US2652981A - Railway crossing - Google Patents
Railway crossing Download PDFInfo
- Publication number
- US2652981A US2652981A US212351A US21235151A US2652981A US 2652981 A US2652981 A US 2652981A US 212351 A US212351 A US 212351A US 21235151 A US21235151 A US 21235151A US 2652981 A US2652981 A US 2652981A
- Authority
- US
- United States
- Prior art keywords
- tie
- blocks
- rails
- railway
- block
- 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
Links
- 239000004567 concrete Substances 0.000 description 9
- 230000008439 repair process Effects 0.000 description 3
- 230000006835 compression Effects 0.000 description 2
- 238000007906 compression Methods 0.000 description 2
- 230000008602 contraction Effects 0.000 description 2
- 239000000945 filler Substances 0.000 description 2
- 238000012423 maintenance Methods 0.000 description 2
- 238000000465 moulding Methods 0.000 description 2
- 101100460704 Aspergillus sp. (strain MF297-2) notI gene Proteins 0.000 description 1
- 241000518579 Carea Species 0.000 description 1
- 229910000831 Steel Inorganic materials 0.000 description 1
- 239000010426 asphalt Substances 0.000 description 1
- 238000005266 casting Methods 0.000 description 1
- 230000003247 decreasing effect Effects 0.000 description 1
- UKFTXGSXCYEAKH-UHFFFAOYSA-N dicyanomercury 1,3,5,7-tetrazatricyclo[3.3.1.13,7]decane Chemical group N#C[Hg]C#N.N#C[Hg]C#N.C1N2CN3CN1CN(C2)C3 UKFTXGSXCYEAKH-UHFFFAOYSA-N 0.000 description 1
- 239000013521 mastic Substances 0.000 description 1
- 239000011178 precast concrete Substances 0.000 description 1
- 230000002787 reinforcement Effects 0.000 description 1
- 239000010959 steel Substances 0.000 description 1
Images
Classifications
-
- E—FIXED CONSTRUCTIONS
- E01—CONSTRUCTION OF ROADS, RAILWAYS, OR BRIDGES
- E01C—CONSTRUCTION OF, OR SURFACES FOR, ROADS, SPORTS GROUNDS, OR THE LIKE; MACHINES OR AUXILIARY TOOLS FOR CONSTRUCTION OR REPAIR
- E01C9/00—Special pavings; Pavings for special parts of roads or airfields
- E01C9/04—Pavings for railroad level-crossings
Definitions
- The" present invention relates Sto: railway crossv ⁇ ingsiat roadways or paved ⁇ highways 'andlemploysindividual preiabricated' elementsH 'orf blocks.. which' are removablyusupported each -oni ⁇ a singleil tieswith their-.upper surfaces flushl with.. each'V A 5 otherfand ⁇ the roadway, as ⁇ well yas with Ythe ⁇ wheel S engaging surfaces Aofthezzrails.V
- crossings have been constructed using# removable concrete' slabsfin.- which the... slabs depend'l on support by spanning! from .onecrosstie to the: next or by spanning.v several. consecutivecrossties
- Thesetypes of slabs orblocks areA not satisfactory as -structuralelements becausefthe wave motion inthe railroad-tracks uor rails, caused lby the passingof trains aslwelll as traic; cracks oribreaksthe concrete,v which has veryl little elastioityav-
- the present invention eliminatesrthe foregoing 25 objectionsby providing individual blocks or ele-v ments for each tie, i. e., with each tie, a block-'or element-is disposed between therrail'sof the track anda blockis positioned onthe outside .oieach rail of the track, all'lieing supportedin alignment 30 directlyfvon the same tie.
- slab onA blck which actsas a structural yelement and-willv withstand .the wave motion of the track-causedi bypassingV trains and trac and thus reduce, crackingandbreaking to a minimum.
- a further object of'thi's invention is to provide ⁇ a prefabribatecl-concretefslab forfuse in railway crossings in which the simplicitynof design makes 40 it economically feasible forgeneral usei onwall types of imagelway crossings.
