Multifunctional ultrasonic probe device
By designing a protective box and housing structure, the problems of inconvenient storage of ultrasonic probes and tangled wires were solved, achieving convenient protection of the probes and organization of the wires, thus improving ease of use.
Patent Information
- Application Number
- CN202423170533.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-23
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2034-12-23
AI Technical Summary
Existing ultrasonic probes are inconvenient to retrieve from their protective storage boxes, and their wires are prone to tangling.
Design a multifunctional ultrasonic probe device, comprising a base, a protective box, and a protective cover. The protective box has a protective cavity, and the protective cover can be opened or closed. The base has a receiving cavity and a through hole. The connecting wires are connected to the probe and the plug through the through hole in the receiving cavity. The protective box protects the probe, and the receiving cavity stores the wires to reduce tangling.
This design enables easy handling and protection of the probe, reduces wire tangling, and improves ease of use.
Smart Images

Figure CN223944433U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to ultrasonic testing equipment technical field especially relates to a kind of multifunctional ultrasonic probe device. BACKGROUND
[0002] Ultrasonic probe is the device that transmits and receives ultrasonic wave in ultrasonic testing process, and its performance directly affects the characteristics and detection performance of ultrasonic wave.The probe used in ultrasonic testing is a transducer that realizes the conversion of electric energy and acoustic energy by using the piezoelectric effect of materials, and the key component in the probe is wafer, which is a single crystal or polycrystalline sheet with piezoelectric effect, and its function is to convert electric energy and acoustic energy into each other, and the internal crystal may be damaged when the probe is hit.
[0003] The existing ultrasonic probe is generally placed inside the protective box when not in use, and the protective box can protect the probe from being damaged by impact from objects. However, it is very time-consuming to take the probe out of the protective box when using it and to place it inside the protective box when not in use. Moreover, the long length of the connecting wire of the probe makes it easy to entangle with other wires when in use, which is very troublesome. SUMMARY
[0004] The utility model aims at providing a kind of multifunctional ultrasonic probe device to solve the problem of probe storage in protective box in prior art, and the problem of troublesome taking and storing and wire entanglement.
[0005] To achieve the above-mentioned purpose, the utility model provides a kind of multifunctional ultrasonic probe device, including base, protective box and protective cover, the protective box is fixedly connected with the base, the protective box is equipped with protective cavity, the protective cover is hinged with the protective box, the protective cover is used to fit the protective box to cover the protective cavity or away from the protective box to open the protective cavity in the rotation stroke;
[0006] The base is provided with accommodating cavity, first through-hole and second through-hole, the first through-hole is connected with the accommodating cavity and the protective cavity, and the second through-hole is connected with the accommodating cavity and the external space.
[0007] The multifunctional ultrasonic probe device further includes probe mechanism, connecting wire and plug, the probe mechanism is arranged in the protective cavity, the connecting wire is arranged in the accommodating cavity, one end of the connecting wire is arranged in the first through-hole and connected with the probe mechanism, and the other end of the connecting wire is arranged in the second through-hole and connected with the plug.
[0008] Preferably, the protective box comprises a box body and a rotating plate, the rotating plate is arranged at one end of the box body away from the base, the box body and the rotating plate enclose the protective cavity, one side of the rotating plate is hinged to the box body, and the rotating plate has an opening position in a rotating stroke, at which the rotating plate is separated from the box body to form an opening in the protective cavity, and a closing position in the rotating stroke, at which the rotating plate is fitted to the box body to enclose the protective cavity.
[0009] Preferably, the rotating axis of the rotating plate and the rotating axis of the protective cover both extend in a horizontal direction, the top of the box body is an open structure, and the protective cover is arranged at the top of the box body.
[0010] Preferably, the base comprises a fixed seat, a placing box and a box cover, the placing box is fixedly connected to the fixed seat, the accommodating cavity, the first through hole and the second through hole are arranged in the placing box, the box cover is detachably connected to the placing box, the box cover seals the accommodating cavity, and the protective box is fixedly connected to the placing box.
[0011] Preferably, the base further comprises a partition plate, a support rod and a turning block arranged in the accommodating cavity, the partition plate, the support rod and the turning block are arranged in parallel and spaced apart in a horizontal direction, the partition plate and the support rod divide the accommodating cavity into a serpentine channel, the connecting wire is arranged in the serpentine channel, the first through hole is arranged on one side of the placing box close to the partition plate, the turning block is fixedly connected to the support rod, and the second through hole penetrates through the turning block.
