Southbend SB owner manual Additional Metal Lathe Safety

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S A F E T Y

 

13" Heavy 13® Gearhead Lathe

For Machines Mfg. Since 5/11

 

 

 

Additional Metal Lathe Safety

Speed Rates. Operating the lathe at the wrong speed can cause nearby parts to break or the workpiece to come loose, which will result in dangerous projectiles that could cause severe impact injuries. Large or non-concentric workpieces must be turned at slow speeds. Always use the appropriate feed and speed rates.

Chuck Key Safety. A chuck key left in the chuck can become a deadly projectile when the spindle is started. Always remove the chuck key after using it. Develop a habit of not taking your hand off of a chuck key unless it is away from the machine.

Safe Clearances. Workpieces that crash into other components on the lathe may throw dangerous projectiles in all directions, leading to impact injury and damaged equipment. Before starting the spindle, make sure the workpiece has adequate clearance by hand-rotating it through its entire range of motion. Also, check the tool and tool post clearance, chuck clearance, and saddle clearance.

Long Stock Safety. Long stock can whip violently if not properly supported, causing serious impact injury and damage to the lathe. Reduce this risk by supporting any stock that extends from the chuck/headstock more than three times its own diameter. Always turn long stock at slow speeds.

Securing Workpiece. An improperly secured workpiece can fly off the lathe spindle with deadly force, which can result in a severe impact injury. Make sure the workpiece is properly secured in the chuck or faceplate before starting the lathe.

Chucks. Chucks are very heavy and difficult to grasp, which can lead to crushed fingers or hands if mishandled. Get assistance when handling chucks to reduce this risk. Protect your hands and the precision-ground ways by using a chuck cradle or piece of plywood over the ways of the lathe when servicing chucks. Use lifting devices when necessary.

Clearing Chips. Metal chips can easily cut bare skin—even through a piece of cloth. Avoid clearing chips by hand or with a rag.Use a brush or vacuum to clear metal chips.

Stopping Spindle by Hand. Stopping the spindle by putting your hand on the workpiece

or chuck creates an extreme risk of entanglement, impact, crushing, friction, or cutting hazards. Never attempt to slow or stop the lathe spindle with your hand. Allow the spindle to come to a stop on its own or use the brake.

Crashes. Aggressively driving the cutting tool or other lathe components into the chuck may cause an explosion of metal fragments, which can result in severe impact injuries and major damage to the lathe. Reduce this risk by releasing automatic feeds after use, not leaving lathe unattended during operation, and checking clearances before starting the lathe. Make sure no part of the tool, tool holder, compound rest, cross slide, or carriage will contact the chuck during operation.

Coolant Safety. Coolant is a very poisonous biohazard that can cause personal injury from skin contact alone, especially when it gets old or has been well-used. Incorrectly positioned coolant nozzles can splash on the operator or the floor, resulting in skin exposure or a slipping hazard. To decrease your risk, change coolant regularly and position the nozzle where it will not splash or end up on the floor.

Tool Selection. Cutting with an incorrect or dull tool increases the risk of accidental injury due to the extra force required for the operation, which increases the risk of breaking or dislodging components that can cause small shards of metal to become dangerous projectiles. Always select the right cutter for the job and make sure it is sharp. Using a correct, sharp tool decreases strain and provides a better finish.

