CN210159086U - Auxiliary positioning layer for probe and combined auxiliary fixing device - Google Patents
Auxiliary positioning layer for probe and combined auxiliary fixing device Download PDFInfo
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- CN210159086U CN210159086U CN201920332636.4U CN201920332636U CN210159086U CN 210159086 U CN210159086 U CN 210159086U CN 201920332636 U CN201920332636 U CN 201920332636U CN 210159086 U CN210159086 U CN 210159086U
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Abstract
The utility model discloses an auxiliary positioning layer and a combined auxiliary fixing device for a probe, wherein the auxiliary positioning layer comprises a regular polygonal bottom layer, a surface layer which is provided with petal-shaped gaps in the middle and is sewed on the bottom layer, and a plurality of third through holes which are adjacent to each inner angle position of the bottom layer; each third through hole corresponds to each inner angle of the regular polygon of the auxiliary positioning layer one by one, and each petal of the petal-shaped gap corresponds to each side of the regular polygon one by one; and a first sewing thread and a second sewing thread for fixing the surface layer on the bottom layer are sewn from each joint of the adjacent petals to two edges of the regular polygon closest to the joint, and the third perforation is positioned between the first sewing thread and the second sewing thread. Overall structure is ingenious, and the flexibility is high, and the ease for use is good.
Description
Technical Field
The utility model belongs to the auxiliary fixture field, concretely relates to auxiliary fixture.
Background
Along with the development of society, the work pace of people is increasingly accelerated, the sub-health problem is getting worse, the conditioning consciousness of people on the health is also gradually enhanced, and various physiotherapy equipment or devices such as a magnetic therapy instrument, a medicine guide instrument and the like aiming at each part of the body also come into play; meanwhile, people pay more and more attention to beauty treatment and body beautification, and various leading-in instruments in the beauty treatment and body beautification industry are more and more.
The physiotherapy scheme or the cosmetology scheme required by different parts of a human body and different individual subjects are also very different, some parts can be treated within minutes, some parts can be treated with targeted drug permeation physiotherapy or introduced skin care for more than ten minutes or even more than half an hour as a small treatment course, and the method and the system provide higher requirements for the fixing mode and the stability of probes acting on the human body, such as instruments for physiotherapy and drug delivery, introduction instruments in the cosmetology industry and the like.
In the prior art, the probe of a magnetic therapy instrument and a beauty body leading-in instrument acting on body parts mostly adopts a hand-held type, which wastes time, labor and labor.
In the prior art, probes of drug delivery instruments such as ultrasonic intermediate frequency drug delivery instruments, low frequency ultrasonic drug delivery instruments, ultrasonic conductivity drug permeation instruments and the like are mostly pasted, that is, the reverse side of a coupling patch/electrode plate is pasted with a metal probe, and the front side of the coupling patch is pasted on a corresponding part of a human body after medicines or absorbent cotton are put in the front side of the coupling patch, that is, the coupling patch is used as an intermediate medium between the probe and the surface of the human body for transmitting sound waves to realize the drug delivery effect, and meanwhile, the pasting and fixing effect between the metal probe and the surface of the human body is realized. However, as is well known, the metal probe is relatively heavy, and when the metal probe is attached to the coupling patch in a pasting manner and acts on a human body (especially a sitting human body), the metal probe is easy to loosen, slide or fall off for a long period of time, and is often manually held or needs to be manually checked and adjusted from time to time, so that once the metal probe loosens, slides or falls off, the action effect is affected, and even an alarm is repeatedly caused, which wastes time and labor.
Therefore, there is a need for more and better products and/or techniques to solve the above problems in the prior art, so as to improve the ease of use, convenience and stability of the probe in the process of introducing physiotherapy or drug guidance or beauty treatment.
Disclosure of Invention
The purpose of the invention is as follows: in order to overcome the defects existing in the prior art, the utility model discloses one of them purpose provides an auxiliary positioning layer for probe, and another purpose of the utility model is to provide a combination formula auxiliary fixture for probe to solve the problem that exists among the prior art.
The technical scheme is as follows: in order to solve the technical problem, the utility model provides an auxiliary positioning layer for a probe, which comprises a regular polygonal bottom layer, a surface layer which is sewn on the bottom layer and provided with petal-shaped gaps in the middle, and a plurality of third through holes which are adjacent to each inner angle position of the bottom layer;
each third through hole corresponds to each inner angle of the regular polygon of the auxiliary positioning layer one by one, and each petal of the petal-shaped gap corresponds to each side of the regular polygon one by one; and a first sewing thread and a second sewing thread for fixing the surface layer on the bottom layer are sewn from each joint of the adjacent petals to two edges of the regular polygon closest to the joint, and the third perforation is positioned between the first sewing thread and the second sewing thread.
