PL73430B1 - - Google Patents

Download PDF

Info

Publication number
PL73430B1
PL73430B1 PL15947272A PL15947272A PL73430B1 PL 73430 B1 PL73430 B1 PL 73430B1 PL 15947272 A PL15947272 A PL 15947272A PL 15947272 A PL15947272 A PL 15947272A PL 73430 B1 PL73430 B1 PL 73430B1
Authority
PL
Poland
Prior art keywords
jaws
stands
hydraulic cylinder
thrust bearing
stand
Prior art date
Application number
PL15947272A
Other languages
Polish (pl)
Original Assignee
Oesterreichischalpine Montangesellschaft
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 Oesterreichischalpine Montangesellschaft filed Critical Oesterreichischalpine Montangesellschaft
Publication of PL73430B1 publication Critical patent/PL73430B1/pl

Links

Classifications

    • EFIXED CONSTRUCTIONS
    • E21EARTH OR ROCK DRILLING; MINING
    • E21DSHAFTS; TUNNELS; GALLERIES; LARGE UNDERGROUND CHAMBERS
    • E21D23/00Mine roof supports for step- by- step movement, e.g. in combination with provisions for shifting of conveyors, mining machines, or guides therefor
    • E21D23/04Structural features of the supporting construction, e.g. linking members between adjacent frames or sets of props; Means for counteracting lateral sliding on inclined floor
    • E21D23/0418Positioning devices and stabilizing means for the props

Landscapes

  • Engineering & Computer Science (AREA)
  • Mining & Mineral Resources (AREA)
  • Geochemistry & Mineralogy (AREA)
  • Structural Engineering (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • General Life Sciences & Earth Sciences (AREA)
  • Architecture (AREA)
  • Geology (AREA)
  • Lining And Supports For Tunnels (AREA)
  • Forging (AREA)
  • Placing Or Removing Of Piles Or Sheet Piles, Or Accessories Thereof (AREA)
  • Pit Excavations, Shoring, Fill Or Stabilisation Of Slopes (AREA)
  • Investigating Strength Of Materials By Application Of Mechanical Stress (AREA)
  • Jigs For Machine Tools (AREA)
  • Conveying And Assembling Of Building Elements In Situ (AREA)

