Showing posts with label Wika Direct Drive Gauge. Show all posts
Showing posts with label Wika Direct Drive Gauge. Show all posts

Monday, November 4, 2013

Don't Neglect Pressure Gauges

Inadequate attention can make plants vulnerable to mishaps

From: WIKA Jason Deane

The simple pressure gauge is an often-overlooked defense mechanism for preventing accidents. However, in auditing more than 250 plants, WIKA Instrument discovered that up to 25% of all pressure gauges were broken, damaged or misapplied — this represents an average of eight deficient gauges located within 20 feet of each employee.

A failed gauge compromises a plant's ability to detect a problem before a safety incident occurs. Malfunctioning gauges also can lead to media leaks, fugitive emissions and a fire or explosion, taking a toll on safety and reliability.

Even minor accidents can cause employee injury and lead to downtime. Any accident or leakage also puts staff sent to fix the problem into harm's way, which, of course, can lead to further employee injury and lost hours.

Many causes contribute to this dangerous situation with
gauges. Fortunately, they can be prevented.


CAUSES OF GAUGE FAILURE

Through its evaluation of more than 150,000 gauge installations, WIKA has identified eight common causes of failure. So, let's look at each, along with the solution.

1. Vibration. Many pieces of equipment vibrate. However, excessive vibration can lead to gauge failure and may indicate a problem with a component. Solution: install a gauge that will resist vibration better — i.e., a liquid-filled or direct-drive gauge with only a single moving part.

2. Pulsation. A rapidly cycling medium within a pressure system can make a
gauge pointer move erratically and eventually can lead to breakdown of internal parts. Solution: install a restrictor and liquid-filled case to dampen pulses on a standard gauge or replace with a direct-drive gauge that lacks gears and linkages.

3. Temperature. Extreme temperatures cause sweating and loosening in metal joints and eventually can cause them to crack. Solution: install a
gauge with a fully welded diaphragm seal and consider adding an on-board cooling element to combat the highest temperatures.

4. Overpressure and pressure spikes. Frequent pegging against the stop pin can bend the
gauge pointer and compromise the integrity of the Bourdon tube or sensing element and, ultimately, lead to rupture. Solution: install an overpressure protector to inhibit readings that exceed gauge capacity.

5. Corrosion. The highly corrosive media often found in process plants can damage the sensing material in
gauges. Solution: install a diaphragm seal that's constructed from material that will withstand the corrosive.

6. Clogging. A medium that contains suspended particles or is viscous or can crystallize can clog the pressure system and make
gauge readings unreliable. Solution: install a diaphragm seal with a clog-preventing barrier.

7. Steam. Some media produce steam or other vapors that can damage the internal parts of
gauges. Solution: install either a mini-siphon with an internal chamber to reduce surges or a full siphon, making sure to include a coil for horizontal applications and a pigtail for vertical ones.

8. Mishandling and abuse. Even properly installed
gauges will start to malfunction if mistreated over time. Solution: conduct regular safety and maintenance training for all employees who come into contact with or proximity to gauges.


Unfortunately, many plant personnel aren't properly equipped or experienced enough to recognize and address all these problems. That, however, doesn't reduce the importance of doing so.

TACKLING THE PROBLEMS

When beginning to address instrument shortcomings, keep in mind that studies show that fewer than 0.25% of piping components account for greater than 80% of controllable fugitive emissions. Installing gauges with welded diaphragm seals on these components creates a dual containment device, which is required by the U.S. Environmental Protection Agency. This means plants can correct a major source of violations and fines by addressing a very small percentage of connection points. For many facilities, this is an excellent place to start to get meaningful results quickly.

Another fairly straightforward step that's simple to implement but can yield powerful results is standardization of
gauges. This reduces the number of replacement parts that must be kept in inventory — and confusion by technicians. In other words, when replacing an old or faulty gauge, employees more likely will select the correct gauge rather than resorting to like and kind replacement. This also helps ensure the storeroom maintains proper inventory, helping cut costs.

