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Clamp Compression Paper Testing Equipments Method of Large Products

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China Dongguan Haida Equipment Co.,LTD certification
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Clamp Compression Paper Testing Equipments Method of Large Products

Clamp Compression Paper Testing Equipments Method of Large Products
Clamp Compression Paper Testing Equipments Method of Large Products Clamp Compression Paper Testing Equipments Method of Large Products

Large Image :  Clamp Compression Paper Testing Equipments Method of Large Products

Product Details:
Place of Origin: Guangdong, China (Mainland)
Brand Name: HAIDA
Certification: ISO 9001:2000; ISO 9001:2008; QS-9000; ISO 14001:2004; CE, , SMC, CMC, CPA, CE,CMA,IMC
Model Number: HD-A534
Power: Electric
Port: ShenZhen
Payment & Shipping Terms:
Minimum Order Quantity: 1 Set
Price: Negotiable
Packaging Details: ach set protected with resin fiber and PP film, then put into Strong wooden case with operation man
Delivery Time: 20 days after order confirmed
Payment Terms: L/C,D/A,D/P,T/T,Western Union,MoneyGram,In cash, escrow
Supply Ability: 300 Sets per Month Haida
Detailed Product Description
Max. Force: 400~3000Lb Maximum Specimen Weight: 500kg (can Be Customized)
Load Cell: 4 Load Cell For Highest Accuracy Control System: Touch Screen Controller, Windows 7, RS-232 Interface
High Light:

packaging testing instruments

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paper and packaging material testing instruments

Clamp Compression Paper Testing Equipments Method of Large Products

 

Safety protection
 

Overload protection, overvoltage protection & limited position protection device

 

The clamp testing equipment simulates the process the schnabel car discharge the package, during this process, the clamping force of the both boards will affect the package and cargo. And this test is to evaluate the resistance property of the package toward this clamping force.

 

The Parameters
 
Item Description
Max. Force 400~3000Lb
Maximum specimen weight 500kg (can be customized)
Load cell 4 load cell for highest accuracy
Control system Touch screen controller, Windows 7, RS-232 interface
Motor Panasonic servo motor w/ DC variable speed drive system, high-precision mechanical ball screw rod
Force reading kgf, Ibf, N, KN, T etc
Load cell Resolution 1/250,000
Load Precision within ±0.25%
Parallelism of Platens Parallel within ±2.5mm
Clamping plate size Height 48inch X depth 48inch
Clamping plate adjustable height 0~1000mm
Clamping plate adjustable width 200~2000mm
Base plate dimension 2200 X 2100mm
Test speed 0.25-2.5mm/sec (according ISTA 6- SAMS CLUB)
Software TM 2101
Data display Load, displacement, speed, loading rate and elapsed time
Function The clamp can be up and down
Clamping plate requirement Make the two clamping boards flat and non-deform under work condition (2000 Pounds) and make clamping boards’ parallel and clamping board and land vertical. Clamping board is thicker than 25mm.
Safety features

E-Stop

Over-load protection

Upper and lower limit switches

Load sensor with automatic retreat

 

Design Standards

 

ASTM D642, ASTM D6055, American SEARS enterprise standard

 

Clamping Force Testing Method Of Large Products
 

1.Before placing the packaged product between platens, verify that the clamp force using the clamp indicator. The indicator should be placed between the axes of the platen articulation points approximately 1/2 way up the platens.

2.Each time the product is clamped, the force should be applied for a minimum of 15 seconds and not to exceed 1 minute.

3. Apply the clamp force on the sample with the platens resting on the floor and the front edge of the platens flush with the front of the package (see flush platen photo 4). If the package is too large for the clamps to be flush to front edge (i.e., large refrigerator, tractor etc.), clamp as close to the edge as possible.

4. Clamp the product a total of 10 times in the flush orientation.

5. Apply the clamp force on the packaged product with the platens in a 6×6 inch(15.2x15.2cm) offset position(see fig 5 ). Both the horizontal and vertical offset dimensions are measured at the front bottom corner of the platen. If the package is too large for the clamp to be positioned 6-inches from the front edge (i.e., large refrigerator, tractor etc.), clamp as close to this position as possible.

1)Exception number 1: for large products with an obvious, visible external skid(see fig 6), offset clamp testing is not conducted if the product does not extend beyond any part of the skid and there is some form of handling graphic or note that indicates to clamp only from the skid. If there is no graphic or not indicating this or there is some overhang beyond the skid, then the entire clamp test protocol is conducted.

2) Exception number 2: If the product height, when placed in its normal shipping orientation, is ≤ 12 inches, the 6 x6 inch offset testing is not conducted.

6. Clamp the product a total of 10 times with the clamp in the 6 x6 inch offset position.

7. Repeat step 5.2.5 except with a 2 x6 inch offset clamp position. The 2 x6 inch offset is similar to the 6 x6 inch offset except the platens are oriented such that they are 2-inches from the floor and 6-inches back from the package’s front edge. If the package is too large for the clamps to be positioned 2-inches from the front edge (i.e., large refrigerator, tractor etc.), clamp as close to this position as possible.

8. Repeat flush and offset clamping on all other sides of the product that are indicated in the handling graphics as acceptable for clamp handling.

According to verdict standards, if there is one item failed the test, then put forward the “Test Failure Handling Sheet

 

Clamp Compression Testing Method Of Small Products
 

Before clamp testing, verify that the clamp for using the clamp force indicator. The indicator should be placed between the axes of the platen articulation points approximately 1/2 way up the platens.

During clamp compression testing of small products, 4 samples will be utilized as outlined below.

1. If, when oriented for clamp testing (based on the handling graphics) the sides perpendicular to the platens of a single sample ≤ 24” (61cm), then the 4 sample should be placed in a”side by side”oritentation as shown to the fig 1(with 2 samples on the bottom and 2 on the top)

2. If, when oriented for clamp testing the sides perpendicular to the platens of a single sample are >24” (61cm),, then the 4 samples should be placed in a top-bottom orientation as shown fig 2. If, when placed 4-high, any of the samples are completely above the top of the platens, that sample can be removed from clamping in this orientation only(fig 3 shows 3 MHC’s ready for clamp testing with the 4th sample removed from testing in this orientation)

3 Each time the samples are clamped, the force should be applied for a minimum of 15 seconds and not to exceed 1 minute.

4 .Apply the clamp force on the samples with the platens resting on the floor and the samples flush with the front edge of the platens (see fig2). If the samples are too large for the clamps to be flush to front edge, clamp as close to the edge as possible.

5.Clamp the product a total of 10times with the clamps in the flush orientation.

6. Apply the clamp force on the packaged product with the platens in a 2×2 inch offset position(see fig 3). Both the horizontal and vertical offset dimensions are measured at the front bottom corner of the platen. If the package is too large for the clamps to be positioned 2-inches from the front edge, clamp as close to this position as possible.

7. Clamp the product a total of 10 times with the clamps in the offset position.

8. Repeat the flush and 2x2 inch offset camping on all other sides of the product that are identified in the handling graphics as acceptable for clamp handling. Please note, depending on the box geometry, you may use both the side-by-side and top-bottom orientation during clamp testing.

 

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Contact Person: Kelly

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