Description

Urzadzenie do pionowego ustawiania stojaków w zestawie obudowy górniczej Przedmiotem wynalazku jest urzadzenie do pio¬ nowego ustawiania stojaków w zestawie obudowy górniczej, w którym stropnica podparta jest kil¬ koma stojakami zamocowanymi na jednej plycie spagowej. Znane w dotychczasowym stanie tech¬ niki urzadzenia do pionowego ustawiania wykony¬ wane sa z elementów sprezynujacych, przeciwdzia¬ lajacych przewracaniu sie stojaków i utrzymuja¬ cych je w pozycji pionowej, o ile nie wystepuja poziome skladowe sily obciazen. Tego rodzaju urzadzenia elastyczne nie wywieraja jednakze si¬ ly potrzebnej do wyprostowania pochylonych sto¬ jaków i sa zupelnie niewystarczajace d.j utrzymy¬ wania stojaków w pozycji pionowej wzgledem spagu, szczególnie gdy wystepuja sily boczne.Celem wynalazku jest skonstruowanie takiego urzadzenia do utrzymania stojaków w pionie, które nie posiadaloby wad wystepujacych w dotychcza¬ sowych rozwiazaniach technicznych.Cel ten osiagnieto przez zastosowanie w urza¬ dzeniu zwierainych szczek, zamontowanych po obu stronach lozyska oporowego, osadzonego trwale wzgledem plyty spagowej, zwieranych za pomoca cylindra hydraulicznego wokól stojaków, przy czym w cylindrze hydraulicznym, po stronie jego przestrzeni roboczej, zamontowany jest zawór utrzymujacy Cisnienie i ograniczajacy sile ustawia¬ nia. W ten sposób moze byc wywarta na stojak znaczna sila utrzymujaca go w pionie i eliminujaca 10 25 80 zarazem dzialanie sil bocznych. Poniewaz zloze weglowe nie zawsze tworzy poklad poziomy wiec w zwiazku z tym polozenie stojaków wzgledem spagu moze znacznie odbiegac od pionu i szczegól¬ nie w takich przypadkach moga wystapic wielkie sily boczne, których dzialanie moze byc zniwelo- . wane przez zastosowanie rozwiazania wedlug wy¬ nalazku. Zastosowanie hydraulicznego zaworu utrzymujacego cisnienie umozliwia utrzymanie sta¬ lej sily pionujacej stojaki a ograniczenie tej sily zabezpiecza przed niebezpieczenstwem ich zlama¬ nia. W wyniku zamontowania miedzy szczekami stalego lozyska oporowego wyznaczone jest poloze¬ nie pionowe stojaka wzgledem spagu i takie roz¬ wiazanie stanowi ogranicznik dla pionowego usta¬ wienia stojaka. Stojaki pochylone zostaja w ten sposób przyparte do stalego lozyska oporowego i wyprostowane do prawidlowego polozenia pio¬ nowego. Pelne wyprostowanie pochylonego stoja¬ ka uzyskane jest dopiero wtedy, gdy obie szczeki przywieraja do lozyska oporowego obejmujac sto¬ jak bez luzów lub z luzami minimalnymi. Sila pio¬ nujaca wywarta na jeden stojak oddzialowywuje zarazem na pozostale stojaki wchodzace w sklad zestawu obudowy, poniewaz sa one wspólnie sprze¬ zone ze soba stropnica i plyta spagowa. Przy ze¬ stawach obudowy skladajacych sie z dwóch par stojaków, z których pierwsza zamontowana jest obok siebie a druga zamontowana jest wzdluz kie¬ runku stropnic za para pierwsza, urzadzenie pio- 73 43073 3 nujace oddzialywuje skutecznie na pare stojaków zamontowanych obok siebie.W szczególnie korzystnym rozwiazaniu wedlug wynalazku szczeki obejmuja stojak lub stojaki na wysokosci conajmniej jednej trzeciej ich dlugo¬ sci. W wyniku takiego rozwiazania ramie dzwigni, na które dziala sila pionujaca, jest odpowiednio dluzsze, umozliwiajac przylozenie stosunkowo du¬ zych sil pionujacych. W korzystnym rozwiazaniu konstrukcyjnym zarówno szczeki jak równiez i lo¬ zysko oporowe zamontowane sa na konsoli obej¬ mujacej stojak. W rozwiazaniu wedlug wynalazku, dostosowanym do zestawu obudowy, w którym dwa stojaki