiliary contact are closed. The switches are mechanically latched and can then only be returned to the operational condition by pressing the blue reset button (as required by EN418). A bi-colour LED indicator is available to enable switch status to be viewed from a distance.
Satisfies EN 418 and IEC 947-5-1 IEC 947-5-5
Guardian Line GLH features:
Die Cast Yellow Painted enclosure
IP 67 for hosedown.
Contact blocks (4 pole) 3NC + 1NO or 4NC or 2NC + 2NO.
3 conduit entries M20 or ½" NPT
Protect hazards up to 250 m. long.
Reset by push button.
Rope tension indicators.
Optional Signalling lamp available Green / Flashing Red 24V dc.
Rope pulled and breakage detection.
E-Stop Mushroom type button fitted.
Explosion-proof version available
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GLS Rope Switch
Idem Guardian Line Safety Rope Switches are designed to be mounted on machines and sections of conveyors which cannot be protected by guards. In contrast to traditional mushroom-head emergency stop buttons, Safety Rope Switches can initiate an emergency command from any point along the installed rope length and provide robust Emergency Stop Rope Pull protection for exposed conveyors or machines.
On pulling the rope, the safety contacts are positively opened and the auxiliary contact are closed. The switches are mechanically latched and can then only be returned to the operational condition by pressing the blue reset button (as required by EN418). A bi-colour LED indicator is available to enable switch status to be viewed from a distance.
Satisfies EN 418 and IEC 947-5-1 IEC 947-5-5
Guardian Line GLS range features:
GLS-Standard version - Die Cast Yellow Painted enclosure up to 80m.
GLS-SS Stainless Steel 316 version - Food Industry Compatible up to 100m.
IP 67 for hosedown.
Contact blocks (4 pole) 3NC + 1NO or 4NC or 2NC + 2NO.
3 conduit entries M20 or ½" NPT
Protect hazards up to 80 m. long.
Reset by push button.
Rope tension indicators.
Optional Signalling lamp available Green / Flashing Red 24V dc.
Rope pulled and breakage detection.
E-Stop Mushroom type button fitted.
ATEX Explosion-proof versions available
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Pull-wire emergency stop switches are mounted on machines and sections of plants which cannot be protected by guards. In contrast to mushroom head Emergency Stop push buttons, on pull-wire switches the Emergency Stop command can be initiated from any point on the wire.
In combination with one of the AES and AZR range safety monitoring modules, see chapter 10.3, ZS range pull-wire emergency stop switches can be used for Control Category 3 or 4 to EN 954-1.
Design and mode of operation:
All of the pull-wire emergency stop switches conform to European Standard EN 418. They have a positive linkage between the NC contacts and the wire rope. The pull-wire emergency stop switches are brought into the operational condition by pre-tensioning the wire, i.e. the NC contacts are then closed and the NO contacts open.
Schmersal make both standard and AS-i Safety at Work pull-wire emergency stop switches.
Click here to see the AS-i models
Or for the standard models click below
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SP2000
- Compact heavy duty machine for high demand production of wire, cable and component marking.
- PC link connection or stand alone mode with an optional standard keyboard.
- Printing of large diameter sleeves and tubes ranking up to 28 mm OD or 45 mm flattened.
- Inproved mechanism for quality printing on hardened tubes in low temperature environment.
- Sleeves can be completely or partly cut off.
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Schleuniger offers several solutions for marking, printing and labeling of wires and cables. From hotstamp marking to inkjet printing and thermal transfer printing - all integrated in automatic production lines with Schleuniger's automatic wire cutting and stripping machines.
With the PC software Cayman, all printing parameters are programmed directly in the same software where the settings of your cut & strip machine are made. Schleuniger has also implemented various customized solutions with several inkjet printers in one production line or printing with different colors on both sides of the cable / wire.
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MK3
- Cable, wire and component marking system X-CARD for more efficient and versatile marking on site.
- Prints various marker tags on credit card type format (Partex type PFC) accomodating also project and mounting information directly on the card.