Preferably, the arc curvature of the outer edge of each petal of the petal-shaped gap is smaller than that of the outer edge of the probe.
Further preferably, the minimum inner diameter of the petal-shaped gap is 1.5-3 times of the diameter of the probe.
Preferably, the thickness of the outer edge of each petal of the petal-shaped gap is equal to the vertical distance between the outer side surface of the probe and the outer side surface of the root cable thereof.
Further preferably, the outer edge of each petal of the petal-shaped gap is provided with a curled edge or a covered edge. Preferably, the thickness of the outer edge of each petal is 3-8 mm.
It is further preferred that the arc curvature of the outer edge of each petal of the petal-shaped gap is not completely uniform.
The utility model provides another auxiliary positioning layer for a probe, which comprises a round bottom layer, a surface layer which is provided with petal-shaped gaps in the middle and is sewed on the bottom layer, and a plurality of third through holes which are circumferentially and uniformly distributed at the edge position of the bottom layer;
the connecting parts of the adjacent petals of the petal-shaped notches correspond to the third through holes one by one; and a first sewing thread and a second sewing thread for fixing the surface layer on the bottom layer are sewn from the joints of the adjacent petals to the two sides of a third perforation closest to the joints, and the third perforation is positioned between the first sewing thread and the second sewing thread.
The utility model also provides a combined auxiliary fixing device for the probe, which comprises any one of the auxiliary positioning layer for the probe and an auxiliary fixing belt body made of elastic fabric;
the auxiliary fixing belt body comprises a rear piece, a left front piece and a right front piece; the rear piece comprises a middle part, a left rear piece and a right rear piece, wherein the left rear piece extends to the left side along the middle part, and the right rear piece extends to the right side along the middle part; the upper part of the left back piece is connected with the upper part of the left front piece, and a left lower edge part is arranged below the left back piece; the upper part of the right back piece is connected with the upper part of the right front piece, and a right lower edge part is arranged below the right back piece; the left lower edge part and the right lower edge part are both provided with magic tapes;
the left side and the right side of the neckline of the rear piece on the auxiliary fixing belt body are respectively provided with more than one first through hole, and the position of the rear piece on the auxiliary fixing belt body, which is adjacent to the lower edge, is provided with more than three second through holes;
the auxiliary positioning layer is fixed on the inner side surface of the rear piece of the auxiliary fixing belt body in a suspension mode through one or more than two penetrating ropes which sequentially penetrate through the third through hole and the first through hole and one or more than two penetrating ropes which sequentially penetrate through the third through hole and the second through hole.
Preferably, the rope body of each rope threading through the outer side of the first perforation or the second perforation is provided with a double-hole anti-slip buckle.
Preferably, the double-hole anti-slip buckle can be clamped outside the corresponding first through hole or second through hole.
Has the advantages that: based on the utility model provides a structure construction that is used for assistance-localization real-time layer of probe, during the use with the probe from the below of the outside edge of surface course (from the below of the surface course outside edge of surface course and the unsewn department of bottom, like be located wherein the position/part between first sewing line and the second sewing line between two third perforation) stretch into between surface course and the bottom, again from the inboard edge of surface course (like the outward flange of petal shape breach) probe out, make the step between its lateral surface and root cable place on the terminal surface of petal outward flange, play and push down the cable and hold up the probe and/or the multiple function of circumference restriction probe, make the probe outside gravity, the viscidity that comes from the coupling paster (when there is not coupling paster, the probe is here under the direct action human body condition: make the probe outside gravity), still receive the ascending support that comes from the pressure of surface course to the cable and the face edge of surface course (like the terminal surface of petal outward flange) to give The force and/or the circumferential limiting effect are more reliable and stable.
Furthermore, the probe can be better laminated to the inboard edge of surface course like the outward flange of petal breach, and when the circular arc camber of each petal outward flange of petal breach is not completely unanimous, can the compatible probe that is used for not unidimensional.
