CN107297811B - 一种用拱形构件预应力施加装置制混凝土的方法 - Google Patents
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B28—WORKING CEMENT, CLAY, OR STONE
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Abstract
本发明涉及一种用拱形构件预应力施加装置制混凝土的方法。该拱形构件预应力施加装置,包括一拱形的钢筋笼体,在钢筋笼体内沿钢筋笼体周向排列焊接有若干个呈辐射状摆放的钢筋穿筋架,所述钢筋穿筋架为一封闭的钢筋架体,在钢筋穿筋架内均焊接有横筋和竖筋,在横筋或竖筋上焊接有若干个轴向沿钢筋笼体周向设置的穿筋套。该结构设计合理、新颖,工艺操作步骤简单、方便,在拱形构件中增加了预应力施加装置,预应力施加装置能够有效地增加对预应力钢筋的约束力,保证预应力钢筋受压迫呈拱形状。
Description
技术领域
本发明涉及一种用拱形构件预应力施加装置制混凝土的方法。
背景技术
预制拱形混凝土在建筑领域应用非常广泛,主要包括预制混凝土地铁管片、预制混凝土桥涵、预制混凝土拱形屋面板、预制混凝土拱形梁等,目前,预制拱形混凝土所使用的拱形构件,由于预应力钢筋在张拉时钢筋是一条直线,钢筋受力也是直线方向受力,构件预制完毕放张后混凝土也会在直线方向上受压,因现有的拱形构件无法解决构件周向上的张拉力,拱形构件上也没有采用应对周向上预应力的工艺,拱形混凝土构件内的钢筋含量较高,混凝土无预压压力容易开裂耐久性差,构件在使用过程中也容易损坏,使用性能低,使用寿命短。
发明内容
本发明提供了一种用拱形构件预应力施加装置制混凝土的方法,该结构设计合理、新颖,工艺操作步骤简单、方便,在拱形构件中增加了预应力施加装置,预应力施加装置能够有效地增加对预应力钢筋的约束力,保证预应力钢筋受压迫呈拱形状,从而有效保证了对拱形混凝土构件顺利施加周向预应力,也有效保证了构件的强度和使用性能,有效提高了构件及用构件制成的拱形混凝土的使用寿命,构件中的穿筋套便于预应力钢筋穿入到钢筋笼体内,并且能实现预应力钢筋张拉时在穿筋套内壁中的游动自如,适于广泛推广使用,解决了现有技术中存在的问题。
本发明为解决上述技术问题所采用的技术方案是:
一种用所述拱形构件预应力施加装置制混凝土的方法,所述拱形构件预应力施加装置包括一拱形的钢筋笼体,在钢筋笼体内沿钢筋笼体周向排列焊接有若干个呈辐射状摆放的钢筋穿筋架,所述钢筋穿筋架为一封闭的钢筋架体,在钢筋穿筋架内均焊接有横筋和竖筋,在横筋或竖筋上焊接有若干个轴向沿钢筋笼体周向设置的穿筋套;
所述方法包括如下步骤:
S1建模
用钢板制作出拱形的钢模,在钢模的内壁上涂刷上脱模剂;
S2制作预制混凝土拱形构件的预应力施加装置
S3放置预应力钢筋
将预应力钢筋从钢筋笼体的一端穿插在钢筋笼体内,预应力钢筋在钢筋笼体内依次穿插在位于同一周向上的穿筋套内;
S4张拉
对预应力钢筋施加周向张拉力,并锚固锁住预应力钢筋;
S5浇注
向钢模内部浇注混凝土,振捣密实,制作出拱形混凝土;
S6养护
采用蒸汽养护或自然养护;
S7脱模
脱去钢模。
所述穿筋套的两端部为喇叭状敞口。
所述竖筋的下端垫设有钢筋保护层架。
所述步骤S2包括以下步骤:
S21在步骤S1制作好的钢模内焊接钢筋笼体;
S22在钢筋笼体内沿钢筋笼体周向排列焊接上若干个呈辐射状摆放的钢筋穿筋架;
S23在钢筋穿筋架的横筋或竖筋上焊接上轴向沿钢筋笼体轴向设置的穿筋套;
S24在竖筋的底部垫设钢筋保护层架。
本发明采用上述结构,该结构设计合理、新颖,工艺操作步骤简单、方便,在拱形构件中增加了预应力施加装置,预应力施加装置能够有效地增加对预应力钢筋的约束力,保证预应力钢筋受压迫呈拱形状,从而有效保证了对拱形混凝土构件顺利施加周向预应力,也有效保证了构件的强度和使用性能,有效提高了构件及用构件制成的拱形混凝土的使用寿命,构件中的穿筋套便于预应力钢筋穿入到钢筋笼体内,并且能实现预应力钢筋张拉时在穿筋套内壁中的游动自如,适于广泛推广使用。
附图说明
图1为本发明的俯视结构示意图。
图2为本发明钢筋穿筋架的结构示意图。
图中,1钢筋笼体,2钢筋穿筋架,21横筋,22竖筋,23穿筋套,24钢筋保护层架。
具体实施方式