zamontowane sa obok siebie, jest ko¬ rzystnym zastosowanie szczeki dwuramiennej, obejmujacej oba stojaki zamontowane obok siebie, przy czym cylinder hydrauliczny oddzialowywuje na szczeki na ich czesci usytuowanej miedzy sto¬ jakami a lozysko oporowe znajduje sie miedzy obu stojakami.Przyklad rozwiazania wedlug wynalazku przed¬ stawiony jest na zalaczonych rysunkach, na któ¬ rych fig. 1 przedstawia zestaw obudowy z urza¬ dzeniem pionujacym, w widoku z boku; fig. 2 — urzadzenie pionujace w powiekszeniu, w ukladzie aksonometrycznym; fig. 3 i 4 — zamocowanie szczek, w widoku z góry (fig. 3) i w przekroju po linii IV—IV z fig. 3 (fig. 4).Stropnica 1 zestawu obudowy jest podparta przez cztery stojaki 2, 3, 4, 5 zamontowane na plycie spagowej 6. Stojaki 2, 3, 4, 5 sa polaczone przegu¬ bowo z plyta spagowa 6 i stropnica 1, Na konsoli 7, na prowadnicach 10 i 11, uloione sa przesuwnie dwie szczeki 8 i 9. Szczeki 8 i 9 obejmuja stojaki 2 i 3 swoimi wyjeciami chwyt- nymi 12 o zarysie mniej wiecej pólokraglym. Na konsoli 7 zamontowane jest trwale lozysko opo¬ rowe 13, posiadajace wybranie materialowe 14, przez które przeprowadzone sa laczniki nakladko¬ we 15 i 16, stanowiac obustronna obejme dla szczek 8 i 9. Szczeka 8 jest polaczona spawami z lacznikami nakladkowymi. Ze szczeka 8 oraz z lacznikami nakladkowymi polaczony jest cylinder hydrauliczny 17, którego tlok 18 posiada tloczy- sko 19, polaczone za pomoca sworznia 20 ze szcze¬ ka 9. Na przykladzie wykonania rozwiazania we¬ dlug wynalazku przedstawionym na fig. 4 czesc lacznika nakladkowego 15 i 16 tworzy korpus 17 cylindra, do którego przyspawane sa pozostale cze¬ sci 15' i 16' laczników. Sworzen 20 wyprowadzony jest na zewnatrz przez podluzne otwory 21 wyciete w lacznikach 15 i 16.Gdy przestrzen robocza 22 tloka 18 zostanie za¬ silona ciecza pod cisnieniem to za pomoca tloczy- ska 19 i sworznia 20 szczeka 9 zostanie dociagnie¬ ta do szczeki 8, przyspawanej obydwoma czesciami do cylindra 17. W momencie, gdy jedna ze szczek swoja powierzchnia 23 przylozenia bedzie przylegac do stalego lozyska oporowego 13, szczeka pozosta¬ la 8 lub 9 przyciagnie oba stojaki 2 i 3 do lozyska oporowego 13. Stojaki sa przywracane do normal¬ nej prawidlowej pozycji pionowej, w wyniku cze¬ go w koncu równiez i powierzchnia 23 przylozenia pozostalej szczeki bedzie przylegac do stalego lo¬ zyska oporowego 13. W takim polozeniu konco- 430 4 wym stojaki 2 i 3 sa juz ustawione pionowo przy czym stojaki 4 i 5 sa równiez poddane korekcie ustawienia za pomoca polaczen ze stropnica 1 i plyta spagowa 6. Przy takim ustawieniu konco- 5 wym wyjecia ehwytne 12 obu szczek 8 i 9 przy¬ legaja do stojaków 2 i 3 bez luzów lub z luzami minimalnymi.Z przestrzenia robocza 22 polaczony jest zawór 24 utrzymujacy cisnienie i ograniczajacy sile usta- 10 wiania dla stojaków. Gdy osiagnieta jest pelna si¬ la ustawiania to zawór 24 utrzymuje ja na stalym poziomie. Gdy w wyniku ruchów górotworu stoja¬ ki przechylaja sie pod dzialaniem sil nacisku to szczeki spelniaja swoja funkcje korekcyjna az do 15 momentu, gdy wartosc stalej sily ustawiania nie zostanie przekroczona.Konsola 7 posiada wysokosc tak dobrana, ze za¬ montowane na niej szczeki 8 i 9 przylegaja do stojaków na wysokosci conajmniej jednej trzeciej 20 ich dlugosci.Dolny lacznik 16 osadzony jest w listwach pro¬ wadnicy 10 i 11 i prowadzony jest przez ich po¬ wierzchnie boczne. Wysokosc osadzenia laczników 15 i 16 wyznaczona jest przez wybranie materia- 25 lowe 14 w lozysku oporowym 