- a still further object of this invention is to provide? a railway crossing with prefabricated concrete slabs cast or molded with a tie receiving channel, groove or recess, one block being asso- 4P,ciated with one tie only, thus increasing the load capacity of the crossing.
- Another object of this invention is to provide a railway crossing with prefabricated blocks individually removable from the crossties which they overlie, thus decreasing the cost of maintenance of the crossing.
- Figure 1 is a perspective view of a railway 2: crossingincorporating the improved prefabricated bloeks or elements
- FigureZ represents a crosssection of a double track-railway; ⁇ showing-the precast blocks overlyingftheicrosstiesi andy also showing a precast' block betweenfthe pairsof rails in a double trackline;
- Fi'gulfef is an enlarged perspective View of the improved prefabricated block which overliesl that portion ofthe tie 'on the outside'of saidlrails, ⁇ and Figure 4' 'is' an enlarged perspective view of the improved prefabricat'ed block used ⁇ to overlie the tie-f'between the rails.1
- eachprecast 'concreteblock I3; as l shown; inFigur'es-and 4,- is ⁇ substantially rectan-y gularl in'- shape,v having la longitudinal channel,
- said iianges are of such length that they depend downwardly approximately one-half the height of the tie I2.
- the channel, groove or recess I5 is of a size to closely hug the tie on which it is disposed, as shown, and enables the blocks to be positioned accurately and rmly on the crosstie, eliminating objectionable lateral movement.
- the block member I3 By providing the channel with parallel vertical side walls I9 and the horizontal top wall 20 at the under side of the connecting web I6, contiguous with the upper portion of the tie, the block member I3 will take a substantial compression load and objectionable shear and torsional loads will be substantially eliminated.
- the properties of concrete make it excellent in concrete 3 compression, but it is of little use in shear or torsion.
- Each block I3, as shown in Figure 4, which is disposed between the rails II, has the web I6 at each end molded or cut away, as shown at 2I, so as to provide an enlargement or transverse recess 2l which, as shown in Figure 2, will receive the rail anchors, spikes, tie plates and the like without contacting the same.
- the cut away portion 2I is suitably inclined, as shown in Figures 2, 3 and 4, and extends throughout the transverse dimension of the web and vertical side walls I9. As shown in Figure 3, only one such recess is needed for the block which overlies the portion of the tie outside of the rails, whereas a recess 2
- Casting or molding of the blocks I3 is relatively inexpensive because of the simplicity of the design of the mold. However, it is advisable when molding said blocks to provide each block with a standard type of concrete reinforcement. In the preferred form of the invention, the blocks are reinforced by steel rods 22.
- Each prefabricated block I3 is provided with a plurality of vertically spaced openings or holes 23 along the longitudinal axis thereof.
- the openings 23 are provided for the reception of lag screws 24, which anchor the block to the tie, as shown in Figure 2. It is, of course, evident that the head of the lag screw 24 must lie flush or be located below the surface of the block I3.
- each crosstie I2 directly supports three aligned precast blocks, said tie being disposed in the channel, groove or recess I5 of the blocks.
- One block overlies the portion of the tie between the rails, while the other two blocks are supported by that portion of the tie which is outside of the rails and adjacent to the road or highway Irl.
- the blocks are placed on the ties and then anchored by means of the lag screws 24.
- a mastic filler 25 or the like is then inserted between adjacent blocks, between the blocks and the road, and between the blocks and the rails. The filler takes care of any expansion or contraction of the concrete slabs and also provides waterproong between the joints.
- Figure 2 discloses a modied form of the railway crossing where there are double tracks.
- the crossing in this instance is provided with a permanently aixed concrete or asphalt slab 26 in the space between the crossties of the two track sections. Then, just as in the single track crossings, the removable blocks or slabs I3 are anchored to the ties and the ller 25 is used between the joints.
- a highway crossing for railways comprising separate prefabricated elements, a group of said elements being supported by an individual railway cross-tie, a plurality of said groups being positioned adjacent each other with elements thereof disposed between the rails of the tracks and along the outside of the same, each of said elements being subject only to the movement of the tie on which it is supported.
