CN219694024U - Engineering supervision dipperstick - Google Patents
Engineering supervision dipperstick Download PDFInfo
- Publication number
- CN219694024U CN219694024U CN202321364449.7U CN202321364449U CN219694024U CN 219694024 U CN219694024 U CN 219694024U CN 202321364449 U CN202321364449 U CN 202321364449U CN 219694024 U CN219694024 U CN 219694024U
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- groove
- spring
- blade
- ruler body
- fixedly connected
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- 239000011324 bead Substances 0.000 claims abstract description 52
- 239000011049 pearl Substances 0.000 description 13
- 238000005259 measurement Methods 0.000 description 10
- 230000000694 effects Effects 0.000 description 2
- 230000002035 prolonged effect Effects 0.000 description 1
- 230000011218 segmentation Effects 0.000 description 1
- 230000006641 stabilisation Effects 0.000 description 1
- 238000011105 stabilization Methods 0.000 description 1
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- Length-Measuring Instruments Using Mechanical Means (AREA)
Abstract
The utility model relates to the technical field of measuring scales and discloses an engineering supervision measuring scale which comprises a first scale body mechanism and a second scale body mechanism, wherein the second scale body mechanism comprises a second scale body groove, a rotating shaft groove and a placing block groove are formed in the first scale body, the rotating shaft groove is rotationally connected with a rotating shaft, the rotating shaft is fixedly connected with the second scale body, a first spring groove is formed in the rotating shaft, a first spring is fixedly connected with the first spring groove, a first pressing bead is fixedly connected with the first spring, a first pressing bead groove is movably connected with the first pressing bead, the second scale body is stored in the second scale body groove, space is saved, the length of the first scale body is expanded when the second scale body and the first scale body are in the same straight line through rotating the second scale body, the first pressing bead and the first pressing bead groove are clamped, and the second scale body and the first scale body are fixed in the same straight line.
Description
Technical Field
The utility model relates to the technical field of measuring scales, in particular to an engineering supervision measuring scale.
Background
The utility model provides a rule is used to measure the size of object in engineering supervision field often, and the guiding rule is a instrument of often adopting, and traditional guiding rule can not be adjusted according to measuring object's length, and shorter guiding rule is to carry out segmentation measurement to longer measuring object, leads to measuring to have the deviation, and longer guiding rule is inconvenient for the staff to carry again, and the result is not good, therefore need an engineering supervision dipperstick to solve above-mentioned problem.
Disclosure of Invention
In order to overcome the technical problems, the utility model aims to provide an engineering supervision measuring rule so as to solve the problems that the traditional guiding rule provided in the background art cannot be adjusted according to the length of a measuring object, a shorter guiding rule is used for carrying out sectional measurement on a longer measuring object, so that the measurement is deviated, and the longer guiding rule is inconvenient for staff to carry, so that the using effect is poor.
The utility model provides the following technical scheme: the utility model provides an engineering supervision dipperstick, includes first blade mechanism, first blade mechanism includes first blade and scale mark, second blade mechanism includes second blade groove, pivot groove and placing block groove have been seted up on the first blade, and the quantity in pivot groove and placing block groove is two, the pivot inslot rotation is connected with the pivot, fixedly connected with second blade in the pivot, fixedly connected with placing block on the second blade, and the quantity of placing block is two, set up first spring groove in the pivot, and the quantity in first spring groove is four, fixedly connected with first spring on the first spring groove, fixedly connected with first pressure pearl groove on the first spring, save space is accomodate in the second blade groove, makes second blade and first blade carry out the length expansion at same straight line time, make second blade and first straight line expansion and make the blade more stable with the second blade, and make the second blade keep measuring with the first straight line more stable, make the second blade keep the first position of the second blade stable with the first ball groove, the first ball of the second blade is stable, and the first ball of the second blade is kept stable with the first straight line, the first ball of the measuring device is kept to the second blade, the first ball of the second blade is stable, the first ball is kept the second ball is stable with the first ball groove, and the first ball is kept the first ball groove.
Further, the level groove is formed in the first ruler body, the level is fixedly connected with the level in the level groove, and the level is installed, so that the first ruler body can be subjected to level testing, and the practicability and the functionality of the device are improved.