13. W zwiazku z tym szczeki utrzymywane sa w wyznaczonych poloze¬ niach, posiadajacych scisle okreslone odleglosci za¬ równo we wszystkich kierunkach bocznych jak równiez i w kierunku wysokosci. so PL PLDevice for vertical positioning of stands in a set of mining support. The present invention relates to a device for vertical positioning of stands in a set of mining supports, in which the canopy is supported by several stands fixed on one spag plate. The devices for vertical alignment known in the prior art are made of spring elements which prevent the racks from tipping over and keep them in a vertical position, as long as there are no horizontal load components. Such flexible devices do not, however, exert the force needed to straighten inclined tables and are completely insufficient to keep the uprights vertical with respect to the spag, especially when there are lateral forces. The object of the invention is to construct such a device to hold the uprights vertical, which would not have the disadvantages of the hitherto technical solutions. This goal was achieved by the use of short-cut jaws mounted on both sides of the thrust bearing, firmly attached to the spag plate, closed by a hydraulic cylinder around the stands, in the hydraulic cylinder on the side of its working space, there is a valve which maintains the pressure and limits the setting force. In this way, a considerable force can be exerted on the stand to keep it upright and at the same time eliminating the action of side forces. As the carbon bed does not always form a horizontal deck, therefore, the position of the stands in relation to the spag may deviate significantly from the vertical and, especially in such cases, there may be great lateral forces, the effect of which may be destructive. by the use of the solutions of the invention. The use of a hydraulic pressure maintaining valve makes it possible to maintain a constant vertical force of the stands, and the limitation of this force prevents the risk of their breaking. As a result of mounting between the jaws of a fixed thrust bearing, the vertical position of the stand is determined with respect to the spag, and this solution is a stop for the vertical position of the stand. The tilted stands are thus propped up against the fixed thrust bearing and straightened into the correct vertical position. Complete straightening of the tilted stand is achieved only when both jaws adhere to the thrust bearing, embracing the table with no or minimal play. The foaming force exerted on one stand acts at the same time on the other stands of the casing assembly, since they are jointly coupled together with the canopy and the floor plate. With casing kits consisting of two pairs of stands, the first of which is mounted next to each other and the second is mounted along the direction of the canopy behind the first pair, the lifting device has an effective effect on a pair of stands mounted side by side. In a preferred embodiment of the invention, the jaws comprise a stand or stands at a height of at least one third of their length. As a result of this solution, the lever arm, which is subjected to the plumbing force, is correspondingly longer, enabling the application of relatively large plumbing forces. In a preferred design, both the jaws as well as the thrust bearing are mounted on a console that encloses the stand. In a solution according to the invention adapted to a casing assembly in which two uprights are mounted side