When the probe is attached to the outer side of the coupling patch and acts on a human body, the combined auxiliary fixing device for the probe and the auxiliary positioning layer for the probe therein are used, the probe is under the action of gravity and the adhesive force from the coupling patch, and is also under the action of the pressure from the elastic fixing band, the upward supporting force and/or the circumferential limiting action given by the pressure from the surface layer to the cable and the inner side edge (such as the end surface of the outer edge of the petal) of the surface layer, so that the effect of comprehensively stabilizing the probe can be achieved, and the possibility of frequent alarm of an instrument connected with the probe is effectively reduced; there is not coupling paster in some application occasions, the tradition adopts artifical handheld occasion that makes the probe directly act on certain fixed position of human body in a period, also can use the utility model provides a pressure from elastic fixation area replaces artifical handheld mode and directly pushes down the probe in order to act on the human body, combines the adhesion of coupling paster (if have), the surface course to the pressure of cable, and the inboard edge of surface course (such as the terminal surface of petal outward flange) give upward holding power and/or circumference restriction effect, plays the effect of comprehensive firm probe; overall structure is ingenious, and the flexibility is high, and the ease for use is good.
And simultaneously, the utility model provides an auxiliary positioning layer for probe passes third perforation and first fenestrate wire rope in proper order through one or more than two, and one or more than two pass third perforation and the fenestrate wire rope of second in proper order, the suspension type is fixed in on the medial surface of the back part of auxiliary fixing band body, can adjust the height and the angle of the back part of the relative auxiliary fixing band body in auxiliary positioning layer in a flexible way, thereby effective fixed action area has been enlarged by a wide margin, flexibility ratio and ease for use are higher, its application scenario has been promoted by a wide margin, do benefit to extensive popularization.
Furthermore, the stringing can pass through the required first perforation, the required second perforation and the required third perforation according to the fixed position requirement, so that the auxiliary positioning layer can generate the required horizontal displacement, the vertical displacement and the angle change relative to the rear piece of the auxiliary fixing belt, the effective action range of the auxiliary positioning layer in the horizontal and vertical directions is greatly enlarged, the angle can be flexibly adjusted, and the structure is reasonable and ingenious.
Drawings
FIG. 1 is a schematic view of the structure of a probe;
fig. 2 is a schematic structural diagram of an auxiliary positioning layer and a combined auxiliary fixing device for a probe according to an embodiment.
Detailed Description
The present invention will be further described with reference to the accompanying drawings and examples.
The schematic structural diagram of one of the drug-delivery probes 1 used in this embodiment is shown in fig. 1 and fig. 2, and the utility model provides an auxiliary positioning layer 3 for a probe, which includes a regular polygonal (regular hexagon in this embodiment, but also regular triangle, square, regular octagon, etc.) bottom layer 31, a surface layer 32 sewed on the bottom layer with petal-shaped gaps left in the middle, and a plurality of third through holes 38 adjacent to each inner angle position of the bottom layer. In this embodiment, the outer edge of the facing layer may completely coincide with the outer edge of the base layer (although it may not or not completely coincide in some cases).
The third through holes are uniformly distributed on the bottom layer at positions close to the outer edge of the bottom layer, the third through holes 38 correspond to inner angles of the regular polygon of the auxiliary positioning layer 3 one by one, and petals of the petal-shaped notches correspond to edges of the regular polygon of the auxiliary positioning layer one by one; a first sewing thread 35 and a second sewing thread 36 for fixing the surface layer 32 on the bottom layer 31 are sewn from each joint 33 of the adjacent petals to both sides of the regular polygon closest thereto, and the third perforation 38 is positioned between the first sewing thread 35 and the second sewing thread 36. In some embodiments, it may also be said that: the surface layer 32 is fixedly sewn on the bottom layer 31 by sewing lines from each joint of adjacent petals of the petal-shaped notch to two sides of the regular polygon closest thereto. Based on the structural configuration of the auxiliary positioning layer for the probe provided by the embodiment, in use, the probe extends from the lower part of the outer edge of the surface layer (from the lower part of the outer edge of the surface layer at the position where the surface layer and the bottom layer are not sewed, the embodiment is from the position/part between the first sewing line and the second sewing line between the two third through holes) to the position between the surface layer and the bottom layer, and then extends from the inner edge of the surface layer (the embodiment refers to the outer edge of the petal-shaped gap), so that the step between the outer side surface and the root cable is arranged on the end surface of the outer edge of the petal, and the multiple functions of pressing the cable, lifting the probe and/or circumferentially limiting the probe are realized, so that the probe is subjected to the pressure from the surface layer to the cable and the inner edge of the surface layer (the embodiment refers to the inner edge of the petal-shaped gap) under the gravity and the adhesive force from the coupling patch (when the probe directly acts on the human body The end face of the edge) and/or the circumferential limiting effect (when the human body is acted on in a sitting posture, the probe is not parallel to the ground, and the upward supporting force and the partial circumferential limiting effect are mainly exerted; when the acted human body lies or lies on the stomach and the probe is approximately parallel to the ground, the limitation effect mainly in the circumferential direction is particularly the limitation effect of the inner side edge of the surface layer, and the probe is more reliable and stable.
