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Railway on-track machine on the line

Railway sector

All the engineering and documentation a manufacturer needs to go before a notified body with a file that holds up.

InteroperabilitySTIRFU / NB-RailInteroperability constituentsEN 14033EN 12663EN 13749EN 15085FEM analysisTest reports

From assessor to preparer

The studio worked for two years in independent conformity assessment at a certification body: review of technical files, checking of test reports, findings, audits and closure of non-conformities on locomotives, wagons, on-track machines and interoperability constituents.

That work teaches one thing, but a decisive one: most files don't get stuck on a technical problem, they get stuck on a missing piece of evidence. The calculation exists but isn't traceable, the test was done but the report doesn't reference the requirement, the drawing is right but doesn't match what was built. Today we put that knowledge on the manufacturer's side, to build the evidence before anyone asks for it.

This is where we come inManufacturer and studioPrepare calculations, tests and the technical file, requirement by requirement.
Notified bodyAssesses the evidence, issues findings and verifies conformity.
ManufacturerSigns the declaration and takes responsibility for it.
AuthorisationThe vehicle is authorised and can enter service.
Independence

Conformity assessment remains the task of the notified body: the studio does not certify or issue declarations on behalf of the manufacturer. We prepare the technical evidence and documentation, and for the same product we never take on both the designer's and the assessor's role.

The framework we work in

Before producing a single line of documentation, the scope is set: what the vehicle is from a regulatory point of view, which technical specifications for interoperability apply, which assessment module is chosen and which national rules remain in play.

EU Directives 2016/797 and 2016/798Interoperability and safety
Applicable TSIsLOC&PAS · WAG · PRM · NOI · SRT · CCS
EN product standardsEN 12663 · EN 13749 · EN 15085 · EN 14033
NB-Rail group RFUsHow the bodies read the TSIs
Assessment moduleSB + SD/SF · SH1 · CA–CH
Technical fileA traceable piece of evidence for every requirement
Directive 2016/797Interoperability of the rail system within the Union. It defines subsystems, interoperability constituents and the vehicle authorisation route.
Directive 2016/798Railway safety: safety management system, entities in charge of maintenance, role of national authorities.
TSI LOC&PASLocomotives and passenger rolling stock: structure, bogies, brakes, interfaces, environmental conditions.
TSI WAGFreight wagons: underframe, draw and buffing gear, wheelsets, brake, markings.
TSI PRMAccessibility for persons with disabilities and reduced mobility: lifts, doors, spaces, seats, signage.
TSI NOI / SRT / CCSNoise, safety in railway tunnels, control-command and signalling, when relevant to the vehicle.
Recommendations for UseThe NB-Rail group's RFUs clarify how notified bodies interpret the unclear points of the TSIs. Knowing them in advance avoids half of the findings.
Assessment modulesSB with SD or SF for subsystems, SH1 where applicable; for interoperability constituents the modules CA, CB, CD, CF, CH as prescribed by the TSI.
National rules and CSM-RANotified national rules verified by the designated body, and risk assessment according to the common safety method when the change is significant.
Versions in force

The TSIs are amended fairly often. The first task in every job is to check which version applies at the date the application is submitted and which transitional provisions are active: starting from the wrong revision is the most expensive and most common mistake.

Structural analysis of the frame and carbody

It's the heart of the file and the part that produces the most findings. Each verification must be set up on the correct vehicle category, with loads, combinations and acceptance criteria stated and traceable by the reader.

Illustration: Bogie frame with vertical, lateral and longitudinal load cases and the fatigue-critical zone
Bogie frame with vertical, lateral and longitudinal load cases and the fatigue-critical zone
EN 12663-1 / -2Structural strength of carbodies: design categories, exceptional longitudinal and vertical loads, service load cases, static and fatigue verification.
EN 13749Method for specifying the structural requirements of bogie frames: load cases, qualification tests, correlation between calculation and test rig.
EN 13103-1Non-powered and powered axles: design method, stress calculation, factors and permissible stresses depending on the steel.
EN 13260 / 13261 / 13262Complete wheelsets, axles and wheels: product requirements, inspections, material properties.
EN 15227Passive safety against collisions: reference scenarios, energy absorption, decelerations, survival of the occupied space.
EN 15085Welding of railway vehicles: certification levels, quality levels, qualification of procedures and personnel, welding book.
EN 14363Running dynamics: on-track tests, simulations and conditions for exemption from testing.
EN 15273Gauges and verification of the vehicle profile under the expected running conditions.
EN 45545Fire behaviour of materials and components, according to the vehicle's operation category.
EN 61373Shock and vibration tests of on-board equipment, by mounting category.

What we actually produce

FEM calculation modelGeometry simplified with justification, mesh with a convergence study, constraints and loads that correspond to the standard's cases, not to a convenient condition.
Static verificationStresses under exceptional loads compared with the acceptance criteria, with the maps and critical sections extracted and commented.
Fatigue verificationLoad spectra, Haigh or Goodman diagrams, safety factors on welded details according to the assigned class.
Mass and centre of gravity analysisLoad distribution per axle and per wheel, imbalance check and acceptability against the declared limits.
Overturning checkStability in working and transfer configuration, with the most severe load scenarios and the remaining margins.
Calculation–test correlationStrain gauge placement, comparison between calculated and measured values and justification of deviations.
Calculation reportA traceable document: assumptions, reference standard, model, results, criteria and conclusion. Format and numbering aligned with the file.
Handling findingsPoint-by-point response to the body's findings, with revision of the documents until the point is closed.

Interoperability constituents

For constituents the route differs from a subsystem: EC declaration of conformity or suitability for use, module chosen according to the applicable TSI, and a file that must stand on its own because the constituent is fitted to different vehicles.