by side, it is advantageous to provide a two-armed jaw comprising the two uprights mounted side by side, the hydraulic cylinder acting on the jaws on a portion thereof located between the tables and the thrust bearing is located between the two stands. An example of an embodiment according to the invention is illustrated in the accompanying drawings, in which Fig. 1 shows the housing assembly with a plumbing device in side view; Fig. 2 shows an enlarged plumbing device in the axonometric configuration; Figures 3 and 4 show the attachment of the jaws, viewed from above (Figure 3) and in section IV-IV of Figure 3 (Figure 4). The trestle 1 of the housing assembly is supported by four uprights 2, 3, 4, 5 mounted on the splice plate 6. The stands 2, 3, 4, 5 are articulated with the splice plate 6 and the canopy 1, On the console 7, on the guides 10 and 11, two jaws 8 and 9 are slidably arranged. 9 embrace the racks 2 and 3 with their catch openings 12 of approximately half-round shape. A thrust bearing 13 is permanently mounted on the console 7, having a material recess 14 through which the overlay connectors 15 and 16 are led to form a double-sided clamp for the jaws 8 and 9. The jaw 8 is welded to the overlay connectors. A hydraulic cylinder 17 is connected to the jaws 8 and to the overlay connectors, the piston of which 18 has a piston 19, connected by means of a pin 20 to the jaws 9. The example of the embodiment according to the invention shown in Fig. 4 of the overlay connector 15 and 16 forms the cylinder body 17 to which the remainder of the 15 'and 16' fittings are welded. The pin 20 is led out through elongated holes 21 cut in the fasteners 15 and 16. When the working space 22 of the piston 18 is energized with a liquid under pressure, the jaw 9 will be pulled against the jaw 8 by means of the piston rod 19 and pin 20, welded with both parts to the cylinder 17. As soon as one of the jaws has its contact surface 23 adjacent to the fixed thrust bearing 13, the remaining jaw 8 or 9 will pull both racks 2 and 3 to the thrust bearing 13. The racks are restored to normal correct vertical position, as a result of which finally also the contact surface 23 of the remaining jaw will be adjacent to the fixed support bearing 13. In this final position, the stands 2 and 3 are already vertical, with the stands 4 and 5 are also positioned corrected by means of the connections with the canopy 1 and the floor plate 6. With this final positioning 5, the catch holes 12 of both jaws 8 and 9 are adjacent to the stands 2 and 3 with no or minimum play. Connected to the working space 22 is a valve 24 which maintains the pressure and limits the setting force for the props. When full setting force is reached, the valve 24 keeps it constant. When, as a result of rock mass movements, the stools tilt under the action of pressure forces, the jaws perform their corrective function until the moment when the value of the constant setting force is not exceeded. The console 7 has a height selected so that the jaws 8 and 9 adjoin the racks at a height of at least one third 20 of their length. The bottom link 16 is seated in guide rails 10 and 11 and is guided through their side surfaces. The mounting height of the fasteners 15 and 16 is determined by the material recess 14 in the thrust bearing 13. Accordingly, the jaws are held in predetermined positions having precisely defined distances in all lateral directions as well as in the height direction. so PL PL

