WO2018068382A1 - 用于高强度岩石试样正压水饱和的试验装置及使用方法 - Google Patents

用于高强度岩石试样正压水饱和的试验装置及使用方法 Download PDF

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WO2018068382A1
WO2018068382A1 PCT/CN2016/109700 CN2016109700W WO2018068382A1 WO 2018068382 A1 WO2018068382 A1 WO 2018068382A1 CN 2016109700 W CN2016109700 W CN 2016109700W WO 2018068382 A1 WO2018068382 A1 WO 2018068382A1
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pressure chamber
water
oil
valve
chassis
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PCT/CN2016/109700
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English (en)
French (fr)
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史海岭
朱其志
王伟
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河海大学
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    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N1/00Sampling; Preparing specimens for investigation
    • G01N1/28Preparing specimens for investigation including physical details of (bio-)chemical methods covered elsewhere, e.g. G01N33/50, C12Q

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  • the invention relates to a test device and a use method for positive pressure water saturation of a high-strength rock sample, and belongs to the technical field of geotechnical engineering.
  • the present invention provides a test device and a use method for positive pressure water saturation of high-strength rock samples.
  • the present invention provides a test device for positive pressure water saturation of a high-strength rock sample, comprising a base, a chassis, a hydraulic chamber and a water pressure chamber, wherein the chassis is fixed in the base, The oil pressure chamber is fixed on the chassis, the water pressure chamber is placed in the oil pressure chamber and fixed on the chassis; the oil pressure chamber is connected to the oil tank through the oil pipe 1 and the oil pipe 2, when used, The hydraulic pump supplies power to the oil pressure chamber through the oil pipe.
  • the hydraulic pump applies pressure to the oil pressure chamber through the oil pipe, and one end of the oil pipe connected to the oil tank is provided with a valve, and one end connected to the bottom oil port of the oil pressure chamber through the pipeline inside the bottom plate.
  • a valve 2 is provided, one end of the oil pipe 2 is connected to the oil tank, the other end is connected to an upper part of the side wall of the oil pressure chamber, and the oil pipe 2 is provided with a valve 6;
  • the water pressure chamber is passed through a water pipe and a water pump Connected, two ends of the water pipe are respectively provided with a valve one and a valve five, and the water pipe is connected to the water outlet of the bottom of the water pressure chamber through a pipeline inside the water tank, and the water pressure chamber is provided at an intermediate position for fixing the rock.
  • a rubber sleeve of the sample and a drain port is disposed at an intermediate position of the bottom of the water pressure chamber directly under the rubber sleeve, and the drain port passes through a pipeline inside the chassis and a valve disposed on a sidewall of the chassis Connected, the top of the water pressure chamber is provided with a valve eight; the side wall of the chassis is further provided with a valve three as a reserved valve, and the valve three passes through the pipeline inside the chassis and the oil port at the bottom of the oil pressure chamber Connected.
  • chassis is mounted on the base.
  • the chassis is provided with two arc-shaped fixing rings, and the two arc-shaped fixing rings are located on the same circumference, and the size of the circle matches the size of the chassis.
  • the oil pressure chamber is composed of a bottom plate, a side wall of the oil pressure chamber and an upper cover of the oil pressure chamber, and the side wall of the oil pressure chamber and the upper cover of the oil pressure chamber are integrally formed, and when installed, the oil pressure is fixed by a fixing screw
  • the chamber side wall is fixed to the chassis.
  • a sealing ring is disposed at a position where the side wall of the oil pressure chamber contacts the chassis.
  • the water pressure chamber is composed of a base, a water pressure chamber side wall and a water pressure chamber upper cover, the base is fixed on the chassis, and the water pressure chamber side wall and the water pressure chamber upper cover are integrally formed. When installed, the side wall of the water pressure chamber is fixed on the base.
  • a sealing ring is disposed at a position where the sidewall of the water pressure chamber contacts the base, A seal ring is also provided at a position where the base is in contact with the chassis.
  • the oil pipe is a transparent hose.
