WO2023103094A1 - 一种钢筋标距装置及其标距方法 - Google Patents

一种钢筋标距装置及其标距方法 Download PDF

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WO2023103094A1
WO2023103094A1 PCT/CN2021/140412 CN2021140412W WO2023103094A1 WO 2023103094 A1 WO2023103094 A1 WO 2023103094A1 CN 2021140412 W CN2021140412 W CN 2021140412W WO 2023103094 A1 WO2023103094 A1 WO 2023103094A1
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steel bar
clamping
gauge
assembly
marking
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PCT/CN2021/140412
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English (en)
French (fr)
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郁健
张亦明
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元准智能科技(苏州)有限公司
苏州市建筑科学研究院集团股份有限公司
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Publication of WO2023103094A1 publication Critical patent/WO2023103094A1/zh

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B25HAND TOOLS; PORTABLE POWER-DRIVEN TOOLS; MANIPULATORS
    • B25HWORKSHOP EQUIPMENT, e.g. FOR MARKING-OUT WORK; STORAGE MEANS FOR WORKSHOPS
    • B25H7/00Marking-out or setting-out work
    • B25H7/04Devices, e.g. scribers, for marking
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B21MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21CMANUFACTURE OF METAL SHEETS, WIRE, RODS, TUBES OR PROFILES, OTHERWISE THAN BY ROLLING; AUXILIARY OPERATIONS USED IN CONNECTION WITH METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL
    • B21C51/00Measuring, gauging, indicating, counting, or marking devices specially adapted for use in the production or manipulation of material in accordance with subclasses B21B - B21F
    • B21C51/005Marking devices
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B25HAND TOOLS; PORTABLE POWER-DRIVEN TOOLS; MANIPULATORS
    • B25HWORKSHOP EQUIPMENT, e.g. FOR MARKING-OUT WORK; STORAGE MEANS FOR WORKSHOPS
    • B25H7/00Marking-out or setting-out work
    • B25H7/04Devices, e.g. scribers, for marking
    • B25H7/045Devices, e.g. scribers, for marking characterised by constructional details of the marking elements