Claims (10)

1. Zastrzezenia patentowe 1. Urzadzenie do pionowego ustawiania stojaków w zestawie obudowy górniczej, w którym stropni- 3& ca podparta jest kilkoma stojakami zamocowany¬ mi na jednej plycie spagowej, znamienne tym, ze posiada szczeki zwieralne (8, 9) zamontowane po obu stronach lozyska oporowego (13), osadzonego trwale wzgledem plyty spagowej 6, zwierane za 40 pomoca cylindra hydraulicznego (17) wokól sto¬ jaków (2, 3), przy czym w cylindrze hydraulicznym (17), po stronie jego przestrzeni roboczej (22), za¬ montowany jest zawór (24) utrzymujacy cisnienie i ograniczajacy sile ustawiania. 451. Patent claims 1. A device for vertical positioning of stands in a mining support set, in which the roof is supported by several stands mounted on one spag plate, characterized by the fact that it has short jaws (8, 9) mounted on both sides a thrust bearing (13) mounted firmly against the spike plate 6, connected by means of a hydraulic cylinder (17) around the tables (2, 3), in the hydraulic cylinder (17) on the side of its working space (22), A valve (24) is fitted to maintain the pressure and limit the setting force. 45 2. Urzadzenie wedlug zastrz. 1, znamienne tym, ze szczeki (8, 9) przywieraja do stojaków (2, 3) na wysokosci conajmniej jednej trzeciej ich dlugosci.2. Device according to claim A method as claimed in claim 1, characterized in that the jaws (8, 9) adhere to the stands (2, 3) at a height of at least one third of their length. 3. Urzadzenie wedlug zastrz. 1—2, znamienne tym, ze szczeki (8, 9) przylegaja do stalego lozy- 50 ska oporowego (13) w takich polozeniach, w któ¬ rych obejmuja stojak (2, 3) bez luzów lub z luza¬ mi minimalnymi.3. Device according to claim A method according to any of the preceding claims, characterized in that the jaws (8, 9) rest on the fixed support bearing (13) in positions where they enclose the stand (2, 3) with no or minimal play. 4. Urzadzenie wedlug zastrz. 1—3, znamienne tym, ze szczeki (8, 9) jak równiez lozysko oporowe 55 (13) zamontowane sa na konsoli (7) stanowiacej obejme dla stojaka (2, 3).4. Device according to claim A device according to any of the preceding claims, characterized in that the jaws (8, 9) as well as the thrust bearing 55 (13) are mounted on a console (7) constituting a clamp for the stand (2, 3). 5. Urzadzenie wedlug zastrz. 1—4, znamienne tym, ze szczeki (8, 9) uksztaltowane sa dwuramien- nie obejmujac dwa stojaki zamontowane obok 60 siebie, przy czym cylinder hydrauliczny oddzialo¬ wywuje na szczeki (8, 9) na ich czesci usytuowa¬ nej miedzy stojakami (2, 3) a lozysko oporowe (13) zamontowane jest miedzy obu stojakami (2, 3).5. Device according to claim 1-4, characterized in that the jaws (8, 9) are formed in two arms, embracing two stands mounted next to each other, with a hydraulic cylinder acting on the jaws (8, 9) on their part located between the stands ( 2, 3) and the thrust bearing (13) is mounted between both stands (2, 3). 6. Urzadzenie wedlug zastrz. 1—5, znamienne 65 tym, ze z jedna ze szczek (8) polaczony jest sztyw-5 73 430 6 no cylinder hydrauliczny (17) oraz dwa laczniki nakladkowe (15, 16) obejmujace szczeki (8, 9) obu¬ stronnie a pozostala szczeka (9), prowadzona mie¬ dzy tymi lacznikami, polaczona jest z tlcczyskiem (19) cylindra hydraulicznego (17).6. Device according to claim 1 to 5, characterized in that one of the jaws (8) is connected rigidly with a hydraulic cylinder (17) and two overlay couplings (15, 16) covering the jaws (8, 9) on both sides and the remainder of the jaw (9), guided between these couplings, is connected to the piston (19) of the hydraulic cylinder (17). 7. Urzadzenie wedlug zastrz. 6, znamienne tym, ze stale lozysko oporowe (13) posiada wybranie materialowe (14), przez które przechodza oba lacz¬ niki nakladkowe (15, 16).7. Device according to claim A material as claimed in claim 6, characterized in that the thrust bearing (13) has a material recess (14) through which both overlay fasteners (15, 16) pass. 8. Urzadzenie wedlug zastrz. 1—7, znamienne tym, ze konsola (7) posiada prowadnice (10, 11), obejmu¬ jace dolny lacznik nakladkowy (16) po stronie jego powierzchni bocznych i prowadzace go, a na gór¬ nych powierzchniach tych prowadnic ulozone sa szczeki (8, 9) przemieszczajace sie wzdluz tych po¬ wierzchni przesuwnie.8. Device according to claim 1 to 7, characterized in that the console (7) has guides (10, 11) which enclose the lower overlay connector (16) on the side of its side surfaces and guide it, and the upper surfaces of these guides are provided with jaws ( 8, 9) moving along these surfaces slidably. 9. Urzadzenie wedlug zastrz. 1—8, znamienne tym, ze szczeki (8, 9) posiadaja lukowa powierz¬ chnie (12) przylozenia, która obejmuja stojak (2, 3) równiez po jego bocznych stronach.9. Device according to claim A device according to any of the claims 1-8, characterized in that the jaws (8, 9) have an arched contact surface (12) which encloses the stand (2, 3) also on its lateral sides. 10. Urzadzenie wedlug zastrz. 1—9, znamienne tym, ze szczeki (8, 9) zamontowane sa na tylnej parze stojaków (2, 3), odwróconej od frontu ura¬ biania. W/aw^ FIG.273 430 FIG. 3 mr "In 4$ *1 46' 9 i Prac Poligraf. UP PRL Naklad 120 + 18 egz. Cena 10 zl PL PL10. Device according to claim A method according to any of the claims 1-9, characterized in that the jaws (8, 9) are mounted on a rear pair of stands (2, 3) facing away from the front of the cutting. W / a ^ FIG. 273 430 FIG. 3 mr "In 4 $ * 1 46 '9 i Prac Poligraf. UP PRL Circulation 120 + 18 copies. Price PLN 10 PL PL
PL15947272A 1971-12-14 1972-12-12 PL73430B1 (en)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
AT1073971A AT310114B (en) 1971-12-14 1971-12-14 Device for straightening the stamp of an expansion frame

