YUSHUNXIN · EV project planning

EV bateria birziklatzeko proiektuen irtenbideak

Build the project brief before choosing the line. EV packs, modules and cells require different receiving, isurketa, desegitea, feeding and separation decisions.

YUSHUNXIN uses the supplied battery profile and site information to prepare a project-specific process and equipment configuration for review.

Input boundaryPack, module or cell
First decisionDischarge and dismantling
Proposal basisDefined downstream handover
Lithium Battery Crushing Recycling LinesProject view
Lithium Battery Crushing Recycling LinesMateriala / irteera
01 · Feedstock and project fit

Define what reaches the EV battery line—and in what condition

The original EV page documented a detailed processing sequence. This rebuild retains that technical depth while separating universal project decisions from optional process steps.

EV batteries01

Complete packs

Pack architecture, isolation, state of charge, cooling circuits and dismantling responsibility must be documented before downstream line selection.

EV Battery02

Separated modules

Module construction and remaining electrical or mechanical connections affect handling, feeding and the upstream safety boundary.

Electronic Product Battery Recycling03

Individual cells

Cell format, kimika, condition and variation influence containment, feeding and size-reduction choices.

Production Waste04

Production and mixed scrap

Electrode, cell and assembly scrap may bypass some upstream steps. Hezetasuna, binder, foil composition and contamination should be reported.

02 · Process framework

EV battery project decision path

The route follows the material boundary and the desired downstream handover. Expand each stage to see the engineering questions that should be resolved before approval.

01Material identification+
shredding

Establish chemistry, formatua, condition and variation.

  • Input to confirm: formatua, kimika, condition and variation at this step.
  • Scope decision: included equipment, optional controls and customer-supplied items.
  • Acceptance point: define the handover, sampling or operating check in the approved specification.
02Discharge and dismantling+
Pyrolysis

Define the customer and equipment boundaries for upstream preparation.

  • Input to confirm: formatua, kimika, condition and variation at this step.
  • Scope decision: included equipment, optional controls and customer-supplied items.
  • Acceptance point: define the handover, sampling or operating check in the approved specification.
03Feeding and size reduction+
cooling conveying screw

Configure the core equipment for the approved material.

  • Input to confirm: formatua, kimika, condition and variation at this step.
  • Scope decision: included equipment, optional controls and customer-supplied items.
  • Acceptance point: define the handover, sampling or operating check in the approved specification.
04Conditioning and separation+
Fine Crushing

Select suitable preparation and separation modules.

  • Input to confirm: formatua, kimika, condition and variation at this step.
  • Scope decision: included equipment, optional controls and customer-supplied items.
  • Acceptance point: define the handover, sampling or operating check in the approved specification.
05Output handover+
drum separator

Define collection, sampling, storage and downstream transfer.

  • Input to confirm: formatua, kimika, condition and variation at this step.
  • Scope decision: included equipment, optional controls and customer-supplied items.
  • Acceptance point: define the handover, sampling or operating check in the approved specification.
06Site controls+
Magnetic Separation

Document monitoring and control modules for project review.

  • Input to confirm: formatua, kimika, condition and variation at this step.
  • Scope decision: included equipment, optional controls and customer-supplied items.
  • Acceptance point: define the handover, sampling or operating check in the approved specification.
03 · Equipment and system boundary

EV battery process modules and their decision logic

Each image comes from the original EV project page. The sequence is illustrative; the final route may use, omit or add modules after material review.

shredding01
Core preparation

Controlled shredding

The approved feed format is reduced under a defined feeding and containment strategy. The project scope should identify upstream discharge and dismantling responsibilities.

Pyrolysis02
Optional route

Material conditioning

Thermal or other conditioning may be considered for selected material and downstream objectives. It is not assumed for every EV battery project.

cooling conveying screw03
Interface control

Cooling and transfer

Where a conditioning stage is used, cooling and controlled transfer must be included in the material-flow and monitoring design.

Fine Crushing04
Particle preparation

Fine size reduction

Additional crushing or milling is selected to prepare material for the proposed separation route and target output fractions.

drum separator05
Screening stage

Powder separation

Drum or other screening may collect powder-bearing material and classify larger fractions before further separation.

Magnetic Separation06
Ferrous control

Bereizketa magnetikoa

A magnetic stage may remove ferrous-bearing material at a point defined by the selected process sequence.

Grinding mill07
Project-dependent

Grinding or pulverization

Further particle preparation is considered only when the feed condition and downstream separation targets justify it.

density separation08
Material separation

Density-based sorting

Density or airflow sorting may separate prepared copper-, aluminum- and residual fractions. Acceptance criteria should be stated in writing.

04 · Decision detail

EV project boundaries that prevent scope gaps

Most commercial misunderstandings start upstream or downstream of the core machines.

01

Discharge boundary

Who confirms state of charge, performs discharge and provides the required records.

02

Dismantling boundary

Whether packs arrive complete, as modules, as cells or after customer pre-treatment.