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  • the invention relates to the technical field of construction engineering detection, in particular to a steel bar gauge length device and a gauge length method thereof.
  • Rebar refers to the steel used for reinforced concrete and prestressed reinforced concrete, whose cross section is circular, sometimes square with rounded corners. Including plain round bars, ribbed bars, twisted bars. Steel bars mainly bear tensile stress in concrete. It is widely used in various building structures, especially large, heavy, light thin-walled and high-rise building structures. Only by knowing the relevant parameters of the steel bars can the steel bars be better utilized. How to better and more accurately measure steel bars plays a very important role in the field of construction.
  • Reinforcement parameters generally include length and diameter, and the calculation of elongation and the like is performed through the parameters to confirm whether the mechanical properties of the reinforcement meet the requirements.
  • the marking methods include manual scribing with a hacksaw blade, dots with a dot and scribing machine, and marking with a laser marking machine.
  • the most commonly used is to use a hacksaw blade to mark the line. The worker holds the hacksaw blade, puts the steel bar on the formwork, and uses the hacksaw blade to draw the score every 5mm or 10mm.
  • One steel bar needs to be marked 45 to 50 times.
  • the dot-and-dash instrument uses a punch to impact the surface of the steel bar at intervals to leave marks, but this method is noisy and inefficient.
  • Laser marking is a relatively new marking method at present, which can achieve high-precision marking on steel bars, but in order to ensure the marking effect, high-power laser marking is required at a slow speed, which leads to slow marking speed and high cost.
  • the laser is not engraved to a sufficient depth due to differences in steel bars, surface contamination, etc., often after the tensile test is completed, the laser engraved mark will disappear, resulting in test failure.
  • the invention provides a steel bar gauge length device and a gauge length method thereof.
  • a steel bar gauge device comprising a frame, a clamping assembly for placing steel bars arranged on the frame, a drive assembly is provided under the clamping assembly, and a drive assembly is provided on one side of the clamping assembly for A gauge assembly for marking steel bars, the drive assembly drives the clamping assembly to move toward the gauge assembly, abuts against the gauge assembly and then gauges the steel bars.
  • the clamping assembly includes a clamping push plate, bayonets for clamping steel bars arranged at both ends of the clamping push plate, wherein the bayonet at one end is movable relative to the other bayonet on the clamping push plate set up.
  • each of the bayonet openings is composed of two oppositely disposed blocks, the outer sides of the upper ends of the blocks are placed in the slide rail, and the bottom of one of the blocks is fixedly connected to the clamping push plate.
  • the driving assembly includes a scribing platform arranged under the clamping push plate, the two ends of the scribing platform are placed on guide rails, and the guide rails are erected on the frame.
  • the bottom is provided with a push rod and a driving cylinder.
  • a steel bar bracket plate is connected above the marking platform, and a clamping hand wheel is arranged on the steel bar bracket plate through bracket connection, and one end of the clamping hand wheel extends toward the direction of the clamping push plate.
  • the bottom of the clamping push plate is connected between the connecting plate and the steel bar bracket plate, and the movement of the marking platform drives the steel bar bracket plate, the clamping handwheel and the clamping push plate to reciprocate in the direction of the gauge length assembly sports.
  • a left and right sliding gap is provided between the steel bar bracket plate and the marking platform, and the device also includes an adjustment handle, the adjustment handle is placed on the steel bar bracket plate, and the adjustment handle The middle part is pivotally connected with the steel bar bracket plate through a screw, and the far end of the adjustment handle is pivotally connected with the marking platform through another screw, and the adjusting handle is turned to drive the steel bar bracket plate and the marking platform between the movement in the sliding gap.
  • the gauge assembly includes a tool that passes through a rotating shaft, and the rotating shaft is erected on the top of the slide rail, and a tool supporting plate is provided on one side of the rotating shaft, and there is a gap between the tool supporting plate and the rotating shaft. The distance is less than the length of the cutter, and the cutter rotates on the rotating shaft along the piercing hole.
  • a second driving cylinder is provided on the other side of the driving cylinder, and the cylinder shaft of the second cylinder is connected to the block on the tool side.
  • the gauge length method of a steel bar gauge length device described in any one of the above comprises the following steps:
  • the gauge length method also includes the step of adjusting the gauge length
  • step S6 After the adjustment is completed, proceed to step S4 again to mark the gauge length.
  • the beneficial effects of the present invention are reflected in: the marking of the entire steel bar can be completed in less than 10 seconds by manual easy push-pull or automatic marking with the help of actuators such as electric mechanisms, and the marking interval of 5mm and 5mm can be quickly switched. 10mm two specifications.