Publications (1)

Publication Number Publication Date
PL73430B1 true PL73430B1 (en) 1976-09-15

Family

ID=3624358

Family Applications (1)

Application Number Title Priority Date Filing Date
PL15947272A PL73430B1 (en) 1971-12-14 1972-12-12

Country Status (11)

Country Link
US (1) US3832856A (en)
JP (1) JPS5315443B2 (en)
AT (1) AT310114B (en)
CS (1) CS166831B2 (en)
ES (1) ES409544A1 (en)
FR (1) FR2163542B1 (en)
GB (1) GB1379417A (en)
HU (1) HU165109B (en)
PL (1) PL73430B1 (en)
SU (1) SU639472A3 (en)
YU (1) YU35180B (en)

Families Citing this family (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4030308A (en) * 1976-05-21 1977-06-21 Fletcher Sutcliffe Wild Limited Mine roof supports
GB1546630A (en) * 1976-12-29 1979-05-23 Fletcher Sutcliffe Wild Ltd Mine roof supports
DE3100093A1 (en) * 1981-01-03 1982-08-05 Gewerkschaft Eisenhütte Westfalia, 4670 Lünen DEVICE FOR LIMITING THE REMOVAL RESISTANCE OF A HYDRAULIC REMOVAL PLATE
FR2497872B1 (en) * 1981-01-13 1986-03-28 Alsace Mines Potasse DEVICE FOR HYDRAULIC POSITIONING OF THE STUDS OF A HYDRAULIC SUPPORT ASSEMBLY
US5584611A (en) * 1994-11-22 1996-12-17 Long-Airdox Roof support for underground excavations
US10774642B1 (en) * 2019-05-05 2020-09-15 Liaoning University Hydraulic support unit and hydraulic support for anti-rock burst roadway
CN114673535A (en) * 2022-03-28 2022-06-28 中国矿业大学(北京) Large-inclination-angle supporting device for preventing coal wall from caving

Family Cites Families (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB779791A (en) * 1954-12-15 1957-07-24 Dowty Mining Equipment Ltd Improvements relating to end caps for pit-props
US3016992A (en) * 1957-10-24 1962-01-16 Wilson John Hart Stabilizer for fluid cylinder plungers of high slenderness ratio
GB1107379A (en) * 1964-08-11 1968-03-27 Gullick Ltd Improvements in or relating to pivotally supported members particularly of mine roof supports

Also Published As

Publication number Publication date
DE2259271B2 (en) 1975-07-10
HU165109B (en) 1974-06-28
FR2163542A1 (en) 1973-07-27
DE2259271A1 (en) 1973-07-05
SU639472A3 (en) 1978-12-25
FR2163542B1 (en) 1976-08-20
YU35180B (en) 1980-09-25
AT310114B (en) 1973-09-25
YU301072A (en) 1979-12-31
ES409544A1 (en) 1975-11-16
US3832856A (en) 1974-09-03
JPS5315443B2 (en) 1978-05-25
JPS4876702A (en) 1973-10-16
GB1379417A (en) 1975-01-02
CS166831B2 (en) 1976-03-29

Similar Documents

Publication Publication Date Title
US4139324A (en) Bracing system glide shoe for trench sheeting equipment
US4348138A (en) Sliding supporting gallery
PL97759B1 (en) SHIELD HOUSING
DE1703054C3 (en) Safety ski binding
CS216162B4 (en) Shield equipment
CZ282464B6 (en) Mine mechanical support
SU843778A3 (en) Metallic support section for underground mining
US3832856A (en) Device for vertically positioning the props of a mine roof supporting frame
ES2098975T3 (en) FORMWORK PANEL WITH BEAM WITH CROSS SECTION APPROXIMATELY U-SHAPED.
DE69008463T2 (en) Load lifting device, in particular for a truck.
US3270510A (en) Mine roof and like supports
DE741717C (en) Pressure switch for hiking pillar
US3438209A (en) Roof support assembly of the type used on the longwall face of a coal seam
DE8335270U1 (en) TOWING DEVICE FOR LIFTING EQUIPMENT
PL127515B1 (en) Bar-type stabilizer
US4095432A (en) Mine roof supports
US4175420A (en) Safety tie down for a pulling apparatus
PL108547B1 (en) Anchoring device for mines
DE2026204C3 (en) Operating device for a lockable energy storage mechanism for height-adjustable seating furniture or tables
DE2308535A1 (en) SAFETY SKI BINDING WITH HEEL DEVICE
AT318447B (en) Ski binding part
GB2090225A (en) Improvements relating to lifting devices
PL55251B1 (en)
DE2947081C2 (en) Support of a front end girder
DE1484624C (en) Leveler