Product Details:
Payment & Shipping Terms:
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Product Name: | Plastic Testing Equipment | Power: | Electronic |
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Maximum Height: | 2m | Falling Ball Control: | DC Solenoid Control |
Ball Weight: | 357,533,1042,2280 G | Design Standards: | JIS-K6754, A5430, ISO 6603, BS4660, BS4514, BS3505 |
Highlight: | universal tensile testing machine,plastic testing instrument |
Pendulum Impact Plastic Testing Machine , JIS-K6754 A5430
Product Description:
Plastic Impact Testing Machine for plastic / ceramic / glass fiber and other materials fastness testing. Test method: falling ball impact test machine test method in order to provide the weight of the ball, adjust to a certain height, so that free fall against the specimen, depending on the extent of the damage, to determine quality. Falling distance of up to 2m, drop weight can be adjusted between 1.25kg to 10kg, can provide a variety of sample holder.
Design Standards:
JIS-K6754, A5430, ISO 6603, BS4660, BS4514, BS3505, BS2782: 11 Part: Method 1108A,, ASTM D5420, ASTM D3029
The main technical parameters:
Capacity | 1J or 2.75J or 5.5J or 11J or 22J (optional) |
Impact velocity | 3.4m/sec |
Test angle | 150° |
Impact center distance | 0.322m |
Pendulum power distance | Pd 11=5.8949Nm; Pd 22=11.7898Nm |
Distance between impact blade and jaw | 22mm±0.2mm |
Blade filleted radius | R=0.8mm±0.2mm |
Display | Digital |
Weight | 70KG |
Dimension | 48*61*110cm |
Power | AC220V±10%, 50/60Hz, single phase |
Optional | Manual Notch Sampling Machine (ISO180) |
Test method:
Drop hammer impact test machine / falling ball impact test machine: the impact energy by dropping height and weight is calculated as follows:
Hammer impact energy = weight (kg) * drop height (m) * g
g: acceleration due to gravity = 9.81m/s/s
Product Features:
1 unique design, or components used to assess the impact properties of the specimen
(2) the drop height up to 2000mm, can produce the maximum 6.264m / s impact velocity
3 hammer weighing between 10kg 1.25kg maturity
4 Maximum impact energy of 196 joules
Contact Person: Mary