US3643496A - Hydraulic load test device - Google Patents

Hydraulic load test device Download PDF

Info

Publication number
US3643496A
US3643496A US25416A US3643496DA US3643496A US 3643496 A US3643496 A US 3643496A US 25416 A US25416 A US 25416A US 3643496D A US3643496D A US 3643496DA US 3643496 A US3643496 A US 3643496A
Authority
US
United States
Prior art keywords
posts
crossbeam
frame
hydraulic
pressure
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Lifetime
Application number
US25416A
Inventor
Vladimir Zajic
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Skoda np
Original Assignee
Skoda np
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Skoda np filed Critical Skoda np
Application granted granted Critical
Publication of US3643496A publication Critical patent/US3643496A/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Images

Classifications

    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N3/00Investigating strength properties of solid materials by application of mechanical stress
    • G01N3/08Investigating strength properties of solid materials by application of mechanical stress by applying steady tensile or compressive forces
    • G01N3/10Investigating strength properties of solid materials by application of mechanical stress by applying steady tensile or compressive forces generated by pneumatic or hydraulic pressure

Definitions

  • This invention relates to a load test device for examination of load test pieces by pull, pressure or bending and particularly for examination of larger test pieces according to a predetermined program.
  • a load test device with an open mobile frame, preferably of rectangular shape, with an upper and lower crossbeam, slidable along posts, connected at the top by a crossbeam, with a second crossbeam connecting the posts within the opening of said slidable frame and with sets of hydraulic elastic steel cushions inserted between the second crossbeam connecting the posts and the upper and lower crossbeam respectively of the slidable frame and with means for supporting the test piece between the slidable frame and a stable part of the load test device.
  • FIG. 2 is a cross-sectional top view along a plane indicated in FIG. 1 by the line ll-ll,
  • H0. 3 an elevation of the central part of the machine at a larger scale with indicated means controlling the pressure in the steel cushions.
  • the load test device comprises a baseplate 10, to which four vertical posts 11 are fixed, which are connected at the top by a first removable crossbeam 2 which remains fixed during the course of operation of the testing device.
  • the position of the crossbeam 2, however, with respect to the posts 1 and 2 can be made adjustable prior to start the tests.
  • the upper crossbeam 3 and the lower crossbeam 5 of the frame 6 are provided with holes 12 for free passage of the posts ii.
  • the first crossbeam 2 is provided with a suitable cavity 113 in which is inserted the head of a test piece 9, which head is usually T- shaped.
  • a similar cavity M for the other end of the test piece is provided in the upper crossbeam 3 ofthe frame ti.
  • a second crossbeam t is fixed to the posts l in their lower half. within the opening of the frame a, and serves as support for two sets 7 and 8 of hydraulic elastic steel cushions resting with their other surfaces against the upper crossbeam 3 and the lower crossbeam 5 respectively of the slidable frame is.
  • the internal spaces of the steel cushions 7 and ii are individually connected by way of spring-loaded return valves 17, 18 to conduits l5 and 16 respectively, supplying a suitable pressure medium, for instance oil to the cushions 7 and 8.
  • the conduits l5 and 116 are connected to a sliding valve l9 which alternately connects one set 7 or ii of the spring cushions to a pressure conduit 20 while the other set is connected to a conduit 21 or 22 leading to the waste.
  • the described device operates as follows:
  • test piece 9 suspended or supported within the cavities l3 and lid of the first crossbeam 2 of the posts l and of the upper crossbeam 3 of the frame 6, is exposed to pressure or pull generated by one of the sets '7 or ii of hydraulic elastic steel cushions whereby the stress of the force transmitted to the test piece 9 is taken over substantially only by the first crossbeam 2, by the second crossbeam i and by the posts ll, all these elements remaining stable in the course of the whole test.
  • the hydraulic medium is supplied to the steel cushions 7 or 8 by way of the slide valve 3.9 according to a predetermined program, which can be easily maintained by adjusting the pressure in the pressure conduit 20.
  • a predetermined program which can be easily maintained by adjusting the pressure in the pressure conduit 20.
  • the cushions are individually connected to the supply conduits 11% or i s by way of return valves 17 or iii, an occasional failure of some cushions need not cause the failure of the whole device, as it is automatically disconnected from the pressure supply.
  • the construction of the device can remain relatively light, so that the cost of the device is equally reduced while the control is easy and reliable.
  • a hydraulic load test device comprising in combination:
  • a frame comprising an upper crossbeam, a lower beam and two lateral walls
  • the upper and lower crossbeam of said frame provided with openings for free passage of the posts through said openings
  • a pressure conduit for the pressure medium serving both for the supply and removal of the pressure from the steel cushions
  • each of the steel cushions being connected to the pressure conduit by means of an automatic disconnect valve.
  • a hydraulic load test device comprising means for supporting a test piece: between a pair of opposed hydraulic pressure assemblies, each of said assemblies comprising a plurality of axially superimposed closed chamber members each semblies is movably mounted on a base frame for reciprocation toward and away from said test piece.
  • each of said cushion members is provided with an associated regulating valve, each valve being connected to a common conduit having valve means connected to the source of hydraulic media for selectively pressurizing one or the other of said assemblies.