As assessors, we followed files on very different families of constituents, and the documentation needed always follows the same pattern:

Buffing and draw gearBuffers, couplers and attachments: energy absorption characteristics, strength tests, interface compatibility.
Axleboxes and housingsAxlebox bodies and their seats: structural verification, fatigue behaviour, interface with the wheelset.
Wheelsets and wheelsAxle qualification, residual stresses, fatigue tests, material characterisation and non-destructive testing.
Signalling and visibilityHeadlamps, optical signalling devices and audible warning devices: performance, environmental conditions, functional tests.
Front windscreensWindscreens and cab windows: impact resistance, field of view, behaviour of the glass after breakage.
Accessibility and PRMLifts and boarding devices: rated load, platform dimensions, travel speed and acceleration, anti-slip, static and dynamic stability of the wheelchair.

Design and as-built

Calculation or simulationShows that the design meets the requirement
Test reportShows that the built object is the one that was designed
Requirement closedOnly one of the two pieces of evidence isn't enough: it's the most frequent finding

On-track machines, locomotives and wagons

The work isn't limited to on-track machines: the method is the same for a locomotive being renewed, a freight wagon and a track maintenance machine. What changes are the applicable standards and the relative weight of the verifications.

EN 14033-1Machines for track construction and maintenance: technical requirements for running on the line.
EN 14033-2Technical requirements for working mode, including stability conditions during operation.
EN 14033-3General safety requirements applicable to the machine and its accessories.
EN 15746 / EN 15954 / EN 15955Road-rail machines, trailers and demountable machines, when that is the configuration.
LocomotivesRenewals, refurbishments and retrofits: assessment of the significance of the change, design documentation and structural verification of the modified part.
Freight wagonsUnderframe, buffing and draw gear, wheelsets, braking system and markings according to the applicable TSI.
On-board equipmentCranes, loaders, booms and equipment installed on the vehicle: stability, structural verification, interaction with the supporting frame.

Tests: preparation and support

Tests are carried out in accredited laboratories or in the field, with calibrated instruments. Our role is upstream and downstream: defining what to test and why, and turning the result into evidence the assessor accepts.

  1. Test planWhich requirements are closed by a test rather than a calculation, which quantities are measured, with what uncertainty and under what conditions.
  2. Specification for the laboratoryTest document with configuration, required instrumentation, measurement points, acceptance criteria and precise reference to the standard.
  3. Support during executionPresence in the laboratory or in the field, setup check, verification that the instruments' calibration certificates are valid and attached.
  4. Reading and correlationComparison between measured and calculated, explanation of deviations, and incorporation of the result into the report and the file.

The most common types: static and fatigue tests on carbody and frame, axle qualification and fatigue, residual stresses, vibration and shock tests on equipment, functional and stability tests, non-destructive testing of welded joints.

How you get to certification

  1. Gap analysisComparison between what you already have and what the TSI and applicable standards require. The result is a precise list of what's missing, requirement by requirement.
  2. Documentation planWho produces what, in what order and by which deadlines, aligned with the notified body's assessment plan.
  3. Producing the evidenceCalculations, FEM analyses, reports, reference drawings, data sheets and justifications for requirements closed by analysis.
  4. Tests and reportsExecution at accredited laboratories and incorporation of the reports into the file, with an explicit link to the requirement they close.
  5. Technical fileIndex, numbering, revisions and traceability. A well-organised file is assessed in weeks; a disorganised one in months.
  6. Findings and close-outResponding to findings, revising documents and support up to the manufacturer's declaration and entry into service.

What you receive

Requirement-by-requirement gap analysisDocumentation planCalculation reportsFEM models and reportsMass and centre of gravity analysisOverturning checkTest specificationsLaboratory supportOrganised technical fileResponses to findingsRequirement–evidence matrixWelding and quality book

Images

Railway on-track machine
On-track machine
Diesel locomotive
Locomotive
Axlebox of a wheelset
Axlebox and wheelset
Railway maintenance workshop
Maintenance workshop

FAQ

Can you issue the certification yourselves?

No, and no consultant can. Conformity verification is the job of the notified body and the declaration is signed by the manufacturer. We prepare the technical evidence and documentation the body will assess, and follow the file until the findings are closed.

We've already received findings: can you step in halfway through?

Yes, it's one of the most frequent requests. We start by reading the findings and the assessment plan, work out which are formal and which substantive, and produce only what's needed to close them. Often the problem isn't redoing the calculation but making it traceable.

Do we need to redo everything if we modify an existing vehicle?

It depends on the significance of the change. Assessing it is precisely the first task: if it isn't significant the route is much shorter; if it is, the risk assessment must be set up and the scope of the verifications to redo identified. Doing this before designing avoids doing the work twice.

Do you also do the design or only the documentation?

Both, and often together: designing while knowing the requirement that will have to be demonstrated costs much less than adapting afterwards. On the same product, however, we don't take on the dual role of designer and independent assessor.

Do you also work for component suppliers, not just vehicle manufacturers?

Yes. For an interoperability constituent the file must stand on its own, regardless of the vehicle it will be fitted to, and this requires a different approach from a subsystem.

In what language do you produce the documentation?

Italian and English. The language is agreed at the start depending on the notified body and the target market, because changing it halfway means redoing the revisions.

Let's talk about your file

Tell us what vehicle or component it is, how far along you are and whether you already have a notified body appointed. We'll reply with the scope of work, timeline and a quote.

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Railway sector

Go before the notified body with the evidence already in place

An initial gap analysis costs a fraction of discovering halfway through that a calculation or a test report is missing.

Can we help?

Tell us briefly what you need: we'll point you to the right service and timeline, with no obligation.