Ribbon guide frame with ribbon length detection function
By installing a cable tie length detection device on the guide frame, the problem of the lack of cable tie length detection in the guide frame is solved, enabling accurate detection and control of cable tie length, and improving binding efficiency and accuracy.
Patent Information
- Application Number
- CN202520142915.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-21
- Publication Date
- 2026-01-27
- Estimated Expiration
- 2035-01-21
Smart Images

Figure CN223835877U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of cable tie guide frames, and in particular to a guide frame with cable tie length detection function. Background Technology
[0002] Cable ties are often used in the process of bundling items. In order to bundle them better and faster, the cable ties are guided to the guide frame before bundling.
[0003] Most current cable guide frames do not have the function of detecting the length of the cable tie advance, which can lead to incomplete binding or waste of cable ties during the binding process. Utility Model Content
[0004] The purpose of this invention is to provide a guide frame with a cable tie length detection function to solve the problem that current guide frames do not have a cable tie advance length detection function.
[0005] To address the aforementioned issues, this utility model provides a cable tie length detection frame, comprising a cable tie guide frame, a cable tie length detection device mounted on the cable tie guide frame, the cable tie length detection device including a length detection drive wheel, the length detection drive wheel being fixedly connected to the motor shaft of the drive wheel motor, and the drive wheel motor being electrically connected to a host computer.
[0006] The guide belt frame is also equipped with a length detection passive wheel, which has a passive wheel axle. One end of the passive wheel axle is rotatably connected to the guide belt frame, and the other end of the passive wheel axle is fixedly connected to a length detection gear. A first housing is provided between the length detection passive wheel and the length detection gear, and the passive wheel axle is rotatably connected to the first housing.
[0007] A length detection component is fixedly connected to the first outer casing. The length detection component and the length detection gear are used to detect the length of the cable tie.
[0008] The first outer shell is detachably connected to the cable tie guide frame.
[0009] The cable tie length detection component is electrically connected to a host computer.
[0010] Furthermore, the length detection component is equipped with a photoelectric detection groove, a part of the length detection gear is disposed in the photoelectric detection groove, and the length detection component is electrically connected to the host computer.
[0011] Furthermore, the cable tie guide frame is also provided with a cable tie guide groove, which is used for the cable tie to pass through. The cable tie is held between the length detection drive wheel and the length detection passive wheel at the cable tie guide groove.
[0012] Furthermore, the cable tie guide frame is fixedly connected to a guide frame threaded part, which has an internal thread. The guide frame threaded part is threadedly connected to a cable tie tension adjustment knob, and the guide frame threaded part is located between the first housing and the cable tie guide frame.
[0013] Furthermore, the cable tie tension adjustment knob is equipped with an abutting spring inside. One end of the abutting spring abuts against the cable tie tension adjustment knob, and the other end of the abutting spring abuts against the driven wheel pressing part. The driven wheel pressing part is provided with a pressing part bottom wall. The pressing part bottom wall is fixedly connected to two pressing part side walls. The pressing part bottom wall has an arc-shaped notch. There is a pressing part inner cavity between the two pressing part bottom walls. The driven wheel pressing part is located between the first outer shell and the cable tie guide frame.
[0014] Furthermore, a clamping bearing is provided on each side of the length detection passive wheel. The inner wall of the clamping bearing is fixedly connected to the axle of the passive wheel. One of the clamping bearings is fixedly connected to the cable tie guide frame, and the side wall of one clamping part abuts against the clamping bearing.
[0015] Another of the clamping bearings is fixedly connected to the first housing, and the side wall of the other clamping part abuts against the clamping bearing.
[0016] Furthermore, a portion of the length detection passive wheel is housed within the inner cavity of the clamping part.
[0017] Furthermore, the threaded part of the cable tie tension adjustment knob is also threadedly connected to a rotating part, and a rotating shaft is fixedly connected to the rotating part. The rotating shaft is fixedly connected to the motor shaft of the rotary motor, and the rotary motor is electrically connected to the host computer.
[0018] The beneficial effects of the cable tie length detection function provided by this utility model are as follows: Compared with the prior art, the cable tie length detection device on the cable tie guide frame includes a length detection drive wheel and a length detection driven wheel that together clamp the cable tie. The rotation of the length detection drive wheel drives the cable tie forward, and the cable tie drives the length detection driven wheel to rotate. The length detection driven wheel drives the length detection gear to rotate, and the rotation of the length detection gear and the length detection component work together to detect the length of the cable tie that has moved forward. The detected data is then transmitted to the host computer for subsequent use, thereby achieving the purpose of detecting the length of the cable tie that has moved forward on the guide frame. Attached Figure Description
[0019] Figure 1 This is a first front view schematic diagram of a guide frame with cable tie length detection function;
[0020] Figure 2 for Figure 1 Enlarged view of point A;
[0021] Figure 3This is a schematic diagram of a cable tie length detection device;
[0022] Figure 4 A partial schematic diagram of the guide belt frame without the length detection drive wheel and length detection passive wheel installed;
[0023] Figure 5 This is a partial schematic view of a guide frame with cable tie length detection function;
[0024] Figure 6 A partial schematic view of the guide frame with a rotating part and a rotary motor;
[0025] Figure 7 This is a side view of the driven wheel clamping part. Detailed Implementation
[0026] To better understand the purpose, structure, and function of this utility model, the following description is in conjunction with the appendix. Figures 1 to 7 The present invention provides a more detailed description of a guide frame with a cable tie length detection function.
