AD/BEECH 35/70 Amdt 1 - Airspeed Restriction

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Legislation au F2006B03867 In force Legislative Instrument

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AIRWORTHINESS DIRECTIVE

For the reasons set out in the background section, the CASA delegate whose signature appears below revokes Airworthiness Directive (AD) AD/BEECH 35/70 and issues the following AD under subregulation 39.1 (1) of CAR 1998. The AD requires that the action set out in the requirement section (being action that the delegate considers necessary to correct the unsafe condition) be taken in relation to the aircraft or aeronautical product mentioned in the applicability section: (a) in the circumstances mentioned in the requirement section; and (b) in accordance with the instructions set out in the requirement section; and (c) at the time mentioned in the compliance section.

 

Beechcraft 35 (Bonanza) Series Aeroplanes

 

AD/BEECH 35/70

Amdt 1


Airspeed Restriction 1/2003

 

 

Applicability: Models 35, A35, B35, and 35R aircraft, all serial numbers.

 

Requirement: 1. Fabricate a placard that restricts the never exceed speed (Vne) to no more than 144 miles per hour (MPH) or 125 knots (KTS) indicated airspeed (IAS), and install this placard on the instrument panel within the pilot’s clear view. The placard should utilise letters at least 2.54mm (0.10-inch) in height and contain the following words:

 

“Never exceed speed, Vne, 144 MPH (125 KTS) IAS”

 

2.        Mark a red line on the airspeed indicator glass at 144 MPH (125 kts) and mark a white slippage mark on the outside surface of the airspeed indicator between the glass and the case.

 

3.        Insert a copy of this Directive into the Limitations Section of the aircraft flight manual.

 

4.        Visually inspect the empennage, aft fuselage, and ruddervator control system for damage in accordance with the procedures in paragraphs (5)(a) through (5)(f) of the Accomplishment Instructions section of Raytheon Service Bulletin No. SB 27-3358, Issued February 2000, and use a digital ultrasonic skin tester or equivalent skin tester or direct methods that utilise callipers and micrometers.

 

  1. Part of this is an inspection of the aft fuselage skin for wrinkles or cracks. Specific skin thicknesses are presented in Figures 1 and 2 of this Directive. The skin thickness measurement is not repetitive.

 

b.    The inspection and setting of the travels on the elevator and elevator trim tabs are not repetitive.

 

c.    Repair or replace any damaged parts and set the elevator controls, rudder and tab system controls, cable tensions, and rigging.

 

 

 

 

 

 

 

 

 

Page 1 of 6

 

5.        Verify the accuracy of the aircraft basic weight and balance information and correct any discrepancies, in accordance with the following procedures:

 

  1. Weight and Balance Accuracy Method No. 1:

 

(i)       Review existing weight and balance documentation to assure completeness and accuracy of the documentation from the most recent approved weighing or from factory delivery to date of compliance with this Directive.

 

(ii)    Compare the actual configuration of the aircraft to the configuration described in the weight and balance documentation.

 

(iii)  If equipment additions or deletions are not reflected in the documentation or if modifications affecting the location of the centre of gravity (eg. paint or structural repairs) are not documented, determine the accuracy of the aircraft weight and balance data in accordance with Method No. 2.

 

b.         Weight and Balance Information Accuracy Method No. 2:

 

(i)       Determine the basic empty weight and centre of gravity (CG) of the empty aircraft using the weighing instructions in the Weight and Balance section of the aircraft flight manual/pilot’s operating handbook (AFM/POH).

 

(ii)    Record the results in the aircraft records, and use these new values as the basis for computing the weight and CG information as specified in the Weight and Balance section of the AFM/POH.

 

6.        Inspect the aft fuselage, ruddervator, and related systems for acceptable condition in accordance with the procedures in the Accomplishment Instructions section of Raytheon Service Bulletin No. SB 27-3358. Accomplish the rebalancing in accordance with Section 3A(8) of the service bulletin and use the procedure in Section 3 of Beech Shop Manual 35-590096B19 (or subsequent revision).

 

  1. Repair or replace any parts found unacceptable as specified in the Requirement document.

 

b.         Rebalance the ruddervators to the new specifications that reduce the upper limit from 19.8 to 18 inch-pounds (tail heavy). This is not necessary initially if it can be positively verified in the logbook that the ruddervators meet the limits specified in the Requirement document:

 

(i)       To positively show this, the entry must indicate that the ruddervator is within the specified limits and list the details of the balancing.

 

(ii)    This must include the balancing methods used and the amount of weights and washers used.

 

c.         Discontinue the placard and operating limitations of Requirements 1, 2, and 3 of this Directive.