  • the invention also provides a method for using a test device for positive pressure water saturation of a high-strength rock sample, comprising the following steps:
  • Step one install the chassis
  • the chassis is embedded in the arc-shaped fixing ring on the base, and the base of the water pressure chamber is fixed on the chassis, and the valve is closed to the valve seven;
  • Step two installing a rock sample and a water pressure chamber
  • Step 3 adding water to the water pressure chamber
  • Step 4 installing a hydraulic chamber
  • Step 5 refueling the oil pressure chamber
  • Step six the rock sample water saturation judgment
  • Step 7 disassemble the test device
  • the test device for positive pressure water saturation of high-strength rock samples provided by the invention applies pressure to the water by hydraulic pressure, promotes water saturation process of high-strength rock, and greatly reduces high-strength rock
  • the water saturation time of the sample is simple and easy to use.
  • the invention is applicable to rock samples of international standard size and general size in China, and can accurately determine whether the rock sample is water saturated by whether the valve has water flow.
  • the present invention also provides a method of using the test device, which is simple in operation and convenient to use.
  • FIG. 1 to 2 are schematic views of the structure of the present invention.
  • Figure 3 is a schematic view showing the structure of a water pressure chamber of the present invention.
  • Figure 4 is a schematic view showing the structure of the oil pressure chamber of the present invention.
  • the present invention provides a test apparatus for positive pressure water saturation of a high-strength rock sample, comprising a base 1, a chassis 2, a hydraulic chamber 3, and a water pressure chamber 4, the chassis 2 being inlaid
  • the base 1 is not only easy to install but also easy to disassemble.
  • the chassis 2 is provided with two arc-shaped fixing rings 19, and the two arc-shaped fixing rings 19 are located on the same circumference, and the size and shape of the circle are The size of the chassis 2 is matched.
  • the chassis 2 only needs to be inserted into the arc-shaped fixing ring 19, the hydraulic chamber 3 is fixed on the chassis 2, and the hydraulic chamber 4 is placed in the Inside the oil pressure chamber 3 and fixed to the chassis 2;
  • the oil pressure chamber 3 is connected to the oil tank 7 through the oil pipe 5 and the oil pipe 2, and is used to supply oil through the oil pipe 5 to the oil pressure chamber 3 during use, and the oil in the oil pressure chamber 3 is full.
  • the hydraulic pump 6 continues to supply oil to the oil pressure chamber 3 through the oil pipe 2 to achieve the purpose of applying pressure to the oil pressure chamber 3, and the end of the oil pipe 5 connected to the oil tank 7 is provided with a valve VII 17 through the chassis.
  • the inner pipe is connected to the bottom oil port of the oil pressure chamber 3 at one end thereof with a valve 2, one end of the oil pipe 2 is connected to the oil tank 7, and the other end is connected to the upper part of the side wall of the oil pressure chamber 3.
  • the oil pipe 2 8 is provided with a valve 16 for venting and returning oil, and the oil pipe 2 8 is a transparent hose, and the oil return inside can be clearly seen;
  • the oil pressure chamber 3 is composed of a chassis 2, a hydraulic chamber side wall 23 and a hydraulic chamber upper cover 24, and the hydraulic chamber side wall 23 and the hydraulic chamber upper cover 24 are integrally formed, and are fixed by mounting.
  • the screw 25 fixes the hydraulic chamber side wall 23 to the chassis 2, and the oil pressure chamber side wall 23 is provided with a sealing ring at a position in contact with the chassis 2 to prevent oil leakage.
  • the water pressure chamber 4 is connected to the water pump 9 through the water pipe 10, and the two ends of the water pipe 10 are respectively provided with a valve 11 and a valve 5, and the water pipe 10 passes through the pipeline inside the chassis and the bottom of the water pressure chamber 4
  • the water outlet is connected, a rubber sleeve 20 for fixing the rock sample 22 is disposed at an intermediate position in the water pressure chamber 4, and a drain port is provided at a bottom portion of the water pressure chamber 4 directly below the rubber sleeve 20.
