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Safety

The gasket is designed with a gap at the bottom to allow for proper air circulation.

Do not rub or clean the door gasket— it has an extremely low resistance to abrasion.

If you notice the gasket becoming worn, frayed or damaged in any way or if it has become displaced on the door, you should have it replaced.

Cleaning the Oven Door

To clean the inside of the door:

Because the area inside the gasket is cleaned during the self-clean cycle, you do not need to clean this by hand.

The area outside the gasket and the door liner can be cleaned with a soap-filled steel-wool or plastic pad, hot water and detergent. Rinse well with a vinegar and water solution.

To clean the outside of the door:

Use soap and water to thoroughly clean the top, sides and front of the oven door. Rinse well. You may also use a glass cleaner to clean the glass

on the outside of the door. Do not let water drip into the vent openings.

If any stain on the door vent trim is persistent, use a soft abrasive cleaner and a sponge-scrubber for best results.

Spillage of marinades, fruit juices, tomato sauces and basting materials containing acids may cause discoloration and should be wiped up immediately. When surface is cool, clean and rinse.

Do not use oven cleaners, cleaning powders or harsh abrasives on the outside of the door.

Instructions Operating Instructions

Slot

Hinge lock

Pull hinge locks down to unlock

Removal position

Lift-Off Oven Door

The door is very heavy. Be careful when removing and lifting the door.

Do not lift the door by the handle.

To remove the door:

Fully open the door.

Pull the hinge locks down toward the door frame, to the unlocked position. A tool, such as a small flat- blade screwdriver, may be required.

Firmly grasp both sides of the door at the top.

Close door to the door removal position, which is halfway between the broil stop position and fully closed.

Lift door up and out until the hinge arm is clear of the slot.

To replace the door:

Firmly grasp both sides of the door at the top.

With the

Bottom

Hinge arm

door at the

edge

 

same angle as

of slot

 

the removal

 

 

position, seat the

 

indentation of

 

 

the hinge arm

 

Indentation

into the bottom

 

edge of the hinge slot. The notch in

the hinge arm must be fully seated

into the bottom of the slot.

 

Fully open the door. If the door will not fully open, the indentation is not seated correctly in the bottom edge of the slot.

Push the hinge locks up against the front frame of the oven cavity, to the locked position.

Hinge arm

Hinge lock

Push hinge locks up to lock

Close the oven door.

Care and Cleaning Troubleshooting Tips

Removable Oven Floor

To remove the oven floor:

Remove the oven door using the instructions in the Lift-Off Oven Door section.

Press down and pull out the removable oven floor.

Press down and pull out.

Clean the oven floor with warm soapy water.

When reinstalling the oven floor, be sure to slide it all the way to the back of the oven.

IMPORTANT: Always replace the

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removable floor before the next use.

Consumer Support

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GE JT91230 Care and Cleaning Troubleshooting Tips, Cleaning the Oven Door, Lift-Off Oven Door, Removable Oven Floor

JT91230, JT95230 specifications

The GE JT95230 and JT91230 are advanced jet engines designed by General Electric, renowned for their cutting-edge technologies and performance efficiencies. These engines are primarily utilized in the commercial aviation sector, equipping several popular aircraft models with the power and reliability needed for modern air travel.

One of the principal features of the GE JT95230 and JT91230 is their high thrust-to-weight ratio, which translates into improved aircraft performance and fuel efficiency. These engines are engineered with a focus on aerodynamic optimization, resulting in enhanced airflow and reduced drag. This design approach allows for superior fuel economy, ultimately contributing to lower operational costs for airlines.

The JT95230, a part of the GE80 series, incorporates a two-spool high bypass turbofan configuration. This configuration includes a large fan at the front, which significantly contributes to the engine's thrust. Meanwhile, the high bypass ratio allows the engine to operate at lower speeds, thereby reducing fuel consumption while maintaining high efficiency during various flight phases.

In contrast, the JT91230 features a more compact design, yet still retains robust performance capabilities. This engine is particularly noted for its durability and reliability, essential characteristics for commercial operators facing stringent safety and maintenance demands. The JT91230’s design also emphasizes noise reduction, aligning with modern regulations and environmental standards.

Technologically, both the JT95230 and JT91230 utilize advanced materials like titanium and composite structures, enhancing structural integrity while keeping weight to a minimum. Precise manufacturing techniques, including additive manufacturing, allow for greater accuracy and performance optimization in component production.

Another significant aspect is the incorporation of digital engine control systems, which enable real-time monitoring and adjustments of engine performance parameters. This technology enhances operational efficiency and allows for predictive maintenance, reducing downtime and increasing reliability. Furthermore, the engines are designed to be easily maintainable, ensuring that airline operators can quickly service and return them to operation.

Overall, the GE JT95230 and JT91230 embody a blend of advanced technology, efficiency, and reliability. Their innovative designs and features position them as leading choices for airlines looking to enhance their fleet performance, reduce fuel costs, and meet modern aviation regulations.