Landscapes

  • Physics & Mathematics (AREA)
  • Health & Medical Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Chemical & Material Sciences (AREA)
  • Analytical Chemistry (AREA)
  • Biochemistry (AREA)
  • General Health & Medical Sciences (AREA)
  • General Physics & Mathematics (AREA)
  • Immunology (AREA)
  • Pathology (AREA)
  • Investigating Strength Of Materials By Application Of Mechanical Stress (AREA)

Abstract

A hydraulic load test device for examination of load test pieces by pull, pressure or bending, provided with hydraulic elastic steel cushions, inserted between crossbeams of a mobile frame arranged slidable along posts and between a crossbeam, connecting both posts of the test device within an opening of the frame.

Description

m mum @mm Wmmnl [151 mm wn Zajic [451 Feb 22, mm
[541 mnnmmec mm "mm" mwm jfiglereneee Cfilled [72] Inventor: Vladimir Zajic, Plz en c zechoslm illge N TED STATES PATENTS 73 Assignee: sn -mm fl P126, 1,905,535 4/1933 Giesler ..92/37 X czecmsmaka FOREIGN PATENTS OR APPLlCATlONS [22] Flled: Apr. 3, 11970 318,481 2/1957 Switzerland 73/93 [2!] Appl. No.1 25,4116
Primary Examiner-Jerry W. Myracle ..w m-. AtmmeyRichard Low and Murray Schaffer [30] Fun-elm Applfimmnu Prim-filly I 1 CT Apr. 10, 1969 Czechoslovalua ..2528/69 A hydraulic 103 d test device for examination of load test pieces by pull, pressure or bending, provided with hydraulic [52] IU.S. Cll .13/93, 92/37 elastic steel Cushions, inserted between crossbeams ofa [51] f m 3/10 bile frame arranged slidable along posts and between a cross- [58] lFleldl of Search l ..73/97, 93; 92/37 beam, connecting both posts f the test device Within an opening of the frame.
5 Claims, 3 Drawing Figures MHmzz m2 SHEET 1 OF 2 INVENTOR VLHD/M/R ZnJxc HYDRAULIC LOAD TEST DEVIEE BACKGROUND OF THE INVENTION This invention relates to a load test device for examination of load test pieces by pull, pressure or bending and particularly for examination of larger test pieces according to a predetermined program.
The individual elements of similar load test devices for tests with larger test pieces are exposed to extraordinary stresses in the course of performing different tests. As these tests are rather expensive, the load test device must operate reliably according to a predetermined program whether tests by pull, by pressure or by bending are concerned.
Most of actually used similar test devices operate with pressure sources using hydraulic cylinders and pistons. The construction of similar machines is due to the high working pressures and are rather bulky and heavy and therefore also expensive. There are also difficulties with regard to the packing of the piston rods and ofthe pistons themselves at high operating pressures.
SUMMARY OF THE INVENTION it is an object of this invention to provide a load test device ofthe kind described which would allow a less bulky construction than actually used devices.
It is another object of this invention to enable an easy performance of tests according to a predetermined program.
it is still another object of this invention to eliminate to the highest possible degree difficulties with packing of elements which are exposed to high hydraulic pressure.
Bearing these and other objects in mind, there is provided a load test device with an open mobile frame, preferably of rectangular shape, with an upper and lower crossbeam, slidable along posts, connected at the top by a crossbeam, with a second crossbeam connecting the posts within the opening of said slidable frame and with sets of hydraulic elastic steel cushions inserted between the second crossbeam connecting the posts and the upper and lower crossbeam respectively of the slidable frame and with means for supporting the test piece between the slidable frame and a stable part of the load test device.
DESCRIPTION OF THE DRAWINGS An exemplary embodiment ofa load-testing device according to this invention is schematically illustrated in the accompanying drawings, where H6. 1 is an elevation of the machine with parts in vertical section,
FIG. 2 is a cross-sectional top view along a plane indicated in FIG. 1 by the line ll-ll,
H0. 3 an elevation of the central part of the machine at a larger scale with indicated means controlling the pressure in the steel cushions.