 

 


 

Skin Thickness - Raytheon Aircraft (Beech) Models 35, 35R, A35, and B35

 

 

INDEX NUMBER

PART NUMBER

SKIN THICKNESS

SKIN TOLERANCE

LOCATION

EFFECTIVITY

1

35-410006-26

0.016

See ANSI AA

 

 

 

 

 

H35.2(M)

 

 

2

35-410006-20

0.025

See ANSI AA

 

 

 

 

 

H35.2(M)

 

 

3

35-410008-2

0.016

See ANSI AA

FS 151-FS272

D-1 through D-15

 

35-410008-2

0.016

H35.2(M)

FS 151 - FS233.5

D-16 through D- 1574

 

35-410008-20

0.016

 

FS 151 - FS 207

D-1575 & After

4

35-410008-18

0.025

See ANSI AA

FS 233.5-FS 272

D-16 through D-1574

 

35-410008-22

0.025

H35.2(M)

FS 207 - FS 272

D-1 575 & After

5

35-410006-6

0.025

See ANSI AA

 

D-1 through D-1500

 

35-410359-2

0.025

H35.2(M)

 

D- 1501 & After

6

35-410007-2

0.016

See ANSI AA

FS 207– FS272

D-1 through D-1574

 

35-410007-24

0.016

H35.2(M)

 

D-1575 & After

 

35-410007-24

0.020

 

 

Class 111

7

35-410007-26

0.020

See ANSI AA

FS 207 - FS 272

D-1575 & After

 

 

 

H35.2(M)

 

 

8

35-410009-12

0.025

See ANSI AA

FS 233.5 - FS 272

D-16 through D-1574

 

35-410009-18

0.025

H35.2(M)

FS 207 - FS 272

D- 1575 & After

9

35-410009-2

0.016

See ANSI AA

FS 151 -IFS272

D-1 through D-15

 

35-410009-2

0.016

H35.2(M)

FS 151 - FS 233.5

D-16 through D- 1574

 

35-41009-16

0.016

 

FS 151 - FS 207

D-1575 & After

10

35-410006-22

0.025

See ANSI AA

FS 207 - FS 27-1

 

 

 

 

H35.2(M)

 

 

11

35-410010-18

0.020

See ANSI AA

 

D-1575 & After

 

 

 

H35.2(M)

 

 

12

35-410010-2

0.016

See ANSI AA

FS 15 1 - FS 272

D-1 through D-1574

 

35-410010-16

0.016

H35.2(M)

FS 151 - FS 233.5

D-1575 & After

 

35-410010-16

0.020

 

FS 151 - FS 207

Class Ill

13

35-410006-8

0.025

See ANSI AA

 

D-1 through D-1500

 

35-410359-4

0.025

H35.2(M)

 

D-1501 & After

14

35-41002-IBSC

0.032

See ANSI AA

 

 

 

 

 

H35.2(M)

 

 

15

35-410006-42

0.020

See ANSI AA

 

D-1 through D-1500

 

35-410359-6

0.020

H35.2(M)

 

D-1501 & After

16

35-410006-34

0.020

See ANSI AA

 

D-1 through D- 1500

 

35-410359-8

0.020

H35.2(M)

 

D-1501 & After

17

35-410012-2

0.016

See ANSI AA

 

 

 

 

 

H35.2(M)

 

 

18

35410011-2

0.016

See ANSI AA

 

 

 

 

 

H35.2(M)

 

 

19

35-410006-40

0.016

See ANSI AA

 

 

 

35-410014BSC

0.016

H35.2(M)

 

Record Change

20

35-410006-32

0.020

See ANSI AA

 

D-1 through D-1500

 

35-4 103 359-10

0.020

H35.2(M)

 

D-1501 & After

21

TAILCONE

 

 

 

 

22

TAILCONE

 

 

 

 

Figure 2

 

Note: FAA AD 2002 -21-13 Amdt 39-12920 refers.

 

Compliance: Requirements 1, 2, and 3: Within 10 hours time in service after 8 July 1998.

 

Requirement 4: Within the next 100 hours time in service after the last inspection required by FAA AD 94-20-04 (AD/BEECH 35/58 Amdt 4) or within 25 hours time in service after 23 January 2003, whichever occurs later, and thereafter at intervals not to exceed 100

hours time in service. Accomplish any repairs, replacements, and adjustments before further flight after the applicable inspection.

 

Requirement 5: Within the next 100 hours after 23 January 2003, unless already accomplished as previously required by AD/BEECH 35/58 Amdt 4. Correct any discrepancies before further flight after the verification.

 

Requirement 6: Within 3 years after 23 January 2003, unless already accomplished. Accomplish any repair or replacement before further flight after the inspection. Accomplish any ruddervator rebalancing before further flight after the inspection, unless previously accomplished within the last 100 hours time in service, and thereafter when the ruddervators are repaired or repainted (even if stripes are added or paint is touched up).

 

The compliance time for Requirements 1, 2, and 3 remains unchanged by this issue. This Amendment becomes effective on 23 January 2003.

Background: The FAA received reports of several incidents of in-flight vibrations on Beech Model 35, A35, B35, and 35R aircraft. These incidents are unrelated to AD 94-20-04 ( AD/BEECH 35/58 Amdt 4), which currently requires, among other things, balancing the ruddervators (off the aircraft) anytime the ruddervator is repaired or repainted. Of the 10 incidents since AD 94-20-04 became effective, 7 of the affected aircraft had ruddervators that were balanced and 3 had ruddervators that were out-of-balance.