[0027] like Figures 1 to 7 As shown, an embodiment of the present invention provides a cable tie length detection device 13, which includes a cable tie guide frame 100. The cable tie guide frame 100 is equipped with a cable tie length detection device 13, which includes a length detection drive wheel 230. The length detection drive wheel 230 is fixedly connected to the motor shaft of a drive wheel motor, and the drive wheel motor is electrically connected to a host computer. The guide frame 100 also includes a length detection passive wheel 240, on which a passive wheel shaft 241 is provided. One end of the passive wheel shaft 241 is rotatably connected to the guide frame 100, and the other end is fixedly connected to a length detection gear 210. A first housing 120 is provided between the length detection passive wheel 240 and the length detection gear 210. The passive wheel shaft 241 is rotatably connected to the first housing 120, and the first housing 120 is detachably connected to the cable tie guide frame 100. A length detection component 220 is fixedly connected to the first housing 120. The length detection component 220 and the length detection gear 210 are used to detect the length of the cable tie. The cable tie length detection component 220 is electrically connected to a host computer.
[0028] In this invention, the length detection component 220 is provided with a photoelectric detection groove 221, and a portion of the length detection gear 210 is disposed in the photoelectric detection groove 221. The length detection component 220 is electrically connected to the host computer. The cable tie guide frame 100 is also provided with a cable tie guide groove 110, which is used for the cable tie to pass through. The cable tie is held between the length detection drive wheel 230 and the length detection driven wheel 240 at the cable tie guide groove 110.
[0029] In use, the cable tie is inserted into the cable tie guide groove 110. At this time, the cable tie is held by the length detection drive wheel 230 and the length detection passive wheel 240. When the host computer controls the cable tie to rotate, the length detection drive wheel 230 rotates, causing the cable tie to move forward. Because the length detection passive wheel 240 is tightly connected to the cable tie, the forward movement of the cable tie causes the length detection passive wheel 240 to rotate. Since the length detection passive wheel 240 is fixedly connected to the passive wheel shaft 241, and the passive wheel shaft 241 is fixedly connected to the length detection gear 210, the rotation of the passive wheel shaft 241 also causes the length detection gear 210 to rotate synchronously. When the length detection gear 210 rotates, a portion of it is located in the photoelectric detection groove 221.
[0030] When one tooth of the length detection gear 210 enters the range of the infrared beam emitted by the light-emitting diode, the receiver emits a signal indicating that the reflected light has been detected. The length of the cable tie can be calculated by counting the number of reflected light signals emitted by the receiver and combining this count with the parameters of the length detection gear 210.
[0031] In this utility model, the cable tie guide frame 100 is also fixedly connected to a guide frame threaded part 140, which has an internal thread. The guide frame threaded part 140 is threadedly connected to a cable tie tension adjustment knob 300, and the guide frame threaded part 140 is located between the first housing 120 and the cable tie guide frame 100.
[0032] The cable tie tension adjustment knob 300 has an abutment spring 150 inside. One end of the abutment spring 150 abuts against the cable tie tension adjustment knob 300, and the other end of the abutment spring abuts against the driven wheel pressing part 130. The driven wheel pressing part 130 has a pressing part bottom wall 131. The pressing part bottom wall 131 is fixedly connected to two pressing part side walls 132. The pressing part bottom wall 131 has an arc-shaped notch. There is a pressing part inner cavity 133 between the two pressing part bottom walls 131. The driven wheel pressing part 130 is located between the first outer shell 120 and the cable tie guide frame 100.
[0033] A clamping bearing 242 is provided on each side of the length detection passive wheel 240. The inner wall of the clamping bearing 242 is fixedly connected to the passive wheel shaft 241. One of the clamping bearings 242 is fixedly connected to the cable tie guide frame 100, and a clamping part side wall 132 abuts against the clamping bearing 242. The other clamping bearing 242 is fixedly connected to the first housing 120, and the other clamping part side wall 132 abuts against the clamping bearing 242. A portion of the length detection passive wheel 240 is accommodated in the clamping part cavity 133.
