Pay-off box for over-filling detection device
By setting a rotatable coiling wheel and limiting parts in the wiring box, the problem of connecting wire winding is solved, and the smooth progress and efficient use of wiring is achieved.
Patent Information
- Application Number
- CN202422243396.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-13
- Publication Date
- 2025-07-18
- Estimated Expiration
- 2034-09-13
AI Technical Summary
The internal structure of the existing super-injection detector is complex and the connecting wires are easy to wind, which leads to the inability to decentralize the equipment smoothly, affecting the efficiency of use.
A wire-laying box is designed, including a rotatable coiling wheel and a screw. Two sets of limiting parts are provided on the screw. The limiting parts are composed of side-by-side limiting wheels, and the central position forms a channel for the connecting wire to pass through to avoid winding.
Ensure that the connecting wire can extend smoothly during the wiring release process, avoid winding, and improve user experience and work efficiency.
Smart Images

Figure CN223117780U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of overpour detection, in particular to a wire pay - out box for an overpour detection device. Background Art
[0002] A concrete overpour detector is a high - precision instrument used to control the pouring height of concrete during construction. By real - time monitoring the pouring height of concrete, it ensures that the concrete reaches the design elevation, avoids overpouring, thereby improving the project quality and avoiding waste of resources. This device is widely used in the construction processes of underwater concrete piles and dry - hole concrete structures and is an indispensable quality control tool in modern construction projects.
[0003] The internal structure of the wire pay - out box for the existing overpour detector is complex, with a large number of components. During the wire pay - out process, wire winding is likely to occur, making it impossible for the overpour detector to be smoothly lowered. At this time, the staff must disassemble the wire pay - out box to sort out the internal connection wires before normal operation, which affects the efficiency and results in a poor user experience. Summary of the Utility Model
[0004] Aiming at the defects existing in the above - mentioned prior art, the purpose of the utility model is to provide a wire pay - out box for an overpour detection device, which can solve the problem that the internal connection wires of the wire pay - out box are wound around other components during wire pay - out, resulting in the inability of the overpour detector to be smoothly lowered.
[0005] The purpose of the utility model is achieved by adopting the following technical solutions:
[0006] A wire pay - out box for an overpour detection device includes a box body. A rotatable wire winding wheel is arranged inside the box body, and the wire winding wheel is used for winding connection wires. A fixed driving motor is arranged on one side of the wire winding wheel. Wheel handles are arranged on both sides of the wire winding wheel, and the wheel handles are fixed inside the box body. A lead screw is arranged horizontally between the two wheel handles. Holes are opened on the two wheel handles, and the two ends of the lead screw rotate in the holes of the wheel handles respectively. The driving motor is used to drive the wire winding wheel and the lead screw. Two groups of limit parts are movably arranged on the lead screw, and one group of the limit parts is fixedly arranged below the other group. The limit part includes two limit wheels arranged side by side, and the edges of the two limit wheels are in contact with each other, forming a channel for the connection wire to pass through at the central position. The arrangement direction of the two limit wheels of the upper limit part is perpendicular to the arrangement direction of the two limit wheels of the lower limit part. The channel of the upper limit part is arranged directly above the channel of the lower limit part. An outlet is opened at the bottom of the box body, and an overpour detection device is arranged outside the box body. The connection wire on the wire winding wheel passes through the outlet and is fixedly connected to the overpour detection device.
[0007] Preferably, the wire winding wheel includes a rotating shaft and two rotating wheels, and both ends of the rotating shaft are fixedly arranged at the central positions of the two rotating wheels.
[0008] Preferably, a transmission member is arranged inside the wheel handle on one side of the wire winding wheel. The transmission member includes a driving gear, a connecting gear and a driven gear. The rotating shaft, the center of the driving gear and the output end of the driving motor are fixedly connected. The driving gear meshes with the connecting gear, the connecting gear meshes with the driven gear, and the center of the driven gear is fixedly connected with the lead screw.
