3d Lift Plan Software Free Download



Find below safe work lifting plan template for use in crane lifting process.

Plan

This lifting plan sample also provides calculation for sling tension.

Additionally you shall be able to select the suitable lifting gear in accordance with the safe working load and weather conditions etc.

3d Lift Plan software, free download. software

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3d lift plan software, free download version

3d Lift Plan software, free download Windows 10

Once you will record the data you will get a comprehensive document showing the complete site condition in front of you.

Input the weight and dimensions of the object you’re lifting, plus the location and size of obstructions at the site and 3D Lift Plan will search the load charts of your crane fleet to determine the most economical crane configuration for the lift. You can use 3D Lift Plan to create printouts and lift video simulations that help you plan your.

GENERAL INFORMATION FOR LIFTING PLAN

1. Description of Lift1a. Type of Lift

( ) Load Test ( ) Lifting Work

1b. Work of Place
1c. Date & Time (Plan)
2. Description of Load2a. Description of Load
2b. Dimension (L x H x W) (mm)
3. Description of Crane3a. Maker
3b. Model No.
3c. Maximum Capacity (tons)
LIFTING PLAN DATA
4. Load Weight:4. Estimated Weight (including Cage) (tons)
5. Rigging Weight5a. Main Hoist Block,

Auxiliary Boom Head / Headache Ball (tons)

5b. Slings, Shackles, and other tackles

Total Weight (Max.) (tons)

5c. Lifting Device or Spreader Beam

Total Weight (tons)

6. Total Lift Weight6. (4 + 5) Total Weight (tons)
7. Working Condition7a. Outrigger Extended (m)
7b. Boom / Jib Length (m)
7c. Counterweight (tons)
7d. Operating Radius (m)
8. Rated Capacity8a. Rated Capacity (tons)
8b. (Total Weight / Rated Capacity) x 100 (%)
CALCULATION OF SLING TENSION
9. Calculate divided load on each leg:

Total load ( Tons) ÷ legs () = ( Tons)

※If a qualified rigger or rigging specialist ensures that the load is evenly distributed, the full

use of all the legs is allowed after approval.

10. Angle Factor

※A sling angle less than 90° increases the tension (load) in the sling

10.a. Tension Load of Leg

The leg angle is (80°) therefore,

Tension load is total load (80°) multiplied by (1.015°)

Tension Load = 81.2 Tons

Leg Angle90°80°70°65°60°55°50°45°40°
Load Factor11.0151.0641.1031.1541.2201.3051.4141.555

SELECTION OF LIFTING GEAR

11. Select Tackles / Shakles

11a. Shackle Size : __Capacity: ___Tons (SWL)

11b. Others

Description: ______________ Size : ___________ Capacity: _______ Tons (SWL)

Description: ________Size : ___Capacity: _____ Tons (SWL)

12. Slings

12a. Tension Load (See 10a) ______________ tons

12b. Sling

Type: _________ (Steel Chain, Wire Rope, Metal Mesh, Synthetic Rope,

Synthetic Webbing, Synthetic Round sling)

Size: ________ Capacity(SWL): ___

12c. Determine Sling : Size , Capacity: Tons (SWL) × (T) EA

Free3d Lift Plan software, free download

Register of Lifting Key Personnel

Software
TITLENAMECOMPANYID NO.NATIONALITYCERTIFICATE NO.REMARK
Lifting Supervisor

.

Lifting Equipment/

Crane Operator

.

Rigger(Signaler)
Prepared by :

Designation : Lifting Supervisor.

Signature :

Reviewed by :

Designation :

Signature :

Approved by :

Designation :

Signature :