DESCRIPTION OF PREFERRED EMBODIMENT With reference to FIG. 1, the load test device comprises a baseplate 10, to which four vertical posts 11 are fixed, which are connected at the top by a first removable crossbeam 2 which remains fixed during the course of operation of the testing device. The position of the crossbeam 2, however, with respect to the posts 1 and 2 can be made adjustable prior to start the tests. An open frame 6, substantially of rectangular shape, comprising an upper crossbeam 3, a lower crossbeam 5 and two lateral walls 11, is guided slidably by the posts 1. The upper crossbeam 3 and the lower crossbeam 5 of the frame 6 are provided with holes 12 for free passage of the posts ii. The first crossbeam 2 is provided with a suitable cavity 113 in which is inserted the head of a test piece 9, which head is usually T- shaped. A similar cavity M for the other end of the test piece is provided in the upper crossbeam 3 ofthe frame ti.
A second crossbeam t is fixed to the posts l in their lower half. within the opening of the frame a, and serves as support for two sets 7 and 8 of hydraulic elastic steel cushions resting with their other surfaces against the upper crossbeam 3 and the lower crossbeam 5 respectively of the slidable frame is.
The internal spaces of the steel cushions 7 and ii are individually connected by way of spring-loaded return valves 17, 18 to conduits l5 and 16 respectively, supplying a suitable pressure medium, for instance oil to the cushions 7 and 8. The conduits l5 and 116 are connected to a sliding valve l9 which alternately connects one set 7 or ii of the spring cushions to a pressure conduit 20 while the other set is connected to a conduit 21 or 22 leading to the waste.
The described device operates as follows:
The test piece 9, suspended or supported within the cavities l3 and lid of the first crossbeam 2 of the posts l and of the upper crossbeam 3 of the frame 6, is exposed to pressure or pull generated by one of the sets '7 or ii of hydraulic elastic steel cushions whereby the stress of the force transmitted to the test piece 9 is taken over substantially only by the first crossbeam 2, by the second crossbeam i and by the posts ll, all these elements remaining stable in the course of the whole test.
The hydraulic medium is supplied to the steel cushions 7 or 8 by way of the slide valve 3.9 according to a predetermined program, which can be easily maintained by adjusting the pressure in the pressure conduit 20. As the cushions are individually connected to the supply conduits 11% or i s by way of return valves 17 or iii, an occasional failure of some cushions need not cause the failure of the whole device, as it is automatically disconnected from the pressure supply.
In operation always one set 7 or 8 of cushions is exposed to pressure, while the other set is connected to the waste depending on the position of the slide valve 19. In the neutral position of the slide valve indicated in FIG. 3 none of the sets '7 or 8 of cushions is connected to the pressure medium and the machine is inoperative.
As the different elements of the device are stressed rather favorably, the construction of the device can remain relatively light, so that the cost of the device is equally reduced while the control is easy and reliable.
I claim:
l. A hydraulic load test device comprising in combination:
a baseplate,
a number of vertical posts,
a first crossbeam connecting the posts at their tops,
a second crossbeam connecting the posts in their lower halves,
a frame comprising an upper crossbeam, a lower beam and two lateral walls,
the upper and lower crossbeam of said frame provided with openings for free passage of the posts through said openings,
enabling a free sliding movement of the frame along the posts,
the lateral walls ofthe frame remaining beyond the posts,
the frame encompassing in the assembled state of the device the second crossbeam of the posts,
hydraulic elastic steel cushions provided between the second crossbeam of the posts and the upper and lower crossbeam of the frame respectively,
means for supporting both ends of the test piece in the first crossbeam of the posts and in the upper crossbeam of the frame,
means for individually supplying and discharging a pressure medium to said steel cushions,
a pressure conduit for the pressure medium serving both for the supply and removal of the pressure from the steel cushions,
each of the steel cushions being connected to the pressure conduit by means of an automatic disconnect valve.
2. A hydraulic load test device comprising means for supporting a test piece: between a pair of opposed hydraulic pressure assemblies, each of said assemblies comprising a plurality of axially superimposed closed chamber members each semblies is movably mounted on a base frame for reciprocation toward and away from said test piece.
5. The device according to claim 3, wherein each of said cushion members is provided with an associated regulating valve, each valve being connected to a common conduit having valve means connected to the source of hydraulic media for selectively pressurizing one or the other of said assemblies.