  • Figure 1 Schematic diagram of the structure of the present invention.
  • 1 frame 11 steel bar, 12 rotating shaft, 13 tool, 14 tool supporting plate, 2 clamping push plate, 3 block, 31 second cylinder, 32 right bayonet, 4 clamping hand wheel, 5 steel bar support Shelf plate, 6 marking platforms, 61 drive cylinders, 7 guide rails, 8 push rods, 9 adjustment handles, 91 middle parts, 92 adjustment handle far ends.
  • the present invention discloses a kind of steel bar gauge distance device, comprises frame 1, and described frame 1 comprises two oppositely arranged gantry frames, and described gantry frame The upper part is erected with a set of poles. The top of the gantry is set in the form of a guide rail.
  • the clamping assembly for placing the reinforcing bar 11 on the frame is arranged below the clamping assembly, and the gauge length assembly for marking the reinforcing bar is provided on one side of the clamping assembly, and the driving assembly The clamping assembly is driven to move toward the gauge length assembly, abuts against the gauge length assembly and then gauges the steel bars.
  • the clamping assembly includes a clamping push plate 2, bayonets for clamping the steel bar 11 arranged at both ends of the clamping push plate 2, wherein the bayonet at one end is opposite to the other on the clamping push plate 2.
  • a clamping push plate 2 bayonets for clamping the steel bar 11 arranged at both ends of the clamping push plate 2, wherein the bayonet at one end is opposite to the other on the clamping push plate 2.
  • One bayonet activity setting is used in this embodiment, the right bayonet 32 on the right side of the clamping push plate 2 can move toward the left bayonet along the clamping push plate 2 .
  • Each bayonet socket is composed of two bayonet blocks 3 arranged oppositely.
  • the outer side of the upper end of the said block 3 of the bayonet on the left is placed in the guide rail type slide rail on the top of the gantry, wherein the bottom of the block 3 at the proximal end of the clamping push plate 2 is fixed to the clamping push plate 2 connect.
  • the other side of the block 3 at the far end of the clamping push plate 2 is provided with a second cylinder 31 for pressing against the block 3 to realize the clamping of the steel bar 11 .
  • the drive assembly includes a scribing platform 6 arranged below the clamping push plate 2, the two ends of the scribing platform 6 are placed on guide rails 7, and the guide rails 7 are erected on a pole.
  • the bottom of the platform 6 is provided with a push rod 8 and a driving cylinder 61 .
  • a steel bar bracket plate 5 is connected above the marking platform 6, and a clamping handwheel 4 is arranged on the steel bar bracket plate 5 through bracket connection, and the clamping handwheel 4 One end extends toward the direction of the clamping push plate 2, the bottom of the clamping push plate 2 is connected between the connecting plate and the steel bar bracket plate 5, and the movement of the marking platform 6 drives the steel bar bracket plate 5 and the clamping plate.
  • the tightening hand wheel 4 and the clamping push plate 2 reciprocate in the direction of the gauge length assembly.
  • the adjustment handle 9 is placed on the steel bar bracket plate 5, the middle part 91 of the adjustment handle 9 is connected with the steel bar bracket plate 5 through a screw pivot, and the far end 92 of the adjustment handle is connected with the marking platform 6 through another screw pivot.
  • the shafts are connected, and combined with the slotted holes that cooperate with each other, the adjustment handle 9 is rotated to drive the movement between the steel bar bracket plate 5 and the marking platform 6 in the sliding gap.
  • the gauge assembly includes a tool 13 that is passed through a rotating shaft 12, and the rotating shaft 12 is erected on the top of the slide rail.
  • a tool supporting plate 14 is also provided on one side of the rotating shaft 12, and the tool supporting plate 14 is connected to the The distance between the rotating shafts 12 is smaller than the length of the tool 13, and the tool 13 rotates on the rotating shaft 12 along the through hole.
  • the cutter 13 can be selected according to the length of the steel bars that need to be marked with a gauge, and the redundant cutters can be mounted on the cutter pallet 14 in rotation.
  • the setting of the rotating shaft 12 also enables the cutter to better fit the uneven surface of the steel bar, so as to ensure that the effective gauge length can be made for the steel bar.
  • the present invention also discloses a gauge length method for a steel bar gauge length device described in any one of the above, comprising the following steps:
  • the gauge length method also includes the step of adjusting the gauge distance
  • step S6 After the adjustment is completed, proceed to step S4 again to mark the gauge length.
  • the cutter 13 is composed of several blades, and the blades may be saw blades. By grinding both sides of the saw blade edge, toughness is formed, so that the width of the drawn line meets the specification requirements. At the same time, considering the durability of the knife, other materials such as diamond that can leave scratches on the surface of the steel bar can also be used to make the blade.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Conveying And Assembling Of Building Elements In Situ (AREA)
  • Length-Measuring Instruments Using Mechanical Means (AREA)