[0009] Preferably, a hand crank is rotatably arranged on one side of the box body. The hand crank passes through the box body and is fixedly connected with the central position on one side of the wire winding wheel.
[0010] Preferably, a rotatable wire outlet wheel is arranged inside the box body, and the wire outlet wheel is arranged directly above the wire outlet.
[0011] Preferably, a wire outlet limiting member is fixedly arranged directly above the wire outlet wheel.
[0012] Preferably, a counter is fixedly arranged inside the box body. The counter is arranged on one side of the wire outlet wheel and is used for recording the number of rotations of the wire outlet wheel.
[0013] Preferably, handles are fixedly arranged on both sides of the top of the box body.
[0014] Preferably, feet are fixedly arranged around the bottom of the box body.
[0015] Preferably, the overfilling detection device includes a detection main body and a disc bracket. The detection main body and the wire winding wheel are fixedly connected by a connecting wire, and the disc bracket is slidably arranged on the detection main body.
[0016] The beneficial effects of the present utility model are as follows:
[0017] In the wire releasing box for the overfilling detection device of the present utility model, a lead screw is horizontally arranged between the wheel handles, and two groups of limiting members are movably arranged on the lead screw. The limiting members include two limiting wheels arranged side by side, and the wheel edges of the two limiting wheels are in contact with each other, and a channel for the connecting wire to pass through is formed at the central position. When the wire releasing box releases wire, the connecting wire on the wire winding wheel can smoothly extend out of the box body without winding, and the use experience is good. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 is a schematic diagram of the overall structure of the wire releasing box of the present utility model;
[0019] Figure 2 is a schematic diagram of the internal structure of the wire releasing box of the present utility model;
[0020] Figure 3 is Figure 2 the rear view of;
[0021] Figure 4 is the structural schematic diagram of the wire winding wheel and the transmission part of the present utility model;
[0022] Figure 5 is the structural schematic diagram of the limiting part of the present utility model
[0023] Figure 6 is the overall structural schematic diagram of the overfilling detection device of the present utility model.
[0024] In the figure: 100, box body; 200, wire winding wheel; 201, rotating shaft; 202, runner; 300, driving motor; 400, wheel handle; 500, lead screw; 600, limiting part; 601, limiting wheel; 602, channel; 700, wire outlet; 800, overfilling detection device; 801, detection main body; 802, disc bracket; 900, transmission part; 901, driving gear; 902, connecting gear; 903, driven gear; 110, hand crank; 120, wire outlet wheel; 130, counter; 140, handle; 150, foot pad; 160, wire outlet limiting part. Specific embodiments
[0025] In order to make the technical problems, technical solutions and beneficial effects solved by the utility model clearer and more understandable, the following further describes the utility model with reference to the accompanying drawings and embodiments.
[0026] The embodiments provided by the present utility model are as follows Figures 1 to 6As shown in the figure, a wire-releasing box for an overpour detection device includes a box body 100. A rotatable wire-winding wheel 200 is arranged inside the box body 100. The wire-winding wheel 200 is used for winding a connecting wire. A fixed driving motor 300 is arranged on one side of the wire-winding wheel 200. Wheel handles 400 are arranged on both sides of the wire-winding wheel 200. The wheel handles 400 are fixed inside the box body 100. A lead screw 500 is arranged horizontally between the two wheel handles 400. Holes are formed on the two wheel handles 400. The two ends of the lead screw 500 rotate in the holes of the wheel handles 400 respectively. The driving motor 300 is used for driving the wire-winding wheel 200 and the lead screw 500. Two groups of limiting members 600 are movably arranged on the lead screw 500. One group of limiting members 600 is fixedly arranged below the other group of limiting members 600. The limiting member 600 includes two limiting wheels 601 arranged side by side. The wheel edges of the two limiting wheels 601 are in contact with each other, and a channel 602 for the connecting wire to pass through is formed at the central position. The side-by-side direction of the two limiting wheels 601 of the upper limiting member 600 is perpendicular to the side-by-side direction of the two limiting wheels 601 of the lower limiting member 600. The channel 602 of the upper limiting member 600 is arranged directly above the channel 602 of the lower limiting member 600. An outlet 700 is formed at the bottom of the box body 100. An overpour detection device 800 is arranged outside the box body 100. The connecting wire on the wire-winding wheel 200 passes through the outlet 700 and is fixedly connected to the overpour detection device 800.