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Contents Heavy 13 Gearhead Lathe Updates Customer ServiceScope of Manual Manual FeedbackTable of Contents Warranty Features About This MachineForeword CapabilitiesGeneral Identification IdentificationControls Components Master Power SwitchHeadstock Control Panel CarriageTailstock Safety Foot BrakeEnd Gears Product Specifications Main Motor Tailstock Information Construction Basic Machine Safety Understanding Risks of MachineryF E T Y Additional Metal Lathe Safety Additional Chuck Safety Things Youll Need Preparation OverviewTypical preparation process is as follows Power Supply Requirements AvailabilityFull-Load Current Rating Circuit RequirementsGrounding Requirements Extension CordsPre-Installed Not Shown Qty UnpackingInventory Main Inventory 1 Figure QtyBefore cleaning, gather the following Cleaning & ProtectingBasic steps for removing rust preventative Location Lifting & Moving To lift and move the latheLeveling & Mounting LevelingLubricating Lathe AssemblyBolting to Concrete Floors Power Connection To connect the power cord to the latheAdding Coolant To PlugTest Run To test run your machineFeed Range Lever NeutralSpindle Speed Lever Set toCarriage Feed Control Lever Disengaged HalfnutE P a R a T I O N Recommended Adjustments Factory adjustments that should be verifiedSpindle Break-In To perform the spindle break-inOperation Overview Installation & Removal Devices Chuck & Faceplate MountingChuck Installation To install the chuckRegistration Marks Chuck RemovalTo remove the chuck Jaw Chuck Scroll Chuck ClampingMounting Workpiece Faceplate Jaw tightening sequenceUsing Quill TailstockPositioning Tailstock To mount a non-concentric workpiece to the faceplateInstalling Tooling To install tooling in the tailstockOffsetting Tailstock Removing ToolingTo offset the tailstock Tools Needed QtyItems Needed Qty Aligning Tailstock to Spindle CenterlineTo align the tailstock to the spindle centerline Centers Dead CentersLive Centers Mounting Dead Center in SpindleRemoving Center from Spindle Mounting Center in TailstockRemoving Center from Tailstock Mounting Workpiece Between CentersTo install and use the steady rest Steady RestFollow Rest Carriage & Slide LocksInstalling Tool To install a tool in the tool postCompound Rest Four-Way Tool PostAligning Cutting Tool with Spindle Centerline To align the cutting tool with the tailstockCenter Top ViewMicrometer Stop Adjustable Feed StopTo set the micrometer stop Manual Feed Spindle SpeedSetting Spindle Speed of 200 RPM Setting Spindle SpeedConfiguration Examples Power Feed Setting Spindle Speed of 2000 RPMTo High 2000 RPMPower Feed Controls Quick-change Gearbox Feed LeversSetting Power Feed Rate Setting Power Feed Rate of 0.18mm/revEnd Gears Standard End Gear Configuration24T 56T 44T 57TAlternate Configuration Configuring End GearsTo configure the end gears Tools Needed QtyThreading Setting Metric Thread PitchHeadstock Threading Controls Apron Threading Controls Thread DialFeed Control Lever Halfnut Lever EngagedThread Dial Chart TPI Divisible ByEven TPI Not Divisible By Odd Numbered TPI⁄4 or 3⁄4 Fractional TPI Chip Drawer27⁄8 TPI Coolant System To use the coolant system on your latheAccessories SB1279-10 Pc. Precision 5-C Collet SetD1-5 Back Plates SB1397-61⁄4 SB1399-81⁄4 SB1401-101⁄2 SB1264-Collect AttachmentSB1238-High Performance MT#3 Live Center Keyless Integral Chucks SB1379-MT #3 1⁄2 SB1380-MT #3 5⁄8SB1245-MT#2 Bull Nose Center SB1251-Machinists Oak Tool Box SB1365-Way OilSB1282-High Performance MT#3 Live Center Set Maintenance Schedule South Bend Lathe Co. Lathe Monthly Maintenance Chart Lubrication Checking Oil LevelAdding Oil Changing OilQuick-Change Gearbox ApronDraining Oil Draining Oil & Flushing ReservoirOne-Shot Oiler Longitudinal LeadscrewBall Oilers & Oil Cup Tailstock ball oilersHandling & Care LubricatingHazards Coolant System ServiceFor proper disposal Adding Fluid Changing CoolantItems Needed Qty To change the coolantMachine Storage To prepare the lathe for storageCompound Rest Backlash AdjustmentCross Slide Gib Adjustment Leadscrew End Play AdjustmentTo remove leadscrew end play Front saddle gib adjustment screw Carriage Lock Clamp Half Nut Adjustment To adjust the V-beltsTo adjust the half nut BeltsBrake & Switch To adjust the brake and brake switchLocate the brake switch shown in Figure Leadscrew Shear Pin Replacement To replace the shear pinShear pin bores aligned Gap Insert Removal & Installation Gap RemovalGap Installation Symptom Possible Cause Possible Solution Symptom Possible Cause Possible Solution Symptom Possible Cause Possible Solution Electrical Safety Instructions Wiring Diagram Color KEYWiring Overview Component Location Index Component location indexElectrical Cabinet Wiring To Work Lamp, To Chuck Guard Micro Switch,Electrical Box Electrical boxCoolant Pump Motor Wiring Spindle MotorControl Panel Wiring Spindle SwitchesAdditional Component Wiring End Gear Cover Safety switch location Chuck Guard SwitchHeadstock Cover Headstock ControlsHeadstock Controls Parts List Headstock Internal Gears Headstock Internal Gears Parts List Spline ShaftHeadstock Transfer Gears PSS30MGears Gearbox Gears Parts List 102Gearbox Controls Gearbox Controls Parts List Partition PlateApron Front View Apron Front View Parts List Apron Rear View Apron Rear View Parts List Compound Rest & Tool Post 610Saddle Top View 721Saddle Top View Parts List PRP28M Roll PIN 5 XSaddle Bottom View Gear ShaftMicrometer Stop Dial Indicator 850 851 852 853 855 860 854 857 861 858 862Bed & Shafts Bed & Shafts Parts List 1005 10141004 1003 1002 Main Motor Main Motor Parts List Motor FANStands & Panels Cabinets & Panels Parts List Coolant Hose 3/8 X1317 Tailstock Parts List Steady Rest Follow Rest 1450 1456 1457 1454 1455 1458Electrical Cabinet & Control Panel Contactor AB C094001553-1 1554 1555 1552 1553-2 1556 Front Machine Labels Dial Indicator Label Rear & Side Machine LabelsPage Warranty #TS14496
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SB specifications