Abstract

一种钢筋标距装置及其标距方法,所述装置包括机架(1),所述设置于机架(1)上的用于放置钢筋(11)的夹紧组件,所述夹紧组件下方设置有驱动组件,所述夹紧组件的一侧设置有用于刻划钢筋(11)的标距组件,所述驱动组件带动所述夹紧组件向标距组件方向运动,抵接标距组件进而对钢筋(11)进行标距。有益效果体现在:通过人工轻松推拉或借助电动机构等执行元件自动划线,一次只需不到10秒,就可完成整根钢筋(11)的标线,并能快速切换划线间隔5mm和10mm两个规格。

Description

一种钢筋标距装置及其标距方法 技术领域
本发明涉及一种建筑工程检测技术领域,尤其涉及一种钢筋标距装置及其标距方法。
背景技术
钢筋(Rebar)是指钢筋混凝土用和预应力钢筋混凝土用钢材,其横截面为圆形,有时为带有圆角的方形。包括光圆钢筋、带肋钢筋、扭转钢筋。钢筋在混凝土中主要承受拉应力。其被广泛用于各种建筑结构,特别是大型、重型、轻型薄壁和高层建筑结构。了解清楚钢筋的相关参数才能更好的对钢筋进行利用。如何更好更准确的测量钢筋的阐述在建筑领域中起到非常重要的意义。
钢筋参数一般包括长度和直径,通过参数进行伸长率等的计算,以确认钢筋的力学性能是否符合要求。在做钢筋拉伸试验前,需要在被测钢筋表面打上间隔10mm或5mm的标记,目前标记方式有钢锯条手工划线、打点划线机打点、激光打标机标线等方式。目前最常用的是使用钢锯条划线,由工人手持钢锯条,将钢筋放于模板上,使用钢锯条每隔5mm或10mm划出刻痕,一根钢筋就要做45到50个标线,耗时比较久,划线毫无精度。而打点划线仪,通过使用冲头对钢筋表面每隔一段距离冲击留下痕迹,但这种方式噪音大,效率低。激光打标方式是目前比较新的打标方式,能实现对钢筋的高精度打标,但是为了保证打标效果,需要大功率激光慢速打标,这样导致打标速度慢,成本高。而且由于钢筋的差异性、表面污染等原因一旦激光没有刻到足够的深度,往往做完 拉伸试验后,激光所刻的标会消失不见,导致试验失败。
发明内容
为了解决现有技术的不足,本发明提供了一种钢筋标距装置及其标距方法。
本发明的目的通过以下技术方案来实现:
一种钢筋标距装置,包括机架,设置于所述机架上的用于放置钢筋的夹紧组件,所述夹紧组件下方设置有驱动组件,所述夹紧组件的一侧设置有用于刻划钢筋的标距组件,所述驱动组件带动所述夹紧组件向标距组件方向运动,抵接标距组件进而对钢筋进行标距。
优选地,所述夹紧组件包括夹紧推板、设置于夹紧推板两端的用于夹紧钢筋的卡口,其中一端的卡口在所述夹紧推板上相对另一卡口活动设置。
优选地,每个所述卡口由相对设置的两块卡块构成,所述卡块的上端外侧置于滑轨内,其中一卡块底部与所述夹紧推板固定连接。
优选地,所述驱动组件包括设置于所述夹紧推板下方的划线平台,所述划线平台的两端置于导轨上,所述导轨架设于机架上,所述划线平台的底部设置有推杆及驱动气缸。
优选地,所述划线平台上方连接有钢筋托架板,所述钢筋托架板上通过支架连接设置有夹紧手轮,所述夹紧手轮的一端向夹紧推板方向延伸,所述夹紧推板的底部通过连接板与钢筋托架板之间连接,所述划线平台运动,带动所述钢筋托架板及夹紧手轮与夹紧推板向标距组件方向进行往复运动。
优选地,所述钢筋托架板与所述划线平台之间设置有左右滑动间隙,所述装置还包括一调节把手,所述调节把手置于所述钢筋托架板上,所述调节把手中部与钢筋托架板通过螺丝枢轴连接,所述调节把手的远端与划线平台通过另一螺丝枢轴连接,转动所述调节把手,驱动所述钢筋 托架板与所述划线平台之间在滑动间隙内运动。
优选地,所述标距组件包括穿设于转轴上的刀具,所述转轴架设于滑轨顶部,所述转轴的一侧还设置有刀具托板,所述刀具托板与所述转轴之间的距离小于刀具长度,所述刀具沿穿设孔在所述转轴上转动。
优选地,所述驱动气缸的另一侧设置有第二驱动气缸,所述第二气缸的气缸轴与刀具侧的卡块连接。
优选地,以上任意一种所述的一种钢筋标距装置的标距方法,包括如下步骤:
S1、将待标距钢筋置于卡口内,并根据钢筋长短进行夹紧推板另一端的卡口的调节,以适应钢筋的长度;
S2、根据钢筋的长度以及要标距的长度选择刀具的数量;
S3、通过夹紧手轮或第二驱动气缸对钢筋进行夹紧;
S4、推动推杆或启动驱动气缸带动划线平台驱动整个夹紧组件向标距组件方向运动直至对钢筋表面进行标距刻划。
优选地,所述标距方法还包括调节标距步骤,
S5、一次标距结束后,恢复,再通过转动调节把手调节钢筋托架板与划线平台之间的距离从而调节钢筋的位置;
S6、调节完成后再次进行S4步骤,进行标距划线。