[0027] The two ends of the lead screw 500 can be installed in the holes of the wheel handles 400 through bearings or the like.
[0028] During installation, the staff winds the connecting wire on the wire-winding wheel 200. One end of the connecting wire is fixed on the wire-winding wheel 200, and the other end passes through the channel 602 and extends out along the outlet 700. The staff fixedly connects the extending end of the connecting wire to the overpour detection device 800 to complete the installation.
[0029] During use, the staff places the box body 100 on the working platform and starts the driving motor 300 through the control center. The driving motor 300 drives the wire-winding wheel 200 and the lead screw 500 to rotate. The wire-winding wheel 200 continuously releases the connecting wire, and the lead screw 500 drives the limiting member 600 to move horizontally along with the connecting wire, ensuring that the connecting wire passes vertically through the channel 602. The two groups of channels 602 are vertically arranged, which can effectively prevent the connecting wire from contacting the wheel edges of the limiting wheels 601 and causing wear of the connecting wire. The connecting wire passes vertically through the outlet 700 and does not wind inside the box body 100. The overpour detection device 800 continuously falls under the action of gravity and then enters the concrete to be measured. After reaching the position to be measured, the staff controls the driving motor 300 to stop working. At this time, the connecting wire on the overpour detection device 800 is in a taut state, and the measurement work is carried out. After the measurement is completed, the staff controls the driving motor 300 to rotate in the reverse direction to smoothly recover the overpour detection device 800.
[0030] Preferably, the winding wheel 200 includes a rotating shaft 201 and two rotating wheels 202, and both ends of the rotating shaft 201 are fixedly arranged at the central positions of the two rotating wheels 202.
[0031] Preferably, a transmission member 900 is arranged inside the wheel handle 400 on one side of the winding wheel 200. The transmission member 900 includes a driving gear 901, a connecting gear 902 and a driven gear 903. The central positions of the rotating shaft 201, the driving gear 901 and the output end of the driving motor 300 are fixedly connected. The driving gear 901 meshes with the connecting gear 902, the connecting gear 902 meshes with the driven gear 903, and the central position of the driven gear 903 is fixedly connected with the lead screw 500.
[0032] Preferably, a hand crank 110 is rotatably arranged on one side of the box body 100. The hand crank 110 passes through the box body 100 and is fixedly connected with the central position on one side of the winding wheel 200. When in use, if the staff pays out too much wire, resulting in the over-pouring detection device 800 dropping excessively and the connecting wire thereon being in an untightened state, the staff can slightly pull back the over-pouring detection device 800 by rotating the hand crank 110 to ensure the smooth progress of the measurement work.
[0033] Preferably, a wire outlet wheel 120 is rotatably arranged inside the box body 100. The wire outlet wheel 120 is arranged directly above the wire outlet 700. The connecting wire passes around the wire outlet wheel 120 and then extends out along the wire outlet 700. This method can prevent the connecting wire from contacting the edge of the wire outlet 700 and causing wear of the connecting wire.
[0034] Preferably, a wire outlet limiting member 160 is fixedly arranged directly above the wire outlet wheel 120. The wire outlet limiting member 160 has the same structure as the limiting member 600 and can further limit the position of the connecting wire to avoid wire winding inside the box body 100.