[0012] Preferably, the base further comprises a sliding column and a sliding block, the sliding column is arranged in the accommodating cavity and located between the partition plate and the support rod, the sliding column is parallel to the partition plate, the sliding block is sleeved on the sliding column, the sliding block is provided with a through hole, and the connecting wire is arranged in the through hole.
[0013] The placing box is further provided with a sliding groove parallel to the sliding column, the sliding block is embedded in the sliding groove, and the multifunctional ultrasonic probe device further comprises a positioning structure fixedly connected between the sliding block and the placing box, and the positioning structure is used for positioning the sliding block.
[0014] Preferably, the positioning structure comprises a positioning block and a clamping hole, the positioning column is connected to the sliding block, the clamping hole is arranged in the placing box, a plurality of clamping holes are arranged in a direction parallel to the sliding column, and the positioning block is used for being inserted into the clamping hole to position the sliding block.
[0015] Preferably, the fixed seat is provided with a plurality of mounting holes, the mounting holes are arranged on one side away from the placing box, and the mounting holes are used for penetrating fasteners.
[0016] The utility model discloses an embodiment of a multifunctional ultrasonic probe device compared with prior art, its beneficial effect lies in: the protective box is provided on the base, and the protective cavity in the protective box is used for placing the probe mechanism, and the protective cavity is covered and sealed or opened by the protective cover, and the protective box and the protective cover form protection to the probe mechanism, when using, the protective cover is rotated and is away from the protective box, can open the protective cavity and take the probe mechanism, when not using, can place the probe mechanism in the protective cavity and rotate the protective cover to cover and seal the protective cavity, prevent the object from impacting the probe mechanism, both protect the probe mechanism and facilitate taking, simultaneously, the containing cavity is set up in the base, and the connecting wire is placed in the containing cavity and is connected the plug and the probe mechanism through the first through -hole and the second through -hole on the base, and the containing cavity has the effect of accommodating the connecting wire, reduces the probability of connecting wire and other wire connection winding, and convenient to use. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 It is the structure schematic diagram of the multifunctional ultrasonic probe device of the utility model,
[0018] Figure 2 It is Figure 1 The rear side structure schematic diagram of the multifunctional ultrasonic probe device of
[0019] Figure 3 It is Figure 1 The state schematic diagram when the protective cover of the multifunctional ultrasonic probe device of covers and seals the protective cavity,
[0020] Figure 4 It is Figure 1 The internal structure schematic diagram of the placing box of the multifunctional ultrasonic probe device.
[0021] In the drawing, 1, base, 2, box cover, 3, fixed screw, 4, probe mechanism, 5, rotating plate, 6, protective cover, 7, damping pivot, 8, protective box, 81, box body, 82, protective cavity, 9, plug, 10, connecting wire, 11, sliding groove, 12, clamping hole, 13, positioning block, 14, fixed seat, 15, mounting hole, 101, placing box, 102, baffle, 103, support rod, 104, steering block, 105, sliding column, 106, sliding block, 107, first through -hole, 108, second through -hole, 109, containing cavity. DETAILED DESCRIPTION
[0022] The specific implementation of the utility model is described in further detail below in combination with the drawings and examples. The following examples are used to illustrate the utility model, but not to limit the scope of the utility model.
[0023] The preferred embodiment of the utility model of a multifunctional ultrasonic probe device is as follows, Figures 1 to 4As shown, the multifunctional ultrasonic probe device includes a base 1, a protective box 8, a protective cover 6, a probe mechanism 4, a connecting wire 10 and a plug 9. The base 1 is the supporting foundation of the multifunctional ultrasonic probe device. The protective box 8 and the protective cover 6 are used to protect the probe mechanism 4. The connecting wire 10 electrically connects the probe mechanism 4 and the plug 9. The probe mechanism 4 is used to realize ultrasonic detection. The probe plug 9 is used to be connected with the socket of the external device.