本发明的有益效果体现在:通过人工轻松推拉或借助电动机构等执行元件自动划线,一次只需不到10秒,就可完成整根钢筋的标线,并能快速切换划线间隔5mm和10mm两个规格。
附图说明
图1:本发明的结构示意图。
其中,1机架,11钢筋,12转轴,13刀具,14刀具托板,2夹紧推板,3卡块,31第二气缸,32右侧卡口,4夹紧手轮,5钢筋托架板,6划线平台,61驱动气缸,7导轨,8推杆,9调节把手,91中部,92调节把手 远端。
具体实施方式
以下结合实施例及图1阐述本发明的技术方案,本发明揭示了一种钢筋标距装置,包括机架1,所述机架1包括两个相对设置的门形架,所述门形架靠上部分架设有一组支杆。所述门形架的顶部设置呈导轨形式。
所述机架上的用于放置钢筋11的夹紧组件,所述夹紧组件下方设置有驱动组件,所述夹紧组件的一侧设置有用于刻划钢筋的标距组件,所述驱动组件带动所述夹紧组件向标距组件方向运动,抵接标距组件进而对钢筋进行标距。
具体的,所述夹紧组件包括夹紧推板2、设置于夹紧推板2两端的用于夹紧钢筋11的卡口,其中一端的卡口在所述夹紧推板2上相对另一卡口活动设置。本实施例中,所述夹紧推板2右侧的右侧卡口32可以沿着夹紧推板2向左侧卡口移动。每个所述卡口由相对设置的两块卡块3构成。左侧卡口的所述卡块3的上端外侧置于门形架顶部的导轨式的滑轨内,其中夹紧推板2近端处的卡块3底部与所述夹紧推板2固定连接。夹紧推板2远端处的卡块3另一侧设置有第二气缸31,用于顶紧卡块3以实现对钢筋11的夹紧。
所述驱动组件包括设置于所述夹紧推板2下方的划线平台6,所述划线平台6的两端置于导轨7上,所述导轨7架设于支杆上,所述划线平台6的底部设置有推杆8及驱动气缸61。
为进一步实现标距可调,所述划线平台6上方连接有钢筋托架板5,所述钢筋托架板5上通过支架连接设置有夹紧手轮4,所述夹紧手轮4的一端向夹紧推板2方向延伸,所述夹紧推板2的底部通过连接板与钢筋托架板5之间连接,所述划线平台6运动,带动所述钢筋托架板5及 夹紧手轮4与夹紧推板2向标距组件方向进行往复运动。
所述钢筋托架板5与所述划线平台6之间设置有左右滑动间隙,具体的间隙活动可以通过相互配合的槽孔实现。本实施例中,刀具间的间距为10mm。为了能使得该装置同样适合于5mm的划线间距,所述钢筋托架板5与所述划线平台6之间设置有左右滑动间隙为5mm。调节时,通过调节把手9进行调节。所述调节把手9置于所述钢筋托架板5上,所述调节把手9中部91与钢筋托架板5通过螺丝枢轴连接,调节把手远端92与划线平台6通过另一螺丝枢轴连接,并结合相互配合的槽孔,转动所述调节把手9,驱动所述钢筋托架板5与所述划线平台6之间在滑动间隙内运动。
所述标距组件包括穿设于转轴12上的刀具13,所述转轴12架设于滑轨顶部,所述转轴12的一侧还设置有刀具托板14,所述刀具托板14与所述转轴12之间的距离小于刀具13长度,所述刀具13沿穿设孔在所述转轴12上转动。所述刀具13可以根据需要标距划线的钢筋长度进行选择,多余的刀具可以旋转架设于刀具托板14上。同时,转轴12的设置,也使得刀具可以更好的贴合钢筋凹凸不平的表面,以确保能够对钢筋做出有效的标距。
本发明还揭示了以上任意一种所述的一种钢筋标距装置的标距方法,包括如下步骤:
S1、将待标距钢筋11置于卡口内,并根据钢筋长短进行夹紧推板2另一端的卡口的调节,以适应钢筋11的长度;
S2、根据钢筋11的长度以及要标距的长度选择刀具13的数量;
S3、通过夹紧手轮4或第二驱动气缸31对钢筋11进行夹紧;具体的,拧紧夹紧手轮4将推动夹紧推板2向另一侧的卡块3方向运动,从而对钢筋进行夹紧。或者,当夹紧手轮一端固定时,即卡块3同样固定,第二气缸31工作时,将带动第二气缸侧的卡块3向夹紧手轮4侧运动, 从而达到夹紧钢筋的目的。
S4、推动推杆8或启动驱动气缸61带动划线平台6驱动整个夹紧组件向标距组件方向运动直至对钢筋表面进行标距刻划。
所述标距方法还包括调节标距步骤,
S5、一次标距结束后,恢复,再通过转动调节把手9调节钢筋托架板5与划线平台6之间的距离从而调节钢筋的位置;
S6、调节完成后再次进行S4步骤,进行标距划线。
本实施例中,刀具13由若干刀片组成,所述刀片可以采用锯条,通过研磨锯条刀口两侧面,形成韧口,使得刻划出的线宽满足规范要求。同时,考虑到刀的耐久性能,也可以选用金刚石等能在钢筋表面留下划痕的其他材料制成刀片。
当然本发明尚有多种具体的实施方式,在此就不一一列举。凡采用等同替换或者等效变换而形成的所有技术方案,均落在本发明要求保护的范围之内。