  • the drain port is connected to the valve 44 disposed on the side wall of the chassis 2 through a pipeline inside the chassis, and the valve 4 14 has two functions, one is used to judge whether the rock sample is water-saturated, and when the valve is four When there is continuous water flow out, it indicates that the rock sample has reached water saturation state, and second, it is used to discharge the gas in the gap of the rock sample 22; the top of the water pressure chamber 4 is provided with a valve eight 18; the chassis 2
  • the side wall is also provided with a valve 13 as a reserved valve, and the valve 3 is connected to the oil port at the bottom of the oil pressure chamber 3 through a pipe inside the chassis.
  • the water pressure chamber 4 is composed of a base 21, a water pressure chamber side wall 26 and a water pressure chamber upper cover 27, the base 21 is fixed on the chassis 2, the water pressure chamber side wall 26 and water pressure The upper cover 27 is integrally formed.
  • the water pressure chamber side wall 26 is fixed on the base 21, and the water pressure chamber side wall 26 is provided with a sealing ring at a position in contact with the base 21.
  • a seal ring is also provided at a position where the susceptor contacts the chassis.
  • the invention also provides a method for using a test device for positive pressure water saturation of a high-strength rock sample, comprising the following steps:
  • Step one install the chassis
  • the chassis is embedded in the arc-shaped fixing ring on the base, and the base of the water pressure chamber is fixed on the chassis, and the valve is closed to the valve seven;
  • Step two installing a rock sample and a water pressure chamber
  • Step 3 adding water to the water pressure chamber
  • Step 4 installing a hydraulic chamber
  • Step 5 refueling the oil pressure chamber
