Disclosure of utility model
In order to overcome the defects in the prior art, the utility model provides a foundation construction sediment thickness detection device, which solves the problems that when a display screen on an operation instrument is not operated in the detection process, the operation instrument is damaged due to the fact that the environment of a construction site is poor and hard objects are easy to collide, stains and dust are easy to adhere to the display screen, and further the watching and the use are influenced.
The foundation construction sediment thickness detection device is characterized in that the bottom ends of three supporting legs of the tripod are respectively provided with a stable structure, the stable structure comprises a connecting bottom plate fixed on the outer side of the lower ends of the supporting legs, the lower end face of the connecting bottom plate is flush with the bottom face of the supporting legs, a stud penetrating through the connecting bottom plate is arranged on the connecting bottom plate in a threaded connection mode, a nail pile is fixedly arranged at the lower end of the stud, an adjusting plate is arranged at the upper end of the stud in a threaded connection mode, a guide rod is fixedly arranged on the connecting bottom plate, the adjusting plate is sleeved on the guide rod, a reinforcing plate is arranged on the outer side of the connecting bottom plate, a cylinder body is fixedly arranged on the lower end face of the reinforcing plate, a spring is concentrically arranged in the cylinder body, one end of the spring is fixed on the adjusting plate, and the other end of the spring is fixed on the reinforcing plate. The contact area between the tripod and the ground is increased through the reinforcing plate, and the reinforcing plate is tightly attached to the ground by matching with the spring.
Further, the upper end of the tripod is fixedly provided with a U-shaped frame, a winding wheel with a wire groove is rotatably arranged on the U-shaped frame, a wire body is arranged in the wire groove, one end of the wire body is provided with a test needle, and the other end of the wire body is wound on the rope winder.
Further, a through hole allowing the test needle to pass through is formed in the center of the tripod.
Further, still include the clean structure of protection of operation instrument, the clean structure of protection is including fixing the U type frame on the operation instrument lateral wall, the connecting plate of U type frame is fixed on the operation instrument lateral wall, and two curb plates of U type frame all are located the tip of operation instrument and connect through the gag lever post, the slider has been cup jointed on the gag lever post, fixedly provided with protection casing through the bracing piece on the slider, the protection casing is in on the operation instrument.
Further, the protection casing is in including protection roof, setting protection curb plate of protection roof both sides, protection curb plate is located the outside of operating instrument, two rotate between the protection curb plate and be provided with clean cylinder, the outside parcel of clean cylinder has the sponge layer.
Further, the cleaning roller is proximate an end of the shield.
Further, a gear is fixedly arranged on the rotating shaft of the cleaning roller, and a rack meshed with the gear is arranged on the operating instrument.
Further, the stop lever is the screw rod, the slider passes through threaded connection setting and is in on the screw rod, be provided with the spout on the connecting plate of U type frame, be provided with on the slider with spout complex guide block, the one end of screw rod stretches out U type frame and stretch out the end and be provided with the hand wheel.
Further, the data transmission between the operation instrument and the test needle may be wireless or wired, which is the prior art and is not described herein.
Three beneficial effects
Compared with the prior art, the utility model has the beneficial effects that:
1. according to the foundation construction sediment thickness detection device, the protection cleaning structure is arranged, the operating instrument is not used, the protection cover is protected through the protection cover, the protection cover can also move along the limiting rod, the gear and the rack are meshed in the moving process of the protection cover, the cleaning roller rotates, the outer surface of the operating instrument can be cleaned, and dirt and dust adhered to the outer surface of the operating instrument are prevented from affecting use.
2. This foundation construction sediment thickness detection device through setting up stable structure, under the effect of double-screw bolt, can drive the nail stake downstream, and then can make the nail stake insert ground and stabilize, can drive regulating plate and gusset plate downstream in the time of the double-screw bolt downstream, realizes supplementary firm effect.
Detailed Description
The technical scheme of the patent is further described in detail below with reference to the specific embodiments.
Embodiment one:
Referring to fig. 1-4, a foundation construction sediment thickness detection device comprises a tripod 2, a rope winder 6, an operation instrument 1 and a test needle 8, and is characterized in that the bottom ends of three supporting legs of the tripod 2 are respectively provided with a stable structure 4, the stable structure 4 comprises a connecting bottom plate 41 fixed on the outer side of the lower end of each supporting leg, the lower end face of the connecting bottom plate 41 is flush with the bottom face of each supporting leg, a stud 42 penetrating through the connecting bottom plate 41 is arranged on the connecting bottom plate 41 through threaded connection, a nail pile 43 is fixedly arranged at the lower end of each stud 42, an adjusting plate 44 is arranged at the upper end of each stud 42 through threaded connection, a guide rod 33 is fixedly arranged on the connecting bottom plate 41, the adjusting plate 44 is sleeved on the guide rod 33, a reinforcing plate is arranged on the outer side of each connecting bottom plate 41, a cylinder 46 is fixedly arranged on the lower end face of each reinforcing plate, springs 49 are concentrically arranged in the cylinders 46, one ends of the springs 49 are fixed on the adjusting plate 44, and the other ends of the springs 49 are fixed on the reinforcing plates.