[0034] By rotating the cable tie tension adjustment knob 300, the pressure of the abutment spring 150 pressing against the driven wheel clamping part 130 can be increased or decreased. When the pressure on the driven wheel clamping part 130 increases, the pressure of the driven wheel clamping part 130 on the clamping bearing 242 also increases, resulting in increased pressure of the length detection driven wheel 240 on the cable tie. Due to the combined action of the length detection driving wheel 230, the clamping force of the length detection driven wheel 240 and the length detection driving wheel 230 on the cable tie is greater, and the cable tie binds the items more tightly when binding. When the cable tie tension adjustment knob 300 is rotated to decrease the pressure of the abutment spring 150 pressing against the driven wheel clamping part 130, the clamping force of the length detection driven wheel 240 and the length detection driving wheel 230 on the cable tie is less, and the cable tie binds the items more loosely when binding. This achieves the adjustment of the tightness of the bound items.
[0035] In some embodiments, the threaded portion of the cable tie tension adjustment knob 300 is also threadedly connected to a rotating part 400. A rotating shaft 410 is fixedly connected to the rotating part 400, and the rotating shaft 410 is fixedly connected to the motor shaft of a rotary motor 500. The rotary motor 500 is electrically connected to a host computer. This design allows the tension of the bundled items to be electrically adjusted by rotating the cable tie tension adjustment knob 300 via the host computer. This increases the accuracy of adjustment and reduces manual operation, thus improving adjustment efficiency.
[0036] Finally, it should be noted that the above description is merely a preferred embodiment of this utility model and is not intended to limit the scope of protection of this utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the scope of protection of this utility model.
Claims
1. A guide frame with cable tie length detection function, characterized in that, It includes a cable tie guide frame (100), on which a cable tie length detection device is provided. The cable tie length detection device includes a length detection drive wheel (230), which is fixedly connected to the motor shaft of the drive wheel motor. The drive wheel motor is electrically connected to a host computer. The guide frame (100) is also provided with a length detection passive wheel (240), and a passive wheel axle (241) is provided on the length detection passive wheel (240). One end of the passive wheel axle (241) is rotatably connected to the guide frame (100), and the other end of the passive wheel axle (241) is fixedly connected to a length detection gear (210). A first housing (120) is provided between the length detection passive wheel (240) and the length detection gear (210), and the passive wheel axle (241) is rotatably connected to the first housing (120). A length detection component (220) is fixedly connected to the first housing (120), and the length detection component (220) and the length detection gear (210) are used to detect the length of the cable tie; The first outer shell (120) is detachably connected to the cable tie guide frame (100); The cable tie length detection component (220) is electrically connected to a host computer.
2. A guide frame with cable tie length detection function according to claim 1, characterized in that, The length detection component (220) is provided with a photoelectric detection groove (221), a part of the length detection gear (210) is disposed in the photoelectric detection groove (221), and the length detection component (220) is electrically connected to the host computer.
3. A guide frame with cable tie length detection function according to claim 2, characterized in that, The cable tie guide frame (100) is also provided with a cable tie guide groove (110), which is used for the cable tie to pass through. The cable tie is held between the length detection drive wheel (230) and the length detection passive wheel (240) at the cable tie guide groove (110).
4. A guide frame with cable tie length detection function according to claim 3, characterized in that, The cable tie guide frame (100) is fixedly connected to a guide frame threaded part (140), the guide frame threaded part (140) is provided with an internal thread, the guide frame threaded part (140) is threadedly connected to a cable tie tension adjustment knob (300), and the guide frame threaded part (140) is located between the first outer shell (120) and the cable tie guide frame (100).
5. A guide frame with cable tie length detection function according to claim 4, characterized in that, The cable tie tension adjustment knob (300) is provided with an abutment spring (150). One end of the abutment spring (150) abuts against the cable tie tension adjustment knob (300), and the other end of the abutment spring (150) abuts against a driven wheel pressing part (130). The driven wheel pressing part (130) is provided with a pressing part bottom wall (131). The pressing part bottom wall (131) is fixedly connected to two pressing part side walls (132). The pressing part bottom wall (131) has an arc-shaped notch. There is a pressing part inner cavity (133) between the two pressing part bottom walls (131). The driven wheel pressing part (130) is located between the first outer shell (120) and the cable tie guide frame (100).
6. A guide frame with cable tie length detection function according to claim 5, characterized in that, A clamping bearing (242) is provided on each side of the length detection passive wheel (240). The inner wall of the clamping bearing (242) is fixedly connected to the passive wheel shaft (241). One of the clamping bearings (242) is fixedly connected to the cable tie guide frame (100), and a clamping part side wall (132) abuts against the clamping bearing (242). Another of the clamping bearings (242) is fixedly connected to the first housing (120), and the other clamping sidewall (132) abuts against the clamping bearing (242).
7. A guide frame with cable tie length detection function according to claim 6, characterized in that, A portion of the length detection passive wheel (240) is housed within the inner cavity (133) of the clamping part.
8. A guide frame with cable tie length detection function according to claim 6, characterized in that, The threaded part of the cable tie tension adjustment knob (300) is also threadedly connected to a rotating part (400). A rotating shaft (410) is fixedly connected to the rotating part (400). The rotating shaft (410) is fixedly connected to the motor shaft of the rotary motor (500). The rotary motor (500) is electrically connected to the host computer.