为能清楚说明本方案的技术特点,下面通过具体实施方式,并结合其附图,对本发明进行详细阐述。
如图1-2中所示,一种拱形构件预应力施加装置,包括一拱形的钢筋笼体1,在钢筋笼体1内沿钢筋笼体1周向排列焊接有若干个呈辐射状摆放的钢筋穿筋架2,所述钢筋穿筋架2为一封闭的钢筋架体,在钢筋穿筋架内均焊接有横筋21和竖筋22,在横筋21或竖筋22上焊接有若干个轴向沿钢筋笼体1周向设置的穿筋套23。
所述穿筋套23的两端部为喇叭状敞口。
所述竖筋22的下端垫设有钢筋保护层架24。
一种用所述拱形构件预应力施加装置制混凝土的方法,包括如下步骤:
S1建模
用钢板制作出拱形的钢模,在钢模的内壁上涂刷上脱模剂;
S2制作预制混凝土拱形构件的预应力施加装置
S3放置预应力钢筋
将预应力钢筋从钢筋笼体1的一端穿插在钢筋笼体1内,预应力钢筋在钢筋笼体1内依次穿插在位于同一周向上的穿筋套23内;
S4张拉
对预应力钢筋施加周向张拉力,并锚固锁住预应力钢筋;
S5浇注
向钢模内部浇注混凝土,振捣密实,制作出拱形混凝土;
S6养护
静停2小时后,采用蒸汽养护或自然养护;
S7脱模
脱去钢模。
所述步骤S2包括以下步骤:
S21在步骤S1制作好的钢模内焊接钢筋笼体1;
S22在钢筋笼体1内沿钢筋笼体1周向排列焊接上若干个呈辐射状摆放的钢筋穿筋架2;
S23在钢筋穿筋架2的横筋21或竖筋22上焊接上轴向沿钢筋笼体1轴向设置的穿筋套23;
S24在竖筋22的底部垫设上钢筋保护层架24。
采用本发明的预制混凝土拱形构件的预应力施加装置,预应力施加装置能够有效地增加对预应力钢筋的约束力,保证预应力钢筋受压迫呈拱形状,从而有效保证了对拱形混凝土构件顺利施加周向预应力,也有效保证了构件的强度和使用性能,有效提高了构件及用构件制成的拱形混凝土的使用寿命,构件中的穿筋套23便于预应力钢筋穿入到钢筋笼体1内,并且能实现预应力钢筋张拉时在穿筋套23内壁中的游动自如。
采用本发明的制混凝土的方法,工艺操作步骤简单、方便,在步骤S2中焊接有穿筋套23,穿筋套23能够有效提高预应力钢筋穿入到钢筋笼体1内的效率,并且在穿入预应力钢筋的过程中能够有效限制预应力钢筋处于拱形的状态,预应力钢筋在受力张拉时能够在穿筋套23的内壁中游动自如,在步骤S2中竖筋22的底部垫设有钢筋保护层架24,有效提高了步骤S5脱模的顺利操作、完成,整个工艺操作步骤简单、方便。
上述具体实施方式不能作为对本发明保护范围的限制,对于本技术领域的技术人员来说,对本发明实施方式所做出的任何替代改进或变换均落在本发明的保护范围内。
本发明未详述之处,均为本技术领域技术人员的公知技术。
Claims (4)
1.一种用拱形构件预应力施加装置制混凝土的方法,其特征在于:所述拱形构件预应力施加装置包括一拱形的钢筋笼体,在钢筋笼体内沿钢筋笼体周向排列焊接有若干个呈辐射状摆放的钢筋穿筋架,所述钢筋穿筋架为一封闭的钢筋架体,在钢筋穿筋架内均焊接有横筋和竖筋,在横筋或竖筋上焊接有若干个轴向沿钢筋笼体周向设置的穿筋套;
所述方法包括如下步骤:
S1建模
用钢板制作出拱形的钢模,在钢模的内壁上涂刷上脱模剂;
S2制作预制混凝土拱形构件的预应力施加装置
S3放置预应力钢筋
将预应力钢筋从钢筋笼体的一端穿插在钢筋笼体内,预应力钢筋在钢筋笼体内依次穿插在位于同一周向上的穿筋套内;
S4张拉
对预应力钢筋施加周向张拉力,并锚固锁住预应力钢筋;
S5浇注
向钢模内部浇注混凝土,振捣密实,制作出拱形混凝土;
S6养护
采用蒸汽养护或自然养护;
S7脱模
脱去钢模。
2.根据权利要求1所述的一种用拱形构件预应力施加装置制混凝土的方法,其特征在于:步骤S2包括以下步骤:
S21在步骤S1制作好的钢模内焊接钢筋笼体;
S22在钢筋笼体内沿钢筋笼体周向排列焊接上若干个呈辐射状摆放的钢筋穿筋架;
S23在钢筋穿筋架的横筋或竖筋上焊接上轴向沿钢筋笼体轴向设置的穿筋套;
S24在竖筋的底部垫设上钢筋保护层架。
3.根据权利要求1所述的一种用拱形构件预应力施加装置制混凝土的方法,其特征在于:所述穿筋套的两端部为喇叭状敞口。
4.根据权利要求1所述的一种用拱形构件预应力施加装置制混凝土的方法,其特征在于:所述竖筋的下端垫设有钢筋保护层架。
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