[0024] The protective box 8 is fixedly connected with the base 1, so as to fix the protective box 8. The protective box 8 is fixedly arranged on the front side of the base 1. The protective box 8 is provided with a protective cavity 82 for accommodating the probe mechanism 4. The protective cover 6 is hingedly connected with the protective box 8. The rear side of the protective box 8 close to the base 1 is provided with a damping rotating shaft 7. The protective cover 6 is connected with the damping rotating shaft 7. The protective cover 6 is hingedly connected with the protective box 8 through the damping rotating shaft 7. The protective cover 6 and the protective box 8 form protection for the probe mechanism 4 in the protective cavity 82, so as to prevent the probe mechanism 4 from being hit by objects.
[0025] The protective cover 6 can rotate around the damping rotating shaft 7 as the center. When the protective cover 6 is rotated forward to be attached to the protective box 8, the protective cover 6 seals the protective cavity 82. At this time, the protective cavity 82 is a relatively sealed space, which can protect the probe mechanism 4. When the protective cover 6 is rotated backward to be away from the protective box 8, the protective cover 6 opens the protective cavity 82. At this time, the protective cavity 82 is an open structure. The operator can take out the probe mechanism 4 placed in the protective cavity 82 to perform detection. In this embodiment, the maximum rotation angle of the protective cover 6 is perpendicular to the protective box 8. At this time, the protective cover 6 is attached to the base 1.
[0026] The base 1 is provided with an accommodating cavity 109. The connecting wire 10 is arranged in the accommodating cavity 109. The accommodating cavity 109 can store the connecting wire 10, so as to prevent the connecting wire 10 from being connected with other wires and reduce the probability of being entangled with other wires. The base 1 is also provided with a first through hole 107 and a second through hole 108. The first through hole 107 communicates the accommodating cavity 109 with the protective cavity 82. The second through hole 108 communicates the accommodating cavity 109 with the external space. One end of the connecting wire 10 is arranged in the first through hole 107 and connected with the probe mechanism 4 in the protective cavity 82. The other end of the connecting wire 10 is arranged in the second through hole 108 and connected with the plug 9.
[0027] The first through hole 107 and the second through hole 108 are used for the connecting wire 10 to pass through. When performing ultrasonic detection, the operator pulls out the plug 9 and the probe mechanism 4. The connecting wire 10 is pulled out through the first through hole 107 and the second through hole 108. The plug 9 can be connected with other structures, so that the probe mechanism 4 can be used. In this embodiment, the connecting wire 10 and the plug 9 are fixed through threads. When needed, they can be disassembled.
[0028] The multifunctional ultrasonic probe device is provided with a protection box 8 on the base 1, a protection cavity 82 in the protection box 8 is used for placing the probe mechanism 4, and the protection cavity 82 is covered or opened by a protection cover 6, the protection box 8 and the protection cover 6 form protection for the probe mechanism 4, when in use, the protection cover 6 is rotated away from the protection box 8, the protection cavity 82 can be opened and the probe mechanism 4 can be taken out, when not in use, the probe mechanism 4 can be placed in the protection cavity 82 and the protection cover 6 is rotated to cover the protection cavity 82, so that the probe mechanism 4 is prevented from being impacted by objects, the probe mechanism 4 is protected and is convenient to take out; meanwhile, a containing cavity 109 is arranged in the base 1, the connecting wire 10 is placed in the containing cavity 109 and connected with the plug 9 and the probe mechanism 4 through the first through hole 107 and the second through hole 108 on the base 1, the containing cavity 109 has the function of accommodating the connecting wire 10, so that the probability of entanglement of the connecting wire 10 with other wires is reduced, and use is convenient.
[0029] Preferably, the protection box 8 comprises a box body 81 and a rotating plate 5, the rotating plate 5 is arranged at one end of the box body 81 away from the base 1, the box body 81 and the rotating plate 5 form the protection cavity 82, one side of the rotating plate 5 is hinged to the box body 81, and the rotating plate 5 has an opening position in a rotating stroke, at which the rotating plate 5 is separated from the box body 81 to form an opening in the protection cavity 82, and a closing position, at which the rotating plate 5 is attached to the box body 81 to form the protection cavity 82.
