摘要:
A mine elevator is provided having an anti-explosion traction system, an anti-explosion lift car protection system, a flexible guide rail guiding system, a compound lift car, and a counterweight system. The anti-explosion traction system comprises a traction rope tension regulating device, an anti-explosion traction machine, and an anti-explosion control cabinet. The anti-explosion lift car protection system comprises a rope holder, a speed limiter, two hydraulic buffers, a safety clamp, a brake rope, and a brake rope tension buffer device. The flexible guide rail guiding system comprises a steel wire rope guide rail, a guide rail tension device connected to the steel wire rope guide rail and fixed to the an upper platform, a guide rail connection device connected to the steel wire rope guide rail and fixed to a lower platform, and a flexible guide rail guide sleeve fixed to the compound lift car and the counterweight system.
摘要:
The present invention discloses a process for producing light colored polyalkylated arylalkyl sulfonic acids. The polyalkylated arylalkyl sulfonic acids may be further neutralized with alkalis or amines to form the corresponding light colored sulfonated salts. The present invention also makes manufacture of polyalkylated arylalkyl sulfonic acids possible as first intent products using an inexpensive and simple reaction. The structure of the polyalkylated arylalkyl sulfonic acids produced using the process described in the present invention is shown below: Where R1, R2 and R3 are each separately and independently H, alkyl (branched or linear C1 to C30), R4═CH3(CH2)oCH(CH2)pCH3 m+n=4 to 28 o+p=3 to 27.
摘要翻译:本发明公开了一种生产浅色多烷基芳基烷基磺酸的方法。 多烷基化芳基烷基磺酸可以用碱或胺进一步中和以形成相应的浅色磺化盐。 本发明还使得制备多烷基化芳基烷基磺酸成为使用廉价且简单的反应的第一意图产物。 使用本发明描述的方法制备的多烷基化芳基烷基磺酸的结构如下:其中R1,R2和R3各自独立地为H,烷基(支链或直链的C1至C30),R4 = CH3(CH2) oCH(CH2)pCH3 m + n = 4〜28o + p = 3〜27。
摘要:
The present invention discloses a process for producing polyalkylated arylalkyl sulfonic acids by reacting arylalkyl sulfonic acids with olefins. The polyalkylated arylalkyl sulfonic acids may be further neutralized with alkalis or amines to form the corresponding sulfonated salts. The present invention also makes possible manufacture of polyalkylated arylalkyl sulfonic acids as first intent products using an inexpensive and simple reaction. The structure of the polyalkylated arylalkyl sulfonic acids produced using the process described in the present invention is shown below: Where R1, R2 and R3 are each separately and independently H, alkyl (branched or linear C1 to C30), (—CH2CH2O)a, (—CH(CH3)CH2O)b, or (—CH2CH2O)c(—CH2(CH3)CH2O)d, m+n=8 to 28 R4=CH2CH3, CH2CH3Y or Y(CH2)pCH(CH2)qY p+q=0 to 27 a=1 to 30 b=1 to 30 c+d=2 to 30 Y=CH3, COOH, CH2OH, CH2(—CH2CH2O)a, CH2(—CH(CH3)CH2O)b, CH2(—CH2CH2O)c(—CH2(CH3)CH2O)d, aromatic, or substituted aromatic.
摘要翻译:本发明公开了一种通过芳基烷基磺酸与烯烃反应制备多烷基化芳基烷基磺酸的方法。 多烷基化芳烷基磺酸可以用碱或胺进一步中和以形成相应的磺化盐。 本发明还可以使用廉价和简单的反应制备多烷基化芳烷基磺酸作为第一意图产品。 使用本发明所述方法制备的多烷基化芳烷基磺酸的结构如下所示:其中R1,R2和R3各自独立地为H,烷基(支链或直链C1至C30),( - CH2CH2O)a, (-CH(CH 3)CH 2 O)b或(-CH 2 CH 2 O)c(-CH 2(CH 3)CH 2 O)d,m + n = 8〜28 R 4 = CH 2 CH 3,CH 2 CH 3 Y或Y(CH 2)p CH(CH 2)q Y p + q = 0至27 a = 1至30 b = 1至30 c + d = 2至30 Y = CH3,COOH,CH2OH,CH2(-CH2CH2O)a,CH2(-CH(CH3)CH2O)b,CH2( -CH 2 CH 2 O)c(-CH 2(CH 3)CH 2 O)d,芳族或取代的芳族。
摘要:
The present invention discloses a process for producing light colored polyalkylated arylalkyl sulfonic acids. The polyalkylated arylalkyl sulfonic acids may be further neutralized with alkalis or amines to form the corresponding light colored sulfonated salts. The present invention also makes manufacture of polyalkylated arylalkyl sulfonic acids possible as first intent products using an inexpensive and simple reaction. The structure of the polyalkylated arylalkyl sulfonic acids produced using the process described in the present invention is shown below: Where R1, R2 and R3 are each separately and independently H, alkyl (branched or linear C1 to C30), R4═CH3(CH2)oCH(CH2)pCH3 m+n=4 to 28 o+p=3 to 27
摘要翻译:本发明公开了一种生产浅色多烷基芳基烷基磺酸的方法。 多烷基化芳基烷基磺酸可以用碱或胺进一步中和以形成相应的浅色磺化盐。 本发明还使得制备多烷基化芳基烷基磺酸成为使用廉价且简单的反应的第一意图产物。 使用本发明描述的方法制备的多烷基化芳基烷基磺酸的结构如下所示:其中R1,R2和R3各自独立地为H,烷基(支链或直链C1至C30),R4-CH3(CH2) oCH(CH2)pCH3 m + n = 4〜28o + p = 3〜27
摘要:
FIG. 1 is a front, top, and left side perspective view of a first embodiment of a storage rack, showing my new design; FIG. 2 is a front, bottom and left side perspective view thereof; FIG. 3 is a front view thereof; FIG. 4 is a rear view thereof; FIG. 5 is a left side view thereof; FIG. 6 is a right side view thereof; FIG. 7 is a top plan view thereof; FIG. 8 is a bottom plan view thereof; FIG. 9 is a contracted state perspective view thereof; and FIG. 10 is a contracted state view thereof. FIG. 11 is an enlarged view of portion 11 shown in FIG. 2. FIG. 12 is a front, top, and left side perspective view of a second embodiment of a storage rack; FIG. 13 is a rear, bottom and right side perspective view thereof; FIG. 14 is a front view thereof; FIG. 15 is a rear view thereof; FIG. 16 is a left side view thereof; FIG. 17 is a right side view thereof; FIG. 18 is a top plan view thereof; FIG. 19 is a bottom plan view thereof; FIG. 20 is a contracted state perspective view thereof; and FIG. 21 is a contracted state view thereof. FIG. 22 is an enlarged view of portion 22 shown in FIG. 12. FIG. 23 is a front, top, and left side perspective view of a third embodiment of a storage rack; FIG. 24 is a rear, bottom and right side perspective view thereof; FIG. 25 is a front view thereof; FIG. 26 is a rear view thereof; FIG. 27 is a left side view thereof; FIG. 28 is a right side view thereof; FIG. 29 is a top plan view thereof; FIG. 30 is a bottom plan view thereof; FIG. 31 is a contracted state view thereof; and FIG. 32 is a contracted state perspective view thereof; and, FIG. 33 is an enlarged view of portion 33 shown in FIG. 23. The dot-dash broken lines depict the boundaries of the enlargements that form no part of the claimed design.
摘要:
FIG. 1 is a front elevational view of a storage rack showing my new design; FIG. 2 is a rear elevational view thereof; FIG. 3 is a left side view thereof; FIG. 4 is a right side view thereof; FIG. 5 is a top plan view thereof; FIG. 6 is a bottom plan view thereof; FIG. 7 is a perspective view thereof; and, FIG. 8 is another perspective view thereof.
摘要:
A mine elevator is provided having an anti-explosion traction system, an anti-explosion lift car protection system, a flexible guide rail guiding system, a compound lift car, and a counterweight system. The anti-explosion traction system comprises a traction rope tension regulating device, an anti-explosion traction machine, and an anti-explosion control cabinet. The anti-explosion lift car protection system comprises a rope holder, a speed limiter, two hydraulic buffers, a safety clamp, a brake rope, and a brake rope tension buffer device. The flexible guide rail guiding system comprises a steel wire rope guide rail, a guide rail tension device connected to the steel wire rope guide rail and fixed to the an upper platform, a guide rail connection device connected to the steel wire rope guide rail and fixed to a lower platform, and a flexible guide rail guide sleeve fixed to the compound lift car and the counterweight system.
摘要:
A mining elevator traction cable connecting apparatus and a measuring method therefor, for use in a mining elevator serving a deep-mine. The apparatus includes an industrial personal computer (IPC), a signal collector connected to the IPC, multiple symmetrically arranged cable rings for use in connecting to one end of a traction cable, and a traction cable tension adjusting apparatus connected to the multiple of cable rings. Arranged within the traction cable tension adjusting apparatus are a plurality of hydraulic cylinders, and a plurality of draw wire displacement sensors for use in monitoring the relative displacement between each hydraulic cylinder plunger and a corresponding hydraulic cylinder body. The draw wire displacement sensors and an oil pressure sensor connected to a hydraulic pipeline are connected to the IPC via the signal collector, forming a traction cable tension and degree of adjustment measuring system.
摘要:
A method of recovering crude oil from a subterranean hydrocarbon containing formation which comprises (a) injecting into said formation an aqueous solution containing an effective amount alkali metal, alkaline-earth or ammonium salts of alcohol ether sulfonates derived from unsaturated alcohol ethers, and (b) displacing said solution into one or more injection wells and recovering the oil from one or more production wells. The unsaturated alkoxylated alcohol contain various amounts of ethylene oxide, propylene oxide and butylene oxides elected to optimize their interfacial properties with different types of crude oil with different brines.