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Steel Structure Building
Created with Pixso. Pre-Engineered Steel Building with 50 Years Life Cycle, Quick Erection, and Cost Savings

Pre-Engineered Steel Building with 50 Years Life Cycle, Quick Erection, and Cost Savings

Brand Name: KXD
Model Number: KXD-SSW1059
MOQ: 200 Square Meters (MOQ)
Price: US$50.00-100.00
Delivery Time: 30days
Payment Terms: T/T
Detail Information
Place of Origin:
Qingdao
Certification:
ISO, SGS, CE, BV
Packaging Details:
pallet
Supply Ability:
5000ton/Month
Highlight:

50 Years Life Cycle Pre-Engineered Steel Building

,

Quick Erection Structural Steel Building

,

Cost Savings Industrial Steel Structure

Product Description
Pre-Engineered Construction Structural Steel Industrial Real Estate Building
Basic Information
Model NO.
KXD-SSB54
Color Reference
Ral
Member of Engineering Team
20
Quality Control
Daily
Life Cycle
50 Years
Construction Period
60 Days
Customer Service
Aftersale Service
Porject Management
Turnkey Solution
Engineering Tools
Autocad
Type
H-Section Steel
Standard
GB
Forming
Hot-Rolled Steel
Carbon Structural Steel
Q235
Residential Wall Structure
Wall Support
Warranty
30 Year Limited Warranty
Transport Package
Seaworthy Package
Specification
SGS / ISO/ BV
Trademark
KXD, Low-alloy High-tensile Structural Steel
Origin
China
HS Code
9406900090
Production Capacity
5000ton/Month
Product Overview

Pre-engineered steel buildings are steel structures built over a structural concept of primary members, secondary members, roof and wall sheeting connected to each other and various other building components.

These buildings can be provided with different structural and non-structural additions such as skylights, wall lights, turbo vents, ridge ventilators, louvers, roof monitors, doors & windows, trusses, mezzanine floors, fascias, canopies, crane systems, insulation etc., based on customer requirements. All steel buildings are custom designed to be lighter in weight and high in strength.

Pre-Engineered Steel Building Models
Pre-engineered steel building model showing structural framework and design
Applications

Pre-Engineered Buildings are the most flexible solutions for contractors and owners. With advantages of low cost, high durability, perfect quality control and fast erection; PEBs are used for various applications:

Industrial Applications
  • Factories
  • Workshops
  • Warehouses
  • Cold Storages
  • Steel Mills
  • Assembly Plants
Industrial application of pre-engineered steel building showing factory interior
Commercial Applications
  • Showrooms
  • Supermarkets
  • Offices
  • Shopping Centers
  • Exhibition Halls
  • Restaurants
  • Logistic Centers
  • Multi-purpose Buildings
Commercial application of pre-engineered steel building showing modern office space
Public & Other Applications
  • Schools
  • Hospitals
  • Conference Halls
  • Laboratories
  • Museums
  • Stadiums
  • Farms
  • Utility Shelters
  • Pump Stations
  • Aircraft Hangars
  • Airport Terminals
Key Advantages
1. Cost Savings

Price per square meter can be 25%-30% lower than conventional steel buildings. Site erection cost is low because of faster erection times and easier erection process.

2. Quick Erection

All steel components are fabricated at the factory and linked by bolts at the site. So the erection process is fast, step by step, easy to install and requires simple equipment. 60% less construction time required compared with traditional R.C.C (reinforced concrete) building.

3. Flexibility

Pre-engineered steel buildings are flexible in any requirement of design, easy to expand in the future and also economically with low transportation costs.

4. Energy Efficiency

Nowadays, pre-engineered buildings are the green solution for the environment with CO2 reduction, energy efficiency, and recyclability.

Building Components

Pre-engineered metal buildings consist of following components:

  • Primary Members / Main Frames
  • Secondary Members / Cold Formed Members
  • Roof & Wall Panels
  • Accessories, Buyouts, Crane System, Mezzanine System, Insulation, etc.
  • Sandwich Panels
Primary Members / Main Frames

Primary members are the main load carrying and support members of a pre-engineered building. The main frame members include columns, rafters and other supporting members. The shape and size of these members vary based on the application and requirements.