The Southbend 1368,SB is a versatile and robust commercial range designed for professional kitchens that demand high performance, reliability, and efficiency. This model is widely recognized for its solid construction and user-friendly features, making it a preferred choice among chefs and restaurant operators.

One of the standout features of the Southbend 1368,SB is its powerful burners. Equipped with six high-output burners, each producing 33,000 BTUs, this range delivers exceptional cooking power, allowing chefs to boil, sauté, and simmer with ease. The burners are designed with heavy-duty cast iron grates that not only provide durability but also ensure optimal heat distribution across the cooking surface, enhancing culinary results.

The range also includes a spacious oven with a capacity of 40,000 BTUs, which is perfect for baking, roasting, and broiling various dishes. The oven features a thermostat that allows for precise temperature control, ensuring that dishes are cooked to perfection every time. Additionally, the oven's interior is made from stainless steel, which offers excellent heat retention and is easy to clean.

Another notable characteristic of the Southbend 1368,SB is its construction. Built with a heavy-duty stainless steel exterior, this range is not only aesthetically pleasing but also resistant to corrosion and wear. The front, sides, and top are all designed for durability, making it suitable for high-traffic kitchen environments.

In terms of technological advancements, the Southbend 1368,SB is equipped with modular components that can be easily customized to meet specific cooking needs. This flexibility allows operators to configure the range for various cooking tasks, accommodating everything from grilling to frying.

Safety is also a significant consideration in the design of the Southbend 1368,SB. The range includes flame failure safety devices that automatically shut off the gas supply in case of a flame-out, providing peace of mind for operators during busy service times.

In summary, the Southbend 1368,SB is a powerful, versatile, and durable commercial range that brings together high-performance cooking capabilities and user-friendly features. With its robust burners, spacious oven, and heavy-duty construction, it is an ideal choice for any professional kitchen looking for reliability and efficiency in their cooking equipment.