- a highway crossing for railways comprising a plurality of separate prefabricated elements, a group of said elements being supported by an individual railWay'cross-tie, each element having a recess to receive at least the upper portion of the tie, a plurality of said groups being positioned adjacent each other with elements thereof disposed between the rails of the tracks and along the outside of the same, each of said elements being subject only to the movement of the tie on which it is supported.
- a crossing for railways comprising a plurality of separate prefabricated elements, a group of said elements being supported by an individual railway cross-tie, each element having a recess to receive at least the upper portion of the tie, a plurality of said groups being positioned substantially contiguous each to the other and to the heads of the rails of the railway.
Landscapes
- Engineering & Computer Science (AREA)
- Architecture (AREA)
- Civil Engineering (AREA)
- Structural Engineering (AREA)
- Road Paving Structures (AREA)
Description
Sept 22,1953 R. F. LANIER 2,652,981
RAILWAY CROSSING Filed F b. 23, 1951 ff ggz -,4
A JJ fz 13 I,
INVENT OR )20k/*ff Lanier /8 BY www, 19011;/ www ATTORNEYS Patented Sept. 22, 1953 UNITED S'IfiiTIES `r Tl GFSFI'CE RAILWAY CR'SSINGV.
Robert F. Lanier, LanettfiAlai.-
Application-February 23, 1951'; SerialNo; 2122351 4 Glaimsi v (Cl.` 23R-1&9) t
The" present invention relates Sto: railway crossv` ingsiat roadways or paved `highways 'andlemploysindividual preiabricated' elementsH 'orf blocks.. which' are removablyusupported each -oni `a singleil tieswith their-.upper surfaces flushl with.. each'V A 5 otherfand `the roadway, as `well yas with Ythe `wheel S engaging surfaces Aofthezzrails.V
Heretofore, crossings have been constructed using# removable concrete' slabsfin.- which the... slabs depend'l on support by spanning! from .onecrosstie to the: next or by spanning.v several. consecutivecrossties I Thesetypes of slabs orblocks areA not satisfactory as -structuralelements becausefthe wave motion inthe railroad-tracks uor rails, caused lby the passingof trains aslwelll as traic; cracks oribreaksthe concrete,v which has veryl little elastioityav- Another disadvantageV in sucha slabisthat when itbe'comesnecessary.to repair a tier orv ai small portion-Iof-track ory cross-l ing, a relatively large portionof the crossing lmust be removed in order that repairs may be made. This notI only'makes'- repairs more expensive, but it also increases the time and other maintenance costsf The present invention' eliminatesrthe foregoing 25 objectionsby providing individual blocks or ele-v ments for each tie, i. e., with each tie, a block-'or element-is disposed between therrail'sof the track anda blockis positioned onthe outside .oieach rail of the track, all'lieing supportedin alignment 30 directlyfvon the same tie.
Itlis one ofthe primary objects of this inventionfto provide a prefabricated concrete. slab onA blckwhich actsas a structural yelement and-willv withstand .the wave motion of the track-causedi bypassingV trains and trac and thus reduce, crackingandbreaking to a minimum.
A further object of'thi's invention is to provide` a prefabribatecl-concretefslab forfuse in railway crossings in which the simplicitynof design makes 40 it economically feasible forgeneral usei onwall types of vrailway crossings.
A still further object of this invention is to provide? a railway crossing with prefabricated concrete slabs cast or molded with a tie receiving channel, groove or recess, one block being asso- 4P,ciated with one tie only, thus increasing the load capacity of the crossing.
Another object of this invention is to provide a railway crossing with prefabricated blocks individually removable from the crossties which they overlie, thus decreasing the cost of maintenance of the crossing.
These and other objects of the invention will appear more fully from the following description and accompanying drawings, in which:
Figure 1 is a perspective view of a railway 2: crossingincorporating the improved prefabricated bloeks or elements FigureZ represents a crosssection of a double track-railway;` showing-the precast blocks overlyingftheicrosstiesi andy also showing a precast' block betweenfthe pairsof rails in a double trackline;
Fi'gulfef is an enlarged perspective View of the improved prefabricated block which overliesl that portion ofthe tie 'on the outside'of saidlrails, `and Figure 4' 'is' an enlarged perspective view of the improved prefabricat'ed block used` to overlie the tie-f'between the rails.1
ReferringtoFigure' 1`of` the drawings, the railspecification.'v l Means-1 are also' provided toV take careA ofthe expansion and;Y contraction of -the precast concrete blocks-between themselves; the" adjacent' road I4; and the rails or track Il.