[0030] Since the one end of the box body 81 away from the base 1 is hinged to the rotating plate 5, when ultrasonic detection is needed, the rotating plate 5 can be rotated to the opening position, at which the protection cavity 82 forms an opening, and after the protection cover 6 is rotated, the probe mechanism 4 in the protection cavity 82 can be conveniently taken out for ultrasonic detection; after ultrasonic detection is completed, the rotating plate 5 can be rotated to the closing position, at which the rotating plate 5 and the box body 81 form the protection cavity 82, and the protection cavity 82 can be covered by rotating the protection cover 6, so that the probe mechanism 4 is protected when not in use, and objects are prevented from impacting the probe mechanism 4.
[0031] Preferably, the rotating axis of the rotating plate 5 and the rotating axis of the protection cover 6 both extend in the horizontal direction, the top of the box body 81 is of an open structure, and the protection cover 6 is arranged at the top of the box body 81.
[0032] The rotating axis of the rotating plate 5 and the rotating axis of the protection cover 6 both extend in the horizontal direction, the rotating plate 5 and the protection cover 6 perform pitching motion in a vertical plane when rotated, the bottom of the box body 81 can support the probe body, and the probe mechanism 4 is convenient to take out and place. In other embodiments, the rotating axis of the protection cover 6 and the rotating axis of the rotating plate 5 can also extend in the vertical direction.
[0033] Preferably, the base 1 comprises a fixing seat 14, a placing box 101 and a box cover 2, the placing box 101 is fixedly connected with the fixing seat 14, the accommodating cavity 109, the first through hole 107 and the second through hole 108 are all arranged on the placing box 101, the box cover 2 is detachably connected with the placing box 101, the box cover 2 seals the accommodating cavity 109, and the protection box 8 is fixedly connected with the placing box 101.
[0034] The fixing seat 14 of the base 1 can support and fix on a desktop or the like in use, and support the entire placing box 101 and the protection box 8 on the placing box 101. The accommodating cavity 109 is arranged in the placing box 101, the box cover 2 is detachably connected with the placing box 101, and when a structure in the accommodating cavity 109 has a problem, the box cover 2 can be detached, so that the user can check the structure in the accommodating cavity 109. In this embodiment, the box cover 2 is tightly connected with the placing box 101 through the fixing screw 3, and in other embodiments, the box cover 2 can also be buckled and connected with the placing box 101.
[0035] Preferably, the base 1 further comprises a partition plate 102, a supporting rod 103 and a turning block 104 arranged in the accommodating cavity 109, the partition plate 102, the supporting rod 103 and the turning block 104 are parallel to each other and arranged in a horizontal direction, the partition plate 102 and the supporting rod 103 divide the accommodating cavity 109 into a serpentine channel, the connecting wire 10 is arranged in the serpentine channel, the first through hole 107 is arranged on one side of the placing box 101 close to the partition plate 102, the turning block 104 is fixedly connected with the supporting rod 103, and the second through hole 108 penetrates through the turning block 104.
[0036] The partition plate 102 and the supporting rod 103 divide the accommodating cavity 109 into a serpentine channel, and after the connecting wire 10 is arranged in the serpentine channel, the connecting wire 10 is in a folded state as a whole. The serpentine channel folds the connecting wire 10, increases the arrangement length of the connecting wire 10 in the accommodating cavity 109, and also arranges and summarizes the connecting wire 10 in the accommodating cavity 109, so that the connecting wire 10 is prevented from being wound.
[0037] The first through hole 107 is arranged on one side close to the partition plate 102, and the second through hole 108 penetrates through the turning block 104, so that the first through hole 107 and the second through hole 108 are located at two ends of the serpentine channel. The turning block 104 can change the arrangement direction of the connecting wire 10, so that the connecting wire 10 passes through the first through hole 107 and is connected with the probe mechanism 4.
[0038] Preferably, the base 1 further comprises a sliding column 105 and a sliding block 106, the sliding column 105 is arranged in the accommodating cavity 109 and located between the partition plate 102 and the supporting rod 103, the sliding column 105 is parallel to the partition plate 102, the sliding block 106 is sleeved on the sliding column 105, the sliding block 106 is provided with a through hole, and the connecting wire 10 passes through the through hole;
[0039] The placement box 101 is also provided with a sliding groove 11 parallel to the sliding column 105, and the sliding block 106 is embedded in the sliding groove 11. The multifunctional ultrasonic probe device also includes a positioning structure, which is fixedly connected between the sliding block 106 and the placement box 101. The positioning structure is used to position the sliding block 106.