[0035] Preferably, a counter 130 is fixedly arranged inside the box body 100. The counter 130 is arranged on one side of the wire outlet wheel 120 and is used to record the number of rotations of the wire outlet wheel 120. Through the number of rotations of the wire outlet wheel 120, the staff can calculate the wire payout length.
[0036] Preferably, handles 140 are fixedly arranged on both sides of the top of the box body 100, which is convenient for the staff to carry the wire payout box.
[0037] Preferably, foot pads 150 are fixedly arranged around the bottom of the box body 100. The foot pads 150 can prevent the bottom of the box body 100 from being scratched by the ground. On the other hand, the foot pads 150 can increase the friction at the bottom of the wire payout box and make the wire payout box more stable when placed.
[0038] Preferably, the over-pouring detection device 800 includes a detection main body 801 and a disc bracket 802. The detection main body 801 and the wire winding wheel 200 are fixedly connected by a connecting wire. The disc bracket 802 is slidably arranged on the detection main body 801, and the disc bracket 802 is in contact with the horizontal plane of the concrete, ensuring that the over-pouring detection device 800 enters the concrete perpendicular to the horizontal plane and improving the measurement accuracy.
[0039] The working principle in this embodiment is more specifically as follows:
[0040] During installation, the staff winds the connecting wire around the wire winding wheel 200. One end of the connecting wire is fixed on the wire winding wheel 200, and the other end passes through the channel 602, then bypasses the wire outlet wheel 120 and extends out along the wire outlet 700. The staff fixedly connects the extending end of the connecting wire with the detection main body 801 to complete the installation.
[0041] During use, the staff places the box body 100 on the working platform and starts the driving motor 300 through the control center. The driving motor 300 drives the driving gear 901 to rotate. The driving gear 901 drives the driven gear 903 to rotate through the connecting gear 902. Since the driving gear 901 is fixedly connected with the rotating shaft 201 and the driven gear 903 is fixedly connected with the lead screw 500, the rotation of the rotating shaft 201 and the lead screw 500 is realized. The wire winding wheel 200 continuously releases the connecting wire, and the lead screw 500 drives the limiting member 600 to move horizontally along with the connecting wire, ensuring that the connecting wire passes vertically through the channel 602. The two groups of channels 602 are arranged vertically, which can effectively prevent the connecting wire from contacting the edge of the limiting wheel 601 and causing wear of the connecting wire. The connecting wire bypasses the wire outlet wheel 120 and passes vertically through the wire outlet 700 without winding in the box body 100. The over-pouring detection device 800 continuously falls under the action of gravity and then enters the concrete to be measured. After reaching the position to be measured, the staff controls the driving motor 300 to stop working. At this time, the connecting wire on the over-pouring detection device 800 is in a taut state, and the measurement work starts. If the staff releases the wire too long, resulting in excessive downward fall of the over-pouring detection device 800 and the connecting wire on it being in a non-taut state, the staff can slightly pull back the over-pouring detection device 800 by rotating the hand crank 110 to make the connecting wire return to the taut state, and then perform the measurement. After the measurement is completed, the staff controls the driving motor 300 to rotate in the reverse direction to smoothly recover the over-pouring detection device 800. In addition, the staff can also calculate the wire release length through the number of rotations of the wire outlet wheel 120 to assist the staff in judging the accuracy of the measurement data of the over-pouring detection device 800.
[0042] The wire-releasing box used for the over-filling detection device of the utility model is provided with a screw rod 500 in the horizontal direction between the wheel handles 400, and two groups of limiting members 600 are movably provided on the screw rod 500, and the limiting member 600 includes two limiting wheels 601 arranged side by side, and the wheel edges of the two limiting wheels 601 are in contact with each other, and a channel 602 for the connecting line to pass through is formed at the center position, so that when the wire-releasing box is releasing the wire, the connecting line on the winding wheel 200 can be smoothly extended to the outside of the box body 100, and the wire will not be tangled, and the user experience is good.
[0043] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present invention shall fall within the protection scope of the present invention.