03

Output handover

How powder- and metal-bearing fractions are sampled, packaged, stored and transferred.

04

Local project boundary

Permits, fire strategy, utilities and local requirements confirmed by the customer and qualified local parties.

05 · Technical clarification table

EV project checklist

This table separates the current planning basis from items that require material tests, site information or written human approval.

Project item Current basis Status
Battery source Customer input To confirm
Chemistry LFP / NCM / mixed / unknown To confirm
Input format Pack / module / cell / scrap To confirm
State of charge Customer input To confirm
Dismantling status Customer input To confirm
Material supply Customer input To confirm
Target throughput Customer input Engineering gate
Process and outputs Based on review Project-dependent
06 · Output and acceptance

Plan the downstream handover before procurement

Output images illustrate possible material categories from the original page. They are not promises of yield or purity.

final products01

Separated output categories

Use representative feedstock and a written sampling plan to define the expected downstream handover.

black mass from battery recycling02

Black-mass-bearing powder

Confirm collection, sampling, hezetasuna, particle-size and downstream acceptance requirements.

Copper foil from battery recycling03

Copper- and aluminum-bearing fractions

Define the required separation boundary and allowable residual material in the technical specification.

Acceptance discipline: Yield, garbitasuna, capacity and recovery values are not assumed from a website description. They must be tied to the approved feedstock, test basis and written project specification.

07 · Decision-stage support

Get the right response for your current decision stage

Tell YUSHUNXIN whether you are researching, testing feasibility, comparing suppliers or preparing procurement. The project brief routes the next conversation around the information you have now.

ResearchClarify material and process options.
FeasibilityReview tests, site and project boundary.
Supplier comparisonAlign scope and acceptance method.
KontratazioaResolve open items for an approved proposal.
08 · Engineering communication

Why work with YUSHUNXIN

YUSHUNXIN organizes the discussion around the EV battery decision path: input condition, upstream preparation, core process, output handling and site interface.

A

Confirmed facts

Approved material data and project requirements are shown as the basis of the proposal.

B

Project-dependent items

Configuration choices remain conditional until the feedstock and site have been reviewed.

C

Human approval gates

Commercial terms, final performance and compliance statements require authorized review.

D

Version control

The proposal should identify the approved configuration version, assumptions and open questions.

09 · Frequently asked questions

Questions project teams ask before a proposal

Can one line process both LFP and NCM batteries?+

A mixed-chemistry project requires review of identification, separation goals and downstream handling.

Is discharge and dismantling always included?+

Ez. The boundary depends on how material arrives and which upstream steps the customer performs.

Is material conditioning always required?+

Ez. The decision depends on feedstock, process goals, site information and engineering review.

Can recovery rate and purity be confirmed before review?+

Ez. Those results require feedstock, konfigurazioa, sampling and acceptance criteria.

What files are useful for the first review?+

Material photos, dokumentazioa, kimika, state information, dismantling flow, analysis, supply estimate, site layout and desired outputs.

CATALOGUE-ALIGNED ENGINEERING BASIS

Pack-to-fraction project

Start with transport, diagnostic, discharge and pack/module dismantling responsibilities before the material line.

01

Incoming material

Vehicle battery system, pack architecture, kimika, residual energy, damage status and planned throughput.

02

Expected outputs

Prepared modules/cells and classified downstream fractions according to the approved boundary.

03

Project interfaces

Hazardous-goods receiving, quarantine, diagnostics, isurketa, desegitea, fire response and data traceability.

MODEL AND SCOPE REGISTER

Use only the row matching the selected process boundary.

Catalogue referenceEdukieraBotereaPhysical envelopeIncluded boundary
YSX public familyPublic equipment family500–1,000 kg/h102–238 kW20–35 m line; 7.5–19.5 tStandard equipment-family envelope; no per-model allocation
YSX-LR500LR complete line500 kg/h320 kW40 × 15 × 7.5 mConditioning, separation and gas-treatment line
YSX-LR1000LR complete line1,000 kg/h410 kW45 × 17 × 7.5 mConditioning, separation and gas-treatment line
Project reference - 500Earlier integrated layout500 kg/h300 kW60 × 7 × 7 mEarlier layout without a published model label
Project reference - 1000Earlier integrated layout1,000 kg/h349 kW80 × 7 × 7 mEarlier layout without a published model label

Configuration rule: catalogue capacity is a planning reference. Stable throughput, installed/operating power, footprint, berreskuratzea, garbitasuna, emissions and utility demand require the approved equipment list, representative material and written acceptance conditions.

Information required before configuration and quotation

  1. Representative material photos, specifications and available sample.
  2. Required capacity plus hours per shift, shifts per day and operating days.
  3. Helburu-irteerak, sampling method and downstream receiver requirements.
  4. Site country, available power, fuel, ura, compressed air and building limits.
  5. Local environmental, fire, storage and occupational-safety requirements.
  6. Requested delivery boundary: ekipamendua, diseinua, instalazioa, commissioning and training.