The upper end of the tripod bracket 2 is fixedly provided with a U-shaped frame 31, a winding wheel 5 with a wire groove is rotatably arranged on the U-shaped frame 31, a wire body 7 is arranged in the wire groove, one end of the wire body 7 is provided with a test needle 8, and the other end is wound on the rope winder 6.
The tripod 2 is provided at a central position with a through hole allowing the test needle 8 to pass through.
The data transmission between the operation instrument 1 and the test needle 8 may be wireless or wired, such as the output line 9 in fig. 3, which is a prior art and will not be described herein.
A slide bar 47 may be provided in the spring 9, the slide bar 47 being spaced from the top of the barrel 46.
The use mode is that the stud 42 is rotated, the stud 42 drives the peg 43 to be pricked below the ground, meanwhile, the adjusting plate 44 can compress the spring 49 to tightly prop the reinforcing plate 48 on the ground, so that the basic stability is ensured through the peg 43 pricked into the ground, the contact area between the device and the ground is improved through the reinforcing plate 48, and the stability of the device is further improved.
Embodiment two:
referring to fig. 1-4, a protection cleaning structure of a sediment thickness detection device for foundation construction, the protection cleaning structure 3 comprises a U-shaped frame 31 fixed on the side wall of an operation instrument 1, a connecting plate of the U-shaped frame 31 is fixed on the side wall of the operation instrument 1, two side plates of the U-shaped frame 31 are both positioned at the end part of the operation instrument 1 and connected through a limiting rod 45, a sliding block 34 is sleeved on the limiting rod 45, a protection cover 38 is fixedly arranged on the sliding block 34 through a supporting rod 37, and the protection cover 38 covers the operation instrument 1.
The protection casing 38 includes the protection roof, sets up the protection curb plate in the protection roof both sides, and the protection curb plate is located the outside of operation instrument 1, rotates between two protection curb plates and is provided with cleaning roller 310, and cleaning roller 310's outside parcel has the sponge layer.
The cleaning roller 310 is adjacent the end of the shield 38.
The using mode is as follows:
the limiting rod 45 is a common prism, the protective cover 38 is manually pushed to move along the prism, the gear 311 and the rack 312 are meshed with each other in the moving process of the protective cover 38, and the cleaning roller 310 cleans the surface of the operating instrument 1.
Embodiment III:
Referring to fig. 1-4, a protection cleaning structure of a sediment thickness detection device for foundation construction comprises a U-shaped frame 31 fixed on the side wall of an operation instrument 1, wherein a connecting plate of the U-shaped frame 31 is fixed on the side wall of the operation instrument 1, two side plates of the U-shaped frame 31 are both positioned at the end part of the operation instrument 1 and are connected through a limiting rod 45, a sliding block 34 is sleeved on the limiting rod 45, a protection cover 38 is fixedly arranged on the sliding block 34 through a supporting rod 37, and the protection cover 38 covers the operation instrument 1.
The protection casing 38 includes the protection roof, sets up the protection curb plate in the protection roof both sides, and the protection curb plate is located the outside of operation instrument 1, rotates between two protection curb plates and is provided with cleaning roller 310, and cleaning roller 310's outside parcel has the sponge layer.
The cleaning roller 310 is adjacent the end of the shield 38.
A gear 311 is fixedly arranged on the rotating shaft 39 of the cleaning roller 310, and a rack 312 meshed with the gear 311 is arranged on the operation instrument 1.
The limiting rod 45 is a screw rod, the limiting rod is arranged on the screw rod in a sliding manner through threaded connection, a sliding groove 36 is formed in a connecting plate of the U-shaped frame 31, a guide block 35 matched with the sliding groove 36 is arranged on the sliding block 34, one end of the screw rod extends out of the U-shaped frame 31, and a hand wheel 32 is arranged at the extending end of the screw rod.
A gear 311 is fixedly arranged on the rotating shaft 39 of the cleaning roller 310, and a rack 312 meshed with the gear 311 is arranged on the operation instrument 1.