  • Step six the rock sample water saturation judgment
  • Step 7 disassemble the test device
  • the present invention can adjust the water pressure in the water pressure chamber according to the test intensity. Specifically, if the required saturation sample strength is low, the water pressure applied to the water pressure chamber is lowered, and if the required saturation sample strength is high, the increase can be increased. Add water pressure in the water pressure chamber.
  • the device of the present invention it is not subject to the sample The shape and size are limited, and the sample can be saturated in batches.
  • the device and the method provided by the present invention are used for water saturation, it is possible to accurately determine whether the sample is saturated or not, and solve the technical problem that the sample cannot be directly judged whether the sample is saturated or not in the prior art.

Abstract

一种用于高强度岩石试样正压水饱和的试验装置及使用方法。所述试验装置包括底座(1)、底盘(2)、油压室(3)和水压室(4),所述底盘(2)固定在所述底座(1)内,所述油压室(3)固定在所述底盘(2)上,所述水压室(4)置于所述油压室(3)内且固定在所述底盘(2)上。通过油压给水施加压力,促进高强度岩石试样(22)的水饱和进程,大大减少了高强度岩石试样(22)的水饱和时间,而且试验装置的结构和使用方法简单,便于操作使用。

Description

用于高强度岩石试样正压水饱和的试验装置及使用方法 技术领域
本发明涉及一种用于高强度岩石试样正压水饱和的试验装置及使用方法,属于岩土工程技术领域。
背景技术
高强度岩石试样的致密性一般都非常好,孔隙率一般都比较低。在进行水力耦合试验前,岩石的饱水都需要经历一个漫长的过程,一般做法是将岩石试样完全浸泡在水中,进行抽气,产生一个负压,从而加快试样的饱和,整个饱水过程需要24小时-72小时才能完成。水力耦合试验往往需要提前1-2周时间来准备饱和试样,对整个试验进程有很大的阻碍。为此,需要有一种能够快速、便捷的进行高强度岩石试样水饱和的方法来解决此类问题。
发明内容
本发明为了解决现有技术中存在的上述缺陷和不足,提供了一种用于高强度岩石试样正压水饱和的试验装置及使用方法。
为解决上述技术问题,本发明提供一种用于高强度岩石试样正压水饱和的试验装置,包括底座、底盘、油压室和水压室,所述底盘固定在所述底座内,所述油压室固定在所述底盘上,所述水压室置于所述油压室内且固定在所述底盘上;所述油压室通过油管一和油管二与油箱相连,使用时,由油压泵提供动力通过油管一向油压室内供油, 油压室内油满后,油压泵通过油管二向油压室施加压力,所述油管一与油箱相连的一端设有阀门七、通过底盘内部的管路与油压室底部油口相连的一端设有阀门二,所述油管二的一端与所述油箱相连,另一端与所述油压室侧壁的上部相连,所述油管二上设有阀门六;所述水压室通过水管与水泵相连,所述水管的两端分别设有阀门一和阀门五,所述水管穿过底盘内部的管路与水压室底部上的出水口相连,所述水压室内中间位置设有用于固定岩石试样的橡胶套,且所述橡胶套的正下方所述水压室底部中间位置处设有排水口,所述排水口通过底盘内部的管路与设置在所述底盘侧壁上的阀门四相连,所述水压室的顶部设有阀门八;所述底盘的侧壁上还设有作为预留阀门的阀门三,所述阀门三通过底盘内部的管路与油压室底部的油口相连。