Preferably, eachprecast 'concreteblock I3; as l shown; inFigur'es-and 4,- is `substantially rectan-y gularl in'- shape,v having la longitudinal channel,
grooveiior lrecess-IS-"located on theunderside thereof for direct reception oa crosstie I2; The bridge orV web'YI-, defined by thechannel I5, of the-fblock-ul i's substantially'eq-ual-in thickness to thefheightof the rail II in order that-the top orupperW surface IIlof ftheconcrete slab will be iiush' with thetop orf-Wheel engaging surface off thevrail andthe adjacent roadwayIIi-when aislab isin place.' -The depending flanges I8 of'the" bloekfllSimay belief any length. However; in the preferred form shown in thea'ccompanying drawings, said iianges are of such length that they depend downwardly approximately one-half the height of the tie I2. The channel, groove or recess I5 is of a size to closely hug the tie on which it is disposed, as shown, and enables the blocks to be positioned accurately and rmly on the crosstie, eliminating objectionable lateral movement. By providing the channel with parallel vertical side walls I9 and the horizontal top wall 20 at the under side of the connecting web I6, contiguous with the upper portion of the tie, the block member I3 will take a substantial compression load and objectionable shear and torsional loads will be substantially eliminated. The properties of concrete make it excellent in concrete 3 compression, but it is of little use in shear or torsion.
Each block I3, as shown in Figure 4, which is disposed between the rails II, has the web I6 at each end molded or cut away, as shown at 2I, so as to provide an enlargement or transverse recess 2l which, as shown in Figure 2, will receive the rail anchors, spikes, tie plates and the like without contacting the same. The cut away portion 2I is suitably inclined, as shown in Figures 2, 3 and 4, and extends throughout the transverse dimension of the web and vertical side walls I9. As shown in Figure 3, only one such recess is needed for the block which overlies the portion of the tie outside of the rails, whereas a recess 2| is needed on both ends of the block, as shown in Figure 4, which overlies the portion of the tie between the rails.
Casting or molding of the blocks I3 is relatively inexpensive because of the simplicity of the design of the mold. However, it is advisable when molding said blocks to provide each block with a standard type of concrete reinforcement. In the preferred form of the invention, the blocks are reinforced by steel rods 22.
Each prefabricated block I3 is provided with a plurality of vertically spaced openings or holes 23 along the longitudinal axis thereof. The openings 23 are provided for the reception of lag screws 24, which anchor the block to the tie, as shown in Figure 2. It is, of course, evident that the head of the lag screw 24 must lie flush or be located below the surface of the block I3.
From the above description the manner in which the prefabricated block or slab I3 is employed is now quite apparent. Essentially, each crosstie I2 directly supports three aligned precast blocks, said tie being disposed in the channel, groove or recess I5 of the blocks. One block overlies the portion of the tie between the rails, while the other two blocks are supported by that portion of the tie which is outside of the rails and adjacent to the road or highway Irl. The blocks are placed on the ties and then anchored by means of the lag screws 24. A mastic filler 25 or the like is then inserted between adjacent blocks, between the blocks and the road, and between the blocks and the rails. The filler takes care of any expansion or contraction of the concrete slabs and also provides waterproong between the joints.
Figure 2 discloses a modied form of the railway crossing where there are double tracks. The crossing in this instance is provided with a permanently aixed concrete or asphalt slab 26 in the space between the crossties of the two track sections. Then, just as in the single track crossings, the removable blocks or slabs I3 are anchored to the ties and the ller 25 is used between the joints.
The terminology used in the specification is for the purpose of description and not limitation, the scope of the invention being dened by the claims.