Claims (10)

  1. 一种钢筋标距装置,包括机架,其特征在于:设置于所述机架上的用于放置钢筋的夹紧组件,所述夹紧组件下方设置有驱动组件,所述夹紧组件的一侧设置有用于刻划钢筋的标距组件,所述驱动组件带动所述夹紧组件向标距组件方向运动,抵接标距组件进而对钢筋进行标距。
  2. 如权利要求1所述的一种钢筋标距装置,其特征在于:所述夹紧组件包括夹紧推板、设置于夹紧推板两端的用于夹紧钢筋的卡口,其中一端的卡口在所述夹紧推板上相对另一卡口活动设置。
  3. 如权利要求2所述的一种钢筋标距装置,其特征在于:每个所述卡口由相对设置的两块卡块构成,所述卡块的上端外侧置于滑轨内,其中一卡块底部与所述夹紧推板固定连接。
  4. 如权利要求2所述的一种钢筋标距装置,其特征在于:所述驱动组件包括设置于所述夹紧推板下方的划线平台,所述划线平台的两端置于导轨上,所述导轨架设于机架上,所述划线平台的底部设置有推杆及驱动气缸。
  5. 如权利要求4所述的一种钢筋标距装置,其特征在于:所述划线平台上方连接有钢筋托架板,所述钢筋托架板上通过支架连接设置有夹紧手轮,所述夹紧手轮的一端向夹紧推板方向延伸,所述夹紧推板的底部通过连接板与钢筋托架板之间连接,所述划线平台运动,带动所述钢筋托架板及夹紧手轮与夹紧推板向标距组件方向进行往复运动。
  6. 如权利要求5所述的一种钢筋标距装置,其特征在于:所述钢筋托架板与所述划线平台之间设置有左右滑动间隙,所述装置还包括一调节把手,所述调节把手置于所述钢筋托架板上,所述调节把手中部与钢筋托架板通过螺丝枢轴连接,所述调节把手的远端与划线平台通过另一螺丝枢轴连接,转动所述调节把手,驱动所述钢筋托架板与所述划线平台之间在滑动间隙内运动。
  7. 如权利要求3所述的一种钢筋标距装置,其特征在于:所述标距组件包括穿设于转轴上的刀具,所述转轴架设于滑轨顶部,所述转轴的一侧还设置有刀具托板,所述刀具托板与所述转轴之间的距离小于刀具长度,所述刀具沿穿设孔在所述转轴上转动。
  8. 如权利要求4所述的一种钢筋标距装置,其特征在于:所述驱动气缸的另一侧设置有第二驱动气缸,所述第二气缸的气缸轴与刀具侧的卡块连接。
  9. 如权利要求1-8中任意一种所述的一种钢筋标距装置的标距方法,其特征在于:包括如下步骤:
    S1、将待标距钢筋置于卡口内,并根据钢筋长短进行夹紧推板另一端的卡口的调节,以适应钢筋的长度;
    S2、根据钢筋的长度以及要标距的长度选择刀具的数量;
    S3、通过夹紧手轮或第二驱动气缸对钢筋进行夹紧;
    S4、推动推杆或启动驱动气缸带动划线平台驱动整个夹紧组件向标距组件方向运动直至对钢筋表面进行标距刻划。
  10. 如权利要求9所述的一种钢筋标距装置的标距方法,其特征在于:所述标距方法还包括调节标距步骤,
    S5、一次标距结束后,恢复,再通过转动调节把手调节钢筋托架板与划线平台之间的距离从而调节钢筋的位置;
    S6、调节完成后再次进行S4步骤,进行标距划线。
PCT/CN2021/140412 2021-12-10 2021-12-22 一种钢筋标距装置及其标距方法 WO2023103094A1 (zh)

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