Further, set up first pressure pearl groove in the pivot groove, and the quantity in first pressure pearl groove is eight can make four first pressure pearls card go into in the first pressure pearl groove of a plurality of positions, and first pressure pearl is in every card goes into a first pressure pearl groove, can carry out the angular adjustment of forty-five degrees, and makes the angle that forms fixed, can make first blade and second blade carry out vertical angle measurement and other angular measurement, has improved the practicality and the functionality of device.
Further, second spring groove has been seted up on the second chi body, and the quantity in second spring groove is two, fixedly connected with second spring on the second spring groove, fixedly connected with second pressure pearl on the second spring, second pressure pearl groove has been seted up in the second chi body groove, and the quantity in second pressure pearl groove is two, and second pressure pearl groove block make the second chi body fix more firm in the second chi body groove, and it is fixed to the second chi body of ending with first pressure pearl and first pressure pearl groove block, prevent that the landing from causing the influence to measuring work in the first chi body of second chi body, improved the job stabilization nature of device.
Further, the third blade groove has been seted up on the second blade, swing joint has the third blade in the third blade groove, fixedly connected with second stopper on the third blade groove, fixedly connected with first stopper on the third blade, and the quantity of first stopper and second stopper is two on the third blade, the third spring groove has been seted up on the third blade, fixedly connected with third spring on the third spring groove, the third bead pressing groove has been seted up to the last fixedly connected with third bead pressing in the third blade groove, can measure longer object through pulling out the third blade with the length extension of second blade, can also measure longer vertical angle, makes measured data more accurate, and third bead pressing groove block make the firm place in the third blade groove of third blade, and first stopper and second stopper can prevent that the third blade from pulling out the third blade groove, have improved the practicality and the stability of work of device.
Further, the handle groove is formed in the third ruler body, the second ruler body is convenient to rotate and take out from the second ruler body groove through the second ruler body, the third ruler body is also convenient to pull out to prolong the length of the second ruler body, and the use flexibility of the device is improved.
The utility model has the technical effects and advantages that:
1. according to the utility model, the second ruler body groove, the rotating shaft, the second ruler body, the placing block groove, the first spring, the first pressing beads and the first pressing bead groove are formed, the second ruler body is contained in the second ruler body groove, space is saved, the length of the first ruler body is expanded when the second ruler body and the first ruler body are in the same straight line through rotating the second ruler body, a longer measuring object can be measured, the first pressing beads are clamped with the first pressing bead groove, the same straight line formed by the second ruler body and the first ruler body is fixed, the four first pressing beads are clamped with the first pressing bead groove, so that the fixing is better, the measurement is kept stable, the second ruler body is stably placed in the second ruler body groove, the placing block is connected with the placing block groove, the placing is more stable, the second ruler body is prevented from being loose and opened, and the practicability and the working stability of the device are improved.
2. According to the utility model, the third ruler body groove, the third ruler body, the first limiting block, the second limiting block, the third spring groove, the third spring, the third pressing bead and the third pressing bead groove are formed, the length of the second ruler body can be prolonged by pulling out the third ruler body, a longer object can be measured, a longer vertical angle can be measured, the measured data is more accurate, the third pressing bead and the third pressing bead groove are clamped, so that the third ruler body is stably placed in the third ruler body groove, and the first limiting block and the second limiting block can prevent the third ruler body from being pulled out of the third ruler body groove, so that the practicability and the working stability of the device are improved.
Drawings
Fig. 1 is a combined perspective view of the whole structure of the present utility model.
Fig. 2 is an expanded perspective view of the overall structure of the present utility model.
Fig. 3 is a schematic cross-sectional view of the overall structure of the present utility model.
FIG. 4 is a schematic cross-sectional view of a third blade configuration of the present utility model.
FIG. 5 is a schematic cross-sectional view of a second blade configuration of the present utility model.
Fig. 6 is an enlarged schematic view of the structure a in fig. 3 according to the present utility model.
Fig. 7 is an enlarged schematic view of the structure at B in fig. 5 according to the present utility model.
