State Industries A B C D E F 100 instruction manual Step B, Step E, Step F, Step G

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B.Deburring

Use a knife, plastic pipe deburring tool, or file to remove burrs from the end of small diameter pipe. Be sure to remove all burrs from around the inside as well as the outside of the pipe. A slight chamfer (bevel) of about 10°-15° should be added to the end to permit easier insertion of the pipe into the end of the fitting. Failure to chamfer the edge of the pipe may remove cement from the fitting socket, causing the joint to leak.

STEP B

C.Test dry fit of the joint

Tapered fitting sockets are designed so that an interfaced fit should occur when the pipe is inserted about 1/3 to 2/3 of the way into the socket. Occasionally, when pipe fitting dimensions are at the tolerance extremes, it will be possible to fully insert dry pipe to the bottom of the fitting socket. When this happens, a sufficient quantity of cement must be applied to the joint to fill the gap between the pipe and fitting. The gap must be filled to obtain a strong, leak-free joint.

D.Inspection, cleaning, priming

Visually inspect the inside of the pipe and fitting sockets and remove all dirt, grease or moisture with a clean dry rag. If wiping fails to clean the surfaces, a chemical cleaner must be used.

Check for possible damage such as splits or cracks and replace if necessary.

Depth-of-entry

Marking the depth of entry is a way to check if the pipe has reached the bottom of the fitting socket in Step F. Measure the fitting depth and mark this distance on the pipe O.D. You may want to add several inches to the distance and make a second mark as the primer and cement will most likely destroy your first one.

Apply primer to the surface of the pipe and fitting socket with a natural bristle brush. This process softens and prepares the PVC or CPVC for the solvent cementing step. Move quickly and without hesitation to the cementing procedure while the surfaces are still wet with primer.

E.Application of solvent cement

Apply the solvent cement evenly and quickly around the outside of the pipe at a width a little greater than the depth of the fitting socket.

Apply a light coat of cement evenly around the inside of the fitting socket. Avoid puddling.

Apply a second coat of cement to the pipe end.

STEP E

F. Joint assembly

Working quickly, insert the pipe into the fitting socket bottom and give the pipe or fitting a 1/4 turn to evenly distribute the cement. Do not continue to rotate the pipe after it has hit the bottom of the fitting socket. A good joint will have sufficient cement to make a bead all the way around the outside of the fitting hub. The fitting will have a tendency to slide back while the cement is still wet so hold the joint together for about 15 seconds.

STEP F

G. Cleanup and joint movement

Remove all excess cement from around the pipe and fitting with a dry cotton rag. This must be done while the cement is still soft.

The joint should not be disturbed immediately after the cementing procedure, and sufficient time should be allowed for proper curing of the joint. Exact drying time is difficult to predict because it depends on variables such as temperature, humidity and cement integrity. For more specific information, you should contact your solvent cement manufacturer.

STEP G

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Contents 197836-000 Whenever maintenance adjustment or service is requiredImportant Definitions Safe INSTALLATION, USE and ServiceGeneral Safety General Safety Introduction Table of ContentsGET to Know Your Water Heater GAS Models Replacement Parts and Deliming ProductsAll models Maximum Supply Pressure 14 inches W.C .48kPa Installation ConsiderationsRough-In-Dimensions Recovery capacity based on 96% thermal efficiencyDirectly BELOW. Keep Clear of ALL Obstructions Water Piping Mixing Valve Usage Facts to Consider About the Location Appliances in Confined Spaces Insulation BlanketsCombustion AIR and Ventilation Appliances in Unconfined SpacesALL AIR from Outdoors See Figures 7, 8 ALL AIR from Inside Buildings SeeClosed Water Systems Installing the NEW Water HeaterChemical Vapor Corrosion Water PipingValve and Pipe Insulation if supplied Temperature-Pressure Relief ValveGas Piping High Altitude InstallationsSediment Traps Venting Filling the Water HeaterVent Pipe Termination Power Vent Canadian Power VentVent Hoods MAY be Extremely HOT During Operation Canadian Direct Vent Direct VentInstallations Planning the Vent SystemCondensate Direct Vent Terminal Installation Important Installation of Vent SystemVent Terminal INSTALLATION, Sidewall Sequence of INSTALLATIONS, aInstallation Sequence Vertical Vent Terminal InstallationVent Terminals Supplied with Heater Must be Used KIT Components Installation of Vent SYSTEM, SidewallInstallation of Vertical Vent System Concentric Vent InstallationInstallation Procedure 1 Roof TERMINATION, see Figure C Safety ConsiderationsFigure F Procedure 2 Side Wall TERMINATION, see Figure FFigure g MULTI-CONCENTRIC Vent TerminationsVent Pipe Preparation Step G Step BStep E Step FON/OFF Switch Blower Prover SwitchBlocked Exhaust Switch Blocked Intake SwitchPower Vent Wiring Schematic Figure Do not TRY to Light the Burner by Hand ON/OFF SwitchDo not try to light the burner by hand What to do if YOU Smell GASHI Limit Switch E.C.O Temperature RegulationOverview Using the Electronic ControllerOperating States ActionDisplay Action Display Fault and Warning ConditionsAccess to the Current Fault or Warning Changing the Display UnitsViewing Information About the Heater Viewing the Fault HistoryFor Your Information Start UP ConditionsOperational Conditions Burner Operation and Inspection Periodic MaintenanceBurner Cleaning Venting System InspectionTemperature-Pressure Relief Valve Operation Anode ROD InspectionDraining Leakage Checkpoints ServiceProblems Troubleshooting GuidelinesPage Page Limited Warranty

A B C D E F 100 specifications

State Industries A B C D E F 100 is a groundbreaking initiative aimed at revolutionizing various sectors including manufacturing, technology, and services, by integrating advanced methodologies and innovative practices. This initiative underscores a commitment to sustainability, efficiency, and quality, setting new standards for industry performance.

One notable feature of State Industries A B C D E F 100 is its focus on automation and smart manufacturing technologies. This includes the implementation of the Internet of Things (IoT) devices that facilitate real-time data collection and analysis. By harnessing this data, industries can optimize their operations, leading to improved productivity and reduced operational costs. Machine learning algorithms play a crucial role in predictive maintenance, enabling timely interventions that minimize downtime and enhance equipment longevity.

Another key aspect of State Industries A B C D E F 100 is the emphasis on renewable energy solutions. Many facilities are transitioning towards solar, wind, and other sustainable energy sources, which not only lowers carbon footprints but also leads to considerable savings in energy costs. This shift towards clean energy reflects a broader commitment to corporate social responsibility, addressing the environmental challenges faced by today’s industries.

Moreover, the initiative promotes the use of advanced materials and smart technologies in product development. These innovations not only enhance product functionality but also improve safety and sustainability. For instance, the use of biodegradable materials in packaging aligns with global efforts to reduce plastic waste, while advancements in nanotechnology offer unique solutions to traditional manufacturing challenges.

Collaboration stands as another essential characteristic of State Industries A B C D E F 100. By fostering partnerships between different stakeholders, including academia, government agencies, and private enterprises, the initiative encourages knowledge sharing and co-creation of solutions. This collaborative approach leads to the development of best practices that can be shared across sectors, amplifying the impact of technological advancements.

In conclusion, State Industries A B C D E F 100 embodies the future of industrial evolution, integrating cutting-edge technologies, sustainable practices, and collaborative efforts to create a resilient and forward-thinking industrial landscape. As industries continue to adapt to the changing global environment, the principles established by this initiative will likely play a pivotal role in shaping a sustainable and prosperous future for all.