Post-flight inspections of the aircraft involved in the incidents have revealed cracked bulkheads and wrinkled skin in the aft fuselage; and broken spars, broken hinges, and bent skin on the stabilisers and ruddervators.

 

Model 35, A35, B35, and 35R aircraft are equipped with “V-tails” that have a narrow chord stabiliser without reinforcing cuffs. The FAA’s preliminary investigation reveals the possibility of an unstable flutter mode in the 160 to 170 MPH range for the affected aircraft. The unstable mode is not likely to occur on other Beech aircraft models with “V-tail” configurations.

 

Amendment 1 is issued in response to a new FAA AD which was prompted by the manufacturer developing inspection and modification procedures that, when accomplished on the affected aircraft, will eliminate the need for the operating limitations. This Directive retains the operating limitations for the affected aircraft until the recently developed inspection and modification procedures are accomplished. This Directive also requires repetitive inspections of the fuselage structure.

 

The original issue of this Airworthiness Directive became effective on 8 July 1998


 

David Alan Villiers

Delegate of the Civil Aviation Safety Authority 29 November 2002

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 


The above AD is notified in the Commonwealth of Australia Gazette on 18 December 2002.

Overview

The Civil Aviation Safety Authority Airworthiness Directive AD/BEECH 35/70 Amdt 1, issued in 2003, addresses the problem of in-flight vibrations and structural integrity issues identified in Beechcraft 35 (Bonanza) Series Aeroplanes, specifically models 35, A35, B35, and 35R. This legislative instrument, enacted by the Civil Aviation Safety Authority, aims to ensure the safety of these aircraft by mandating specific actions to be taken to rectify identified unsafe conditions. The directive revokes the previous AD AD/BEECH 35/70 and introduces new requirements, including the fabrication and installation of a speed restriction placard, marking the airspeed indicator, and conducting thorough inspections and repairs of the empennage, aft fuselage, and ruddervator control system. The policy objective behind this directive is to mitigate the risks associated with in-flight vibrations and structural damage by enforcing stringent inspection and modification procedures, thereby enhancing the overall airworthiness of the affected aircraft.

Scope and Application

The Airworthiness Directive (AD) AD/BEECH 35/70 issued by the Civil Aviation Safety Authority (CASA) applies to all models of Beechcraft 35 (Bonanza) aeroplanes, specifically the 35, A35, B35, and 35R series, regardless of their serial numbers. The directive mandates specific actions to address safety concerns identified in these aircraft models. The required actions include fabricating and installing a placard restricting the never exceed speed, marking specific indicators on the airspeed instrument, inserting a copy of the directive into the aircraft's flight manual, and conducting detailed inspections and repairs of the empennage, aft fuselage, and ruddervator control system. Additionally, the directive requires verification and correction of the aircraft's weight and balance information. The directive applies across Australia as a Commonwealth regulation, and it does not specify any exclusions or exemptions. The CASA delegate has the authority to extend or restrict the application of this directive through subordinate instruments if necessary. Compliance deadlines are set for various actions, ranging from immediate installation of placards to periodic inspections and repairs within specified timeframes.

Key Provisions

This Airworthiness Directive (AD) outlines specific requirements and actions that must be taken to address safety concerns related to the Beechcraft 35 (Bonanza) Series Aeroplanes, specifically models 35, A35, B35, and 35R of all serial numbers. The AD mandates several actions to mitigate risks, including the fabrication and installation of a placard restricting the never exceed speed (Vne) to no more than 144 miles per hour (MPH) or 125 knots (KTS) indicated airspeed (IAS), as well as the marking of a red line and white slippage mark on the airspeed indicator. Additionally, the AD requires the insertion of a copy of this directive into the aircraft's flight manual and the inspection of the empennage, aft fuselage, and ruddervator control system for damage. It further necessitates the verification and correction of the aircraft's weight and balance information, and the inspection and rebalancing of the ruddervators as specified. The obligations imposed by this AD on the relevant parties, such as aircraft owners, operators, and maintenance personnel, include ensuring the strict adherence to the specified timeframes and procedures. They must fabricate and install the required placards and markings, inspect and repair any damaged parts, and verify and correct weight and balance data. Furthermore, they must ensure that the aircraft meets the specified skin thickness and inspection standards, and rebalance the ruddervators as necessary. The AD also requires the retention of records and documentation to demonstrate compliance with the mandated procedures and inspections. Failure to comply with the provisions of this AD can result in serious safety risks, including the potential for structural failure and loss of control during flight. While the AD itself does not specify penalties, non-compliance with Australian Civil Aviation Safety Regulations (CAR) may result in enforcement actions by the Civil Aviation Safety Authority (CASA). These actions can include fines, suspension or revocation of airworthiness certificates, and other regulatory measures. In extreme cases, severe non-compliance could lead to criminal charges, particularly if the failure to comply results in an accident or incident that causes injury or loss of life. The penalties for such offences can include substantial fines and imprisonment.

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Sourced from the Federal Register of Legislation at 26 August 2026. For the latest information on Australian Government law please go to https://www.legislation.gov.au.