Fig. 8 is an enlarged schematic view of the structure of fig. 4 at C in accordance with the present utility model.
The reference numerals are: 100. a first blade mechanism; 110. a first blade; 111. scale marks; 200. a second blade mechanism; 210. a second blade slot; 211. a rotating shaft groove; 212. a rotating shaft; 213. a second blade; 214. placing a block; 215. placing a block groove; 216. a first spring groove; 217. a first spring; 218. a first bead pressing; 219. a first bead pressing groove; 220. a second spring groove; 221. a second spring; 222. a second bead pressing step; 223. a second bead pressing groove; 224. a third blade slot; 225. a third blade; 226. a first limiting block; 227. a second limiting block; 228. a third spring groove; 229. a third spring; 230. third beading; 231. a handle groove; 232. a level groove; 233. and (5) a level gauge.
Detailed Description
The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings.
Embodiment one:
referring to fig. 1, 2, 3, 5, 6 and 7 of the drawings in the specification, the utility model provides an engineering supervision measuring rule, which comprises a first rule body mechanism 100, wherein the first rule body mechanism 100 comprises a first rule body 110 and graduation marks 111, a second rule body mechanism 200 comprises a second rule body groove 210, a rotating shaft groove 211 and a placing block groove 215 are formed on the first rule body 110, the number of the rotating shaft groove 211 and the placing block groove 215 is two, a rotating shaft 212 is rotationally connected in the rotating shaft groove 211, a second rule body 213 is fixedly connected on the rotating shaft 212, a placing block 214 is fixedly connected on the second rule body 213, the number of the placing block 214 is two, the rotating shaft 212 is provided with four first spring grooves 216, the first spring grooves 216 are fixedly connected with first springs 217, the first springs 217 are fixedly connected with first beads 218, the first beads 218 are movably connected with first beads 219, the rotating shaft 211 is internally provided with first beads 219, the first beads 219 are eight, the second ruler body 213 is provided with second spring grooves 220, the second spring grooves 220 are two, the second spring grooves 220 are fixedly connected with second springs 221, the second springs 221 are fixedly connected with second beads 222, the second ruler body grooves 210 are internally provided with second beads 223, and the second beads 223 are two.
Working principle: when the engineering supervision measurement is carried out, the first ruler 110 is used for measuring a measured object, the measured length is obtained through the graduation mark 111, when the measured object is long, the second ruler 213 is pushed out from the bottom of the first ruler 110, the first pressing bead 218 is propped against the first pressing bead groove 219 to enable the first pressing bead 218 to be contracted, the first pressing bead 218 is separated from the first pressing bead groove 219, the first pressing bead 218 is clamped into the first pressing bead groove 219 at different positions after the second ruler 213 is rotated for one hundred eighty degrees, the second ruler 213 and the first ruler 110 are arranged on the same straight line, the measured object is measured by rotating the second ruler 213 for ninety degrees, the first ruler 110 and the second ruler 213 can be used for measuring the vertical angle, the first pressing bead 218 is clamped into the first pressing bead groove 219 at different positions, the angle of forty-five degrees can be adjusted, the second ruler 213 can be clamped into the first pressing bead groove 219, the second ruler 213 is rotated into the second pressing bead groove 213 to be clamped into the second groove 213, and the second pressing bead groove 213 is clamped into the second groove 222, and the second pressing bead groove is clamped into the groove 222, and the second groove is clamped into the groove 222.
Embodiment two:
referring to fig. 1, 2, 4, 7 and 8 of the drawings in the specification, the second embodiment is different from the first embodiment in that: the first ruler body 110 is provided with a level groove 232, a level 233 is fixedly connected in the level groove 232, the second ruler body 213 is provided with a third ruler body groove 224, the third ruler body groove 224 is movably connected with a third ruler body 225, the third ruler body groove 224 is fixedly connected with a second limiting block 227, the third ruler body 225 is fixedly connected with a first limiting block 226, the number of the first limiting block 226 and the second limiting block 227 is two, the third ruler body 225 is provided with a third spring groove 228, the third spring groove 228 is fixedly connected with a third spring 229, the third spring 229 is fixedly connected with a third pressing bead 230, the third ruler body groove 224 is provided with a third pressing bead groove, and the third ruler body 225 is provided with a handle groove 231.