Primary structural members showing columns and rafters of steel building
Secondary Members / Cold Formed Members

Secondary structural framing refers to purlins, girts, eave struts, wind bracing, flange bracing, base angles, clips and other miscellaneous structural parts.

Purlins, girts and eave struts are cold formed steel members which have a minimum yield strength of 345 MPa (50,000 psi) and will conform to the physical specifications of GB/ISO/CE or equivalent.

Roof & Wall Sheets/Panels

Standard steel panels are 0.3, 0.4, 0.5 mm or 0.6 mm thick and have a minimum yield strength of 345 MPa. Steel panels are hot dipped and galvanized with zinc or zinc-aluminium coating. The base material is pretreated, before applying a corrosion resistant primer and top coat. The combined thickness of the painted film is 25 microns on the front side and 12 microns on the reverse side.

Other Building Accessories

Other building accessories include anchor bolts, fasteners (bolts, nuts, turnbuckle, expansion bolts), gutters, downspouts, doors, windows, ventilators, skylight panels, louvers and all other building-related materials.

Manufacturing Process & Quality Control
Material Receiving Procedure
  • Verify receiving documents and quantity of received material
  • Submit load for QC inspection
  • Visual inspection for surface condition and damages
  • Dimensional inspection for length, width, depth, thickness
  • Verification of material certificates and heat numbers
  • Preparation of Incoming Material Inspection Report
Material Preparation

Design and Development department creates structural drawings. Production department prepares items according to drawings:

Plate Preparation
  • Drawings transferred to storage devices using expert software
  • Drawings copied into plate processing machine
  • Automated machine processes plates according to NC files
  • Punching of part marks on plates
  • Drilling of plates as per NC files
  • Plasma cutting of plates
Beam/Tube Preparation
  • Fabrication drawings prepared by design department
  • Automated cutting and drilling machine processing
  • Transfer to fit-up section after completion
Fit-up Process
  • Fabrication drawings issued to production supervisor
  • Fabricators collect prepared beams and connection items
  • Fit-up of end plates, gusset plates, stiffeners, purlin cleats, stay angle cleats
  • Tack welding of components
  • QC inspection after fit-up completion
Fit-up process showing structural component assembly
Welding & Grinding
Submerged Arc Welding Procedure
  • Planning of jobs to be welded
  • Cleaning of welding locations
  • Setting wire feed and voltage parameters
  • Maintaining fillet size according to GB50661-2011 standard
  • Removal of spatters and slag after welding
  • Grinding of burrs, sharp edges and excessive reinforcements
  • QC inspection after completion
MIG Welding Procedure
  • Planning of jobs to be welded
  • Cleaning of welding locations
  • Setting wire feed and voltage parameters
  • Maintaining fillet size according to GB50661-2011 standard
  • Removal of spatters and slag after welding
  • Grinding of burrs, sharp edges and excessive reinforcements
  • QC inspection after completion
Welding process showing automated welding equipment
Blasting Process
  • Tool Box Talk performed for every task
  • Barricading of working area with information notices
  • Recording of fabricated steel ID for traceability
  • Cleaning with high pressure air to remove surface dust
  • Automated blasting through conveyor system
  • Six internally mounted wheels for high-velocity blasting
  • Achievement of SA 2/2.5 cleaning grade
  • Full PPE requirement for personnel
Blasting process showing surface preparation equipment
Painting Process
  • Daily application schedule after blasting completion
  • QC inspection of blasted surfaces before priming
  • Atmospheric condition checks (temperature, humidity, dew point)
  • Surface preparation requirements
  • Airless spray application method
  • Paint material conformity checks
  • Wet Film Thickness monitoring
  • Three-coat painting system specification
Painting process showing coating application
Loading and Shipping
  • Receiving finished components from painting department
  • Proper storage of components job-wise in yard
  • Arrangement of trucks from contract companies
  • Loading commencement after clearance confirmation
  • Documentation maintenance in job files
Quality Standards & Control

With 20 year warranty in the steel building industry, our company maintains strict quality standards. We have acquired ISO9001 and CE certificates and follow related standards for design and fabrication:

  • GB/T1591-2008/2018
  • GB/T11263-2010
  • GB/T 2518-2008
  • GB/T12754-2006
  • GB/T 1228-2006
Fillet Weld Size Quality Control
Purpose

To ensure the quality of fillet weld, meeting technical requirements of welded members and improve standardization of fabrication.

