PLUG

 

CAP

 

COLLECTOR BOX

 

DRAIN TUBE (BLUE

 

& WHITE STRIPED)

 

COLLECTOR BOX

 

TUBE (PINK)

 

INDUCER HOUSING

 

(MOLDED) DRAIN

 

TUBE (BEHIND

 

COLLECTOR BOX

 

DRAIN TUBE)

 

COLLECTOR BOX

 

DRAIN TUBE (BLUE)

CONDENSATE

 

COLLECTOR BOX

TRAP

TUBE (GREEN)

 

FIELD-INSTALLED

 

FACTORY-SUPPLIED

 

DRAIN TUBE

 

COUPLING (LEFT

 

DRAIN OPTION)

 

PLUG

CAP

COLLECTOR BOX DRAIN TUBE (BLUE & WHITE STRIPED)

COLLECTOR BOX

TUBE (PINK)

COLLECTOR BOX

TUBE (GREEN)

COLLECTOR BOX DRAIN TUBE (GREEN)

CONDENSATE TRAP

INDUCER HOUSING DRAIN TUBE (VIOLET)

FIELD-INSTALLED

 

FACTORY-SUPPLIED

 

DRAIN TUBE

 

FIELD-INSTALLED

FIELD-INSTALLED

FACTORY-SUPPLIED

FACTORY-SUPPLIED

12 -IN. CPVC STREET

DRAIN TUBE

ELBOWS (2) FOR

COUPLING (RIGHT

LEFT DRAIN OPTION

DRAIN OPTION)

A94213

Fig. 5ÐFactory-Shipped Upflow Tube Configuration

(Shown With Blower Access Panel Removed)

D.Condensate Trap Tubing (Alternate Upflow Orientation)

NOTE: See Fig. 6 or tube routing label on main furnace door to confirm location of these tubes.

1. Collector Box Drain Tube

Connect collector box drain tube (blue label) to condensate trap.

NOTE: On 17-1/2-in. wide furnaces ONLY, cut tube between corrugated sections to prevent kinks.

2.Inducer Housing Drain Tube

a.Remove and discard LOWER (molded) inducer housing drain tube which was previously connected to conden- sate trap.

b.Use inducer housing drain extension tube (violet label and factory-supplied in loose parts bag) to connect LOWER inducer housing drain connection to conden- sate trap.

c.Determine appropriate length, cut, and connect tube.

d.Clamp tube to prevent any condensate leakage.

3.Relief Port Tube

a.Connect relief port tube (green label) to condensate trap.

b.Extend this tube (if required) by splicing to small diameter tube (factory-supplied in loose parts bag).

Ð6Ð

A94214

Fig. 6ÐAlternate Upflow Tube Configuration and

Trap Location

c.Determine appropriate length, cut, and connect tube.

E. Condensate Trap Field Drain Attachment

Refer to Condensate Drain section for recommendations and procedures.

F. Pressure Switch Tubing

The LOWER collector box pressure tube (pink label) is factory connected to the pressure switch and should not require any modification.

NOTE: See Fig. 5 or 6 or tube routing label on main furnace door to check for proper connections.

G.Upper Collector Box and Inducer Housing (Unused) Drain Connections

UPPER COLLECTOR BOX DRAIN CONNECTION

Attached to the UPPER collector box drain connection is a factory-installed corrugated, plugged tube (blue and white striped label). This tube is plugged to prevent condensate leakage in this application. Ensure this tube is plugged.

NOTE: See Fig. 5 or 6 or tube routing label on main furnace door to check for proper connections.

UPPER INDUCER HOUSING DRAIN CONNECTION

Attached to the UPPER (unused) inducer housing drain connection is a cap and clamp. This cap is used to prevent condensate leakage in this application. Ensure this connection is capped.

Page 6
Image 6
Bryant 355M-40-4, 355M-40-5 operating instructions Ð6Ð, Condensate Trap Field Drain Attachment, Pressure Switch Tubing

355M-40-4, 355M-40-5 specifications

The Bryant 355M-40-5 and 355M-40-4 are innovative CNC cylindrical grinders designed to meet the demands of precision machining in various industrial applications. These machines stand out due to their robust construction, advanced technology, and versatile functionalities, which are critical for achieving high-quality grinding results.

One of the main features of the Bryant 355M-40-5 and 355M-40-4 is their precision grinding capability. With high spindle speeds and excellent rigidity, these grinders are engineered to deliver superior surface finishes even on complex geometries. The machines are equipped with advanced dressing systems that ensure consistent wheel profiles, enhancing performance and reducing cycle times.

The Bryant 355M-40-5 differentiates itself through its multi-axis capability, allowing for the grinding of intricate shapes and features without the need for extensive setup changes. Operators can easily program complex grinding sequences through the user-friendly interface, which supports both manual and automated operations. This flexibility is crucial in manufacturing environments that require quick turnaround times and adaptability to various workpieces.

Meanwhile, the Bryant 355M-40-4 focuses on efficiency and productivity, featuring a streamlined design that optimizes workflow. The machine is fitted with high-precision linear guides and ball screws, ensuring smooth and accurate movements during the grinding process. This results in minimal wear and tear, thereby extending the machine's lifespan and maintaining accuracy over time.

Key technologies incorporated into both models include state-of-the-art control systems that enable real-time monitoring and feedback during operations. This feature allows operators to make on-the-fly adjustments to optimize grinding parameters, leading to improved performance and reduced scrap rates. Additionally, the integration of automation solutions, such as robotic loading systems, enhances productivity by minimizing downtime and labor costs.

The Bryant 355M-40-5 and 355M-40-4 are built with durability in mind, utilizing high-strength materials that resist deformation and wear. Their thermal stability ensures consistent performance even under varying operating conditions, making them a reliable choice for high-volume production.

In summary, the Bryant 355M-40-5 and 355M-40-4 models are exemplary CNC cylindrical grinders that combine precision, efficiency, and advanced technology. Their features make them suitable for a wide range of grinding applications, from tool manufacturing to automotive components, ensuring that they remain competitive in the ever-evolving landscape of manufacturing technology.