进一步,所述底盘镶嵌在所述底座上。
进一步,所述底盘上设有两个弧形固定圈,两个弧形固定圈位于同一圆周上,且圆的尺寸与所述底盘的尺寸相配。
进一步,所述油压室由底盘、油压室侧壁和油压室上盖构成,所述油压室侧壁和所述油压室上盖一体成型,安装时,通过固定螺杆将油压室侧壁固定在所述底盘上。
进一步,所述油压室侧壁与底盘接触的位置处设有密封圈。
进一步,所述水压室由基座、水压室侧壁和水压室上盖构成,所述基座固定在所述底盘上,所述水压室侧壁和水压室上盖一体成型,安装时,将水压室侧壁固定在所述基座上。
进一步,所述水压室侧壁与所述基座接触的位置处设有密封圈, 所述基座与所述底盘接触的位置处也设有密封圈。
进一步,所述油管二为透明软管。
本发明还提供一种用于高强度岩石试样正压水饱和的试验装置的使用方法,包括以下步骤:
步骤一,安装底盘;
将底盘镶嵌在底座上的弧形固定圈内,并将水压室的基座固定在底盘上,同时关闭阀门一至阀门七;
步骤二,安装岩石试样和水压室;
将岩石试样固定在水压室内的橡胶套内,并使用钢圈将岩石试样从底部向上箍扎至二分之一处,然后将水压室侧壁和水压室上盖一起固定在基座上,同时打开水压室顶部的阀门八;
步骤三,向水压室内加水;
旋开阀门一和阀门五,打开水泵,水流依次通过水管、底盘内的管路、基座上的出水口进入水压室,当阀门八有水溢出时,关闭阀门一、阀门五和阀门八,并将水压室外溢出的水流擦拭干净;
步骤四,安装油压室;
将油压室侧壁和油压室上盖置于底盘上,并由三根固定螺杆将油压室侧壁固定在底盘上;
步骤五,向油压室内加油;
旋开阀门二、阀门七和阀门六,打开油压泵,由油压泵提供动力通过油管一向油压室内供油,当油管二内有油流动时表示油压室内油加满,然后旋紧阀门七,油压泵通过油管二继续向油压室供油,达到 向油压室施加压力的目的;
步骤六,岩石试样水饱和判断;
将与橡胶套正下方排水口相连的阀门四旋开,检查阀门四是否有水流流出,若有水流连续流出,则说明岩石试样已达饱和状态;
步骤七,拆卸试验装置;
岩石试样达到饱和后,旋开阀门三和阀门七,卸油压并将油压室内的油排出,旋紧阀门三和阀门七,然后拧开三根固定螺杆,将油压室侧部和油压室上盖拆卸掉;旋开阀门一和阀门五,打开水泵,将水压室内的水排出,并将水压室侧壁和水压室上盖拆卸掉,松开钢圈,将岩石试样从橡胶套内取出后浸泡在水中即可。
本发明所达到的有益技术效果:本发明提供的用于高强度岩石试样正压水饱和的试验装置,通过油压给水施加压力,促进高强度岩石的水饱和进程,大大减少了高强度岩石试样的水饱和时间,而且结构简单,使用方便;本发明适用于国际标准尺寸和我国通用尺寸的岩石试样,并且可以通过阀门四是否有水流,准确的判断出岩石试样是否已经水饱和完全;另外,本发明还提供了试验装置的使用方法,该方法操作简单,使用方便。
附图说明
图1-图2本发明结构示意图;
图3本发明之水压室结构示意图;
图4本发明之油压室结构示意图。
其中:1底座;2底盘;3油压室;4水压室;5油管一;6油压 泵;7油箱;8油管二;9水泵;10水管;11阀门一;12阀门二;13阀门三;14阀门四;15阀门五;16阀门六;17阀门七;18阀门八;19弧形固定圈;20橡胶套;21基座;22试样;23油压室侧壁;24油压室上盖;25固定螺杆;26水压室侧壁;27水压室上盖。
具体实施方式
下面结合附图对本发明作进一步描述。以下实施例仅用于更加清楚地说明本发明的技术方案,而不能以此来限制本发明的保护范围。
如图1-4所示,本发明提供一种用于高强度岩石试样正压水饱和的试验装置,包括底座1、底盘2、油压室3和水压室4,所述底盘2镶嵌在所述底座1上,不但安装方便而且拆卸方便,具体地,所述底盘2上设有两个弧形固定圈19,两个弧形固定圈19位于同一圆周上,且圆的尺寸与所述底盘2的尺寸相配,安装时,只需将底盘2卡进弧形固定圈19内即可,所述油压室3固定在所述底盘2上,所述水压室4置于所述油压室3内且固定在所述底盘2上;
