Universal Material Testing 7 T$ ]6 |- ?4 ^3 k" s
Static Universal Testing Machines
6 u# S+ e1 V2 t' x, x" RSeries LFM-L 0.5 - 20 kN
" R3 W+ }) B, A2 S; nSeries LFM 20 - 125 kN ! s6 Q: F0 y- n( l
Series LFM-H 150 - 600 kN + x. t. w' e) o( G$ _* _# s( x
Series LFMZ 20 - 500 kN
0 p* H( I3 H- c, ~ H: l" ~" dSeries LFM - T 20 - 200 Nm
7 p* x1 c' ]6 G/ \% sSeries LFM-C 0.5 - 40 kN ! \$ Y7 t& p2 i3 a6 O5 I
Series TTM 100 - 3000 kN
3 P' x+ Y6 _% p+ r' bSeries LF(SV) 50 - 1000 kN
; a! r1 g3 ?3 r4 `- a# JDynamic Testing Systems
" v/ q: C$ q3 g9 q/ ZDigital Controllers
9 n6 {7 i# [3 B6 |: `Material Testing Software DION 2 M* n; k7 C/ T. j. o) S
Accessories
$ s% B2 u) Q8 p' ]/ a; x% WCustomized Test Systems
: ~$ |3 Y$ Z- M# b8 y' P0 c- p# GPendulum Impact Testers
7 l/ \- K6 _3 h8 |3 B2 TPipe & Pressure Testing Systems
4 _3 r( I+ e U* C# OShear Testing Device EN 15340 + V$ ^/ _ x6 ~2 U" S; m/ a, l6 t7 O l
Torsion Testing Machines 6 \ f q' O9 l* t
Test Bar Dividing Machines
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Civil, Structural and Architectural Testing $ c2 w4 U* E. d
Products " s( e- L% K) R
Servo - Actuators
' n* f5 b1 `9 e( }, LPortal Load Frames & r b! L& P e# h% G
Joints " j$ L( |' u0 ^
Hydraulic Power Packs , j5 B: I$ e: V4 n5 c
Accessories
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Building Material Testing & t+ }. N, c5 V7 Z
Cement 0 y1 l8 t6 y8 Y' b8 p
Concrete
/ f+ q5 Q7 J" z7 o. ^Concrete Pipe and Masonry ( N( I4 c, v. h6 Y
Bituminous
1 B D: q! ` s. g/ N& eRock Mechanics 4 h! x. S$ U( `' |, T/ m! {
Aggregats, Sands, Soils ( w5 X7 z/ x4 E' ^" A) Z5 I
Laboratory Equipment ; I6 `8 W- g5 j9 P( A7 [
Wood and Timber
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. x3 v! T$ Q8 }Modernisations
& G1 |/ d) B* L, Q, M8 H5 k# H1 WHydraulic Testing Machines
/ g% q1 F8 g7 ^9 v" n7 K* `Electromechanical $ g1 K1 p/ f# g5 ?; M
Testing Machines
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6 c9 y' K2 a0 L" K5 D! j, USecond Hand Machines 0 H# g3 @/ s \. T8 V" }8 O
Universal Material Testing
# {6 q+ _ b, G g+ N* aBuilding Material Testing & s1 `( z7 q4 B' C- ~2 ~
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Static Universal Testing Machines ( s0 D0 X5 d9 T1 @
Series TTM® 100 - 3000 kN
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$ o2 z" g% u9 t4 f( F4 T2 B4 g4 B9 o- }TTM® Tensile Testing Machine is a registered trademark of walter+bai ag Testing Machines.
. j# E/ H4 C" i5 ~8 zThe Series TTM testing machines are “state-of-the-art”, rugged and durable designed especially suitable for high capacity testing of round, flat and profile specimens meeting the needs of the metal, aerospace, automotive and fastern industries.The economic solution mainly in the field of higher and highest capacity testing.
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1 O/ |0 p0 a* k' h4 c4 t# f& OServohydraulic Universal Testing Machines
: r$ n% [. ~3 ^5 R9 ^The Series TTM testing machines with its single test space designed for tension, compression, bend and folding, shear and static cyclic testing is specifically suitable for testing of metals-(wire, rod, tube, strip, plate, strip), fasteners (tensile, proof, single and double shear), construction materials (reinforcement bar, wire, mesh, folding, compression of concrete) and components. All models of the Series TTM feature a rigid load frame either in two- or four-column construction for minimum maintenance and low reaction at specimens failure. The servo-actuator, which is integrated in the upper crosshead with a long piston stroke makes testing space accessible for easy and efficient testing of different samples lengths. The high precision load cell is located between base platen and lower grip, providing high accuracy test after test. The servoactuator, which is integrated in the upper crosshead, has a long piston stroke which makes testing space accessible for easy and efficient testing of different samples lengths. The long piston stroke meets the extreme requirements of international standards without changing the crosshead adjustment. On piston rod end a anti-rotation system prevents the natural tendency of the actuator to rotate. Ergonomically design with unchanged height of lower grip and accessible test space for easy and efficient testing. With chrome plated columns for easy cleaning and longest life.
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$ I" ?8 M3 ]8 Q. U3 r4 T( [ Examples:5 P4 y7 x8 t2 F9 k
Type TTM 300 kN
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Type TTM 600 kN8 H# s) x. N6 c7 N
Type TTM 1000 kN
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6 y6 p6 z- x/ P. b( [Type TTM 1200 kN
2 ~) _& E- T2 N0 `: @! s5 L$ ^1 EType TTM 1500 kN . M e& r% V. b& m
# m9 i R) b8 y% u/ L' Q9 nType TTM 2000 kN
/ X L% ^6 J a& q% l$ PType TTM 3000 kN |