Application Scope

This manual applies for design, fabrication and inspection of fillet weld size.

Fillet Weld Leg Size Requirements
Parameter Requirement Notes
Minimum Size K ≥ 1.5*t t = thickness of thicker welding member
Maximum Size K ≤ 1.2t t = thickness of thinner welding members
Edge Welding t ≤ 6mm: K ≤ t
t > 6mm: K ≤ t-(1~2)mm
When welding on member edges
Circular/Trench Holes K ≤ (1/3)d d = diameter of hole
Fillet Weld Size Selection Guidelines
Form of Fillet Weld K Value Application
Without Groove K = (0.7~1)t ≤ 15mm Most steel structure buildings
Without Groove K = (0.5~0.6)t Strengthening ribs and secondary members
With Groove (CJP/PJP) K = t/4 ≤ 10mm Most steel structure buildings
With Groove (CJP/PJP) K = t/2 ≤ 10mm Important members (crane beams)
Minimum Fillet Weld Size Chart
Parent Metal Thickness (t) mm Minimum Fillet Weld Size mm
t ≤ 6 3 (5 for crane beam)
6 5
12 6
t > 20 8
Fillet weld leg size definition illustration Fillet weld applications and specifications
H-Section Manufacturing Equipment & Process

Steel plate cutting → H section assembly → Automatic welding → H section strengthening → Assembly → Manual welding → Shot blasting → Painting → Storage

1. Steel Plate Cutting

Steel plates are checked for design compliance. CNC cutting equipment ensures precision cutting with high-purity gases for smooth, notch-free surfaces.

Equipment Name Model No. Application Features
Portable CNC Fire-cutting machine CNCDG-1530 Steel plate cutting (5-100mm), beveling of edge, small components
Straight flame cutting machine DZCG-4000A Steel plate cutting (5-100mm), Y flange plate, web plate cutting
CNC cutting machine CNC-4000C Steel plate cutting (5-100mm), irregular component cutting
Radial drilling machine Z3050*16/1 Maximum drilling diameter φ50mm, bolt-connection holes
Puncher machine JH21-400 Maximum stamping pressure 400 ton, plate punching
Shearing machine Q11Y-25*2500 Cutting width 2500mm, thickness 3-25mm
2. H Section Steel Assembly

Assembly on imported H section production line with hydraulic positioning system ensuring parallelism and perpendicularity of components.

Equipment Name Model No. Application Features
H section steel assembly machine Z20B H type assembly, flange width 150-800mm, web height 160-2000mm
3. Automatic Welding

Gantry-type submerged arc automatic welding with specified sequence and parameters, including preheating for ultra-thick plates.

Equipment Name Model No. Application Features
Gantry-type submerged arc automatic welding machine LHA5ZB Assembly welding of H section steel up to 800mm*2000mm cross section
4. H Section Steel Strengthening

Correction of flange flatness and perpendicularity using specialized strengthening machines with controlled flame temperature (600~800ºC).

Equipment Name Model No. Application Features
H section steel strengthening machine YTJ60B Correcting deformation, flange width 200-1000mm, thickness ≤60mm
H section flange strengthening machine HYJ-800 Correcting deformation, flange width 160-800mm, thickness ≤40mm
5. Component Assembly
  • Familiarization with component shop drawings and technical requirements
  • Re-checking of model components by related departments
  • Accurate mark-up procedures
  • Inspection after first assembly
  • Batch assembly after qualification testing
6. Manual Welding

Precision manual welding for specialized applications and complex connections.

7. Shot Blasting
Equipment Name Model No. Application Features
10-ramming heads shot blasting machine QH1525 Shot blasting of section steels, up to Sa2.5 Grade
8. Painting

Even, flat, glossy painting without cracking, peeling or pin holing. Standard coating thickness: 150μm indoor, 125μm outdoor.

Equipment Name Model No. Application Features
Airless sprayer CPQ9CA Surface paint of structural members, pressure ratio: 32:1