- Project and mounting information directly on the card gives lower marking costs.
- Printing on site with PC controlled thermotransfer printer.
PFC
- Fast mounting with easy breakoff cards with precut or moulded marker tags.
- Easily detachable tags are put directly into PARTEX various tag holder systems.
- The hard tags can be rapidly mounted, before or after connecting the wires and cables.
- Easily printable in the X-Card MK3 printing machine with high production rate.
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MK9 ProMark
- Compact, portable, ID printer for cable, wire and component marking on site.
- Feeds, prints and cuts bulk Partex profiles and self adhesive labels from internal cassettes.
- Stores or imports files from a compact flash memory card (option).
- ProMark is a very cost effective identification system for use in panel buildning and electrical installations.
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KIMO specially designed and developed VT100 for air velocity and airflow control in duct and in CMV.
Simple and accurate, VT100 has a large display and a hotwire Ø 8 mm. VT100 is supplied with a calibration certificate.
- Velocity : from 0.15 to 30 m/s
- Airflow calculation (with cone in option) : from 0 to 99 999 m3/h
- Temperature (integrated in probe) : from –20 to +80°C
- Velocity compensation with air pressure
A large choice of optional airflow cone is available : 200 x 200 mm, 300 x 300 mm, 450 x 450 mm and 550 x 100 mm.
Join our distribution network all over the word....Contact us !
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Mating GrayWolf's advanced hotwire air velocity sensor technology with the incredible capability of mobile computers, gives you access to the most versatile portable air velocity meter ever available.
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Applications : industries, pharmaceutical plants
Measuring : from 0-1 m/s to 0-20 m/s and 0 to +50°C
Configurable intermediary and central zero ranges
Function : airflow
Simultaneous display of 2 parameters
2 output 4-20 mA or 0-10 V (4 wires), RS 232, 2 RCR relays 6A/230 Vac
2 visual (dual color LED) and audible (buzzer) alarms
Software or DIP switch configuration
ABS - IP 65 housing, with or without 2-line backlit display
Mounting with the 1/4 turn system with wall-mount plate
Join our distribution network all over the word....Contact us !
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Constant Temperature Anemometry (CTA) - Hot-wire anemometry
Measurement of flows with very high turbulence and the study of flow micro structures
Hot-wire Anemometry or Constant Temperature Anemometry (CTA) is a point-measuring technique appropriate for the measurement of time series in 1, 2 or 3-dimensional gas and liquid flows.
CTA is particularly suitable for the measurement of flows with very fast fluctuations at a point (high turbulence) and the study of flow micro structures, where there is a need to resolve small flow eddies down to the order of tenths of a mm.
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Le macchine SEIT per il settore elettronico ed elettromeccanico consentono numerose lavorazioni. Scegli tra i seguenti campi di applicazione quello più adatto alle tue esigenze:
1.Bobine
2.Cavi
3.Connettori
4.Contatti
5.Sensori, motorini e componenti elettromeccanici vari
6.Schede e componenti elettronici vari
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Zumbach WST TEMPMASTER Wire Preheaters
Excellence in Inductive Wire Preheating: Extrusion lines producing communication wire require optimum and repeatable conditions in order to produce valuable product at the highest speeds. Inductive preheating is clean and reliable. The adhesion is improved, humidity and other residues are removed from the conductor of data transmission cables. Many insulating materials can not be extruded successfully without preheating of the conductor. Cellular insulating materials require a uniform conductor temperature in order to produce a uniform cell structure and accurate electrical properties.
Main Benefits of Wire Preheating:
-Better product quality and improved consistency
-Dielectric properties of the insulation material are more uniform and the process conditions are reproducible
-Improved cell structure for foamed and foam skin insulating material
-Higher line speeds are possible thanks to lower stress within the insulation material
-Shorter start-up times
-Control of the bonding of the insulation material to the conductor
-Uniform conductor temperature maintained even during ramping phases
-The aging characteristics of the insulation are improved substantially through better uniformity
-Oil and water residues on the conductor surface are cleaned away by evaporation
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