Linear Guideway Installation: Mounting Surface Preparation and Alignment Procedures linear guideway installation

Seleção de Engenharia

Instalação de Guia Linear: Procedimentos de Preparação da Superfície de Montagem e Alinhamento

Um guia de instalação passo a passo para guias lineares HGR cobrindo requisitos de planicidade da superfície de montagem por grau de precisão, sequências de torque dos parafusos, procedimentos de alinhamento paralelo de dois trilhos, instalação do carro, verificação de pré-carga, lubrificação inicial e verificações finais de precisão.

Why Installation Quality Determines Guideway Performance More Than Catalogue Specs

A linear guideway rated for P-grade accuracy (parallelism within 7 µm over 1,000 mm) can only deliver that precision if the mounting surface it bolts onto is prepared to a matching flatness. In practice, over 40% of premature guideway failures and accuracy complaints traced by Dongfeng Bearing's technical support team stem not from the guideway itself but from installation errors: warped mounting surfaces, over-torqued bolts, misaligned parallel rails, and insufficient cleaning of the raceway before commissioning.

This guide walks through the complete installation procedure for profile rail linear guideways (HGR series), from mounting surface preparation through final alignment verification. Following these steps ensures that the guideway performs to its catalogue specification and achieves its calculated L10 service life.

Mounting Surface Preparation

Flatness and Straightness Requirements

The mounting surface flatness directly transfers to the guideway rail. If the surface has 20 µm of waviness over a 1,000 mm length, the rail will adopt that waviness when bolted down, creating uneven preload along the travel path. The required flatness depends on the accuracy grade of the guideway:

Accuracy GradeMounting Surface FlatnessTypical Application
N (Normal)15 µm / 1,000 mmMaterial handling, conveyor
H (High)10 µm / 1,000 mmCNC router, general automation
P (Precision)5 µm / 1,000 mmMachining center, grinding
SP (Super Precision)3 µm / 1,000 mmJig borer, CMM
UP (Ultra Precision)2 µm / 1,000 mmSemiconductor inspection

Measure the surface with a precision level or electronic clinometer along the full length of the rail mounting area. For P-grade installations, use a dial indicator on a granite straight edge. If the surface does not meet the required flatness, re-machine it or use shimming material (stainless steel shim stock, not soft materials like copper) at the low spots.

Surface Roughness

The mounting surface should have a roughness of Ra 1.6 µm or better. A rougher surface allows micro-movement of the rail under dynamic load, which causes bolt loosening and accuracy drift over time. If the machine bed is a casting, confirm that the guideway mounting area has been finish-milled or ground — not left as-cast.

Cleaning Protocol

Before placing the rail on the mounting surface:

  1. Degrease the mounting surface with isopropyl alcohol or a dedicated degreasing solvent. Oil residues prevent proper metal-to-metal contact.
  2. Deburr all mounting holes — countersink both sides of each through-hole to remove raised edges from drilling. Burrs under the rail create localized hard points that distort the raceway.
  3. Clean the rail bottom surface with a lint-free cloth and solvent. The rail is shipped with a corrosion-preventive coating that must be fully removed.
  4. Inspect the datum edge — the machined reference edge on the machine bed that locates the rail laterally. It must be free of paint, burrs, and nicks.

Rail Placement and Bolt Torque Sequence

Positioning Against the Datum Edge

Every HGR series guideway rail has a machined datum edge on one side — a precision-ground reference surface that locates the rail laterally. Place the rail against the machine bed's datum edge and lightly clamp it with two or three tooling clamps. Do not fully tighten any bolts at this stage.

For two-rail installations, the first rail (datum rail) is positioned against the datum edge and fully secured first. The second rail (driven rail) is then aligned parallel to the datum rail using a dial indicator mounted on a carriage block that travels between the two rails.

Bolt Torque Sequence

Tighten the mounting bolts in the sequence specified below. The torque values are critical: under-torquing allows the rail to shift under dynamic load, while over-torquing bends the rail into the mounting surface irregularities.

Rail SizeBolt SizeRecommended Torque (N·m)
HGR15M42.5 - 3.5
HGR20M55.0 - 7.0
HGR25M68.5 - 12.0
HGR30M820.0 - 28.0
HGR35M820.0 - 28.0
HGR45M1255.0 - 75.0

Use a calibrated torque wrench and follow a three-pass tightening sequence:

  1. First pass (30% of final torque): Start from the center bolt and work outward alternately to both ends. This centers the rail on the mounting surface and prevents it from bowing.
  2. Second pass (70% of final torque): Repeat the same center-outward sequence. Check that the rail remains flush against the datum edge using a feeler gauge (0.02 mm maximum gap).
  3. Third pass (100% of final torque): Final tightening in the same sequence. After this pass, verify that all bolts are at the specified torque by spot-checking 20% of them.

Two-Rail Parallel Alignment

For machines with two parallel guideway rails (the standard configuration for CNC machines), the second rail must be aligned parallel to the first within a tolerance that depends on the accuracy grade:

  • H grade: parallelism within 50 µm over the full rail length
  • P grade: parallelism within 15 µm over the full rail length
  • SP grade: parallelism within 7 µm over the full rail length

Alignment Procedure Using a Dial Indicator

  1. Mount a dial indicator on a carriage block installed on the datum rail (first rail, already secured).
  2. Set the indicator tip to contact the side datum edge of the second rail (the driven rail, loosely bolted).
  3. Zero the indicator at one end of travel.
  4. Travel the carriage the full length of the rail at 50 mm intervals. Record the indicator reading at each position.
  5. Adjust the driven rail by tapping it laterally with a soft-face mallet at the high spots. Re-clamp and re-measure.
  6. Iterate until the indicator reading stays within tolerance for the full length.
  7. Tighten the driven rail bolts using the same three-pass torque sequence as the datum rail, checking parallelism after each pass.