Claims (5)

1. A hydraulic load test device comprising in combination: a baseplate, a number of vertical posts, a first crossbeam connecting the posts at their tops, a second crossbeam connecting the posts in their lower halves, a frame comprising an upper crossbeam, a lower beam and two lateral walls, the upper and lower crossbeam of said frame provided with openings for free passage of the posts through said openings, enabling a free sliding movement of the frame along the posts, the lateral walls of the frame remaining beyond the posts, the frame encompassing in the assembled state of the device the second crossbeam of the posts, hydraulic elastic steel cushions provided between the second crossbeam of the posts and the upper and lower crossbeam of the frame respectively, means for supporting both ends of the test piece in the first crossbeam of the posts and in the upper crossbeam of the frame, means for individually supplying and discharging a pressure medium to said steel cushions, a pressure conduit for the pressure medium serving both for the supply and removal of the pressure from the steel cushions, each of the steel cushions being connected to the pressure conduit by means of an automatic disconnect valve.
2. A hydraulic load test device comprising means for supportiNg a test piece between a pair of opposed hydraulic pressure assemblies, each of said assemblies comprising a plurality of axially superimposed closed chamber members each adapted to be pressurized with a hydraulic media and means for independently regulating the pressurization of said chamber members to activate one or both of said assemblies.
3. The device according to claim 2, wherein each of said chamber members comprises a cushion formed of flexible steel and said assembly including spacer members axially arranged between adjacent cushions.
4. The device according to claim 3, wherein each of said assemblies is movably mounted on a base frame for reciprocation toward and away from said test piece.
5. The device according to claim 3, wherein each of said cushion members is provided with an associated regulating valve, each valve being connected to a common conduit having valve means connected to the source of hydraulic media for selectively pressurizing one or the other of said assemblies.
US25416A 1969-04-10 1970-04-03 Hydraulic load test device Expired - Lifetime US3643496A (en)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CS252869 1969-04-10

Publications (1)

Publication Number Publication Date
US3643496A true US3643496A (en) 1972-02-22

Family

ID=5362669

Family Applications (1)

Application Number Title Priority Date Filing Date
US25416A Expired - Lifetime US3643496A (en) 1969-04-10 1970-04-03 Hydraulic load test device

Country Status (3)

Country Link
US (1) US3643496A (en)
BE (1) BE748671A (en)
DE (1) DE2016509C3 (en)