Wherein the arc curvature of the outer edge of each petal of the petal-shaped gap is smaller than the arc curvature of the outer edge of the outer side surface 11 (also called as an outer acting surface) of the probe 1.
In some embodiments, the minimum inner diameter of the petal-shaped indentations of the face layer 32 is 1.5 to 3 times the diameter of the probe 1. With this structure, one or more probes can be fixed on the same auxiliary positioning layer at the same time when necessary, or a plurality of auxiliary positioning layers can be used to fix different probes respectively according to the need.
In some embodiments, the thickness of each petal outer edge of the petal-shaped indentation of face layer 32 is equal to the perpendicular distance of the outer side 11 (which may also be referred to as the outer active face) of probe 1 from the outer side of its root cable 12.
In some embodiments, the outer edges of the petals of the petal-shaped indentations of cover 32 are provided with a rolled edge or hem. In some embodiments, the outer edge of each petal of the petal-shaped notches of the surface layer 32 has a thickness of 3-8 mm.
In some embodiments, the arc curvature of the outer edges of the petals of the petal-shaped indentations of face layer 32 are not exactly uniform, i.e., are not of uniform size, or are partially uniform, partially non-uniform, or are not uniform, to accommodate probes of various sizes.
In some embodiments, the auxiliary positioning layer comprises a circular bottom layer, a surface layer sewn on the bottom layer and provided with petal-shaped gaps in the middle, and a plurality of third through holes uniformly distributed in the edge position of the bottom layer in the circumferential direction; each junction and each third perforation one-to-one of adjacent petal of petal shape breach can also say: the connecting parts of the adjacent petals of the petal-shaped notches and the corresponding third through holes are respectively positioned on the same radial straight line of the circular bottom layer; and a first sewing thread and a second sewing thread for fixing the surface layer on the bottom layer are sewn from the joints of the adjacent petals to the two sides of a third perforation closest to the joints, and the third perforation is positioned between the first sewing thread and the second sewing thread.
Meanwhile, as shown in fig. 2, the combined auxiliary fixing device for a probe provided by the present embodiment includes an auxiliary fixing band body 2 made of elastic fabric and any one of the auxiliary positioning layers 3 for a probe provided by the above embodiments.
Wherein the auxiliary fixing belt body 2 comprises a rear piece 21, a left front piece 22 and a right front piece 23; the rear panel 21 includes a middle portion, and a left rear panel extending leftward along the middle portion and a right rear panel extending rightward along the middle portion; the upper part of the left back piece is connected with the upper part of the left front piece 22, and a left lower edge part 24 is arranged below the left back piece; the upper part of the right back piece is connected with the upper part of the right front piece 23, and a right lower edge part 25 is arranged below the right back piece; the left lower edge portion 24 is provided with a left magic tape 26, and the right lower edge portion 25 is provided with a right magic tape 27. The auxiliary fixing belt body made of elastic fabric is an auxiliary fixing belt body which can be bonded with the magic tape, and after the auxiliary fixing belt body is worn by a user, the wearing and the fixing can be finished by sticking the left and right magic tapes and the appropriate positions (such as the lower parts of the left and right front pieces) of the auxiliary fixing belt body, and the tightness can be easily adjusted to be released and retracted. When the probe is attached to the outer side of the coupling patch and acts on a human body, the combined auxiliary fixing device for the probe and the auxiliary positioning layer for the probe in the combined auxiliary fixing device for the probe provided by the embodiment are used, the probe is under the pressure from the elastic fixing band in addition to the gravity and the adhesive force from the coupling patch, and the upward supporting force and/or the circumferential limiting effect (when the combined auxiliary fixing device is used, the human body is acted on the combined auxiliary fixing device for the probe, the upward supporting force and/or the partial circumferential limiting effect are given by the pressure from the surface layer to the cable and the inner side edge (the end face of the outer edge of the petal in the embodiment) (when the combined auxiliary fixing device is acted on the cable, the human body is mostly in a sitting posture, the probe is not parallel to the ground, the upward supporting force and the partial circumferential limiting effect are mainly given, when the human body is acted on the combined auxiliary fixing device for the, the possibility of frequent alarm of an instrument connected with the probe is effectively reduced; in some application occasions, a coupling patch is not provided, namely, in the traditional occasion that the probe directly acts on a certain fixed position of a human body by manually holding, the pressure from the elastic fixing band provided by the embodiment can be used for directly pressing the probe to act on the human body instead of manually holding, and the effect of comprehensively stabilizing the probe is achieved by combining the adhesive force (if any) of the coupling patch, the pressure of the surface layer on a cable, and the upward supporting force and/or the circumferential limiting effect given by the inner side edge (such as the end face of the outer edge of the petal) of the surface layer; overall structure is ingenious, and the flexibility is high, and the ease for use is good.