I claim:
1. A highway crossing for railways comprising separate prefabricated elements, a group of said elements being supported by an individual railway cross-tie, a plurality of said groups being positioned adjacent each other with elements thereof disposed between the rails of the tracks and along the outside of the same, each of said elements being subject only to the movement of the tie on which it is supported.
2. A highway crossing for railways comprising a plurality of separate prefabricated elements, a group of said elements being supported by an individual railWay'cross-tie, each element having a recess to receive at least the upper portion of the tie, a plurality of said groups being positioned adjacent each other with elements thereof disposed between the rails of the tracks and along the outside of the same, each of said elements being subject only to the movement of the tie on which it is supported.
3. A crossing for railways comprising a plurality of separate prefabricated elements, a group of said elements being supported by an individual railway cross-tie, each element having a recess to receive at least the upper portion of the tie, a plurality of said groups being positioned substantially contiguous each to the other and to the heads of the rails of the railway.
4. A crossing according to claim 3 wherein said elements are disposed between the rails of the tracks and along the outside of the same, each of the elements being subject only to the movement of the tie on which it is supported.
ROBERT F. LANIER.
References Cited in the le of this patent UNITED STATES PATENTS Number Name Date 123,219 Beidler Jan. 30, 1872 511,304 Mapel Dec. 19, 1893 1,130,997 Newhall Mar. 9, 1915 1,246,907 Godwin Nov. 20, 1917 1,568,677 McCanless Jan. 5, 1926 1,849,048 Crampton Mar. 8, 1932 1,881,660 Keller, Jr Oct. 11, 1932 2,017,336 Alexander Oct. 15, 1935 2,124,247 Fey July 19, 1938 2,174,035 Henderson Sept. 26, 1939 2,256,025 Hoak Sept. 16, 1941 FOREIGN PATENTS Number Country 'Date 120,742 Switzerland Sept. l, 1927
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US212351A US2652981A (en) | 1951-02-23 | 1951-02-23 | Railway crossing |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US212351A US2652981A (en) | 1951-02-23 | 1951-02-23 | Railway crossing |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| US2652981A true US2652981A (en) | 1953-09-22 |
Family
ID=22790642
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| US212351A Expired - Lifetime US2652981A (en) | 1951-02-23 | 1951-02-23 | Railway crossing |
Country Status (1)
| Country | Link |
|---|---|
| US (1) | US2652981A (en) |
Cited By (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US4010896A (en) * | 1976-03-25 | 1977-03-08 | Stockton William N | Modular liquid collection system for railroad roadbeds |
| USD253250S (en) | 1977-10-07 | 1979-10-23 | A-Betong Ab | Center plate for a level crossing between a road and a railroad |
Citations (12)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US123219A (en) * | 1872-01-30 | Improvement in wood-pavements | ||
| US511304A (en) * | 1893-12-19 | Paving-block | ||
| US1130997A (en) * | 1914-11-19 | 1915-03-09 | Walter S Newhall | Flangeway-guard for highway-crossings. |
| US1246907A (en) * | 1917-02-21 | 1917-11-20 | William S Godwin | Street-railway construction. |
| US1568677A (en) * | 1923-10-09 | 1926-01-05 | William F Mccanless | Street-railway construction |
| CH120742A (en) * | 1926-08-06 | 1927-09-01 | Lerch Ulmi & Cie | Road surface made of reinforced concrete slabs for roads with track systems. |
| US1849048A (en) * | 1928-06-21 | 1932-03-08 | Carey Philip Mfg Co | Crossing |
| US1881660A (en) * | 1929-07-05 | 1932-10-11 | Carey Philip Mfg Co | Pavement and pavement mat |
| US2017336A (en) * | 1933-07-31 | 1935-10-15 | Massey Concrete Products Corp | Concrete slab |