Plants that don't have the resources to identify and correct faulty and misapplied
pressure measurement instruments can get outside help, such as from WIKA's FAST Team. Any audit team should:


• Visually evaluate the plant's gauge population and look for issues that need to be addressed.
• Diagnose
gauges that pose threats and uncover the causes.
• Formulate a strategic plan to address all the discovered issues.
• Audit the storeroom and streamline inventory, reducing redundant part numbers and guesswork.
• Provide dependable processes to prevent misapplying instruments in the future, and coordinate employee-training programs.


Given the complexity of managing the operations of a process plant, it's easy to understand how smaller components such as mechanical pressure instruments can be overlooked. However, using gauges as early warning devices can improve uptime, safety and profits. Money spent on the humble gauge very well could be the best investment a processing plant can make.

If you would like more information, pricing and availability on WIKA Pressure Gauges or other WIKA Instrument products please contact Forberg Scientific Customer Service.
Tool Free: 855-288-5330Email: mechanicalsales@forberg.com

Tuesday, October 4, 2011

Direct Drive Gauges Wika New Direct Drive Process Gauge & Direct Drive Test Gauge

Direct Drive Technology: “Battle Proven” Performance in a Process Gauge

The military has used direct drive gauges on aircrafts, tanks and submarines since the 1960s for one simple reason: they are extremely resistant to shock, vibration and pulsation. Direct drive gauges have been known to survive direct missile strikes when placed within the hulls of battleships during military testing. Over time, direct drive gauges have proven themselves in numerous mission critical applications like jet fighter struts, tank gun turrets and submarine ballast tanks. Imagine having this same “battle proven” performance in a process gauge for your mission critical applications!

At the technological heart of the WIKA Direct Drive process gauge is our exclusive Bourdon tube made of Inconel® X-750 alloy. Compatible with most media types, this super-alloy is highly resistant to temperature extremes and has excellent oxidation and corrosion properties. Every WIKA Bourdon tube is meticulously handmade and then stress relieved in our proprietary heat treatment chambers. To provide superior strength and performance in the most aggressive environments and temperature extremes, all wetted parts on the WIKA Direct Drive process gauge are nickel-brazed.

Features
  • Medical-grade pointer shaft that rotates on a jeweled sapphire bearing that eliminates pointer friction
  • External adjustment screw to re-zero the pointer n Porous filter to protect the pressure inlet from clogging
  • Thermoplastic case for extreme temperatures
  • Shatterproof polycarbonate window
  • 150% overpressure protection without any loss of calibration
  • Solid-front, blow out back safety case design to meet industry safety requirements
WIKA Direct Drive gauges are manufactured in the United States and come with a full 6-year warranty that beats the competitors’ warranties 6 to 1.


Technical Specifications Overview

Wika Direct Drive Process Gauge: Model 232.34DD
The WIKA Direct Drive process gauge comes with a process industry standard ASME B40.100 Grade 2A (+/-0.5% of span) accuracy; a silicone dampened Bourdon tube to eliminate pointer flutter in severe vibration and pulsation applications; an adjustable process gauge pointer for recalibration; and a yellow case to signify to workers that this gauge is used for the tough applications.

Wika Model 232.34DD Datasheet

Wika Direct Drive Test Gauge: Model 332.34DD
The WIKA Direct Drive test gauge has a calibration industry standard ASME B40.100 Grade 3A (+/-0.25% of span) accuracy; a knife-edge adjustable pointer for precise pressure readings; a mirror band dial to remove reading error; a calibration certificate traceable to the National Institute of Standards and Technology (NIST); and standard black case.

Wika Model 332.34DD Datasheet

Advantages of the WIKA Direct Drive gauge over conventional gauges include:

  • Very long service life n Excellent for problem applications that contain shock, vibration or pulsation
  • Contains only one moving part
  1. No gears, linkages or springs to wear or break
  2. No loss of accuracy
  3. No recalibration required

WIKA Direct Drive gauges are great solutions for these problem applications:
  • Environments that contain continual shock and vibration
  • Processes that have problems with pressure surges and spikes
  • Pressure systems that have high cyclic rates
  • Installations with temperature extremes
If you would like additional information about WIKA Direct Drive Process Gauges, Wika Direct Drive Test Gauges or other WIKA Products please contact Forberg Scientific, Inc.
Toll Free: 855-288-5330
Email:
mechanicalsales@forberg.com