The left side and the right side of the neckline of the back piece 21 on the auxiliary fixing belt body 2 are both provided with more than one first perforation 28, and the lower edge of the back piece 21 on the auxiliary fixing belt body 2 or the position adjacent to the lower edge of the back piece is provided with more than three second perforation 29.
In some embodiments, the auxiliary positioning layer 3 for a probe is suspended and fixed on the inner side surface of the back sheet 21 of the auxiliary fixing band body 2 through a threading 5 passing through the third perforation 38 and the first perforation 28 in sequence and a threading 5 passing through the third perforation 38 and the second perforation 29 in sequence, and the fixing position of the probe is defined/determined in a manner that two points define a straight line. In this embodiment, the auxiliary positioning layer 3 for a probe is suspended and fixed on the inner side surface of the back sheet 21 of the auxiliary fixing band body 2 by more than two strings 5 passing through the third through hole 38 and the first through hole 28 in sequence and more than one strings 5 passing through the third through hole 38 and the second through hole 29 in sequence. In some embodiments, the auxiliary positioning layer 3 for a probe is suspended on the inner side of the back sheet 21 of the auxiliary fixing band body 2 by more than one threading 5 passing through the third perforation 38 and the first perforation 28 in sequence, and more than two threading 5 passing through the third perforation 38 and the second perforation 29 in sequence. With the structure design, the invention defines a stable plane by at least three points or even multiple points so as to define/determine the fixed position of the probe, and is more stable and reliable. Under this structure, the embodiment can adjust the height and the angle of the relative auxiliary fixing band body's of auxiliary positioning layer back part in a flexible way to effectively enlarged effective fixed action area by a wide margin, flexibility ratio and ease for use are higher, have promoted its application scenario by a wide margin, do benefit to extensive popularization.
And the threading can be according to fixed position needs, the first perforation of one or more than two that need pass, the second perforation of one or more than two that need pass, and the third perforation of one or more than two that need pass are selected in a flexible way to the line of readying for auxiliary positioning layer can produce required horizontal displacement, vertical displacement and angle variation relative auxiliary fixed band back part, thereby be located required position and angle and play the effect of probe in the fixed work, enlarged its effective range in the horizontal vertical direction by a wide margin on the one hand, on the other hand the angle can be adjusted in a flexible way, rational in infrastructure ingenious.
In some embodiments, the rope body in which each threading 5 passes through the outside of the first perforation 28 or the second perforation 29 is provided with a double-hole anti-slip buckle 6. Under the structure, according to the fixed position and the fixed angle required by the probe and the auxiliary positioning layer relative to the auxiliary fixing belt body, each threading rope passes through the required third and first through holes or the rear side (or the outer side) of the rear piece of the auxiliary fixing belt body after the third and second through holes according to selection, then the threading rope is tensioned or loosened to adjust the length position of the threading rope, and then the threading rope is inwards tightened and locked through the double-hole anti-slip buckle, so that the threading rope position is fixed (namely the position of the locked threading rope is fixed), the fixation of the relative positions of the auxiliary positioning layer and the probe is indirectly realized, the structure is ingenious and reasonable, and the usability and the flexibility are high.
The double-hole anti-slip fastener 6 can be clamped outside the corresponding first through hole 28 or second through hole 29.
The above embodiment is right the utility model discloses do not constitute the restriction, relevant staff is not deviating the utility model discloses in the scope of technical idea, the various changes and the modification of going on all fall in the utility model discloses a protection within range.