| US2124247A (en) * | 1936-11-09 | 1938-07-19 | Frank E Fey | Rail cross-over |
| US2174035A (en) * | 1936-07-01 | 1939-09-26 | William P Witherow | Sidewalk, floor, or roadway construction |
| US2256025A (en) * | 1940-09-03 | 1941-09-16 | Percy E Hoak | Laminated railroad crossing |
-
1951
- 1951-02-23 US US212351A patent/US2652981A/en not_active Expired - Lifetime
Patent Citations (12)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US123219A (en) * | 1872-01-30 | Improvement in wood-pavements | ||
| US511304A (en) * | 1893-12-19 | Paving-block | ||
| US1130997A (en) * | 1914-11-19 | 1915-03-09 | Walter S Newhall | Flangeway-guard for highway-crossings. |
| US1246907A (en) * | 1917-02-21 | 1917-11-20 | William S Godwin | Street-railway construction. |
| US1568677A (en) * | 1923-10-09 | 1926-01-05 | William F Mccanless | Street-railway construction |
| CH120742A (en) * | 1926-08-06 | 1927-09-01 | Lerch Ulmi & Cie | Road surface made of reinforced concrete slabs for roads with track systems. |
| US1849048A (en) * | 1928-06-21 | 1932-03-08 | Carey Philip Mfg Co | Crossing |
| US1881660A (en) * | 1929-07-05 | 1932-10-11 | Carey Philip Mfg Co | Pavement and pavement mat |
| US2017336A (en) * | 1933-07-31 | 1935-10-15 | Massey Concrete Products Corp | Concrete slab |
| US2174035A (en) * | 1936-07-01 | 1939-09-26 | William P Witherow | Sidewalk, floor, or roadway construction |
| US2124247A (en) * | 1936-11-09 | 1938-07-19 | Frank E Fey | Rail cross-over |
| US2256025A (en) * | 1940-09-03 | 1941-09-16 | Percy E Hoak | Laminated railroad crossing |
Cited By (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US4010896A (en) * | 1976-03-25 | 1977-03-08 | Stockton William N | Modular liquid collection system for railroad roadbeds |
| USD253250S (en) | 1977-10-07 | 1979-10-23 | A-Betong Ab | Center plate for a level crossing between a road and a railroad |
Similar Documents
| Publication | Publication Date | Title |
|---|---|---|
| US5181657A (en) | Composite rubber/concrete railroad grade crossing system | |
| US3300140A (en) | Beams for railroad track structure | |
| US4905896A (en) | Railroad roadway for high speed rail-mounted vehicles | |
| US4449666A (en) | Concrete railroad tie for supporting grade crossing panels | |
| US4117977A (en) | Highway-railway crossing | |
| US4267969A (en) | Railroad grade crossing construction | |
| US3056555A (en) | Grade crossing | |
| ES2371568B1 (en) | CONSTRUCTION SYSTEM IN PLATE ROAD FOR RAILWAY THROUGH THE EMPLOYMENT OF PREFABRICATED UNITS WORKED WITH AUTOCOMPACTABLE CONCRETE. | |
| US4368845A (en) | Railroad crossing structure | |
| US2652981A (en) | Railway crossing | |
| US4457468A (en) | Railroad grade crossing construction | |
| EA039394B1 (en) | Railway crossing and method for manufacturing rubber-concrete slabs for same | |
| DE19848928A1 (en) | Permanent way for urban tramways has grooved rails mounted to concrete sleepers with a sliding track profile for horizontal movement for accurate alignment of continuous welded rails | |
| CN209722634U (en) | A kind of prefabricated whole crossing plates structure in special purpose railroad level crossing location | |
| CN100360742C (en) | Plated rail without ballast | |
| US1034504A (en) | Reinforcing and protecting device for street-pavements. | |
| US1965026A (en) | Sheet metal railway grade crossing | |
| US1848604A (en) | Railway highway crossing | |
| US1725411A (en) | Railway-crossing construction | |
| CN2825720Y (en) | Plate type integrated grade crossing pavement made of reinforced concrete | |
| RU209887U1 (en) | SLEEP FOR TRAMS | |
| US819081A (en) | Concrete road-bed for railways. | |
| US1013736A (en) | Railway road-bed, track, and rail construction. | |
| RU167457U1 (en) | REINFORCED CONCRETE BEDROOM FOR TRAMWAYS WITH THREE HORIZONTAL SITES FOR INSTALLING ROADS | |
| RU7418U1 (en) | RAILROAD CROSSING |