Claims
1. A wire-releasing box for an overfilling detection device, comprising a box body (100), characterized in that: A rotatable wire winding wheel (200) is provided inside the box body (100). The wire winding wheel (200) is used for winding a connecting wire. A fixed driving motor (300) is provided on one side of the wire winding wheel (200). Wheel handles (400) are provided on both sides of the wire winding wheel (200). The wheel handles (400) are fixed inside the box body (100). A lead screw (500) is horizontally arranged between the two wheel handles (400). Holes are formed in the two wheel handles (400). Both ends of the lead screw (500) rotate in the holes of the wheel handles (400). The driving motor (300) is used to drive the wire winding wheel (200) and the lead screw (500). Two groups of limiting members (600) are movably arranged on the lead screw (500). One group of the limiting members (600) is fixedly arranged below the other group of the limiting members (600). The limiting member (600) includes two limiting wheels (601) arranged side by side. The rims of the two limiting wheels (601) are in contact with each other, and a channel (602) for the connecting wire to pass through is formed at the central position. The arrangement direction of the two limiting wheels (601) of the upper limiting member (600) is perpendicular to the arrangement direction of the two limiting wheels (601) of the lower limiting member (600). The channel (602) of the upper limiting member (600) is arranged directly above the channel (602) of the lower limiting member (600). An outlet (700) is formed at the bottom of the box body (100). An overfill detection device (800) is arranged outside the box body (100). The connecting wire on the wire winding wheel (200) passes through the outlet (700) and is fixedly connected to the overfill detection device (800).
2. The wire pay-off box for the over-pouring detection device according to claim 1, characterized in that: The wire winding wheel (200) includes a rotating shaft (201) and two rotating wheels (202). Both ends of the rotating shaft (201) are fixedly arranged at the central positions of the two rotating wheels (202).
3. The wire pay-off box for the over-pouring detection device according to claim 2, characterized in that: A transmission member (900) is arranged inside the wheel handle (400) on one side of the wire winding wheel (200). The transmission member (900) includes a driving gear (901), a connecting gear (902), and a driven gear (903). The central positions of the rotating shaft (201), the driving gear (901), and the output end of the driving motor (300) are fixedly connected. The driving gear (901) meshes with the connecting gear (902). The connecting gear (902) meshes with the driven gear (903). The central position of the driven gear (903) is fixedly connected to the lead screw (500).
4. The wire pay-off box for the over-pouring detection device according to claim 1, characterized in that: A hand crank (110) is rotatably arranged on one side of the box body (100). The hand crank (110) passes through the box body (100) and is fixedly connected to the central position on one side of the wire winding wheel (200).
5. The wire pay-off box for the over-pouring detection device according to claim 1, characterized in that: A rotatable wire outlet wheel (120) is provided inside the box body (100). The wire outlet wheel (120) is arranged directly above the outlet (700).
6. The wire pay-off box for the over-pouring detection device according to claim 5, characterized in that: Above the wire outlet wheel (120), a wire outlet limiting member (160) is fixedly arranged.
7. The wire-releasing box for an overfilling detection device according to claim 5, characterized in that: A counter (130) is fixedly arranged in the box body (100). The counter (130) is arranged on one side of the wire outlet wheel (120) and is used for recording the number of turns of the wire outlet wheel (120).
8. The wire pay-off box for an over-pouring detection device according to claim 1, characterized in that: On both sides of the top of the box body (100), handles (140) are fixedly arranged.
9. The wire pay-off box for the over-pouring detection device according to claim 1, characterized in that: On the four sides of the bottom of the box body (100), foot pads (150) are fixedly arranged.
10. The wire pay-off box for an over-pouring detection device according to claim 1, characterized in that: The overfilling detection device (800) includes a detection main body (801) and a disc bracket (802). The detection main body (801) and the winding wheel (200) are fixedly connected through a connecting wire. The disc bracket (802) is slidably arranged on the detection main body (801).