The limiting rod 45 is a screw rod, the limiting rod is arranged on the screw rod in a sliding manner through threaded connection, a sliding groove 36 is formed in a connecting plate of the U-shaped frame 31, a guide block 35 matched with the sliding groove 36 is arranged on the sliding block 34, one end of the screw rod extends out of the U-shaped frame 31, and a hand wheel 32 is arranged at the extending end of the screw rod.
The using mode is as follows:
The screw is rotated, the screw drives the sliding block 34 and the protection cover 38 to move along the screw and the sliding groove 36, the gear 311 and the rack 312 are meshed with each other in the moving process of the protection cover 38, and the cleaning roller 310 cleans the surface of the operating instrument 1.
Embodiment four:
Referring to fig. 1-4, a foundation construction sediment thickness detection device comprises a tripod 2, a rope winder 6, an operation instrument 1 and a test needle 8, and is characterized in that the bottom ends of three supporting legs of the tripod 2 are respectively provided with a stable structure 4, the stable structure 4 comprises a connecting bottom plate 41 fixed on the outer side of the lower end of each supporting leg, the lower end face of the connecting bottom plate 41 is flush with the bottom face of each supporting leg, a stud 42 penetrating through the connecting bottom plate 41 is arranged on the connecting bottom plate 41 through threaded connection, a nail pile 43 is fixedly arranged at the lower end of each stud 42, an adjusting plate 44 is arranged at the upper end of each stud 42 through threaded connection, a guide rod 33 is fixedly arranged on the connecting bottom plate 41, the adjusting plate 44 is sleeved on the guide rod 33, a reinforcing plate is arranged on the outer side of each connecting bottom plate 41, a cylinder 46 is fixedly arranged on the lower end face of each reinforcing plate, springs 49 are concentrically arranged in the cylinders 46, one ends of the springs 49 are fixed on the adjusting plate 44, and the other ends of the springs 49 are fixed on the reinforcing plates.
The upper end of the tripod bracket 2 is fixedly provided with a U-shaped frame 31, a winding wheel 5 with a wire groove is rotatably arranged on the U-shaped frame 31, a wire body 7 is arranged in the wire groove, one end of the wire body 7 is provided with a test needle 8, and the other end is wound on the rope winder 6.
The tripod 2 is provided at a central position with a through hole allowing the test needle 8 to pass through.
The data transmission between the operation instrument 1 and the test needle 8 may be wireless or wired, such as the output line 9 in fig. 3, which is a prior art and will not be described herein.
A slide bar may be provided in the spring 9, with a space between the slide bar and the top of the cylinder 46.
The use mode is that the stud 42 is rotated, the stud 42 drives the peg 43 to be pricked below the ground, meanwhile, the adjusting plate 44 can compress the spring 49 to tightly prop the reinforcing plate 48 on the ground, so that the basic stability is ensured through the peg 43 pricked into the ground, the contact area between the device and the ground is improved through the reinforcing plate 48, and the stability of the device is further improved.
When using, because the job site environment is relatively poor, receive hard thing collision easily, and then cause the damage to the operation instrument, and very easy adhesion spot and dust on the operation screen, and then influence and watch, therefore, provide a protection clean structure, protection clean structure 3 is including fixing the U type frame 31 on the operation instrument 1 lateral wall, the connecting plate of U type frame 31 is fixed on the operation instrument 1 lateral wall, two curb plates of U type frame 31 all are located the tip of operation instrument 1 and are connected through gag lever post 45, the slider 34 has been cup jointed on the gag lever post 45, be provided with protection casing 38 through the bracing piece 37 is fixed on the slider 34, protection casing 38 covers on operation instrument 1.
The protection casing 38 includes the protection roof, sets up the protection curb plate in the protection roof both sides, and the protection curb plate is located the outside of operation instrument 1, rotates between two protection curb plates and is provided with cleaning roller 310, and cleaning roller 310's outside parcel has the sponge layer.
The cleaning roller 310 is adjacent the end of the shield 38.
In the description of the present utility model, unless explicitly stated or limited otherwise, the terms "mounted," "connected," and "connected" are to be construed broadly, and may be, for example, fixedly connected, detachably connected, or integrally connected, mechanically connected, electrically connected, directly connected, indirectly connected via an intervening medium, or in communication between two elements. The specific meaning of the above terms in the present utility model can be understood by those of ordinary skill in the art in a specific case.
While the preferred embodiments of the present patent have been described in detail, the present patent is not limited to the above embodiments, and various changes may be made without departing from the spirit of the present patent within the knowledge of one of ordinary skill in the art.