所述油压室3通过油管一5和油管二8与油箱7相连,使用时,由油压泵6提供动力通过油管一5向油压室3内供油,油压室3内的油满后,油压泵6通过油管二8向油压室3继续供油,达到向油压室3内施加压力的目的,所述油管一5与油箱7相连的一端设有阀门七17、通过底盘2内部的管路与油压室3底部油口相连的一端设有阀门二12,所述油管二8的一端与所述油箱7相连,另一端与所述油压室3侧壁的上部相连,所述油管二8上设有用于通气和回油的阀门六16,所述油管二8为透明软管,可以清楚地看到里面的回油;
所述油压室3由底盘2、油压室侧壁23和油压室上盖24构成,所述油压室侧壁23和所述油压室上盖24一体成型,安装时,通过固定螺杆25将油压室侧壁23固定在所述底盘2上,所述油压室侧壁23与底盘2接触的位置处设有密封圈,防止漏油。
所述水压室4通过水管10与水泵9相连,所述水管10的两端分别设有阀门一11和阀门五15,所述水管10穿过底盘内部的管路与水压室4底部上的出水口相连,所述水压室4内中间位置设有用于固定岩石试样22的橡胶套20,且所述橡胶套20的正下方所述水压室4底部中间位置处设有排水口,所述排水口通过底盘内部的管路与设置在所述底盘2侧壁上的阀门四14相连,阀门四14具有两个作用,一是用来判断岩石试样是否水饱和,当阀门四内有连续水流流出时,则说明岩石试样已达到水饱和状态,二是用来排出岩石试样22空隙中的气体;所述水压室4的顶部设有阀门八18;所述底盘2的侧壁上还设有作为预留阀门的阀门三13,所述阀门三13通过底盘内部的管路与油压室3底部的油口相连。
所述水压室4由基座21、水压室侧壁26和水压室上盖27构成,所述基座21固定在所述底盘2上,所述水压室侧壁26和水压室上盖27一体成型,安装时,将水压室侧壁26固定在所述基座21上,所述水压室侧壁26与所述基座21接触的位置处设有密封圈,所述基座与所述底盘接触的位置处也设有密封圈。
本发明还提供一种用于高强度岩石试样正压水饱和的试验装置的使用方法,包括以下步骤:
步骤一,安装底盘;
将底盘镶嵌在底座上的弧形固定圈内,并将水压室的基座固定在底盘上,同时关闭阀门一至阀门七;
步骤二,安装岩石试样和水压室;
将岩石试样固定在水压室内的橡胶套内,并使用钢圈将岩石试样从底部向上箍扎至二分之一处,然后将水压室侧壁和水压室上盖一起固定在基座上,同时打开水压室顶部的阀门八;
步骤三,向水压室内加水;
旋开阀门一和阀门五,打开水泵,水流依次通过水管、底盘内的管路、基座上的出水口进入水压室,当阀门八有水溢出时,关闭阀门一、阀门五和阀门八,并将水压室外溢出的水流擦拭干净;
步骤四,安装油压室;
将油压室侧壁和油压室上盖置于底盘上,并由三根固定螺杆将油压室侧壁固定在底盘上;
步骤五,向油压室内加油;
旋开阀门二、阀门七和阀门六,打开油压泵,由油压泵提供动力通过油管一向油压室内供油,当油管二内有油流动时表示油压室内油加满,然后旋紧阀门七,油压泵通过油管二继续向油压室供油,达到向油压室施加压力的目的;
步骤六,岩石试样水饱和判断;
将与橡胶套正下方排水口相连的阀门四旋开,检查阀门四是否有水流流出,若有水流连续流出,则说明岩石试样已达饱和状态;
步骤七,拆卸试验装置;
岩石试样达到饱和后,旋开阀门三和阀门七,卸油压并将油压室内的油排出,旋紧阀门三和阀门七,然后拧开三根固定螺杆,将油压室侧部和油压室上盖拆卸掉;旋开阀门一和阀门五,打开水泵,将水压室内的水排出,并将水压室侧壁和水压室上盖拆卸掉,松开钢圈,将岩石试样从橡胶套内取出后浸泡在水中即可。
实施例
为了更好的阐述本发明提供的装置及方法的技术效果,以砂岩和花岗岩作为试验对象,并且每种样品均采用三组平行试验,然后对比采用本发明提供的装置及方法和常规装置及方法,两种试样达到水饱和时所需时间。结果如表1所示。
表1:不同试样达到水饱和所需时间
Figure PCTCN2016109700-appb-000001
由表1可以看出,采用本发明提供的装置及方法,两种试样达到水饱和所需的时间是采用常规装置及方法所需时间的十分之一,大大缩减了达到水饱和时所需的时间,节省了试验时间。另外,本发明可以根据试验强度进行调节水压室内的水压,具体:如果所需饱和试样强度偏低,降低加在水压室水压,如果所需饱和试样强度偏高,可以增加加在水压室水压。使用本发明所述装置饱和试样时,不受试样的 形状及大小限制,可以批量进行饱和试样。另外,采用本发明提供的装置及方法进行水饱和时,可以准确地判断试样是否饱和,解决了现有技术中无法直接判断试样是否饱和的技术难题。
以上所述仅是本发明的优选实施方式,应当指出,对于本技术领域的普通技术人员来说,在不脱离本发明技术原理的前提下,还可以做出若干改进和变形,这些改进和变形也应视为本发明的保护范围。

