ModulCheck.TM

Enterprise R&D Management

All calculations are for theoretical simulation purposes. Laboratory validation tests must be conducted prior to final industrial production.
ModulCheck.
Enterprise R&D and Support Platform
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Main Formulation

Calculate KV40, KV100, VI, and CCS density in real-time.

Smart Optimizer

AI-driven formula optimization for cost and performance.

AI R&D Lab

Generative chemistry for new molecular structures.

Tender Management

Reverse engineering and bidding strategy tools.

Platform Overview

System Status

Cloud Database ACTIVE
AI Engine 17.6 READY

Welcome to Modulcheck Platform

Your account currently has no authorized modules. Please contact the system administrator to request access.

Admin Control Hub

System Management Tools

System Health
Secure Node
System Permissions & Staff Management

Smart Vehicle Advisor (Engine Oil Guidance)

LUKOIL Expert Recommendation Engine

1
Category
2
Brand
3
Model
4
Result

Complete selection to view recommendation

Cross-Reference & Analogues Guide

Global Database Navigation & Equivalent Matcher

Select a product to view the official LUKOIL equivalent and technical comparison

Core Formulation Engine
Purpose: Calculates the final kinematic viscosity, Viscosity Index, CCS, and Total Base Number (TBN) of the blended lubricant based on component weight ratios.
Auto Lab PDF Analysis

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Estimated Properties
KV40 (cSt) 0.00
KV100 (cSt) 0.00
Stay-in-Grade KV100 0.00
Viscosity Index (VI) 0
Cold Flow (CCS) 0
TBN (mgKOH/g) 0.00
SAPS (%) 0.00
Noack (%) -
HTHS (cP) -
Density @15°C -
Flash Point (°C) -
Pour Point (°C) -
A. Kettle Thickening with Polymer (VM)
Calculates the required amount of polymer viscosity modifier (VM) needed to correct an under-viscous production batch.

Laboratory Performance Data

Production Tank Status

Required VM Addition
Relative Dosing: 0.00%
0.00 kg
B. TBN Upping & Base Oil Thinning

B1: TBN Upping

Required Additive
Dosing: 0.00%
0.00 kg

B2: Viscosity Thinning (Log)

Required Thin Oil
Dosing: 0.00%
0.00 kg

1. Ratio Finder (Widman Simulation)

Determine exact ratios for target KV100

cSt
cSt
Mixing
KV100 (cSt)
Oil 1 Ratio
0.00%
Oil 2 Ratio
0.00%

2. Viscosity Simulation Gauge

Predict blend properties from known rations

C1
C2
Blend KV40
0.00
Blend KV100
0.00
Blend VI
0

3. Base Oil Interchange (Read-Across) Engine

Interchange base oils while keeping additive pool constant

Phase 1: Existing Base Oil Pool

Existing Oil A
Existing Oil B
Other Formulation Components Locked (Additive, VM, etc.)

Phase 2: Optimized Simulation

New Oil C
Replacement
New Oil D
Replacement
New Ratio C
0.00%
Optimized Weight
New Ratio D
0.00%
Optimized Weight

Target Pool KV100

0.00

"Automatically solved to maintain pool viscosity constant."

Simulation Accuracy 100% READY

Global Additive Cross-Reference

Cross-reference alternatives by performance & brand

DATABASE COUNT: 0
Application / Performance Supplier Additive Code Actions
Use filters to explore additives...
Tender & Reverse Engineering Engine
Smart Formula Optimizer
Purpose: Calculates optimum formulation components and dosages based on target performance and viscosity grade using historical data.

CCS Predictor

Predicts the final blend's CCS value by log-blending the low-temperature viscosity values of components.

Component 1

Component 2

Estimated Final CCS
0 mPa.s
6600 (MAX 5W)

Noack Volatility Predictor

Predicts the Noack evaporative loss (% m/m) of the final engine oil based on formulation ratios.

Component 1

Component 2

Estimated Final Noack
0.00 %
13.0 (ACEA C3)

Flash Point Predictor

Calculates the final flash point by accounting for the dominant effect of the more volatile component.

Component 1

Component 2

Estimated Flash Point
0 °C
210°C (MIN)

HTHS Predictor

Predicts the High-Temp High-Shear (HTHS) dynamic viscosity at 150°C using component data.

Base Oil Pool

VM Polymer

Estimated Final HTHS
0.00 mPa.s
3.5 (MIN)
AI R&D Lab (Gen-AI) NEW
Designs the 'Optimum/Cheapest' new formula within seconds tailored to target performance and viscosity by learning from historical R&D data (Big Data).
Each run auto-compares 3 strategies: Eco / Balanced / Premium.
Performance Radar & Specifications Library
Purpose: Visualizes the relative performance of engine oil specifications (API, ACEA, OEM) and provides an immediate comparison of their official technical limits (SAPS, HTHS, etc.).

Profiles to Compare

SAE & ACEA Specification Checker

Purpose: Validates whether the simulated oil properties meet the chosen SAE J300 viscosity limits and performance criteria.
AWAITING DATA TO VALIDATE STATUS
VM-Visc Recalculator
Purpose: Analyzes reverse dilution and solvency efficiency for polymer blends based on the API group characteristics and thickener type.

1. Laboratory Cut Measurements

2. Solvency Calibration Matrix

Calibrated Neat Polymer KV40
0.00
Calibrated Neat Polymer KV100
0.00

Density & Logistic Intelligence

Transposes gravimetric mass into volumetric yield, calculates packaging unit generation, and assesses logistics/truck loading limits.

1. Production Metrics

2. Volumetric & Logistics Analytics

Filling Volume @ 20°C
0.0 L
D20 Corrected: 0.0000
Total Unit Yield
0 Units
Theoretical Maximum
Full Pallets
0
Loose Units
0
Fleet Capacity Logic
24MT / 33 Pallets Standard Limit
Weight Utilization 0%
Volume (Pallet) Space 0%

Visc-Temp Dynamic Modeling

Projects the full viscosity-temperature curve using the Walther-MacCoull equation for precise kinematic viscosity estimations.

1. Baseline Parameters

Thermal Curve Mapping

Cold Cranking (0°C) Phase 1 Entry
0 cSt
Industrial (50°C) Standard Baseline
0.0 cSt
Operational (80°C) Steady State Engine Temp
0.0 cSt
Extreme Heat (150°C) High Shear Stability
0.00 cSt

Coolant Thermal Intelligence

Predicts the ultimate freezing point protection limit and identifies crystallization risk ranges for various engine coolant base chemistries.

1. Fluid Parameters

50% Glycol
Glycol Base 50%
Demin. Water 50%
Freeze Protection Limit
-37°C

Grease Molecular Design

Estimates the formal NLGI grade, worked penetration depth, and theoretical dropping point for industrial grease formulations.

1. Thickener System

2. Base Oil Pool

Additive Package Allocation: 6.5%

Technical Matrix

NLGI Grade NLGI 2
Worked Pen.
280 dmm
Dropping Point
> 195 °C

Industrial Unit Converter

Provides conversions between industrial units used in petrochemical and laboratory specifications (API, ASTM, ISO).

Conversion Category

Converted Result
0.00
-