Working principle: the first ruler body 110 is placed on an object with levelness to be measured, the levelness of the measured object can be observed through the level meter 233, when the second ruler body 213 is required to be rotated out, the second ruler body 213 is also conveniently rotated out through the handle groove 231 to perform measurement work, the third ruler body 225 is also conveniently pulled out of the third ruler body groove 224 to measure a longer object and a longer vertical angle to enable measurement data to be more accurate, the first limiting block 226 and the second limiting block 227 prevent the third ruler body 225 from being pulled out of the third ruler body groove 224, after measurement is finished, the third ruler body 225 is pushed back into the third ruler body groove 224, the inner wall of the third ruler body groove 224 props against the third pressing bead 230 to press the third spring 229 to shrink, and the third pressing bead 230 is clamped in the third pressing bead groove to prevent the third ruler body 225 from sliding out.
Claims (6)
1. The utility model provides an engineering supervision dipperstick, includes first blade mechanism (100), first blade mechanism (100) include first blade (110) and scale mark (111), its characterized in that:
second blade mechanism (200), second blade mechanism (200) include second blade groove (210), pivot groove (211) and place piece groove (215) have been seted up on first blade (110), and the quantity in pivot groove (211) and place piece groove (215) is two, pivot groove (211) internal rotation is connected with pivot (212), fixedly connected with second blade (213) on pivot (212), fixedly connected with place piece (214) on second blade (213), and place the quantity of piece (214) is two, first spring groove (216) have been seted up on pivot (212), and the quantity in first spring groove (216) is four, fixedly connected with first spring (217) on first spring (217) are pressed pearl (218), swing joint has first pressure pearl (219) on first pressure pearl (218).
2. An engineering supervision measuring scale according to claim 1, wherein: the first ruler body (110) is provided with a level groove (232), and a level (233) is fixedly connected in the level groove (232).
3. An engineering supervision measuring scale according to claim 1, wherein: a first bead pressing groove (219) is formed in the rotating shaft groove (211), and the number of the first bead pressing grooves (219) is eight.
4. An engineering supervision measuring scale according to claim 1, wherein: second spring groove (220) has been seted up on second blade (213), and the quantity in second spring groove (220) is two, fixedly connected with second spring (221) on second spring groove (220), fixedly connected with second pressure pearl (222) on second spring (221), second pressure pearl groove (223) have been seted up in second blade groove (210), and the quantity in second pressure pearl groove (223) is two.
5. An engineering supervision measuring scale according to claim 1, wherein: the utility model discloses a novel ruler, including second ruler body (213), third ruler body groove (224) have been seted up on second ruler body (213), swing joint has third ruler body (225) in third ruler body groove (224), fixedly connected with second stopper (227) on third ruler body groove (224), fixedly connected with first stopper (226) on third ruler body (225), and the quantity of first stopper (226) and second stopper (227) is two, third spring groove (228) have been seted up on third ruler body (225), fixedly connected with third spring (229) on third spring groove (228), fixedly connected with third bead (230) on third spring (229), third bead pressing groove has been seted up in third ruler body groove (224).
6. An engineering supervision measuring scale according to claim 5, wherein: the third ruler body (225) is provided with a handle groove (231).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202321364449.7U CN219694024U (en) | 2023-05-31 | 2023-05-31 | Engineering supervision dipperstick |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202321364449.7U CN219694024U (en) | 2023-05-31 | 2023-05-31 | Engineering supervision dipperstick |
Publications (1)
Publication Number | Publication Date |
---|---|
CN219694024U true CN219694024U (en) | 2023-09-15 |
Family
ID=87938710
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN202321364449.7U Active CN219694024U (en) | 2023-05-31 | 2023-05-31 | Engineering supervision dipperstick |
Country Status (1)
Country | Link |
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CN (1) | CN219694024U (en) |
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2023
- 2023-05-31 CN CN202321364449.7U patent/CN219694024U/en active Active
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