Claims (9)

  1. 用于高强度岩石试样正压水饱和的试验装置,其特征在于:包括底座、底盘、油压室和水压室,所述底盘固定在所述底座内,所述油压室固定在所述底盘上,所述水压室置于所述油压室内且固定在所述底盘上;所述油压室通过油管一和油管二与油箱相连,使用时,由油压泵提供动力通过油管一向油压室内供油,油压室内油满后,油压泵通过油管二向油压室施加压力;所述油管一与油箱相连的一端设有阀门七、通过底盘内部的管路与油压室底部油口相连的一端设有阀门二,所述油管二的一端与所述油箱相连,另一端与所述油压室侧壁的上部相连,所述油管二上设有阀门六;所述水压室通过水管与水泵相连,所述水管的两端分别设有阀门一和阀门五,所述水管穿过底盘内部的管路与水压室底部上的出水口相连,所述水压室内中间位置设有用于固定岩石试样的橡胶套,且所述橡胶套的正下方所述水压室底部中间位置处设有排水口,所述排水口通过底盘内部的管路与设置在所述底盘侧壁上的阀门四相连,所述水压室的顶部设有阀门八;所述底盘的侧壁上还设有作为预留阀门的阀门三,所述阀门三通过底盘内部的管路与油压室底部的油口相连。
  2. 根据权利要求1所述的用于高强度岩石试样正压水饱和的试验装置,其特征在于:所述底盘镶嵌在所述底座上。
  3. 根据权利要求2所述的用于高强度岩石试样正压水饱和的试验装置,其特征在于:所述底盘上设有两个弧形固定圈,两个弧形固定 圈位于同一圆周上,且圆的尺寸与所述底盘的尺寸相配。
  4. 根据权利要求1所述的用于高强度岩石试样正压水饱和的试验装置,其特征在于:所述油压室由底盘、油压室侧壁和油压室上盖构成,所述油压室侧壁和所述油压室上盖一体成型,安装时,通过固定螺杆将油压室侧壁固定在所述底盘上。
  5. 根据权利要求4所述的用于高强度岩石试样正压水饱和的试验装置,其特征在于:所述油压室侧壁与底盘接触的位置处设有密封圈。
  6. 根据权利要求1所述的用于高强度岩石试样正压水饱和的试验装置,其特征在于:所述水压室由基座、水压室侧壁和水压室上盖构成,所述基座固定在所述底盘上,所述水压室侧壁和水压室上盖一体成型,安装时,将水压室侧壁固定在所述基座上。
  7. 根据权利要求6所述的用于高强度岩石试样正压水饱和的试验装置,其特征在于:所述水压室侧壁与所述基座接触的位置处设有密封圈,所述基座与所述底盘接触的位置处也设有密封圈。
  8. 根据权利要求1所述的用于高强度岩石试样正压水饱和的试验装置,其特征在于:所述油管二为透明软管。
  9. 根据权利要求1-8任一项所述的用于高强度岩石试样正压水饱和的试验装置的使用方法,其特征在于,包括以下步骤:
    步骤一,安装底盘;
    将底盘镶嵌在底座上的弧形固定圈内,并将水压室的基座固定在底盘上,同时关闭阀门一至阀门七;
    步骤二,安装岩石试样和水压室;
    将岩石试样固定在水压室内的橡胶套内,并使用钢圈将岩石试样从底部向上箍扎至二分之一处,然后将水压室侧壁和水压室上盖一起固定在基座上,同时打开水压室顶部的阀门八;
    步骤三,向水压室内加水;
    旋开阀门一和阀门五,打开水泵,水流依次通过水管、底盘内的管路、基座上的出水口进入水压室,当阀门八有水溢出时,关闭阀门一、阀门五和阀门八,并将水压室外溢出的水流擦拭干净;
    步骤四,安装油压室;
    将油压室侧壁和油压室上盖置于底盘上,并由三根固定螺杆将油压室侧壁固定在底盘上;
    步骤五,向油压室内加油;
    旋开阀门二、阀门七和阀门六,打开油压泵,由油压泵提供动力通过油管一向油压室内供油,当油管二内有油流动时表示油压室内油加满,然后旋紧阀门七,油压泵通过油管二继续向油压室供油,达到向油压室施加压力的目的;
    步骤六,岩石试样水饱和判断;
    将与橡胶套正下方排水口相连的阀门四旋开,检查阀门四是否有水流流出,若有水流连续流出,则说明岩石试样已达饱和状态;
    步骤七,拆卸试验装置;
    岩石试样达到饱和后,旋开阀门三和阀门七,卸油压并将油压室内的油排出,旋紧阀门三和阀门七,然后拧开三根固定螺杆,将油压室侧部和油压室上盖拆卸掉;旋开阀门一和阀门五,打开水泵,将水 压室内的水排出,并将水压室侧壁和水压室上盖拆卸掉,松开钢圈,将岩石试样从橡胶套内取出后浸泡在水中即可。
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