After final tightening, run the indicator one more time across the full length. If any reading is out of tolerance, loosen the nearest bolts, re-adjust, and re-tighten.

Carriage Installation and Preload Verification

Installing Carriages on the Rail

Dongfeng's HGR carriages are shipped with the ball retainer held in place by a plastic dummy rail. This dummy rail must remain in place until the carriage is transferred to the actual guideway rail. To install:

  1. Align the dummy rail end-to-end with the guideway rail. Butt the dummy rail against the rail end, ensuring the joint is flush with no step.
  2. Slide the carriage smoothly from the dummy rail onto the guideway rail. Do not lift the carriage off the rail at any point — the balls will fall out of the circulation path.
  3. Remove the dummy rail after the carriage is fully on the guideway rail.
  4. Install the end seals if they were removed for shipping.

Never slide a carriage off the end of the rail without a dummy rail or the included removal tool. If balls are spilled, the carriage must be returned to the factory for re-circling — field reassembly of the ball circuit is not possible without specialized tooling.

Preload Verification by Torque Measurement

After installation, verify that the preload feels correct by pushing each carriage by hand along the full travel:

  • C0 (zero preload): Carriage moves with very light, uniform resistance. No sticking points.
  • C1 (light preload): Carriage moves with noticeable but smooth drag. Resistance is consistent across the full length.
  • C2 (medium preload): Carriage requires firm hand pressure to move. Resistance is higher but still uniform.

If the carriage has sticking points, uneven resistance, or a grinding sensation, stop immediately. These symptoms indicate:

  • Rail distortion from mounting surface irregularities (most common)
  • Contamination inside the ball circuit (clean and re-lubricate)
  • Damaged balls or raceway from a drop or impact during handling

For quantitative verification, use a push-pull force gauge to measure the drag torque. Compare the measured value against the catalogue specification for the preload class. A reading 30% above specification indicates rail distortion; a reading 30% below indicates insufficient preload or ball loss.

Lubrication at Commissioning

Before the first powered movement, lubricate each carriage with the manufacturer-specified grease. Dongfeng's HGR carriages are shipped with a light rust-preventive oil, not operational grease. The initial lubrication procedure:

  1. Locate the grease fitting on the carriage (a grease nipple on the top or side face).
  2. Inject grease using a manual grease gun. The amount varies by carriage size: 1.5 g for HGR15, 3 g for HGR20, 5 g for HGR25, 8 g for HGR30, 12 g for HGR35, 20 g for HGR45.
  3. Stroking the carriage 5-10 full strokes by hand to distribute the grease throughout the ball circulation path.
  4. Wipe excess grease that extrudes from the seal gaps.

Use a lithium-complex grease with NLGI Grade 2 consistency and a base oil viscosity of 100-200 cSt at 40°C (ISO VG 100 to VG 220). For cleanroom or food-grade applications, use a PTFE-based synthetic grease rated for the operating environment.

Final Accuracy Verification

After the guideway is installed, lubricated, and the carriages are verified, perform a final accuracy check before commissioning the machine:

Running Parallelism

Mount a dial indicator on the carriage with the tip contacting a precision reference surface (a granite square or a previously verified machine surface). Travel the carriage the full length of the rail at 50 mm intervals. The total indicator reading (TIR) should not exceed the parallelism specification for the accuracy grade:

  • H grade: 20 µm / 1,000 mm
  • P grade: 7 µm / 1,000 mm
  • SP grade: 3 µm / 1,000 mm

Repeatability Check

For CNC applications, verify positioning repeatability using a laser interferometer or a precision dial indicator at three positions (beginning, middle, and end of travel). Approach each position from the same direction five times. The spread of readings should be within the carriage's repeatability specification (typically ±2 µm for P-grade carriages).

Document all measurements in an installation verification report. This baseline data is invaluable for diagnosing future accuracy drift — if the machine loses positioning after 6 months, comparing current measurements against the baseline immediately identifies whether the guideway has shifted or another component is at fault.

Common Installation Mistakes and How to Avoid Them

Mistake 1: Ignoring Mounting Surface Flatness

The most common installation error is bolting a P-grade guideway onto an unprepared surface and expecting P-grade performance. A surface with 30 µm of waviness will produce 30 µm of running parallelism deviation regardless of the guideway's accuracy grade. Always verify surface flatness before rail installation, and re-machine the surface if it does not meet the requirement for your accuracy grade.

Mistake 2: Tightening Bolts from End to End

Tightening bolts from one end to the other (instead of center-outward) accumulates thermal expansion and manufacturing length tolerances at one end of the rail, causing the rail to bow. Always use the center-outward alternating sequence, which distributes any length deviation symmetrically.

Mistake 3: Not Using a Dummy Rail During Carriage Transfer

Sliding a carriage off the rail end without a dummy rail causes ball spillage. Once balls are lost, the carriage's preload and load capacity are permanently compromised. Always keep the dummy rail in place until the carriage is safely on the guideway rail, and use the removal tool when taking carriages off for maintenance.

Mistake 4: Skipping Initial Lubrication

The rust-preventive oil on shipped carriages is not a lubricant. Running a carriage without proper grease for even a few cycles causes dry friction between balls and raceways, creating surface damage that shortens the L10 life by 50% or more. Always inject the specified grease and stroke the carriage before the first powered movement.

At Xiamen Dongfeng Bearing, every HGR guideway shipment includes installation instructions, torque specification tables, and a dummy rail for each carriage. Our technical support team is available to review your mounting surface specifications and installation plan before you begin — preventing the installation errors that account for the majority of guideway performance complaints in the field.