[0040] A sliding post 105 is provided between the support rod 103 and the partition 102. The space between the sliding post 105 and the support rod 103, and between the partition 102 and the sliding post 105, forms part of a serpentine channel, increasing the length of the serpentine channel and the arrangement length of the connecting wire 10. A sliding block 106 is fitted onto the sliding post 105, and the sliding block 106 has a through hole through which the connecting wire 10 can pass and slide. When the sliding block 106 slides on the sliding post 105, the connecting wire 10 can be folded or unfolded, adjusting its length within the serpentine channel. This allows the probe mechanism 4 to extract more connecting wires 10 from the receiving cavity 109 during use, resulting in a wider range of movement and greater ease of use.
[0041] The sliding groove 11 allows the sliding block 106 to pass through the fixed box and connect with the positioning structure. The positioning structure fixes the sliding block 106 to the placement box 101. When the sliding block 106 moves to the required position on the sliding post 105, the positioning structure can position the sliding block 106 to prevent it from moving and ensure that the connecting wire 10 of the probe mechanism 4 will not retract into the receiving cavity 109 due to the movement of the sliding block 106 during use.
[0042] Preferably, the positioning structure includes a positioning block 13 and a snap-fit hole 12. The positioning post is connected to the sliding block 106. The snap-fit hole 12 is opened in the placement box 101. Multiple snap-fit holes 12 are spaced apart along a direction parallel to the sliding post 105. The positioning block 13 is used to insert into the snap-fit hole 12 to position the sliding block 106.
[0043] The positioning block 13 is connected to the sliding block 106. The positioning block 13 can be fixed at a suitable height by connecting with a suitable snap-fit hole 12, thereby fixing the position of the sliding block 106. In this embodiment, the positioning block 13 and the sliding block 106 are inserted and fitted in a direction perpendicular to the sliding groove 11. When it is necessary to position the sliding block 106, the positioning block 13 is pulled out from the sliding block 106. At this time, the positioning block 13 disengages from the snap-fit hole 12, pushing the positioning block 13 to move along the sliding groove 11, causing the sliding block 106 to move synchronously. After the adjustment is completed, the positioning block 13 is inserted into the sliding block 106, and the positioning block 13 is simultaneously snapped into the snap-fit hole 12.
[0044] In other embodiments, the positioning structure can also be a positioning top pin, which is threadedly connected with the sliding block 106 and has a nail head that is tightly matched with the placing box 101 to position the sliding block 106.
[0045] Preferably, the fixing seat 14 is provided with a plurality of mounting holes 15, which are arranged on one side deviated from the placing box 101 and used for penetrating fasteners.
[0046] The fasteners, such as screws, can be placed in the mounting holes 15 to make the whole device more firmly arranged on a desktop during use.
[0047] In summary, the embodiment of the utility model provides a multifunctional ultrasonic probe device, which is provided with a protection box on the base, a protection cavity in the protection box is used for placing a probe mechanism, and the protection cavity is covered and opened by a protection cover, the protection box and the protection cover protect the probe mechanism, the protection cover is turned away from the protection box during use, the protection cavity is opened and the probe mechanism is taken out, the probe mechanism is placed in the protection cavity and the protection cover is turned to cover the protection cavity when not in use, so that the probe mechanism is prevented from being hit by objects, the probe mechanism is protected and is convenient to take out, the connecting wire is arranged in the containing cavity and connected with the plug and the probe mechanism through the first through hole and the second through hole on the base, the containing cavity has the function of accommodating the connecting wire, the probability of entanglement of the connecting wire with other wires is reduced, and the device is convenient to use.
[0048] The above only describes the preferred embodiments of the utility model, and it should be noted that, for ordinary skilled persons in the technical field, several improvements and replacements can be made without departing from the technical principles of the utility model, and these improvements and replacements should also be regarded as the protection scope of the utility model.