Claims (10)
1. An auxiliary positioning layer for a probe, characterized in that: the auxiliary positioning layer comprises a regular polygonal bottom layer, a surface layer which is sewn on the bottom layer and provided with petal-shaped gaps in the middle, and a plurality of third through holes which are adjacent to each inner corner position of the bottom layer;
each third through hole corresponds to each inner angle of the regular polygon of the auxiliary positioning layer one by one, and each petal of the petal-shaped gap corresponds to each side of the regular polygon one by one; and a first sewing thread and a second sewing thread for fixing the surface layer on the bottom layer are sewn from each joint of the adjacent petals to two edges of the regular polygon closest to the joint, and the third perforation is positioned between the first sewing thread and the second sewing thread.
2. An auxiliary positioning layer for a probe according to claim 1, wherein: the arc curvature of the outer edge of each petal of the petal-shaped gap is smaller than that of the outer edge of the probe.
3. An auxiliary positioning layer for a probe according to claim 1, wherein: wherein the minimum inner diameter size of the petal-shaped gap is 1.5-3 times of the diameter of the probe.
4. An auxiliary positioning layer for a probe according to claim 1, wherein: the thickness of the outer edge of each petal of the petal-shaped gap is equal to the vertical distance between the outer side surface of the probe and the outer side surface of the root cable of the probe.
5. An auxiliary positioning layer for a probe according to claim 1, wherein: wherein, the outer edge of each petal of the petal-shaped gap is provided with a turned edge or a covered edge; the thickness of each petal outward flange is 3 ~ 8 mm.
6. An auxiliary positioning layer for a probe according to claim 1 or 5, wherein: wherein the arc curvatures of the outer edges of the petals of the petal-shaped notches are not completely consistent.
7. An auxiliary positioning layer for a probe, characterized in that: the auxiliary positioning layer comprises a circular bottom layer, a surface layer which is sewn on the bottom layer and provided with petal-shaped gaps in the middle, and a plurality of third through holes which are uniformly distributed at the edge position of the bottom layer in the circumferential direction;
the connecting parts of the adjacent petals of the petal-shaped notches correspond to the third through holes one by one; and a first sewing thread and a second sewing thread for fixing the surface layer on the bottom layer are sewn from the joints of the adjacent petals to the two sides of a third perforation closest to the joints, and the third perforation is positioned between the first sewing thread and the second sewing thread.
8. A modular auxiliary fixture for a probe, comprising: the auxiliary fixing belt comprises an auxiliary positioning layer for the probe according to any one of claims 1 to 7, and an auxiliary fixing belt body made of elastic fabric;
the auxiliary fixing belt body comprises a rear piece, a left front piece and a right front piece; the rear piece comprises a middle part, a left rear piece and a right rear piece, wherein the left rear piece extends to the left side along the middle part, and the right rear piece extends to the right side along the middle part; the upper part of the left back piece is connected with the upper part of the left front piece, and a left lower edge part is arranged below the left back piece; the upper part of the right back piece is connected with the upper part of the right front piece, and a right lower edge part is arranged below the right back piece; the left lower edge part and the right lower edge part are both provided with magic tapes;
the left side and the right side of the neckline of the rear piece on the auxiliary fixing belt body are respectively provided with more than one first through hole, and the position of the rear piece on the auxiliary fixing belt body, which is adjacent to the lower edge, is provided with more than three second through holes;
the auxiliary positioning layer is fixed on the inner side surface of the rear piece of the auxiliary fixing belt body in a suspension mode through one or more than two penetrating ropes which sequentially penetrate through the third through hole and the first through hole and one or more than two penetrating ropes which sequentially penetrate through the third through hole and the second through hole.
9. The modular auxiliary fixture for a probe of claim 8, wherein: and the rope body of each rope threading through the outer side of the first perforation or the second perforation is provided with a double-hole anti-slip buckle.
10. The modular auxiliary fixture for a probe of claim 9, wherein: the double-hole anti-slip buckle can be clamped outside the corresponding first through hole or second through hole.
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Cited By (1)
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CN109999331A (en) * | 2019-03-15 | 2019-07-12 | 许米乐 | Auxiliary positioning layer and combined type auxiliary fixing device for probe |
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CN109999331A (en) * | 2019-03-15 | 2019-07-12 | 许米乐 | Auxiliary positioning layer and combined type auxiliary fixing device for probe |
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