Cited By (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3731595A (en) * 1971-12-01 1973-05-08 Borg Warner Cylindrical bellows seal for extensive axial movement
US3975989A (en) * 1973-04-19 1976-08-24 Rudolf Felix Homberger Pressure responsive force transmission apparatus
US3978784A (en) * 1974-11-11 1976-09-07 Dominion Engineering Works, Limited Calendar control system
US5079998A (en) * 1991-02-01 1992-01-14 Westinghouse Electric Corp. Pneumatic driver
US5119681A (en) * 1990-02-15 1992-06-09 Fel-Pro Incorporated Test fixture
US5437191A (en) * 1993-04-10 1995-08-01 Zwick Gmbh & Co. Hydraulically powered test frame with spindle-actuated valve
US5505095A (en) * 1994-10-12 1996-04-09 Raymond; Louis Rising step-load test apparatus
US20150260623A1 (en) * 2014-03-14 2015-09-17 Citic Dicastal Co., Ltd. Apparatus for detecting spring stiffness

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US1905585A (en) * 1930-03-19 1933-04-25 Fulton Sylphon Co Steam engine
CH318481A (en) * 1953-12-10 1957-01-15 Amsler Alfred J & Co Hydraulic material testing machine

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US1905585A (en) * 1930-03-19 1933-04-25 Fulton Sylphon Co Steam engine
CH318481A (en) * 1953-12-10 1957-01-15 Amsler Alfred J & Co Hydraulic material testing machine

Cited By (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3731595A (en) * 1971-12-01 1973-05-08 Borg Warner Cylindrical bellows seal for extensive axial movement
US3975989A (en) * 1973-04-19 1976-08-24 Rudolf Felix Homberger Pressure responsive force transmission apparatus
US3978784A (en) * 1974-11-11 1976-09-07 Dominion Engineering Works, Limited Calendar control system
US5119681A (en) * 1990-02-15 1992-06-09 Fel-Pro Incorporated Test fixture
US5079998A (en) * 1991-02-01 1992-01-14 Westinghouse Electric Corp. Pneumatic driver
US5437191A (en) * 1993-04-10 1995-08-01 Zwick Gmbh & Co. Hydraulically powered test frame with spindle-actuated valve
US5505095A (en) * 1994-10-12 1996-04-09 Raymond; Louis Rising step-load test apparatus
US5585570A (en) * 1994-10-12 1996-12-17 Lra Laboratories, Inc. Rising step-load test apparatus
US20150260623A1 (en) * 2014-03-14 2015-09-17 Citic Dicastal Co., Ltd. Apparatus for detecting spring stiffness
US9470613B2 (en) * 2014-03-14 2016-10-18 Citic Dicastal Co. Ltd Apparatus for detecting spring stiffness

Also Published As

Publication number Publication date
DE2016509B2 (en) 1974-08-01
DE2016509A1 (en) 1970-10-15
BE748671A (en) 1970-09-06
DE2016509C3 (en) 1975-03-27

Similar Documents

Publication Publication Date Title
US3643496A (en) Hydraulic load test device
US2138397A (en) Compression roll
CN109030234B (en) System and method for testing long-time creep property of explosive
US2075968A (en) Hydraulic load producing means
US3675915A (en) Hydraulic positioning saddle
US2353388A (en) Apparatus for controlling the slide movement in long-bed hydraulic presses
JPS63230208A (en) Rolling mill with axially movable rolling roll and method of adjusting contour of such rolling roll
US2479759A (en) Apparatus for the treatment of webs or fleeces
US2354562A (en) Hydraulic testing machine
US1865070A (en) Universal testing machine
US2992866A (en) Refining machine with automatically compensated adjustment particularly for the refining of chocolate and similar substances
US1717735A (en) Iron-bending machine
US2170054A (en) Apparatus for boring crankcase bearings
US2683982A (en) System for hydrostatically testing hollow bodies
US3129582A (en) Portable hardness tester
CN107630864B (en) Oil cylinder sealing life inspection device
US2385488A (en) Equalizer for elevator cables
US3657972A (en) Crosshead arrangement for the drive mechanism of high-pressure compressors and pumps
US3768400A (en) Press having means to prevent skewing movement of the ram
US3457765A (en) Adapter cushion
US1147153A (en) Transverse testing-machine.
US2058444A (en) Beam testing device
US2809542A (en) Compensating system for presses
US2533025A (en) Apparatus for applying tension and/or pressure to material
US2536881A (en) Hydropneumatic apparatus for developing and maintanining hydrostatic pressure