Claims
1. A multi-functional ultrasound probe device, characterized by, The multifunctional ultrasonic probe device comprises a base (1), a protective box (8) and a protective cover (6), the protective box (8) is fixedly connected with the base (1), the protective box (8) is provided with a protective cavity (82), the protective cover (6) is hingedly connected with the protective box (8), and the protective cover (6) is used for abutting against the protective box (8) to cover and seal the protective cavity (82) or moving away from the protective box (8) to open the protective cavity (82) in a rotating stroke. The base (1) is provided with a containing cavity (109), a first through hole (107) and a second through hole (108), the first through hole (107) is communicated with the containing cavity (109) and the protective cavity (82), and the second through hole (108) is communicated with the containing cavity (109) and an external space. The multifunctional ultrasonic probe device further comprises a probe mechanism (4), a connecting wire (10) and a plug (9), the probe mechanism (4) is arranged in the protective cavity (82), the connecting wire (10) is arranged in the containing cavity (109), one end of the connecting wire (10) is arranged in the first through hole (107) and connected with the probe mechanism (4), and the other end of the connecting wire (10) is arranged in the second through hole (108) and connected with the plug (9).
2. The multi-functional ultrasonic probe apparatus according to claim 1, characterized by The protective box (8) comprises a box body (81) and a rotating plate (5), the rotating plate (5) is arranged at one end of the box body (81) away from the base (1), the box body (81) and the rotating plate (5) form the protective cavity (82) by being enclosed, one side of the rotating plate (5) is hingedly connected with the box body (81), and the rotating plate (5) has an opening position, in which the rotating plate (5) is separated from the box body (81) to form an opening in the protective cavity (82), and a closing position, in which the rotating plate (5) abuts against the box body (81) to form the protective cavity (82) in a rotating stroke.
3. The multi-functional ultrasonic probe apparatus according to claim 2, characterized by The rotating axis of the rotating plate (5) and the rotating axis of the protective cover (6) both extend in a horizontal direction, the top of the box body (81) is of an open structure, and the protective cover (6) is arranged at the top of the box body (81).
4. The multi-functional ultrasound probe apparatus according to any one of claims 1 to 3, characterized by, The base (1) comprises a fixed seat (14), a placing box (101) and a box cover (2), the placing box (101) is fixedly connected with the fixed seat (14), the containing cavity (109), the first through hole (107) and the second through hole (108) are arranged in the placing box (101), the box cover (2) is detachably connected with the placing box (101), the box cover (2) seals the containing cavity (109), and the protective box (8) is fixedly connected with the placing box (101).
5. The multi-functional ultrasonic probe apparatus according to claim 4, characterized by The base (1) further comprises a partition plate (102), a support rod (103) and a turning block (104) arranged in the accommodating cavity (109), the partition plate (102), the support rod (103) and the turning block (104) are parallel to each other and arranged in a horizontal direction, the partition plate (102) and the support rod (103) divide the accommodating cavity (109) into a serpentine channel, the connecting wire (10) is arranged in the serpentine channel, the first through hole (107) is arranged on the side of the placing box (101) close to the partition plate (102), the turning block (104) is fixedly connected with the support rod (103), and the second through hole (108) penetrates through the turning block (104).
6. The multi-functional ultrasonic probe apparatus according to claim 5, characterized by The base (1) further comprises a sliding column (105) and a sliding block (106), the sliding column (105) is arranged in the accommodating cavity (109) and located between the partition plate (102) and the support rod (103), the sliding column (105) is parallel to the partition plate (102), the sliding block (106) is sleeved on the sliding column (105), and the sliding block (106) is provided with a through hole, and the connecting wire (10) is arranged in the through hole. The placing box (101) is further provided with a sliding groove (11) parallel to the sliding column (105), the sliding block (106) is embedded in the sliding groove (11), and the multifunctional ultrasonic probe device further comprises a positioning structure, the positioning structure is fixedly connected between the sliding block (106) and the placing box (101), and the positioning structure is used for positioning the sliding block (106).
7. The multi-functional ultrasonic probe apparatus according to claim 6, characterized by The positioning structure comprises a positioning block (13) and a clamping hole (12), the positioning block (13) is connected with the sliding block (106), the clamping hole (12) is formed in the placing box (101), a plurality of clamping holes (12) are arranged in a direction parallel to the sliding column (105), and the positioning block (13) is used for being inserted into the clamping hole (12) to position the sliding block (106).
8. The multi-functional ultrasonic probe apparatus according to claim 4, characterized by The fixing seat (14) is provided with a plurality of mounting holes (15), the mounting holes (15) are arranged on the side deviated from the placing box (101), and the mounting holes (15) are used for penetrating fasteners.